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	<title>XM1(Super low ESR,high ripple current） Archives - Xuansn Capacitor</title>
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		<title>Capacitor 680uf 2.5v SMD type manufacturing vendor</title>
		<link>https://capacitorsfilm.com/product/capacitor-680uf-2-5v-smd-type-manufacturing-vendor/</link>
		
		<dc:creator><![CDATA[FilmCapacitor]]></dc:creator>
		<pubDate>Sat, 12 Nov 2022 09:53:46 +0000</pubDate>
				<guid isPermaLink="false">https://capacitorsfilm.com/?post_type=product&#038;p=6498</guid>

					<description><![CDATA[<p>Type: SMD Operating Temperature:-55℃~+105℃ Life:5000hours Applications:fast charging sources, 5G base stations, PC motherboards,etc. Manufacturer:XUANSN</p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-680uf-2-5v-smd-type-manufacturing-vendor/">Capacitor 680uf 2.5v SMD type manufacturing vendor</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p>The full name of solid capacitor 680uf 2.5v is: solid aluminum electrolytic capacitors. The biggest difference between it and ordinary capacitors (ie, liquid aluminum electrolytic capacitors) is the use of different dielectric materials. The dielectric material of liquid aluminum capacitors is electrolyte, while the dielectric material of solid capacitors is conductive polymer materials.</p>
<h3>XM1 Series-Capacitor 680uf 2.5v</h3>
<p>●Super low ESR, High ripple, miniaturized<br />
● SMD type: lead free reflow soldering condition at 260℃ peak correspondence<br />
● RoHS Compliant</p>
</p>
<div class="table-1">
<table style="width: 100%; height: 502px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="width: 27.2899%; height: 24px;" align="left"> Item</th>
<th style="width: 72.1435%; height: 24px;" align="left">Characteristics</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Temperature Range</td>
<td style="width: 72.1435%; height: 24px;" align="left">-55~+105℃</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Specification</td>
<td style="width: 72.1435%; height: 24px;" align="left">680UF2.5V</td>
</tr>
<tr style="height: 10px;">
<td style="width: 27.2899%; height: 10px;" align="left">Capacitance Tolerance</td>
<td style="width: 72.1435%; height: 10px;" align="left">±20% (M)                                                    (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Dissipation Factor (tanδ)</td>
<td style="width: 72.1435%; height: 24px;" align="left">tanδ (max.)=0.08                                       (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 36px;">
<td style="width: 27.2899%; height: 36px;">Leakage Current</td>
<td style="width: 72.1435%; height: 36px;">I≤0.2 CV or 500μA（Take the maximum）<br />
Where, I: Max.leakage current (μA), C: Nominal capacitance (μF),V:Rated voltage (V),(at 20 °C after 2 minutes)</td>
</tr>
<tr style="height: 48px;">
<td style="width: 27.2899%; height: 48px;" align="left">Low Temperature Characteristics (Max. Impedance Ratio)</td>
<td style="width: 72.1435%; height: 48px;" align="left">Z(-25°C)/Z(+20°C)≦1.25<br />
Z(-40°C)/Z(+20°C)≦1.25                       (at 100kHz)</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Endurance</td>
<td style="width: 72.1435%; height: 120px;" align="left">The following specifications shall be satisfied when the capacitors are restored to 20°C after DC voltage plus the rated ripple current is applied for 2,000 hours at 105°C.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr>
<td style="width: 27.2899%;">Damp heat（steady state）</td>
<td style="width: 72.1435%;">The specifications listed below shall be satisfied when the capacitors are restored to 20℃ after application of rated voltage for 1000 hours at 60℃,90%~95%RH.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 72px;">
<td style="width: 27.2899%; height: 72px;" align="left">Surge Voltage</td>
<td style="width: 72.1435%; height: 72px;" align="left">Surge voltage = rated voltage * 1.15 (V)</p>
<p>The capacitors shall be subjected to 1000 cycles each consisting of charge with the surge voltages specified at 105℃ for 30 seconds through a protective resistor（Rc=1kΩ）and discharge for 5 minutes 30 seconds</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Resistance to soldering heat</td>
<td style="width: 72.1435%; height: 120px;" align="left">Measurement for solder temperature profile shall be made at the capacitor top and the terminal.</p>
<p>Capacitance Change :≤±10% of the initial value<br />
D.F. (tanδ):≤130% of the initial specified value<br />
ESR:≤130% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>Dimensions</h3>
<p><img fetchpriority="high" decoding="async" class="alignnone wp-image-799" src="https://xuansncapacitor.com/wp-content/uploads/2022/09/capacitor-2-600x127.jpg" alt="capacitor" width="661" height="169" /></p>
<h3>Rated Ripple Current Correction Coefficient</h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 48px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="height: 24px; text-align: center;" align="left">Frequency (Hz)</th>
<th style="height: 24px; text-align: center;" align="left">120Hz≦f＜1kHz</th>
<th style="height: 24px; text-align: center;" align="left">1kHz≦f＜10kHz</th>
<th style="height: 24px; text-align: center;" align="left">10kHz≦f＜100kHz</th>
<th style="height: 24px; text-align: center;" align="left">100kHz≦f＜500kHz</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="height: 24px; text-align: center;" align="left">Coefficient</td>
<td style="height: 24px; text-align: center;" align="left">0.05</td>
<td style="height: 24px; text-align: center;" align="left">0.30</td>
<td style="height: 24px; text-align: center;" align="left">0.70</td>
<td style="height: 24px; text-align: center;" align="left">1.00</td>
</tr>
</tbody>
</table>
<p>
</div>
<h3 class="table-1">Parameters<strong> Table</strong></h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 86px;" width="100%">
<thead>
<tr style="height: 10px;">
<th style="height: 10px; text-align: center; width: 16.6482%;" align="left">Rated voltage（V）</th>
<th style="height: 10px; text-align: center; width: 19.9778%;" align="left">Rated Capacitance（μf）</th>
<th style="height: 10px; text-align: center; width: 14.3175%;" align="left">Case size     D*L(mm)</th>
<th style="height: 10px; text-align: left; width: 17.9798%;" align="left">
<p style="text-align: center;">      ESR(mΩ）</p>
<p style="text-align: center;">at 20℃ 100kHz</p>
</th>
<th style="height: 10px; width: 15.7604%; text-align: center;" align="left">Leakage Current</p>
<p>(μA)</th>
<th style="height: 10px; width: 13.6515%; text-align: center;" align="left">Rated ripple current（mArms/105℃/100kHz）</th>
</tr>
</thead>
<tbody>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left">2.5</td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left">680</td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left">8*12.6</td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left">12</td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left">500</td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left">5100</td>
</tr>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left"></td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>How to order</h3>
<p>XM1    681    M     0E     D06L09     T</p>
<p>XM1:Series code</p>
<p>681:Capacitance code</p>
<p>M:Capacitance tolerance code</p>
<p>0E:Voltage code</p>
<p>D06L09:Size code</p>
<p>T:Packing number</p>
<h3>Our advantage</h3>
<p>1. Have 18 years experiences in capacitor industry. Be able to quickly understand the needs of customers and give feedback quickly.</p>
<p>2. Covers all capacitors: Electrolytic capacitors, film capacitors, safety capacitors, ceramic capacitors, super capacitors.</p>
<p>3.With 200 production lines, the sample delivery time is 3 days, and the bulk goods delivery time is 2 weeks.</p>
<p>4.The company has its own R&amp;D team and after-sales team, providing complete pre-sale, in-sale and after-sale services.</p>
<h3>Contact us</h3>
<p>We are a supplier of electrolytic capacitor, and we have rich experiences in this field. Our daily production capacity can reach  7 million electrolytic capacitors, the sample period is 3 days, and the production cycle is 10 days. We will give you great support in terms of price, quality and delivery time.</p>
<p>And Support Customer’s Visit To The Factory</p>
<p>e-mail：  <a href="mailto:sales1@xuanxcapacitors.com">sales1@xuanxcapacitors.com</a></p>
<p>Pho（whatsapp）：+ 86-18825879082</p>
<p>Skype：Coco.psh</p>
<p>website：<a href="https://www.xuanxcapacitors.com/">xuanxcapacitors.com</a></p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-680uf-2-5v-smd-type-manufacturing-vendor/">Capacitor 680uf 2.5v SMD type manufacturing vendor</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></content:encoded>
					
		
		
			</item>
		<item>
		<title>Capacitor 820uf 2.5v SMD type manufacturing vendor</title>
		<link>https://capacitorsfilm.com/product/capacitor-820uf-2-5v-smd-type-manufacturing-vendor/</link>
		
		<dc:creator><![CDATA[FilmCapacitor]]></dc:creator>
		<pubDate>Sat, 12 Nov 2022 09:52:16 +0000</pubDate>
				<guid isPermaLink="false">https://capacitorsfilm.com/?post_type=product&#038;p=6499</guid>

