# SNAP IN - SCREW TERMINAL CAPACITORS

**URL**: https://novapart.co/products/CGH362T450X4L/snap-in-screw-terminal-capacitors
**SKU**: CGH362T450X4L
**Manufacturer**: CORNELL DUBILIER / PARTNER STOCK
**Category**: Passive Components || Capacitors || Aluminium Electrolytic Capacitors || Snap In / Screw Terminal Aluminium Electrolytic Capacitors
**Price**: €237.7600
**Stock**: 10+

## Specifications

| Parameter | Value |
|---|---|
| Svhc | No SVHC (25-Jun-2025) |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:4857068/)

## **T e CGH  Inverter Grade Screw Terminal  Aluminum Electrol tic yp y** 

## **85 ºC, Screw Terminal Capacitors** 

Type CGH screw terminal,  aluminum electrolytic capacitors have excellent reliability and a high ripple current capability making them suitable for most AC drive and UPS applications. 

## Go to DCMC datasheet 

|most AC drive and UPS applications.<br>**Highlights**<br>High ripple current<br>High reliability at 85 ºC<br>Screw Terminal<br>•<br>•<br>•<br>**Specifications**<br>**Capacitance Range:**<br>**Voltage Range:**<br>**Capacitance Tolerance:**<br>**Operating Temperature:**<br>**Ripple Current Multipliers:**<br>350 to 22,000 µF<br>250 to 500 WVdc<br>–10% +50%<br>–40 to +85 ºC<br>Ambient Temperature<br>**+35 ºC**<br>**+45 ºC**<br>**+55 ºC**<br>**+65 ºC**<br>**+75 ºC**<br>**+85 ºC**<br>2.45<br>2.25<br>2.00<br>1.70<br>1.40<br>1.00<br>**Rated**<br>**Frequency / Ripple Multiplier**<br>**Voltage**<br>**120 Hz**<br>**400 Hz**<br>**1000 Hz**<br>**2500 Hz**<br>**10 kHz**<br>250 to 450<br>1.000<br>1.080<br>1.113<br>1.175<br>1.230<br>**DC Leakage Current:**<br>**QA Stability Test:**<br>I   6<br>√CV after 5 minutes<br>Not to exceed 6.0 mA<br>C = Capacitance in µF<br>V = Rated Voltage<br>I = Leakage current in µA<br>Apply WVdc for 1000 h @ 85 ºC<br>Capacitance change ≤10% from initial limits<br>DC leakage current meets initial limits<br>ESR ≤175% of initial measured value<br>•<br>•<br>•<br>**Ratings**<br>**Catalog**<br>**Typical ESR**<br>**Max Ripple**<br>**Cap**<br>**Part Number**<br>**120 Hz 20 kHz 120 Hz**<br>**20 kHz Dia. Length**<br>**(µF)**<br>**(mΩ)**<br>**(In.)**<br>**250 WVdc ( 300 Vdc Surge )**<br>1,700 CGH172T250V2L<br>65.8<br>42.1<br>4.0<br>5.0<br>2.0<br>2.625<br>2,900 CGH292T250V3L<br>53.1<br>34.0<br>5.7<br>7.1<br>2.0<br>3.625<br>4,100 CGH412T250V4L<br>25.7<br>16.4<br>9.1<br>11.4<br>2.0<br>4.625<br>5,000 CGH502T250W3L 26.9<br>17.2<br>9.2<br>11.5<br>2.5<br>3.625<br>**Catalog**<br>**Typical ESR**<br>**Max Ripple**<br>**Cap**<br>**Part Number**<br>**120 Hz 20 kHz 120 Hz**<br>**20 kHz Dia. Length**<br>**(µF)**<br>**(mΩ)**<br>**(In.)