					<description><![CDATA[<p>Type: SMD Operating Temperature:-55℃~+105℃ Life:5000hours Applications:fast charging sources, 5G base stations, PC motherboards,etc. Manufacturer:XUANSN</p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-820uf-2-5v-smd-type-manufacturing-vendor/">Capacitor 820uf 2.5v SMD type manufacturing vendor</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p>The full name of solid capacitor 820uf 2.5v is: solid aluminum electrolytic capacitors. The biggest difference between it and ordinary capacitors (ie, liquid aluminum electrolytic capacitors) is the use of different dielectric materials. The dielectric material of liquid aluminum capacitors is electrolyte, while the dielectric material of solid capacitors is conductive polymer materials.</p>
<h3>XM1 Series-Capacitor 820uf 2.5v</h3>
<p>●Super low ESR, High ripple, miniaturized<br />
● SMD type: lead free reflow soldering condition at 260℃ peak correspondence<br />
● RoHS Compliant</p>
</p>
<div class="table-1">
<table style="width: 100%; height: 502px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="width: 27.2899%; height: 24px;" align="left"> Item</th>
<th style="width: 72.1435%; height: 24px;" align="left">Characteristics</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Temperature Range</td>
<td style="width: 72.1435%; height: 24px;" align="left">-55~+105℃</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Specification</td>
<td style="width: 72.1435%; height: 24px;" align="left">820UF2.5V</td>
</tr>
<tr style="height: 10px;">
<td style="width: 27.2899%; height: 10px;" align="left">Capacitance Tolerance</td>
<td style="width: 72.1435%; height: 10px;" align="left">±20% (M)                                                    (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Dissipation Factor (tanδ)</td>
<td style="width: 72.1435%; height: 24px;" align="left">tanδ (max.)=0.08                                       (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 36px;">
<td style="width: 27.2899%; height: 36px;">Leakage Current</td>
<td style="width: 72.1435%; height: 36px;">I≤0.2 CV or 500μA（Take the maximum）<br />
Where, I: Max.leakage current (μA), C: Nominal capacitance (μF),V:Rated voltage (V),(at 20 °C after 2 minutes)</td>
</tr>
<tr style="height: 48px;">
<td style="width: 27.2899%; height: 48px;" align="left">Low Temperature Characteristics (Max. Impedance Ratio)</td>
<td style="width: 72.1435%; height: 48px;" align="left">Z(-25°C)/Z(+20°C)≦1.25<br />
Z(-40°C)/Z(+20°C)≦1.25                       (at 100kHz)</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Endurance</td>
<td style="width: 72.1435%; height: 120px;" align="left">The following specifications shall be satisfied when the capacitors are restored to 20°C after DC voltage plus the rated ripple current is applied for 2,000 hours at 105°C.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr>
<td style="width: 27.2899%;">Damp heat（steady state）</td>
<td style="width: 72.1435%;">The specifications listed below shall be satisfied when the capacitors are restored to 20℃ after application of rated voltage for 1000 hours at 60℃,90%~95%RH.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 72px;">
<td style="width: 27.2899%; height: 72px;" align="left">Surge Voltage</td>
<td style="width: 72.1435%; height: 72px;" align="left">Surge voltage = rated voltage * 1.15 (V)</p>
<p>The capacitors shall be subjected to 1000 cycles each consisting of charge with the surge voltages specified at 105℃ for 30 seconds through a protective resistor（Rc=1kΩ）and discharge for 5 minutes 30 seconds</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Resistance to soldering heat</td>
<td style="width: 72.1435%; height: 120px;" align="left">Measurement for solder temperature profile shall be made at the capacitor top and the terminal.</p>
<p>Capacitance Change :≤±10% of the initial value<br />
D.F. (tanδ):≤130% of the initial specified value<br />
ESR:≤130% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>Dimensions</h3>
<p><img decoding="async" class="alignnone wp-image-799" src="https://xuansncapacitor.com/wp-content/uploads/2022/09/capacitor-2-600x127.jpg" alt="capacitor" width="661" height="169" /></p>
<h3>Rated Ripple Current Correction Coefficient</h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 48px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="height: 24px; text-align: center;" align="left">Frequency (Hz)</th>
<th style="height: 24px; text-align: center;" align="left">120Hz≦f＜1kHz</th>
<th style="height: 24px; text-align: center;" align="left">1kHz≦f＜10kHz</th>
<th style="height: 24px; text-align: center;" align="left">10kHz≦f＜100kHz</th>
<th style="height: 24px; text-align: center;" align="left">100kHz≦f＜500kHz</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="height: 24px; text-align: center;" align="left">Coefficient</td>
<td style="height: 24px; text-align: center;" align="left">0.05</td>
<td style="height: 24px; text-align: center;" align="left">0.30</td>
<td style="height: 24px; text-align: center;" align="left">0.70</td>
<td style="height: 24px; text-align: center;" align="left">1.00</td>
</tr>
</tbody>
</table>
<p>
</div>
<h3 class="table-1">Parameters<strong> Table</strong></h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 86px;" width="100%">
<thead>
<tr style="height: 10px;">
<th style="height: 10px; text-align: center; width: 16.6482%;" align="left">Rated voltage（V）</th>
<th style="height: 10px; text-align: center; width: 19.9778%;" align="left">Rated Capacitance（μf）</th>
<th style="height: 10px; text-align: center; width: 14.3175%;" align="left">Case size     D*L(mm)</th>
<th style="height: 10px; text-align: left; width: 17.9798%;" align="left">
<p style="text-align: center;">      ESR(mΩ）</p>
<p style="text-align: center;">at 20℃ 100kHz</p>
</th>
<th style="height: 10px; width: 15.7604%; text-align: center;" align="left">Leakage Current</p>
<p>(μA)</th>
<th style="height: 10px; width: 13.6515%; text-align: center;" align="left">Rated ripple current（mArms/105℃/100kHz）</th>
</tr>
</thead>
<tbody>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left">2.5</td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left">820</td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left">8*12.6</td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left">12</td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left">500</td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left">5100</td>
</tr>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left"></td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>How to order</h3>
<p>XM1    821    M     0E     D08L13    T</p>
<p>XM1:Series code</p>
<p>821:Capacitance code</p>
<p>M:Capacitance tolerance code</p>
<p>0E:Voltage code</p>
<p>D08L13:Size code</p>
<p>T:Packing number</p>
<h3>Our advantage</h3>
<p>1. Have 18 years experiences in capacitor industry. Be able to quickly understand the needs of customers and give feedback quickly.</p>
<p>2. Covers all capacitors: Electrolytic capacitors, film capacitors, safety capacitors, ceramic capacitors, super capacitors.</p>
<p>3.With 200 production lines, the sample delivery time is 3 days, and the bulk goods delivery time is 2 weeks.</p>
<p>4.The company has its own R&amp;D team and after-sales team, providing complete pre-sale, in-sale and after-sale services.</p>
<h3>Contact us</h3>
<p>We are a supplier of electrolytic capacitor, and we have rich experiences in this field. Our daily production capacity can reach  7 million electrolytic capacitors, the sample period is 3 days, and the production cycle is 10 days. We will give you great support in terms of price, quality and delivery time.</p>
<p>And Support Customer’s Visit To The Factory</p>
<p>e-mail：  <a href="mailto:sales1@xuanxcapacitors.com">sales1@xuanxcapacitors.com</a></p>
<p>Pho（whatsapp）：+ 86-18825879082</p>
<p>Skype：Coco.psh</p>
<p>website：<a href="https://www.xuanxcapacitors.com/">xuanxcapacitors.com</a></p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-820uf-2-5v-smd-type-manufacturing-vendor/">Capacitor 820uf 2.5v SMD type manufacturing vendor</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></content:encoded>
					
		
		
			</item>
		<item>
		<title>Capacitor 560uf 4v SMD type supplier</title>
		<link>https://capacitorsfilm.com/product/capacitor-560uf-4v-smd-type-supplier/</link>
		
		<dc:creator><![CDATA[FilmCapacitor]]></dc:creator>
		<pubDate>Sat, 12 Nov 2022 09:49:48 +0000</pubDate>
				<guid isPermaLink="false">https://capacitorsfilm.com/?post_type=product&#038;p=6500</guid>

					<description><![CDATA[<p>Type: SMD Operating Temperature:-55℃~+105℃ Life:5000hours Applications:fast charging sources, 5G base stations, PC motherboards,etc. Manufacturer:XUANSN</p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-560uf-4v-smd-type-supplier/">Capacitor 560uf 4v SMD type supplier</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p>The full name of solid capacitor 560uf 4v is: solid aluminum electrolytic capacitors. The biggest difference between it and ordinary capacitors (ie, liquid aluminum electrolytic capacitors) is the use of different dielectric materials. The dielectric material of liquid aluminum capacitors is electrolyte, while the dielectric material of solid capacitors is conductive polymer materials.</p>
<h3>XM1 Series-Capacitor 560uf 4v</h3>
<p>●Super low ESR, High ripple, miniaturized<br />
● SMD type: lead free reflow soldering condition at 260℃ peak correspondence<br />
● RoHS Compliant</p>
</p>
<div class="table-1">
<table style="width: 100%; height: 502px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="width: 27.2899%; height: 24px;" align="left"> Item</th>
<th style="width: 72.1435%; height: 24px;" align="left">Characteristics</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Temperature Range</td>
<td style="width: 72.1435%; height: 24px;" align="left">-55~+105℃</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Specification</td>
<td style="width: 72.1435%; height: 24px;" align="left">560UF4V</td>
</tr>
<tr style="height: 10px;">
<td style="width: 27.2899%; height: 10px;" align="left">Capacitance Tolerance</td>
<td style="width: 72.1435%; height: 10px;" align="left">±20% (M)                                                    (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Dissipation Factor (tanδ)</td>
<td style="width: 72.1435%; height: 24px;" align="left">tanδ (max.)=0.08                                       (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 36px;">
<td style="width: 27.2899%; height: 36px;">Leakage Current</td>
<td style="width: 72.1435%; height: 36px;">I≤0.2 CV or 500μA（Take the maximum）<br />
Where, I: Max.leakage current (μA), C: Nominal capacitance (μF),V:Rated voltage (V),(at 20 °C after 2 minutes)</td>
</tr>
<tr style="height: 48px;">
<td style="width: 27.2899%; height: 48px;" align="left">Low Temperature Characteristics (Max. Impedance Ratio)</td>
<td style="width: 72.1435%; height: 48px;" align="left">Z(-25°C)/Z(+20°C)≦1.25<br />
Z(-40°C)/Z(+20°C)≦1.25                       (at 100kHz)</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Endurance</td>
<td style="width: 72.1435%; height: 120px;" align="left">The following specifications shall be satisfied when the capacitors are restored to 20°C after DC voltage plus the rated ripple current is applied for 2,000 hours at 105°C.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr>
<td style="width: 27.2899%;">Damp heat（steady state）</td>
<td style="width: 72.1435%;">The specifications listed below shall be satisfied when the capacitors are restored to 20℃ after application of rated voltage for 1000 hours at 60℃,90%~95%RH.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 72px;">
<td style="width: 27.2899%; height: 72px;" align="left">Surge Voltage</td>
<td style="width: 72.1435%; height: 72px;" align="left">Surge voltage = rated voltage * 1.15 (V)</p>
<p>The capacitors shall be subjected to 1000 cycles each consisting of charge with the surge voltages specified at 105℃ for 30 seconds through a protective resistor（Rc=1kΩ）and discharge for 5 minutes 30 seconds</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Resistance to soldering heat</td>
<td style="width: 72.1435%; height: 120px;" align="left">Measurement for solder temperature profile shall be made at the capacitor top and the terminal.</p>
<p>Capacitance Change :≤±10% of the initial value<br />
D.F. (tanδ):≤130% of the initial specified value<br />
ESR:≤130% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>Dimensions</h3>
<p><img decoding="async" class="alignnone wp-image-799" src="https://xuansncapacitor.com/wp-content/uploads/2022/09/capacitor-2-600x127.jpg" alt="capacitor" width="661" height="169" /></p>
<h3>Rated Ripple Current Correction Coefficient</h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 48px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="height: 24px; text-align: center;" align="left">Frequency (Hz)</th>
<th style="height: 24px; text-align: center;" align="left">120Hz≦f＜1kHz</th>
<th style="height: 24px; text-align: center;" align="left">1kHz≦f＜10kHz</th>
<th style="height: 24px; text-align: center;" align="left">10kHz≦f＜100kHz</th>
<th style="height: 24px; text-align: center;" align="left">100kHz≦f＜500kHz</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="height: 24px; text-align: center;" align="left">Coefficient</td>
<td style="height: 24px; text-align: center;" align="left">0.05</td>
<td style="height: 24px; text-align: center;" align="left">0.30</td>
<td style="height: 24px; text-align: center;" align="left">0.70</td>
<td style="height: 24px; text-align: center;" align="left">1.00</td>
</tr>
</tbody>
</table>
<p>
</div>
<h3 class="table-1">Parameters<strong> Table</strong></h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 86px;" width="100%">
<thead>
<tr style="height: 10px;">
<th style="height: 10px; text-align: center; width: 16.6482%;" align="left">Rated voltage（V）</th>
<th style="height: 10px; text-align: center; width: 19.9778%;" align="left">Rated Capacitance（μf）</th>
<th style="height: 10px; text-align: center; width: 14.3175%;" align="left">Case size     D*L(mm)</th>
<th style="height: 10px; text-align: left; width: 17.9798%;" align="left">
<p style="text-align: center;">      ESR(mΩ）</p>
<p style="text-align: center;">at 20℃ 100kHz</p>
</th>
<th style="height: 10px; width: 15.7604%; text-align: center;" align="left">Leakage Current</p>
<p>(μA)</th>
<th style="height: 10px; width: 13.6515%; text-align: center;" align="left">Rated ripple current（mArms/105℃/100kHz）</th>
</tr>
</thead>
<tbody>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left">4</td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left">560</td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left">8*9.8</td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left">15</td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left">500</td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left">4500</td>
</tr>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left"></td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>How to order</h3>
<p>XM1    561    M    0G     D08L10    T</p>
<p>XM1:Series code</p>
<p>561:Capacitance code</p>
<p>M:Capacitance tolerance code</p>
<p>0G:Voltage code</p>
<p>D08L10:Size code</p>
<p>T:Packing number</p>
<h3>Our advantage</h3>
<p>1. Have 18 years experiences in capacitor industry. Be able to quickly understand the needs of customers and give feedback quickly.</p>
<p>2. Covers all capacitors: Electrolytic capacitors, film capacitors, safety capacitors, ceramic capacitors, super capacitors.</p>
<p>3.With 200 production lines, the sample delivery time is 3 days, and the bulk goods delivery time is 2 weeks.</p>
<p>4.The company has its own R&amp;D team and after-sales team, providing complete pre-sale, in-sale and after-sale services.</p>
<h3>Contact us</h3>
<p>We are a supplier of electrolytic capacitor, and we have rich experiences in this field. Our daily production capacity can reach  7 million electrolytic capacitors, the sample period is 3 days, and the production cycle is 10 days. We will give you great support in terms of price, quality and delivery time.</p>
<p>And Support Customer’s Visit To The Factory</p>
<p>e-mail：  <a href="mailto:sales1@xuanxcapacitors.com">sales1@xuanxcapacitors.com</a></p>
<p>Pho（whatsapp）：+ 86-18825879082</p>
<p>Skype：Coco.psh</p>
<p>website：<a href="https://www.xuanxcapacitors.com/">xuanxcapacitors.com</a></p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-560uf-4v-smd-type-supplier/">Capacitor 560uf 4v SMD type supplier</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></content:encoded>
					
		
		
			</item>
		<item>
		<title>Capacitor 680uf 4v SMD type manufacturing vendor</title>
		<link>https://capacitorsfilm.com/product/capacitor-680uf-4v-smd-type-manufacturing-vendor/</link>
		
		<dc:creator><![CDATA[FilmCapacitor]]></dc:creator>
		<pubDate>Sat, 12 Nov 2022 09:44:23 +0000</pubDate>
				<guid isPermaLink="false">https://capacitorsfilm.com/?post_type=product&#038;p=6501</guid>

					<description><![CDATA[<p>Type: SMD Operating Temperature:-55℃~+105℃ Life:5000hours Applications:fast charging sources, 5G base stations, PC motherboards,etc. Manufacturer:XUANSN</p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-680uf-4v-smd-type-manufacturing-vendor/">Capacitor 680uf 4v SMD type manufacturing vendor</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p>The full name of solid capacitor 680uf 4v is: solid aluminum electrolytic capacitors. The biggest difference between it and ordinary capacitors (ie, liquid aluminum electrolytic capacitors) is the use of different dielectric materials. The dielectric material of liquid aluminum capacitors is electrolyte, while the dielectric material of solid capacitors is conductive polymer materials.</p>
<h3>XM1 Series-Capacitor 680uf 4v</h3>
<p>●Super low ESR, High ripple, miniaturized<br />
● SMD type: lead free reflow soldering condition at 260℃ peak correspondence<br />
● RoHS Compliant</p>
</p>
<div class="table-1">
<table style="width: 100%; height: 502px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="width: 27.2899%; height: 24px;" align="left"> Item</th>
<th style="width: 72.1435%; height: 24px;" align="left">Characteristics</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Temperature Range</td>
<td style="width: 72.1435%; height: 24px;" align="left">-55~+105℃</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Specification</td>
<td style="width: 72.1435%; height: 24px;" align="left">680UF4V</td>
</tr>
<tr style="height: 10px;">
<td style="width: 27.2899%; height: 10px;" align="left">Capacitance Tolerance</td>
<td style="width: 72.1435%; height: 10px;" align="left">±20% (M)                                                    (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Dissipation Factor (tanδ)</td>
<td style="width: 72.1435%; height: 24px;" align="left">tanδ (max.)=0.08                                       (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 36px;">
<td style="width: 27.2899%; height: 36px;">Leakage Current</td>
<td style="width: 72.1435%; height: 36px;">I≤0.2 CV or 500μA（Take the maximum）<br />
Where, I: Max.leakage current (μA), C: Nominal capacitance (μF),V:Rated voltage (V),(at 20 °C after 2 minutes)</td>
</tr>
<tr style="height: 48px;">
<td style="width: 27.2899%; height: 48px;" align="left">Low Temperature Characteristics (Max. Impedance Ratio)</td>
<td style="width: 72.1435%; height: 48px;" align="left">Z(-25°C)/Z(+20°C)≦1.25<br />
Z(-40°C)/Z(+20°C)≦1.25                       (at 100kHz)</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Endurance</td>
<td style="width: 72.1435%; height: 120px;" align="left">The following specifications shall be satisfied when the capacitors are restored to 20°C after DC voltage plus the rated ripple current is applied for 2,000 hours at 105°C.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr>
<td style="width: 27.2899%;">Damp heat（steady state）</td>
<td style="width: 72.1435%;">The specifications listed below shall be satisfied when the capacitors are restored to 20℃ after application of rated voltage for 1000 hours at 60℃,90%~95%RH.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 72px;">
<td style="width: 27.2899%; height: 72px;" align="left">Surge Voltage</td>
<td style="width: 72.1435%; height: 72px;" align="left">Surge voltage = rated voltage * 1.15 (V)</p>
<p>The capacitors shall be subjected to 1000 cycles each consisting of charge with the surge voltages specified at 105℃ for 30 seconds through a protective resistor（Rc=1kΩ）and discharge for 5 minutes 30 seconds</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Resistance to soldering heat</td>
<td style="width: 72.1435%; height: 120px;" align="left">Measurement for solder temperature profile shall be made at the capacitor top and the terminal.</p>
<p>Capacitance Change :≤±10% of the initial value<br />
D.F. (tanδ):≤130% of the initial specified value<br />
ESR:≤130% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>Dimensions</h3>
<p><img decoding="async" class="alignnone wp-image-799" src="https://xuansncapacitor.com/wp-content/uploads/2022/09/capacitor-2-600x127.jpg" alt="capacitor" width="661" height="169" /></p>
<h3>Rated Ripple Current Correction Coefficient</h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 48px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="height: 24px; text-align: center;" align="left">Frequency (Hz)</th>
<th style="height: 24px; text-align: center;" align="left">120Hz≦f＜1kHz</th>
<th style="height: 24px; text-align: center;" align="left">1kHz≦f＜10kHz</th>
<th style="height: 24px; text-align: center;" align="left">10kHz≦f＜100kHz</th>
<th style="height: 24px; text-align: center;" align="left">100kHz≦f＜500kHz</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="height: 24px; text-align: center;" align="left">Coefficient</td>
<td style="height: 24px; text-align: center;" align="left">0.05</td>
<td style="height: 24px; text-align: center;" align="left">0.30</td>
<td style="height: 24px; text-align: center;" align="left">0.70</td>
<td style="height: 24px; text-align: center;" align="left">1.00</td>
</tr>
</tbody>
</table>
<p>
</div>
<h3 class="table-1">Parameters<strong> Table</strong></h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 86px;" width="100%">
<thead>
<tr style="height: 10px;">
<th style="height: 10px; text-align: center; width: 16.6482%;" align="left">Rated voltage（V）</th>
<th style="height: 10px; text-align: center; width: 19.9778%;" align="left">Rated Capacitance（μf）</th>
<th style="height: 10px; text-align: center; width: 14.3175%;" align="left">Case size     D*L(mm)</th>
<th style="height: 10px; text-align: left; width: 17.9798%;" align="left">
<p style="text-align: center;">      ESR(mΩ）</p>
<p style="text-align: center;">at 20℃ 100kHz</p>
</th>
<th style="height: 10px; width: 15.7604%; text-align: center;" align="left">Leakage Current</p>
<p>(μA)</th>
<th style="height: 10px; width: 13.6515%; text-align: center;" align="left">Rated ripple current（mArms/105℃/100kHz）</th>
</tr>
</thead>
<tbody>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left">4</td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left">680</td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left">8*12.6</td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left">12</td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left">544</td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left">4700</td>
</tr>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left"></td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>How to order</h3>
<p>XM1    681    M    0G     D08L13    T</p>
<p>XM1:Series code</p>
<p>681:Capacitance code</p>
<p>M:Capacitance tolerance code</p>
<p>0G:Voltage code</p>
<p>D08L13:Size code</p>
<p>T:Packing number</p>
<h3>Our advantage</h3>
<p>1. Have 18 years experiences in capacitor industry. Be able to quickly understand the needs of customers and give feedback quickly.</p>
<p>2. Covers all capacitors: Electrolytic capacitors, film capacitors, safety capacitors, ceramic capacitors, super capacitors.</p>
<p>3.With 200 production lines, the sample delivery time is 3 days, and the bulk goods delivery time is 2 weeks.</p>
<p>4.The company has its own R&amp;D team and after-sales team, providing complete pre-sale, in-sale and after-sale services.</p>
<h3>Contact us</h3>
<p>We are a supplier of electrolytic capacitor, and we have rich experiences in this field. Our daily production capacity can reach  7 million electrolytic capacitors, the sample period is 3 days, and the production cycle is 10 days. We will give you great support in terms of price, quality and delivery time.</p>
<p>And Support Customer’s Visit To The Factory</p>
<p>e-mail：  <a href="mailto:sales1@xuanxcapacitors.com">sales1@xuanxcapacitors.com</a></p>
<p>Pho（whatsapp）：+ 86-18825879082</p>
<p>Skype：Coco.psh</p>
<p>website：<a href="https://www.xuanxcapacitors.com/">xuanxcapacitors.com</a></p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-680uf-4v-smd-type-manufacturing-vendor/">Capacitor 680uf 4v SMD type manufacturing vendor</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></content:encoded>
					