**<br>**250 WVdc ( 300 Vdc Surge )**<br>7,400 CGH742T250X3L<br>27.1<br>17.3<br>10.3<br>12.9<br>3.0<br>3.625<br>9,000 CGH902T250W5L<br>16.3<br>10.4<br>14.1<br>17.6<br>2.5<br>5.625<br>10,000  CGH103T250X4L<br>20.4<br>13.1<br>13.0<br>16.3<br>3.0<br>4.625<br>13,000  CGH133T250X5L<br>16.8<br>10.8<br>15.6<br>19.5<br>3.0<br>5.625<br>**Click here to see: Hardware & Mounting**<br>**Options**<br>**Click here to see: Mechanical Details**<br>**(Arms) **<br>**(Arms)      (In.)**<br>**(Arms) **<br>**(Arms)      (In.)**<br>**(mΩ)**<br>**(mΩ)**<br>≤<br>RoHS Compliant<br>NOT RECOMMENDED FOR NEW DESIGNS SEE DCMC FOR POSSIBLE REPLACEMENT<br>f<br>s<br>8<br>ah Boe<br>2933?|most AC drive and UPS applications.<br>**Highlights**<br>High ripple current<br>High reliability at 85 ºC<br>Screw Terminal<br>•<br>•<br>•<br>**Specifications**<br>**Capacitance Range:**<br>**Voltage Range:**<br>**Capacitance Tolerance:**<br>**Operating Temperature:**<br>**Ripple Current Multipliers:**<br>350 to 22,000 µF<br>250 to 500 WVdc<br>–10% +50%<br>–40 to +85 ºC<br>Ambient Temperature<br>**+35 ºC**<br>**+45 ºC**<br>**+55 ºC**<br>**+65 ºC**<br>**+75 ºC**<br>**+85 ºC**<br>2.45<br>2.25<br>2.00<br>1.70<br>1.40<br>1.00<br>**Rated**<br>**Frequency / Ripple Multiplier**<br>**Voltage**<br>**120 Hz**<br>**400 Hz**<br>**1000 Hz**<br>**2500 Hz**<br>**10 kHz**<br>250 to 450<br>1.000<br>1.080<br>1.113<br>1.175<br>1.230<br>**DC Leakage Current:**<br>**QA Stability Test:**<br>I   6<br>√CV after 5 minutes<br>Not to exceed 6.0 mA<br>C = Capacitance in µF<br>V = Rated Voltage<br>I = Leakage current in µA<br>Apply WVdc for 1000 h @ 85 ºC<br>Capacitance change ≤10% from initial limits<br>DC leakage current meets initial limits<br>ESR ≤175% of initial measured value<br>•<br>•<br>•<br>**Ratings**<br>**Catalog**<br>**Typical ESR**<br>**Max Ripple**<br>**Cap**<br>**Part Number**<br>**120 Hz 20 kHz 120 Hz**<br>**20 kHz Dia. Length**<br>**(µF)**<br>**(mΩ)**<br>**(In.)**<br>**250 WVdc ( 300 Vdc Surge )**<br>1,700 CGH172T250V2L<br>65.8<br>42.1<br>4.0<br>5.0<br>2.0<br>2.625<br>2,900 CGH292T250V3L<br>53.1<br>34.0<br>5.7<br>7.1<br>2.0<br>3.625<br>4,100 CGH412T250V4L<br>25.7<br>16.4<br>9.1<br>11.4<br>2.0<br>4.625<br>5,000 CGH502T250W3L 26.9<br>17.2<br>9.2<br>11.5<br>2.5<br>3.625<br>**Catalog**<br>**Typical ESR**<br>**Max Ripple**<br>**Cap**<br>**Part Number**<br>**120 Hz 20 kHz 120 Hz**<br>**20 kHz Dia. Length**<br>**(µF)**<br>**(mΩ)**<br>**(In.)**<br>**250 WVdc ( 300 Vdc Surge )**<br>7,400 CGH742T250X3L<br>27.1<br>17.3<br>10.3<br>12.9<br>3.0<br>3.625<br>9,000 CGH902T250W5L<br>16.3<br>10.4<br>14.1<br>17.6<br>2.5<br>5.625<br>10,000  CGH103T250X4L<br>20.4<br>13.1<br>13.0<br>16.3<br>3.0<br>4.625<br>13,000  CGH133T250X5L<br>16.8<br>10.8<br>15.6<br>19.5<br>3.0<br>5.625<br>**Click here to see: Hardware & Mounting**<br>**Options**<br>**Click here to see: Mechanical Details**<br>**(Arms) **<br>**(Arms)      (In.)**<br>**(Arms) **<br>**(Arms)      (In.)**<br>**(mΩ)**<br>**(mΩ)**<br>≤<br>RoHS Compliant<br>NOT RECOMMENDED FOR NEW DESIGNS SEE DCMC FOR POSSIBLE REPLACEMENT<br>f<br>s<br>8<br>ah Boe<br>2933?|most AC drive and UPS applications.<br>**Highlights**<br>High ripple current<br>High reliability at 85 ºC<br>Screw Terminal<br>•<br>•<br>•<br>**Specifications**<br>**Capacitance Range:**<br>**Voltage Range:**<br>**Capacitance Tolerance:**<br>**Operating Temperature:**<br>**Ripple Current Multipliers:**<br>350 to 22,000 µF<br>250 to 500 WVdc<br>–10% +50%<br>–40 to +85 ºC<br>Ambient Temperature<br>**+35 ºC**<br>**+45 ºC**<br>**+55 ºC**<br>**+65 ºC**<br>**+75 ºC**<br>**+85 ºC**<br>2.45<br>2.25<br>2.00<br>1.70<br>1.40<br>1.00<br>**Rated**<br>**Frequency / Ripple Multiplier**<br>**Voltage**<br>**120 Hz**<br>**400 Hz**<br>**1000 Hz**<br>**2500 Hz**<br>**10 kHz**<br>250 to 450<br>1.000<br>1.080<br>1.113<br>1.175<br>1.230<br>**DC Leakage Current:**<br>**QA Stability Test:**<br>I   6<br>√CV after 5 minutes<br>Not to exceed 6.0 mA<br>C = Capacitance in µF<br>V = Rated Voltage<br>I = Leakage current in µA<br>Apply WVdc for 1000 h @ 85 ºC<br>Capacitance change ≤10% from initial limits<br>DC leakage current meets initial limits<br>ESR ≤175% of initial measured value<br>•<br>•<br>•<br>**Ratings**<br>**Catalog**<br>**Typical ESR**<br>**Max Ripple**<br>**Cap**<br>**Part Number**<br>**120 Hz 20 kHz 120 Hz**<br>**20 kHz Dia. Length**<br>**(µF)**<br>**(mΩ)**<br>**(In.)**<br>**250 WVdc ( 300 Vdc Surge )**<br>1,700 CGH172T250V2L<br>65.8<br>42.1<br>4.0<br>5.0<br>2.0<br>2.625<br>2,900 CGH292T250V3L<br>53.1<br>34.0<br>5.7<br>7.1<br>2.0<br>3.625<br>4,100 CGH412T250V4L<br>25.7<br>16.4<br>9.1<br>11.4<br>2.0<br>4.625<br>5,000 CGH502T250W3L 26.9<br>17.2<br>9.2<br>11.5<br>2.5<br>3.625<br>**Catalog**<br>**Typical ESR**<br>**Max Ripple**<br>**Cap**<br>**Part Number**<br>**120 Hz 20 kHz 120 Hz**<br>**20 kHz Dia. Length**<br>**(µF)**<br>**(mΩ)**<br>**(In.)**<br>**250 WVdc ( 300 Vdc Surge )**<br>7,400 CGH742T250X3L<br>27.1<br>17.3<br>10.3<br>12.9<br>3.0<br>3.625<br>9,000 CGH902T250W5L<br>16.3<br>10.4<br>14.1<br>17.6<br>2.5<br>5.625<br>10,000  CGH103T250X4L<br>20.4<br>13.1<br>13.0<br>16.3<br>3.0<br>4.625<br>13,000  CGH133T250X5L<br>16.8<br>10.8<br>15.6<br>19.5<br>3.0<br>5.625<br>**Click here to see: Hardware & Mounting**<br>**Options**<br>**Click here to see: Mechanical Details**<br>**(Arms) **<br>**(Arms)      (In.)