		
		
			</item>
		<item>
		<title>Capacitor 820uf 4v SMD type manufacturing vendor</title>
		<link>https://capacitorsfilm.com/product/capacitor-820uf-4v-smd-type-manufacturing-vendor/</link>
		
		<dc:creator><![CDATA[FilmCapacitor]]></dc:creator>
		<pubDate>Sat, 12 Nov 2022 09:41:21 +0000</pubDate>
				<guid isPermaLink="false">https://capacitorsfilm.com/?post_type=product&#038;p=6502</guid>

					<description><![CDATA[<p>Type: SMD Operating Temperature:-55℃~+105℃ Life:5000hours Applications:fast charging sources, 5G base stations, PC motherboards,etc. Manufacturer:XUANSN</p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-820uf-4v-smd-type-manufacturing-vendor/">Capacitor 820uf 4v SMD type manufacturing vendor</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p>The full name of solid capacitor 820uf 4v is: solid aluminum electrolytic capacitors. The biggest difference between it and ordinary capacitors (ie, liquid aluminum electrolytic capacitors) is the use of different dielectric materials. The dielectric material of liquid aluminum capacitors is electrolyte, while the dielectric material of solid capacitors is conductive polymer materials.</p>
<h3>XM2 Series-Capacitor 820uf 4v</h3>
<p>●Super low ESR, High ripple, miniaturized<br />
● SMD type: lead free reflow soldering condition at 260℃ peak correspondence<br />
● RoHS Compliant</p>
</p>
<div class="table-1">
<table style="width: 100%; height: 502px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="width: 27.2899%; height: 24px;" align="left"> Item</th>
<th style="width: 72.1435%; height: 24px;" align="left">Characteristics</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Temperature Range</td>
<td style="width: 72.1435%; height: 24px;" align="left">-55~+105℃</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Specification</td>
<td style="width: 72.1435%; height: 24px;" align="left">820UF4V</td>
</tr>
<tr style="height: 10px;">
<td style="width: 27.2899%; height: 10px;" align="left">Capacitance Tolerance</td>
<td style="width: 72.1435%; height: 10px;" align="left">±20% (M)                                                    (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Dissipation Factor (tanδ)</td>
<td style="width: 72.1435%; height: 24px;" align="left">tanδ (max.)=0.08                                       (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 36px;">
<td style="width: 27.2899%; height: 36px;">Leakage Current</td>
<td style="width: 72.1435%; height: 36px;">I≤0.2 CV or 500μA（Take the maximum）<br />
Where, I: Max.leakage current (μA), C: Nominal capacitance (μF),V:Rated voltage (V),(at 20 °C after 2 minutes)</td>
</tr>
<tr style="height: 48px;">
<td style="width: 27.2899%; height: 48px;" align="left">Low Temperature Characteristics (Max. Impedance Ratio)</td>
<td style="width: 72.1435%; height: 48px;" align="left">Z(-25°C)/Z(+20°C)≦1.25<br />
Z(-40°C)/Z(+20°C)≦1.25                       (at 100kHz)</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Endurance</td>
<td style="width: 72.1435%; height: 120px;" align="left">The following specifications shall be satisfied when the capacitors are restored to 20°C after DC voltage plus the rated ripple current is applied for 2,000 hours at 105°C.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr>
<td style="width: 27.2899%;">Damp heat（steady state）</td>
<td style="width: 72.1435%;">The specifications listed below shall be satisfied when the capacitors are restored to 20℃ after application of rated voltage for 1000 hours at 60℃,90%~95%RH.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 72px;">
<td style="width: 27.2899%; height: 72px;" align="left">Surge Voltage</td>
<td style="width: 72.1435%; height: 72px;" align="left">Surge voltage = rated voltage * 1.15 (V)</p>
<p>The capacitors shall be subjected to 1000 cycles each consisting of charge with the surge voltages specified at 105℃ for 30 seconds through a protective resistor（Rc=1kΩ）and discharge for 5 minutes 30 seconds</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Resistance to soldering heat</td>
<td style="width: 72.1435%; height: 120px;" align="left">Measurement for solder temperature profile shall be made at the capacitor top and the terminal.</p>
<p>Capacitance Change :≤±10% of the initial value<br />
D.F. (tanδ):≤130% of the initial specified value<br />
ESR:≤130% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>Dimensions</h3>
<p><img decoding="async" class="alignnone wp-image-799" src="https://xuansncapacitor.com/wp-content/uploads/2022/09/capacitor-2-600x127.jpg" alt="capacitor" width="661" height="169" /></p>
<h3>Rated Ripple Current Correction Coefficient</h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 48px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="height: 24px; text-align: center;" align="left">Frequency (Hz)</th>
<th style="height: 24px; text-align: center;" align="left">120Hz≦f＜1kHz</th>
<th style="height: 24px; text-align: center;" align="left">1kHz≦f＜10kHz</th>
<th style="height: 24px; text-align: center;" align="left">10kHz≦f＜100kHz</th>
<th style="height: 24px; text-align: center;" align="left">100kHz≦f＜500kHz</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="height: 24px; text-align: center;" align="left">Coefficient</td>
<td style="height: 24px; text-align: center;" align="left">0.05</td>
<td style="height: 24px; text-align: center;" align="left">0.30</td>
<td style="height: 24px; text-align: center;" align="left">0.70</td>
<td style="height: 24px; text-align: center;" align="left">1.00</td>
</tr>
</tbody>
</table>
<p>
</div>
<h3 class="table-1">Parameters<strong> Table</strong></h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 86px;" width="100%">
<thead>
<tr style="height: 10px;">
<th style="height: 10px; text-align: center; width: 16.6482%;" align="left">Rated voltage（V）</th>
<th style="height: 10px; text-align: center; width: 19.9778%;" align="left">Rated Capacitance（μf）</th>
<th style="height: 10px; text-align: center; width: 14.3175%;" align="left">Case size     D*L(mm)</th>
<th style="height: 10px; text-align: left; width: 17.9798%;" align="left">
<p style="text-align: center;">      ESR(mΩ）</p>
<p style="text-align: center;">at 20℃ 100kHz</p>
</th>
<th style="height: 10px; width: 15.7604%; text-align: center;" align="left">Leakage Current</p>
<p>(μA)</th>
<th style="height: 10px; width: 13.6515%; text-align: center;" align="left">Rated ripple current（mArms/105℃/100kHz）</th>
</tr>
</thead>
<tbody>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left">4</td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left">820</td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left">10*12.6</td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left">12</td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left">656</td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left">5500</td>
</tr>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left"></td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>How to order</h3>
<p>XM2    821    M    0G     D10L13    T</p>
<p>XM2:Series code</p>
<p>821:Capacitance code</p>
<p>M:Capacitance tolerance code</p>
<p>0G:Voltage code</p>
<p>D10L13:Size code</p>
<p>T:Packing number</p>
<h3>Our advantage</h3>
<p>1. Have 18 years experiences in capacitor industry. Be able to quickly understand the needs of customers and give feedback quickly.</p>
<p>2. Covers all capacitors: Electrolytic capacitors, film capacitors, safety capacitors, ceramic capacitors, super capacitors.</p>
<p>3.With 200 production lines, the sample delivery time is 3 days, and the bulk goods delivery time is 2 weeks.</p>
<p>4.The company has its own R&amp;D team and after-sales team, providing complete pre-sale, in-sale and after-sale services.</p>
<h3>Contact us</h3>
<p>We are a supplier of electrolytic capacitor, and we have rich experiences in this field. Our daily production capacity can reach  7 million electrolytic capacitors, the sample period is 3 days, and the production cycle is 10 days. We will give you great support in terms of price, quality and delivery time.</p>
<p>And Support Customer’s Visit To The Factory</p>
<p>e-mail：  <a href="mailto:sales1@xuanxcapacitors.com">sales1@xuanxcapacitors.com</a></p>
<p>Pho（whatsapp）：+ 86-18825879082</p>
<p>Skype：Coco.psh</p>
<p>website：<a href="https://www.xuanxcapacitors.com/">xuanxcapacitors.com</a></p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-820uf-4v-smd-type-manufacturing-vendor/">Capacitor 820uf 4v SMD type manufacturing vendor</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></content:encoded>
					
		
		
			</item>
		<item>
		<title>Capacitor 1000uf 4v SMD type supplier</title>
		<link>https://capacitorsfilm.com/product/capacitor-1000uf-4v-smd-type-supplier/</link>
		
		<dc:creator><![CDATA[FilmCapacitor]]></dc:creator>
		<pubDate>Sat, 12 Nov 2022 09:28:19 +0000</pubDate>
				<guid isPermaLink="false">https://capacitorsfilm.com/?post_type=product&#038;p=6486</guid>