**<br>**(Arms) **<br>**(Arms)      (In.)**<br>**(mΩ)**<br>**(mΩ)**<br>≤<br>RoHS Compliant<br>NOT RECOMMENDED FOR NEW DESIGNS SEE DCMC FOR POSSIBLE REPLACEMENT<br>f<br>s<br>8<br>ah Boe<br>2933?|most AC drive and UPS applications.<br>**Highlights**<br>High ripple current<br>High reliability at 85 ºC<br>Screw Terminal<br>•<br>•<br>•<br>**Specifications**<br>**Capacitance Range:**<br>**Voltage Range:**<br>**Capacitance Tolerance:**<br>**Operating Temperature:**<br>**Ripple Current Multipliers:**<br>350 to 22,000 µF<br>250 to 500 WVdc<br>–10% +50%<br>–40 to +85 ºC<br>Ambient Temperature<br>**+35 ºC**<br>**+45 ºC**<br>**+55 ºC**<br>**+65 ºC**<br>**+75 ºC**<br>**+85 ºC**<br>2.45<br>2.25<br>2.00<br>1.70<br>1.40<br>1.00<br>**Rated**<br>**Frequency / Ripple Multiplier**<br>**Voltage**<br>**120 Hz**<br>**400 Hz**<br>**1000 Hz**<br>**2500 Hz**<br>**10 kHz**<br>250 to 450<br>1.000<br>1.080<br>1.113<br>1.175<br>1.230<br>**DC Leakage Current:**<br>**QA Stability Test:**<br>I   6<br>√CV after 5 minutes<br>Not to exceed 6.0 mA<br>C = Capacitance in µF<br>V = Rated Voltage<br>I = Leakage current in µA<br>Apply WVdc for 1000 h @ 85 ºC<br>Capacitance change ≤10% from initial limits<br>DC leakage current meets initial limits<br>ESR ≤175% of initial measured value<br>•<br>•<br>•<br>**Ratings**<br>**Catalog**<br>**Typical ESR**<br>**Max Ripple**<br>**Cap**<br>**Part Number**<br>**120 Hz 20 kHz 120 Hz**<br>**20 kHz Dia. Length**<br>**(µF)**<br>**(mΩ)**<br>**(In.)**<br>**250 WVdc ( 300 Vdc Surge )**<br>1,700 CGH172T250V2L<br>65.8<br>42.1<br>4.0<br>5.0<br>2.0<br>2.625<br>2,900 CGH292T250V3L<br>53.1<br>34.0<br>5.7<br>7.1<br>2.0<br>3.625<br>4,100 CGH412T250V4L<br>25.7<br>16.4<br>9.1<br>11.4<br>2.0<br>4.625<br>5,000 CGH502T250W3L 26.9<br>17.2<br>9.2<br>11.5<br>2.5<br>3.625<br>**Catalog**<br>**Typical ESR**<br>**Max Ripple**<br>**Cap**<br>**Part Number**<br>**120 Hz 20 kHz 120 Hz**<br>**20 kHz Dia. Length**<br>**(µF)**<br>**(mΩ)**<br>**(In.)**<br>**250 WVdc ( 300 Vdc Surge )**<br>7,400 CGH742T250X3L<br>27.1<br>17.3<br>10.3<br>12.9<br>3.0<br>3.625<br>9,000 CGH902T250W5L<br>16.3<br>10.4<br>14.1<br>17.6<br>2.5<br>5.625<br>10,000  CGH103T250X4L<br>20.4<br>13.1<br>13.0<br>16.3<br>3.0<br>4.625<br>13,000  CGH133T250X5L<br>16.8<br>10.8<br>15.6<br>19.5<br>3.0<br>5.625<br>**Click here to see: Hardware & Mounting**<br>**Options**<br>**Click here to see: Mechanical Details**<br>**(Arms) **<br>**(Arms)      (In.)**<br>**(Arms) **<br>**(Arms)      (In.)**<br>**(mΩ)**<br>**(mΩ)**<br>≤<br>RoHS Compliant<br>NOT RECOMMENDED FOR NEW DESIGNS SEE DCMC FOR POSSIBLE REPLACEMENT<br>f<br>s<br>8<br>ah Boe<br>2933?