					<description><![CDATA[<p>Type: SMD Operating Temperature:-55℃~+105℃ Life:5000hours Applications:fast charging sources, 5G base stations, PC motherboards,etc. Manufacturer:XUANSN</p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-1000uf-4v-smd-type-supplier/">Capacitor 1000uf 4v SMD type supplier</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p>The full name of solid capacitor 1000uf 4v is: solid aluminum electrolytic capacitors. The biggest difference between it and ordinary capacitors (ie, liquid aluminum electrolytic capacitors) is the use of different dielectric materials. The dielectric material of liquid aluminum capacitors is electrolyte, while the dielectric material of solid capacitors is conductive polymer materials.</p>
<h3>XM1 Series-Capacitor 1000uf 4v</h3>
<p>●Super low ESR, High ripple, miniaturized<br />
● SMD type: lead free reflow soldering condition at 260℃ peak correspondence<br />
● RoHS Compliant</p>
</p>
<div class="table-1">
<table style="width: 100%; height: 502px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="width: 27.2899%; height: 24px;" align="left"> Item</th>
<th style="width: 72.1435%; height: 24px;" align="left">Characteristics</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Temperature Range</td>
<td style="width: 72.1435%; height: 24px;" align="left">-55~+105℃</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Specification</td>
<td style="width: 72.1435%; height: 24px;" align="left">1000UF4V</td>
</tr>
<tr style="height: 10px;">
<td style="width: 27.2899%; height: 10px;" align="left">Capacitance Tolerance</td>
<td style="width: 72.1435%; height: 10px;" align="left">±20% (M)                                                    (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Dissipation Factor (tanδ)</td>
<td style="width: 72.1435%; height: 24px;" align="left">tanδ (max.)=0.08                                       (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 36px;">
<td style="width: 27.2899%; height: 36px;">Leakage Current</td>
<td style="width: 72.1435%; height: 36px;">I≤0.2 CV or 500μA（Take the maximum）<br />
Where, I: Max.leakage current (μA), C: Nominal capacitance (μF),V:Rated voltage (V),(at 20 °C after 2 minutes)</td>
</tr>
<tr style="height: 48px;">
<td style="width: 27.2899%; height: 48px;" align="left">Low Temperature Characteristics (Max. Impedance Ratio)</td>
<td style="width: 72.1435%; height: 48px;" align="left">Z(-25°C)/Z(+20°C)≦1.25<br />
Z(-40°C)/Z(+20°C)≦1.25                       (at 100kHz)</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Endurance</td>
<td style="width: 72.1435%; height: 120px;" align="left">The following specifications shall be satisfied when the capacitors are restored to 20°C after DC voltage plus the rated ripple current is applied for 2,000 hours at 105°C.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr>
<td style="width: 27.2899%;">Damp heat（steady state）</td>
<td style="width: 72.1435%;">The specifications listed below shall be satisfied when the capacitors are restored to 20℃ after application of rated voltage for 1000 hours at 60℃,90%~95%RH.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 72px;">
<td style="width: 27.2899%; height: 72px;" align="left">Surge Voltage</td>
<td style="width: 72.1435%; height: 72px;" align="left">Surge voltage = rated voltage * 1.15 (V)</p>
<p>The capacitors shall be subjected to 1000 cycles each consisting of charge with the surge voltages specified at 105℃ for 30 seconds through a protective resistor（Rc=1kΩ）and discharge for 5 minutes 30 seconds</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Resistance to soldering heat</td>
<td style="width: 72.1435%; height: 120px;" align="left">Measurement for solder temperature profile shall be made at the capacitor top and the terminal.</p>
<p>Capacitance Change :≤±10% of the initial value<br />
D.F. (tanδ):≤130% of the initial specified value<br />
ESR:≤130% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>Dimensions</h3>
<p><img decoding="async" class="alignnone wp-image-799" src="https://xuansncapacitor.com/wp-content/uploads/2022/09/capacitor-2-600x127.jpg" alt="capacitor" width="661" height="169" /></p>
<h3>Rated Ripple Current Correction Coefficient</h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 48px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="height: 24px; text-align: center;" align="left">Frequency (Hz)</th>
<th style="height: 24px; text-align: center;" align="left">120Hz≦f＜1kHz</th>
<th style="height: 24px; text-align: center;" align="left">1kHz≦f＜10kHz</th>
<th style="height: 24px; text-align: center;" align="left">10kHz≦f＜100kHz</th>
<th style="height: 24px; text-align: center;" align="left">100kHz≦f＜500kHz</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="height: 24px; text-align: center;" align="left">Coefficient</td>
<td style="height: 24px; text-align: center;" align="left">0.05</td>
<td style="height: 24px; text-align: center;" align="left">0.30</td>
<td style="height: 24px; text-align: center;" align="left">0.70</td>
<td style="height: 24px; text-align: center;" align="left">1.00</td>
</tr>
</tbody>
</table>
<p>
</div>
<h3 class="table-1">Parameters<strong> Table</strong></h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 86px;" width="100%">
<thead>
<tr style="height: 10px;">
<th style="height: 10px; text-align: center; width: 16.6482%;" align="left">Rated voltage（V）</th>
<th style="height: 10px; text-align: center; width: 19.9778%;" align="left">Rated Capacitance（μf）</th>
<th style="height: 10px; text-align: center; width: 14.3175%;" align="left">Case size     D*L(mm)</th>
<th style="height: 10px; text-align: left; width: 17.9798%;" align="left">
<p style="text-align: center;">      ESR(mΩ）</p>
<p style="text-align: center;">at 20℃ 100kHz</p>
</th>
<th style="height: 10px; width: 15.7604%; text-align: center;" align="left">Leakage Current</p>
<p>(μA)</th>
<th style="height: 10px; width: 13.6515%; text-align: center;" align="left">Rated ripple current（mArms/105℃/100kHz）</th>
</tr>
</thead>
<tbody>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left">4</td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left">1000</td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left">10*12.6</td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left">10</td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left">800</td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left">5500</td>
</tr>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left"></td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>How to order</h3>
<p>XM1   102   M    0G     D08L13    T</p>
<p>XM1:Series code</p>
<p>102:Capacitance code</p>
<p>M:Capacitance tolerance code</p>
<p>0G:Voltage code</p>
<p>D10L13:Size code</p>
<p>T:Packing number</p>
<h3>Our advantage</h3>
<p>1. Have 18 years experiences in capacitor industry. Be able to quickly understand the needs of customers and give feedback quickly.</p>
<p>2. Covers all capacitors: Electrolytic capacitors, film capacitors, safety capacitors, ceramic capacitors, super capacitors.</p>
<p>3.With 200 production lines, the sample delivery time is 3 days, and the bulk goods delivery time is 2 weeks.</p>
<p>4.The company has its own R&amp;D team and after-sales team, providing complete pre-sale, in-sale and after-sale services.</p>
<h3>Contact us</h3>
<p>We are a supplier of electrolytic capacitor, and we have rich experiences in this field. Our daily production capacity can reach  7 million electrolytic capacitors, the sample period is 3 days, and the production cycle is 10 days. We will give you great support in terms of price, quality and delivery time.</p>
<p>And Support Customer’s Visit To The Factory</p>
<p>e-mail：  <a href="mailto:sales1@xuanxcapacitors.com">sales1@xuanxcapacitors.com</a></p>
<p>Pho（whatsapp）：+ 86-18825879082</p>
<p>Skype：Coco.psh</p>
<p>website：<a href="https://www.xuanxcapacitors.com/">xuanxcapacitors.com</a></p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-1000uf-4v-smd-type-supplier/">Capacitor 1000uf 4v SMD type supplier</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></content:encoded>
					
		
		
			</item>
		<item>
		<title>Capacitor 1200uf 4v SMD type manufacturing vendor</title>
		<link>https://capacitorsfilm.com/product/capacitor-1200uf-4v-smd-type-manufacturing-vendor/</link>
		
		<dc:creator><![CDATA[FilmCapacitor]]></dc:creator>
		<pubDate>Sat, 12 Nov 2022 09:21:52 +0000</pubDate>
				<guid isPermaLink="false">https://capacitorsfilm.com/?post_type=product&#038;p=6487</guid>

					<description><![CDATA[<p>Type: SMD Operating Temperature:-55℃~+105℃ Life:5000hours Applications:fast charging sources, 5G base stations, PC motherboards,etc. Manufacturer:XUANSN</p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-1200uf-4v-smd-type-manufacturing-vendor/">Capacitor 1200uf 4v SMD type manufacturing vendor</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p>The full name of solid capacitor 1200uf 4v is: solid aluminum electrolytic capacitors. The biggest difference between it and ordinary capacitors (ie, liquid aluminum electrolytic capacitors) is the use of different dielectric materials. The dielectric material of liquid aluminum capacitors is electrolyte, while the dielectric material of solid capacitors is conductive polymer materials.</p>
<h3>XM1 Series-Capacitor 1200uf 4v</h3>
<p>●Super low ESR, High ripple, miniaturized<br />
● SMD type: lead free reflow soldering condition at 260℃ peak correspondence<br />
● RoHS Compliant</p>
</p>
<div class="table-1">
<table style="width: 100%; height: 502px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="width: 27.2899%; height: 24px;" align="left"> Item</th>
<th style="width: 72.1435%; height: 24px;" align="left">Characteristics</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Temperature Range</td>
<td style="width: 72.1435%; height: 24px;" align="left">-55~+105℃</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Specification</td>
<td style="width: 72.1435%; height: 24px;" align="left">1200UF4V</td>
</tr>
<tr style="height: 10px;">
<td style="width: 27.2899%; height: 10px;" align="left">Capacitance Tolerance</td>
<td style="width: 72.1435%; height: 10px;" align="left">±20% (M)                                                    (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Dissipation Factor (tanδ)</td>
<td style="width: 72.1435%; height: 24px;" align="left">tanδ (max.)=0.08                                       (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 36px;">
<td style="width: 27.2899%; height: 36px;">Leakage Current</td>
<td style="width: 72.1435%; height: 36px;">I≤0.2 CV or 500μA（Take the maximum）<br />
Where, I: Max.leakage current (μA), C: Nominal capacitance (μF),V:Rated voltage (V),(at 20 °C after 2 minutes)</td>
</tr>
<tr style="height: 48px;">
<td style="width: 27.2899%; height: 48px;" align="left">Low Temperature Characteristics (Max. Impedance Ratio)</td>
<td style="width: 72.1435%; height: 48px;" align="left">Z(-25°C)/Z(+20°C)≦1.25<br />
Z(-40°C)/Z(+20°C)≦1.25                       (at 100kHz)</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Endurance</td>
<td style="width: 72.1435%; height: 120px;" align="left">The following specifications shall be satisfied when the capacitors are restored to 20°C after DC voltage plus the rated ripple current is applied for 2,000 hours at 105°C.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr>
<td style="width: 27.2899%;">Damp heat（steady state）</td>
<td style="width: 72.1435%;">The specifications listed below shall be satisfied when the capacitors are restored to 20℃ after application of rated voltage for 1000 hours at 60℃,90%~95%RH.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 72px;">
<td style="width: 27.2899%; height: 72px;" align="left">Surge Voltage</td>
<td style="width: 72.1435%; height: 72px;" align="left">Surge voltage = rated voltage * 1.15 (V)</p>
<p>The capacitors shall be subjected to 1000 cycles each consisting of charge with the surge voltages specified at 105℃ for 30 seconds through a protective resistor（Rc=1kΩ）and discharge for 5 minutes 30 seconds</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Resistance to soldering heat</td>
<td style="width: 72.1435%; height: 120px;" align="left">Measurement for solder temperature profile shall be made at the capacitor top and the terminal.</p>
<p>Capacitance Change :≤±10% of the initial value<br />
D.F. (tanδ):≤130% of the initial specified value<br />
ESR:≤130% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>Dimensions</h3>
<p><img decoding="async" class="alignnone wp-image-799" src="https://xuansncapacitor.com/wp-content/uploads/2022/09/capacitor-2-600x127.jpg" alt="capacitor" width="661" height="169" /></p>
<h3>Rated Ripple Current Correction Coefficient</h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 48px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="height: 24px; text-align: center;" align="left">Frequency (Hz)</th>
<th style="height: 24px; text-align: center;" align="left">120Hz≦f＜1kHz</th>
<th style="height: 24px; text-align: center;" align="left">1kHz≦f＜10kHz</th>
<th style="height: 24px; text-align: center;" align="left">10kHz≦f＜100kHz</th>
<th style="height: 24px; text-align: center;" align="left">100kHz≦f＜500kHz</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="height: 24px; text-align: center;" align="left">Coefficient</td>
<td style="height: 24px; text-align: center;" align="left">0.05</td>
<td style="height: 24px; text-align: center;" align="left">0.30</td>
<td style="height: 24px; text-align: center;" align="left">0.70</td>
<td style="height: 24px; text-align: center;" align="left">1.00</td>
</tr>
</tbody>
</table>
<p>
</div>
<h3 class="table-1">Parameters<strong> Table</strong></h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 86px;" width="100%">
<thead>
<tr style="height: 10px;">
<th style="height: 10px; text-align: center; width: 16.6482%;" align="left">Rated voltage（V）</th>
<th style="height: 10px; text-align: center; width: 19.9778%;" align="left">Rated Capacitance（μf）</th>
<th style="height: 10px; text-align: center; width: 14.3175%;" align="left">Case size     D*L(mm)</th>
<th style="height: 10px; text-align: left; width: 17.9798%;" align="left">
<p style="text-align: center;">      ESR(mΩ）</p>
<p style="text-align: center;">at 20℃ 100kHz</p>
</th>
<th style="height: 10px; width: 15.7604%; text-align: center;" align="left">Leakage Current</p>
<p>(μA)</th>
<th style="height: 10px; width: 13.6515%; text-align: center;" align="left">Rated ripple current（mArms/105℃/100kHz）</th>
</tr>
</thead>
<tbody>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left">4</td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left">1200</td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left">10*12.6</td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left">12</td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left">960</td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left">5500</td>
</tr>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left"></td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>How to order</h3>
<p>XM1    122    M    0G     D08L13    T</p>
<p>XM1:Series code</p>
<p>122:Capacitance code</p>
<p>M:Capacitance tolerance code</p>
<p>0G:Voltage code</p>
<p>D10L13:Size code</p>
<p>T:Packing number</p>
<h3>Our advantage</h3>
<p>1. Have 18 years experiences in capacitor industry. Be able to quickly understand the needs of customers and give feedback quickly.</p>
<p>2. Covers all capacitors: Electrolytic capacitors, film capacitors, safety capacitors, ceramic capacitors, super capacitors.</p>
<p>3.With 200 production lines, the sample delivery time is 3 days, and the bulk goods delivery time is 2 weeks.</p>
<p>4.The company has its own R&amp;D team and after-sales team, providing complete pre-sale, in-sale and after-sale services.</p>
<h3>Contact us</h3>
<p>We are a supplier of electrolytic capacitor, and we have rich experiences in this field. Our daily production capacity can reach  7 million electrolytic capacitors, the sample period is 3 days, and the production cycle is 10 days. We will give you great support in terms of price, quality and delivery time.</p>
<p>And Support Customer’s Visit To The Factory</p>
<p>e-mail：  <a href="mailto:sales1@xuanxcapacitors.com">sales1@xuanxcapacitors.com</a></p>
<p>Pho（whatsapp）：+ 86-18825879082</p>
<p>Skype：Coco.psh</p>
<p>website：<a href="https://www.xuanxcapacitors.com/">xuanxcapacitors.com</a></p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-1200uf-4v-smd-type-manufacturing-vendor/">Capacitor 1200uf 4v SMD type manufacturing vendor</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></content:encoded>
					
		
		
			</item>
		<item>
		<title>Capacitor 220uf 6.3v SMD type high ripple current supplier</title>
		<link>https://capacitorsfilm.com/product/capacitor-220uf-6-3v-smd-type-high-ripple-current-supplier/</link>
		
		<dc:creator><![CDATA[FilmCapacitor]]></dc:creator>
		<pubDate>Sat, 12 Nov 2022 09:18:59 +0000</pubDate>
				<guid isPermaLink="false">https://capacitorsfilm.com/?post_type=product&#038;p=6488</guid>

					<description><![CDATA[<p>Type: SMD Operating Temperature:-55℃~+105℃ Life:5000hours Applications:fast charging sources, 5G base stations, PC motherboards,etc. Manufacturer:XUANSN</p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-220uf-6-3v-smd-type-high-ripple-current-supplier/">Capacitor 220uf 6.3v SMD type high ripple current supplier</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p>The full name of solid capacitor 220uf 6.3v is: solid aluminum electrolytic capacitors. The biggest difference between it and ordinary capacitors (ie, liquid aluminum electrolytic capacitors) is the use of different dielectric materials. The dielectric material of liquid aluminum capacitors is electrolyte, while the dielectric material of solid capacitors is conductive polymer materials.</p>
<h3>XM1 Series-Capacitor 220uf 6.3v</h3>
<p>●Super low ESR, High ripple, miniaturized<br />
● SMD type: lead free reflow soldering condition at 260℃ peak correspondence<br />
● RoHS Compliant</p>
</p>
<div class="table-1">
<table style="width: 100%; height: 502px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="width: 27.2899%; height: 24px;" align="left"> Item</th>
<th style="width: 72.1435%; height: 24px;" align="left">Characteristics</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Temperature Range</td>
<td style="width: 72.1435%; height: 24px;" align="left">-55~+105℃</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Specification</td>
<td style="width: 72.1435%; height: 24px;" align="left">220UF6.3V</td>
</tr>
<tr style="height: 10px;">
<td style="width: 27.2899%; height: 10px;" align="left">Capacitance Tolerance</td>
<td style="width: 72.1435%; height: 10px;" align="left">±20% (M)                                                    (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Dissipation Factor (tanδ)</td>
<td style="width: 72.1435%; height: 24px;" align="left">tanδ (max.)=0.08                                       (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 36px;">
<td style="width: 27.2899%; height: 36px;">Leakage Current</td>
<td style="width: 72.1435%; height: 36px;">I≤0.2 CV or 500μA（Take the maximum）<br />
Where, I: Max.leakage current (μA), C: Nominal capacitance (μF),V:Rated voltage (V),(at 20 °C after 2 minutes)</td>
</tr>
<tr style="height: 48px;">
<td style="width: 27.2899%; height: 48px;" align="left">Low Temperature Characteristics (Max. Impedance Ratio)</td>
<td style="width: 72.1435%; height: 48px;" align="left">Z(-25°C)/Z(+20°C)≦1.25<br />
Z(-40°C)/Z(+20°C)≦1.25                       (at 100kHz)</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Endurance</td>
<td style="width: 72.1435%; height: 120px;" align="left">The following specifications shall be satisfied when the capacitors are restored to 20°C after DC voltage plus the rated ripple current is applied for 2,000 hours at 105°C.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr>
<td style="width: 27.2899%;">Damp heat（steady state）</td>
<td style="width: 72.1435%;">The specifications listed below shall be satisfied when the capacitors are restored to 20℃ after application of rated voltage for 1000 hours at 60℃,90%~95%RH.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 72px;">
<td style="width: 27.2899%; height: 72px;" align="left">Surge Voltage</td>
<td style="width: 72.1435%; height: 72px;" align="left">Surge voltage = rated voltage * 1.15 (V)</p>
<p>The capacitors shall be subjected to 1000 cycles each consisting of charge with the surge voltages specified at 105℃ for 30 seconds through a protective resistor（Rc=1kΩ）and discharge for 5 minutes 30 seconds</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Resistance to soldering heat</td>
<td style="width: 72.1435%; height: 120px;" align="left">Measurement for solder temperature profile shall be made at the capacitor top and the terminal.</p>
<p>Capacitance Change :≤±10% of the initial value<br />
D.F. (tanδ):≤130% of the initial specified value<br />
ESR:≤130% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>Dimensions</h3>
<p><img decoding="async" class="alignnone wp-image-799" src="https://xuansncapacitor.com/wp-content/uploads/2022/09/capacitor-2-600x127.jpg" alt="capacitor" width="661" height="169" /></p>
<h3>Rated Ripple Current Correction Coefficient</h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 48px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="height: 24px; text-align: center;" align="left">Frequency (Hz)</th>
<th style="height: 24px; text-align: center;" align="left">120Hz≦f＜1kHz</th>
<th style="height: 24px; text-align: center;" align="left">1kHz≦f＜10kHz</th>
<th style="height: 24px; text-align: center;" align="left">10kHz≦f＜100kHz</th>
<th style="height: 24px; text-align: center;" align="left">100kHz≦f＜500kHz</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="height: 24px; text-align: center;" align="left">Coefficient</td>
<td style="height: 24px; text-align: center;" align="left">0.05</td>
<td style="height: 24px; text-align: center;" align="left">0.30</td>
<td style="height: 24px; text-align: center;" align="left">0.70</td>
<td style="height: 24px; text-align: center;" align="left">1.00</td>
</tr>
</tbody>
</table>
<p>
</div>
<h3 class="table-1">Parameters<strong> Table</strong></h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 86px;" width="100%">
<thead>
<tr style="height: 10px;">
<th style="height: 10px; text-align: center; width: 16.6482%;" align="left">Rated voltage（V）</th>
<th style="height: 10px; text-align: center; width: 19.9778%;" align="left">Rated Capacitance（μf）</th>
<th style="height: 10px; text-align: center; width: 14.3175%;" align="left">Case size     D*L(mm)</th>
<th style="height: 10px; text-align: left; width: 17.9798%;" align="left">
<p style="text-align: center;">      ESR(mΩ）</p>
<p style="text-align: center;">at 20℃ 100kHz</p>
</th>
<th style="height: 10px; width: 15.7604%; text-align: center;" align="left">Leakage Current</p>
<p>(μA)</th>
<th style="height: 10px; width: 13.6515%; text-align: center;" align="left">Rated ripple current（mArms/105℃/100kHz）</th>
</tr>
</thead>
<tbody>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left">6.3</td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left">220</td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left">6.3*9</td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left">18</td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left">500</td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left">3900</td>
</tr>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left"></td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>How to order</h3>
<p>XM1    221    M    0J     D06L09    T</p>
<p>XM1:Series code</p>
<p>221:Capacitance code</p>
<p>M:Capacitance tolerance code</p>
<p>0J:Voltage code</p>
<p>D06L09:Size code</p>
<p>T:Packing number</p>
<h3>Our advantage</h3>
<p>1. Have 18 years experiences in capacitor industry. Be able to quickly understand the needs of customers and give feedback quickly.</p>
<p>2. Covers all capacitors: Electrolytic capacitors, film capacitors, safety capacitors, ceramic capacitors, super capacitors.</p>
<p>3.With 200 production lines, the sample delivery time is 3 days, and the bulk goods delivery time is 2 weeks.</p>
<p>4.The company has its own R&amp;D team and after-sales team, providing complete pre-sale, in-sale and after-sale services.</p>
<h3>Contact us</h3>
<p>We are a supplier of electrolytic capacitor, and we have rich experiences in this field. Our daily production capacity can reach  7 million electrolytic capacitors, the sample period is 3 days, and the production cycle is 10 days. We will give you great support in terms of price, quality and delivery time.</p>
<p>And Support Customer’s Visit To The Factory</p>
<p>e-mail：  <a href="mailto:sales1@xuanxcapacitors.com">sales1@xuanxcapacitors.com</a></p>
<p>Pho（whatsapp）：+ 86-18825879082</p>
<p>Skype：Coco.psh</p>
<p>website：<a href="https://www.xuanxcapacitors.com/">xuanxcapacitors.com</a></p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-220uf-6-3v-smd-type-high-ripple-current-supplier/">Capacitor 220uf 6.3v SMD type high ripple current supplier</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></content:encoded>
					