|most AC drive and UPS applications.<br>**Highlights**<br>High ripple current<br>High reliability at 85 ºC<br>Screw Terminal<br>•<br>•<br>•<br>**Specifications**<br>**Capacitance Range:**<br>**Voltage Range:**<br>**Capacitance Tolerance:**<br>**Operating Temperature:**<br>**Ripple Current Multipliers:**<br>350 to 22,000 µF<br>250 to 500 WVdc<br>–10% +50%<br>–40 to +85 ºC<br>Ambient Temperature<br>**+35 ºC**<br>**+45 ºC**<br>**+55 ºC**<br>**+65 ºC**<br>**+75 ºC**<br>**+85 ºC**<br>2.45<br>2.25<br>2.00<br>1.70<br>1.40<br>1.00<br>**Rated**<br>**Frequency / Ripple Multiplier**<br>**Voltage**<br>**120 Hz**<br>**400 Hz**<br>**1000 Hz**<br>**2500 Hz**<br>**10 kHz**<br>250 to 450<br>1.000<br>1.080<br>1.113<br>1.175<br>1.230<br>**DC Leakage Current:**<br>**QA Stability Test:**<br>I   6<br>√CV after 5 minutes<br>Not to exceed 6.0 mA<br>C = Capacitance in µF<br>V = Rated Voltage<br>I = Leakage current in µA<br>Apply WVdc for 1000 h @ 85 ºC<br>Capacitance change ≤10% from initial limits<br>DC leakage current meets initial limits<br>ESR ≤175% of initial measured value<br>•<br>•<br>•<br>**Ratings**<br>**Catalog**<br>**Typical ESR**<br>**Max Ripple**<br>**Cap**<br>**Part Number**<br>**120 Hz 20 kHz 120 Hz**<br>**20 kHz Dia. Length**<br>**(µF)**<br>**(mΩ)**<br>**(In.)**<br>**250 WVdc ( 300 Vdc Surge )**<br>1,700 CGH172T250V2L<br>65.8<br>42.1<br>4.0<br>5.0<br>2.0<br>2.625<br>2,900 CGH292T250V3L<br>53.1<br>34.0<br>5.7<br>7.1<br>2.0<br>3.625<br>4,100 CGH412T250V4L<br>25.7<br>16.4<br>9.1<br>11.4<br>2.0<br>4.625<br>5,000 CGH502T250W3L 26.9<br>17.2<br>9.2<br>11.5<br>2.5<br>3.625<br>**Catalog**<br>**Typical ESR**<br>**Max Ripple**<br>**Cap**<br>**Part Number**<br>**120 Hz 20 kHz 120 Hz**<br>**20 kHz Dia. Length**<br>**(µF)**<br>**(mΩ)**<br>**(In.)**<br>**250 WVdc ( 300 Vdc Surge )**<br>7,400 CGH742T250X3L<br>27.1<br>17.3<br>10.3<br>12.9<br>3.0<br>3.625<br>9,000 CGH902T250W5L<br>16.3<br>10.4<br>14.1<br>17.6<br>2.5<br>5.625<br>10,000  CGH103T250X4L<br>20.4<br>13.1<br>13.0<br>16.3<br>3.0<br>4.625<br>13,000  CGH133T250X5L<br>16.8<br>10.8<br>15.6<br>19.5<br>3.0<br>5.625<br>**Click here to see: Hardware & Mounting**<br>**Options**<br>**Click here to see: Mechanical Details**<br>**(Arms) **<br>**(Arms)      (In.)**<br>**(Arms) **<br>**(Arms)      (In.)**<br>**(mΩ)**<br>**(mΩ)**<br>≤<br>RoHS Compliant<br>NOT RECOMMENDED FOR NEW DESIGNS SEE DCMC FOR POSSIBLE REPLACEMENT<br>f<br>s<br>8<br>ah Boe<br>2933?|
|---|---|---|---|---|
|5,300 CGH532T250V5L<br>20.6<br>13.2<br>11.0<br>13.8<br>2.0<br>5.625||22,000  CGH223T250X8L<br>11.5<br>7.4<br>22.3<br>27.9<br>3.0|8.625||
|7,000 CGH702T250W4L 20.1<br>12.9<br>11.7<br>14.6<br>2.5<br>4.625|||||



CDE Cornell Dubilier • 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8561 • Fax: (508)996-3830 • www.cde.com 

|NO|**Type CGHInverter Grade Screw**|**Type CGHInverter Grade Screw**|**Type CGHInverter Grade Screw**|**Type CGHInverter Grade Screw**|**Type CGHInverter Grade Screw**|**Type CGHInverter Grade Screw**|**Type CGHInverter Grade Screw**|**Type CGHInverter Grade Screw**|**Type CGHInverter Grade Screw**|**Type CGHInverter Grade Screw**|**Type CGHInverter Grade Screw**|**Type CGHInverter Grade Screw**|**Type CGHInverter Grade Screw**|**Type CGHInverter Grade Screw**|**Type CGHInverter Grade Screw**|**Type CGHInverter Grade Screw**|
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
||**Ratings**<br>||||||||||||||||
||**Cap**<br>**(µF)**<br>|**Catalog**<br>**Part Number**<br>|**Typical ESR**||**Max Ripple**||**Dia. **<br>**(In.)**<br>|**Length**<br>**(In.)**<br> <br>|**Cap**<br>**(µF)**<br>|**Catalog**<br>**Part Number**<br>|**Typical ESR**||**Max Ripple**||**Dia. **<br>**(In.)**<br>|**Length**<br>**(In.)**<br>|
||||**120 Hz **<br>**(mΩ)**<br>|**20 kHz **<br>**(mΩ) **<br>|**120 Hz**<br> **(Arms)**<br>|**20 kHz **<br>**(Arms)**<br>|||||**120 Hz **<br>**(mΩ)**<br>|**20 kHz **<br>**(mΩ) **<br>|**120 Hz**<br> **(Arms)**<br>|**20 kHz **<br>**(Arms)**<br>|||
||**350 WVdc ( 400 Vdc Surge )**<br>R||||||||**450 WVdc ( 525 Vdc Surge )**<br>||||||||
||1,000 <br>1,700 <br>2,400 <br>2,700 <br>2,900 <br>|CGH102T350V2L<br> CGH172T350V3L<br> CGH242T350V4L<br> CGH272T350W3L<br> CGH292T350W3L<br>COMMEN|162.6<br>81.9<br>58.8<br>54.3<br>53.1<br>D|104.1<br>52.4<br>37.6<br>34.8<br>34.0<br>|2.9<br>4.6<br>6.0<br>6.5<br>6.8<br>|3.6<br>5.8<br>7.5<br>8.1<br>8.5<br>|2.0<br>2.0<br>2.0<br>2.5<br>2.5<br>|2.625<br>3.625<br>4.625<br>3.625<br>3.625<br>|3,100<br>3,600<br>4,600<br>7,700<br>|CGH312T450W5L<br>CGH362T450X4L<br>CGH462T450X5L<br>CGH772T450X8L<br>|31.7<br>32.6<br>26.2<br>17.3<br>|20.3<br>20.9<br>16.8<br>11.1<br>|10.1<br>10.3<br>12.4<br>18.2<br>|12.6<br>12.9<br>15.5<br>22.8<br>|2.5<br>3<br>3<br>3<br>|5.625<br>4.625<br>5.625<br>8.625<br>|
||||||||||**500 WVdc ( 550 Vdc Surge )**<br>||||||||
||3,100 <br>3,800 <br>4,000 <br>4,100 <br>4,300 <br>|CGH312T350V5L<br> CGH382T350W4L<br> CGH402T350X3L<br> CGH412T350W4L<br> CGH432T350X3L<br>|46.2<br>39.3<br>44.3<br>38.6<br>43.5<br>ED|29.6<br>25.2<br>28.4<br>24.7<br>27.8<br>FO|7.4<br>8.4<br>8.1<br>8.6<br>8.4<br>R NE|9.3<br>10.5<br>10.1<br>10.8<br>10.5<br>W|2.0<br>2.5<br>3.0<br>2.5<br>3.0<br>|5.625<br>4.625<br>3.625<br>4.625<br>3.625<br>|350 <br>520 <br>710 <br>900 <br>1100 <br>|CGH351T500V2 C<br> CGH521T500V2L<br> CGH711T500V3 C<br> CGH901T500V3L<br> CGH112T500V4 C<br>|692.0<br>470.0<br>345.0<br>272.0<br>225.0<br>|612.0<br>416.0<br>305.0<br>241.0<br>199.0<br>|1.3<br>1.7<br>2.1<br>2.5<br>3.1<br>|1.5<br>1.9<br>2.4<br>2.8<br>3.3<br>|2.0<br>2.0<br>2.0<br>2.0<br>2.0<br>|2.125<br>2.625<br>3.125<br>3.625<br>4.125<br>|