		
		
			</item>
		<item>
		<title>Capacitor 270uf 6.3v SMD type supplier</title>
		<link>https://capacitorsfilm.com/product/capacitor-270uf-6-3v-smd-type-supplier/</link>
		
		<dc:creator><![CDATA[FilmCapacitor]]></dc:creator>
		<pubDate>Sat, 12 Nov 2022 09:14:13 +0000</pubDate>
				<guid isPermaLink="false">https://capacitorsfilm.com/?post_type=product&#038;p=6489</guid>

					<description><![CDATA[<p>Type: SMD Operating Temperature:-55℃~+105℃ Life:5000hours Applications:fast charging sources, 5G base stations, PC motherboards,etc. Manufacturer:XUANSN</p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-270uf-6-3v-smd-type-supplier/">Capacitor 270uf 6.3v SMD type supplier</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p>The full name of solid capacitor 270uf 6.3v is: solid aluminum electrolytic capacitors. The biggest difference between it and ordinary capacitors (ie, liquid aluminum electrolytic capacitors) is the use of different dielectric materials. The dielectric material of liquid aluminum capacitors is electrolyte, while the dielectric material of solid capacitors is conductive polymer materials.</p>
<h3>XM1 Series-Capacitor 270uf 6.3v</h3>
<p>●Super low ESR, High ripple, miniaturized<br />
● SMD type: lead free reflow soldering condition at 260℃ peak correspondence<br />
● RoHS Compliant</p>
</p>
<div class="table-1">
<table style="width: 100%; height: 502px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="width: 27.2899%; height: 24px;" align="left"> Item</th>
<th style="width: 72.1435%; height: 24px;" align="left">Characteristics</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Temperature Range</td>
<td style="width: 72.1435%; height: 24px;" align="left">-55~+105℃</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Specification</td>
<td style="width: 72.1435%; height: 24px;" align="left">270UF6.3V</td>
</tr>
<tr style="height: 10px;">
<td style="width: 27.2899%; height: 10px;" align="left">Capacitance Tolerance</td>
<td style="width: 72.1435%; height: 10px;" align="left">±20% (M)                                                    (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Dissipation Factor (tanδ)</td>
<td style="width: 72.1435%; height: 24px;" align="left">tanδ (max.)=0.08                                       (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 36px;">
<td style="width: 27.2899%; height: 36px;">Leakage Current</td>
<td style="width: 72.1435%; height: 36px;">I≤0.2 CV or 500μA（Take the maximum）<br />
Where, I: Max.leakage current (μA), C: Nominal capacitance (μF),V:Rated voltage (V),(at 20 °C after 2 minutes)</td>
</tr>
<tr style="height: 48px;">
<td style="width: 27.2899%; height: 48px;" align="left">Low Temperature Characteristics (Max. Impedance Ratio)</td>
<td style="width: 72.1435%; height: 48px;" align="left">Z(-25°C)/Z(+20°C)≦1.25<br />
Z(-40°C)/Z(+20°C)≦1.25                       (at 100kHz)</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Endurance</td>
<td style="width: 72.1435%; height: 120px;" align="left">The following specifications shall be satisfied when the capacitors are restored to 20°C after DC voltage plus the rated ripple current is applied for 2,000 hours at 105°C.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr>
<td style="width: 27.2899%;">Damp heat（steady state）</td>
<td style="width: 72.1435%;">The specifications listed below shall be satisfied when the capacitors are restored to 20℃ after application of rated voltage for 1000 hours at 60℃,90%~95%RH.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 72px;">
<td style="width: 27.2899%; height: 72px;" align="left">Surge Voltage</td>
<td style="width: 72.1435%; height: 72px;" align="left">Surge voltage = rated voltage * 1.15 (V)</p>
<p>The capacitors shall be subjected to 1000 cycles each consisting of charge with the surge voltages specified at 105℃ for 30 seconds through a protective resistor（Rc=1kΩ）and discharge for 5 minutes 30 seconds</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Resistance to soldering heat</td>
<td style="width: 72.1435%; height: 120px;" align="left">Measurement for solder temperature profile shall be made at the capacitor top and the terminal.</p>
<p>Capacitance Change :≤±10% of the initial value<br />
D.F. (tanδ):≤130% of the initial specified value<br />
ESR:≤130% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>Dimensions</h3>
<p><img decoding="async" class="alignnone wp-image-799" src="https://xuansncapacitor.com/wp-content/uploads/2022/09/capacitor-2-600x127.jpg" alt="capacitor" width="661" height="169" /></p>
<h3>Rated Ripple Current Correction Coefficient</h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 48px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="height: 24px; text-align: center;" align="left">Frequency (Hz)</th>
<th style="height: 24px; text-align: center;" align="left">120Hz≦f＜1kHz</th>
<th style="height: 24px; text-align: center;" align="left">1kHz≦f＜10kHz</th>
<th style="height: 24px; text-align: center;" align="left">10kHz≦f＜100kHz</th>
<th style="height: 24px; text-align: center;" align="left">100kHz≦f＜500kHz</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="height: 24px; text-align: center;" align="left">Coefficient</td>
<td style="height: 24px; text-align: center;" align="left">0.05</td>
<td style="height: 24px; text-align: center;" align="left">0.30</td>
<td style="height: 24px; text-align: center;" align="left">0.70</td>
<td style="height: 24px; text-align: center;" align="left">1.00</td>
</tr>
</tbody>
</table>
<p>
</div>
<h3 class="table-1">Parameters<strong> Table</strong></h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 86px;" width="100%">
<thead>
<tr style="height: 10px;">
<th style="height: 10px; text-align: center; width: 16.6482%;" align="left">Rated voltage（V）</th>
<th style="height: 10px; text-align: center; width: 19.9778%;" align="left">Rated Capacitance（μf）</th>
<th style="height: 10px; text-align: center; width: 14.3175%;" align="left">Case size     D*L(mm)</th>
<th style="height: 10px; text-align: left; width: 17.9798%;" align="left">
<p style="text-align: center;">      ESR(mΩ）</p>
<p style="text-align: center;">at 20℃ 100kHz</p>
</th>
<th style="height: 10px; width: 15.7604%; text-align: center;" align="left">Leakage Current</p>
<p>(μA)</th>
<th style="height: 10px; width: 13.6515%; text-align: center;" align="left">Rated ripple current（mArms/105℃/100kHz）</th>
</tr>
</thead>
<tbody>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left">6.3</td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left">270</td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left">6.3*9</td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left">18</td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left">500</td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left">4100</td>
</tr>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left"></td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>How to order</h3>
<p>XM2    271    M    0J     D06L09    T</p>
<p>XM2:Series code</p>
<p>271:Capacitance code</p>
<p>M:Capacitance tolerance code</p>
<p>0J:Voltage code</p>
<p>D06L09:Size code</p>
<p>T:Packing number</p>
<h3>Our advantage</h3>
<p>1. Have 18 years experiences in capacitor industry. Be able to quickly understand the needs of customers and give feedback quickly.</p>
<p>2. Covers all capacitors: Electrolytic capacitors, film capacitors, safety capacitors, ceramic capacitors, super capacitors.</p>
<p>3.With 200 production lines, the sample delivery time is 3 days, and the bulk goods delivery time is 2 weeks.</p>
<p>4.The company has its own R&amp;D team and after-sales team, providing complete pre-sale, in-sale and after-sale services.</p>
<h3>Contact us</h3>
<p>We are a supplier of electrolytic capacitor, and we have rich experiences in this field. Our daily production capacity can reach  7 million electrolytic capacitors, the sample period is 3 days, and the production cycle is 10 days. We will give you great support in terms of price, quality and delivery time.</p>
<p>And Support Customer’s Visit To The Factory</p>
<p>e-mail：  <a href="mailto:sales1@xuanxcapacitors.com">sales1@xuanxcapacitors.com</a></p>
<p>Pho（whatsapp）：+ 86-18825879082</p>
<p>Skype：Coco.psh</p>
<p>website：<a href="https://www.xuanxcapacitors.com/">xuanxcapacitors.com</a></p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-270uf-6-3v-smd-type-supplier/">Capacitor 270uf 6.3v SMD type supplier</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></content:encoded>
					