||4,900 <br>5,200 <br>5,700 <br>6,000 <br>7,300 <br>|CGH492T350W5L<br> CGH522T350W5L<br> CGH572T350X4L<br> CGH602T350X4L<br> CGH732T350X5L<br>|31.5<br>31.1<br>32.5<br>32.3<br>25.9<br>|20.2<br>19.9<br>20.8<br>20.7<br>16.6<br>|10.1<br>10.3<br>10.3<br>10.6<br>12.5<br>|12.6<br>12.9<br>12.9<br>13.3<br>15.6<br>DE|2.5<br>2.5<br>3.0<br>3.0<br>3.0<br>SI|5.625<br>5.625<br>4.625<br>4.625<br>5.625<br>GNS|||||||||
||||||||||1200 <br>1300 <br>1500 <br>1500 <br>1700 <br>E|CGH122T500W3 C<br> CGH132T500V4L<br> CGH152T500V5 C<br> CGH152T500W3L<br> CGH172T500V5L<br>|218.0<br>192.0<br>168.0<br>172.0<br>149.0<br>|196.0<br>170.0<br>148.0<br>153.0<br>132.0<br>|3.1<br>3.3<br>3.7<br>3.6<br>4.0<br>|3.4<br>3.7<br>4.1<br>4.1<br>4.5<br>|2.5<br>2.0<br>2.0<br>2.5<br>2.0<br>|3.125<br>4.625<br>5.125<br>3.625<br>5.625<br>|
||7,800 <br>10,000<br>|CGH782T350X5L<br>CGH103T350X8L<br>|25.6<br>20.7<br>|16.4<br>13.2<br>|12.8<br>16.6<br>|16.0<br>20.8<br>|3.0<br>3.0<br>|5.625<br>8.625<br>|||||||||
||||||||||1800 <br>2100 <br>2200 <br>2400 <br>2700 <br>|CGH182T500W4 C<br> CGH212T500W4L<br> CGH222T500X3L<br> CGH242T500W5 C<br> CGH272T500W5L<br>DCMC FO|142.0<br>121.0<br>124.0<br>106.0<br>93.9<br>R P|126.0<br>108.0<br>111.0<br>99.1<br>83.5<br>|4.2<br>4.8<br>4.8<br>5.3<br>5.9<br>|4.7<br>5.3<br>5.4<br>6.0<br>6.6<br>|2.5<br>2.5<br>3.0<br>2.5<br>2.5<br>|4.125<br>4.625<br>3.625<br>5.125<br>5.625<br>|
||**450 WVdc ( 525 Vdc Surge )**<br>||||||||||||||||
||620 <br>1,000 <br>1,400 <br>1,700 <br>1,800 <br>2,400 <br>2,500 <br>|CGH621T450V2L<br> CGH102T450V3L<br> CGH142T450V4L<br> CGH172T450W3L<br> CGH182T450V5L<br> CGH242T450W4L<br> CGH252T450X3L<br>|159.6<br>83.4<br>60.3<br>55.3<br>47.6<br>40.1<br>44.9<br>|102.1<br>53.4<br>38.6<br>35.4<br>30.5<br>25.7<br>28.7<br>|2.9<br>4.8<br>5.9<br>6.4<br>7.2<br>8.3<br>8.0<br>|3.6<br>6.0<br>7.4<br>8.0<br>9.0<br>10.4<br>10.0<br>|2.0<br>2.0<br>2.0<br>2.5<br>2.0<br>2.5<br>3.0<br>|2.625<br>3.625<br>4.625<br>3.625<br>5.625<br>4.625<br>3.625<br>|||||||||
||||||||||2700 <br>3100 <br>3600 <br>4100 <br>6900 <br>|CGH272T500X4 C<br> CGH312T500X4L<br> CGH362T500X5 C<br> CGH412T500X5L<br> CGH692T500X8L<br>|103.0<br>87.4<br>76.3<br>67.8<br>41.0<br>O|91.8<br>78.4<br>68.4<br>60.8<br>36.9<br>SSI|5.6<br>6.3<br>7.0<br>7.7<br>11.9<br>BLE|6.3<br>7.0<br>7.8<br>8.6<br>13.2<br>REP|3.0<br>3.0<br>3.0<br>3.0<br>3.0<br>|4.125<br>4.625<br>5.125<br>5.625<br>8.625<br>|