		
		
			</item>
		<item>
		<title>Capacitor 330uf 6.3v SMD type manufacturer</title>
		<link>https://capacitorsfilm.com/product/capacitor-330uf-6-3v-smd-type-manufacturer/</link>
		
		<dc:creator><![CDATA[FilmCapacitor]]></dc:creator>
		<pubDate>Sat, 12 Nov 2022 09:09:48 +0000</pubDate>
				<guid isPermaLink="false">https://capacitorsfilm.com/?post_type=product&#038;p=6490</guid>

					<description><![CDATA[<p>Type: SMD Operating Temperature:-55℃~+105℃ Life:5000hours Applications:fast charging sources, 5G base stations, PC motherboards,etc. Manufacturer:XUANSN</p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-330uf-6-3v-smd-type-manufacturer/">Capacitor 330uf 6.3v SMD type manufacturer</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p>The full name of solid capacitor 330uf 6.3v is: solid aluminum electrolytic capacitors. The biggest difference between it and ordinary capacitors (ie, liquid aluminum electrolytic capacitors) is the use of different dielectric materials. The dielectric material of liquid aluminum capacitors is electrolyte, while the dielectric material of solid capacitors is conductive polymer materials.</p>
<h3>XM1 Series-Capacitor 330uf 6.3v</h3>
<p>●Super low ESR, High ripple, miniaturized<br />
● SMD type: lead free reflow soldering condition at 260℃ peak correspondence<br />
● RoHS Compliant</p>
</p>
<div class="table-1">
<table style="width: 100%; height: 502px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="width: 27.2899%; height: 24px;" align="left"> Item</th>
<th style="width: 72.1435%; height: 24px;" align="left">Characteristics</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Temperature Range</td>
<td style="width: 72.1435%; height: 24px;" align="left">-55~+105℃</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Specification33</td>
<td style="width: 72.1435%; height: 24px;" align="left">330UF6.3V</td>
</tr>
<tr style="height: 10px;">
<td style="width: 27.2899%; height: 10px;" align="left">Capacitance Tolerance</td>
<td style="width: 72.1435%; height: 10px;" align="left">±20% (M)                                                    (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 24px;">
<td style="width: 27.2899%; height: 24px;" align="left">Dissipation Factor (tanδ)</td>
<td style="width: 72.1435%; height: 24px;" align="left">tanδ (max.)=0.08                                       (at 20°C, 120Hz)</td>
</tr>
<tr style="height: 36px;">
<td style="width: 27.2899%; height: 36px;">Leakage Current</td>
<td style="width: 72.1435%; height: 36px;">I≤0.2 CV or 500μA（Take the maximum）<br />
Where, I: Max.leakage current (μA), C: Nominal capacitance (μF),V:Rated voltage (V),(at 20 °C after 2 minutes)</td>
</tr>
<tr style="height: 48px;">
<td style="width: 27.2899%; height: 48px;" align="left">Low Temperature Characteristics (Max. Impedance Ratio)</td>
<td style="width: 72.1435%; height: 48px;" align="left">Z(-25°C)/Z(+20°C)≦1.25<br />
Z(-40°C)/Z(+20°C)≦1.25                       (at 100kHz)</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Endurance</td>
<td style="width: 72.1435%; height: 120px;" align="left">The following specifications shall be satisfied when the capacitors are restored to 20°C after DC voltage plus the rated ripple current is applied for 2,000 hours at 105°C.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr>
<td style="width: 27.2899%;">Damp heat（steady state）</td>
<td style="width: 72.1435%;">The specifications listed below shall be satisfied when the capacitors are restored to 20℃ after application of rated voltage for 1000 hours at 60℃,90%~95%RH.</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 72px;">
<td style="width: 27.2899%; height: 72px;" align="left">Surge Voltage</td>
<td style="width: 72.1435%; height: 72px;" align="left">Surge voltage = rated voltage * 1.15 (V)</p>
<p>The capacitors shall be subjected to 1000 cycles each consisting of charge with the surge voltages specified at 105℃ for 30 seconds through a protective resistor（Rc=1kΩ）and discharge for 5 minutes 30 seconds</p>
<p>Capacitance Change :≤±20% of the initial value<br />
D.F. (tanδ):≤150% of the initial specified value<br />
ESR:≤150% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
<tr style="height: 120px;">
<td style="width: 27.2899%; height: 120px;" align="left">Resistance to soldering heat</td>
<td style="width: 72.1435%; height: 120px;" align="left">Measurement for solder temperature profile shall be made at the capacitor top and the terminal.</p>
<p>Capacitance Change :≤±10% of the initial value<br />
D.F. (tanδ):≤130% of the initial specified value<br />
ESR:≤130% of the initial specified value<br />
Leakage Current :≤The initial specified value</td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>Dimensions</h3>
<p><img decoding="async" class="alignnone wp-image-799" src="https://xuansncapacitor.com/wp-content/uploads/2022/09/capacitor-2-600x127.jpg" alt="capacitor" width="661" height="169" /></p>
<h3>Rated Ripple Current Correction Coefficient</h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 48px;" width="100%">
<thead>
<tr style="height: 24px;">
<th style="height: 24px; text-align: center;" align="left">Frequency (Hz)</th>
<th style="height: 24px; text-align: center;" align="left">120Hz≦f＜1kHz</th>
<th style="height: 24px; text-align: center;" align="left">1kHz≦f＜10kHz</th>
<th style="height: 24px; text-align: center;" align="left">10kHz≦f＜100kHz</th>
<th style="height: 24px; text-align: center;" align="left">100kHz≦f＜500kHz</th>
</tr>
</thead>
<tbody>
<tr style="height: 24px;">
<td style="height: 24px; text-align: center;" align="left">Coefficient</td>
<td style="height: 24px; text-align: center;" align="left">0.05</td>
<td style="height: 24px; text-align: center;" align="left">0.30</td>
<td style="height: 24px; text-align: center;" align="left">0.70</td>
<td style="height: 24px; text-align: center;" align="left">1.00</td>
</tr>
</tbody>
</table>
<p>
</div>
<h3 class="table-1">Parameters<strong> Table</strong></h3>
</p>
<div class="table-1">
<table style="width: 100%; height: 86px;" width="100%">
<thead>
<tr style="height: 10px;">
<th style="height: 10px; text-align: center; width: 16.6482%;" align="left">Rated voltage（V）</th>
<th style="height: 10px; text-align: center; width: 19.9778%;" align="left">Rated Capacitance（μf）</th>
<th style="height: 10px; text-align: center; width: 14.3175%;" align="left">Case size     D*L(mm)</th>
<th style="height: 10px; text-align: left; width: 17.9798%;" align="left">
<p style="text-align: center;">      ESR(mΩ）</p>
<p style="text-align: center;">at 20℃ 100kHz</p>
</th>
<th style="height: 10px; width: 15.7604%; text-align: center;" align="left">Leakage Current</p>
<p>(μA)</th>
<th style="height: 10px; width: 13.6515%; text-align: center;" align="left">Rated ripple current（mArms/105℃/100kHz）</th>
</tr>
</thead>
<tbody>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left">6.3</td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left">330</td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left">6.3*9</td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left">18</td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left">500</td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left">4100</td>
</tr>
<tr style="height: 38px;">
<td style="height: 38px; width: 16.6482%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 19.9778%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 14.3175%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 17.9798%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 15.7604%; text-align: center;" align="left"></td>
<td style="height: 38px; width: 13.6515%; text-align: center;" align="left"></td>
</tr>
</tbody>
</table>
</div>
<p>
<h3>How to order</h3>
<p>XM1   331    M    0J     D06L09    T</p>
<p>XM1:Series code</p>
<p>331:Capacitance code</p>
<p>M:Capacitance tolerance code</p>
<p>0J:Voltage code</p>
<p>D06L09:Size code</p>
<p>T:Packing number</p>
<h3>Our advantage</h3>
<p>1. Have 18 years experiences in capacitor industry. Be able to quickly understand the needs of customers and give feedback quickly.</p>
<p>2. Covers all capacitors: Electrolytic capacitors, film capacitors, safety capacitors, ceramic capacitors, super capacitors.</p>
<p>3.With 200 production lines, the sample delivery time is 3 days, and the bulk goods delivery time is 2 weeks.</p>
<p>4.The company has its own R&amp;D team and after-sales team, providing complete pre-sale, in-sale and after-sale services.</p>
<h3>Contact us</h3>
<p>We are a supplier of electrolytic capacitor, and we have rich experiences in this field. Our daily production capacity can reach  7 million electrolytic capacitors, the sample period is 3 days, and the production cycle is 10 days. We will give you great support in terms of price, quality and delivery time.</p>
<p>And Support Customer’s Visit To The Factory</p>
<p>e-mail：  <a href="mailto:sales1@xuanxcapacitors.com">sales1@xuanxcapacitors.com</a></p>
<p>Pho（whatsapp）：+ 86-18825879082</p>
<p>Skype：Coco.psh</p>
<p>website：<a href="https://www.xuanxcapacitors.com/">xuanxcapacitors.com</a></p>
<p>The post <a href="https://capacitorsfilm.com/product/capacitor-330uf-6-3v-smd-type-manufacturer/">Capacitor 330uf 6.3v SMD type manufacturer</a> appeared first on <a href="https://capacitorsfilm.com">Xuansn Capacitor</a>.</p>
]]></content:encoded>
					
		
		
			</item>
	</channel>
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