**Notice and Disclaimer:** All product drawings, descriptions, specifications, statements, information and data (collectively, the “Information”) in this datasheet or other publication are subject to change. The customer is responsible for checking, confirming and verifying the extent to which the Information contained in this datasheet or other publication is applicable to an order at the time the order is placed. All Information given herein is believed to be accurate and reliable, but it is presented without any guarantee, warranty, representation or responsibility of any kind, expressed or implied. Statements of suitability for certain applications are based on the knowledge that the Cornell Dubilier company providing such statements  (“Cornell Dubilier”) has of  operating conditions that such Cornell Dubilier company regards as typical for such applications, but are not intended to constitute any guarantee, warranty or representation regarding any such matter – and Cornell Dubilier specifically and expressly disclaims any guarantee, warranty or representation concerning the suitability for a specific customer application, use, storage, transportation, or operating environment. The Information is intended for use only by customers who have the requisite experience and capability to determine the correct products for their application. Any technical advice inferred from this Information or otherwise provided by Cornell Dubilier with reference to the use of  any Cornell Dubilier products is given gratis (unless otherwise specified by Cornell Dubilier), and Cornell Dubilier assumes no obligation or liability for the advice given or results obtained.  Although Cornell Dubilier strives to apply  the most stringent quality and safety standards regarding the design and manufacturing of its products, in light of the current state of the art, isolated component failures may still occur. Accordingly, customer applications which require a high degree of reliability or safety should employ suitable designs or other safeguards (such as installation of protective circuitry or redundancies or other appropriate protective measures) in order to ensure that the failure of an electrical component does not result in a risk of personal injury or property damage. Although all product-related warnings, cautions and notes must be observed, the customer should not assume that all safety measures are indicated in such warnings, cautions and notes, or that other safety measures may not be required. 

4 



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---

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