# Silicon Carbide Schottky Diode, Single, 650 V, 45 A, 63 nC, TO-220

![Product image](https://novapart.co/image/farnell:3996575/)

**URL**: https://novapart.co/products/LSIC2SD065A20A/silicon-carbide-schottky-diode-single-650-v-45-a
**SKU**: LSIC2SD065A20A
**Manufacturer**: LITTELFUSE
**Category**: Semiconductors - Discretes || Diodes & Rectifiers || Schottky Diodes || Silicon Carbide Schottky Diodes
**Price**: €4.2800
**Stock**: 500+
**Lead Time**: 211 days (indicative)

## Description

Available until stocks are exhausted

## Specifications

| Parameter | Value |
|---|---|
| Svhc | To Be Advised |
| No. Of Pins | 2 Pin |
| Product Range | - |
| Qualification | AEC-Q101 |
| Diode Mounting | Through Hole |
| Diode Case Style | TO-220 |
| Diode Configuration | Single |
| Average Forward Current | 45A |
| Total Capacitive Charge | 63nC |
| Operating Temperature Max | 175°C |
| Junction Temperature Tj Max | 175°C |
| Continuous Forward Current If | 45A |
| Repetitive Peak Reverse Voltage | 650V |
| Automotive Qualification Standard | AEC-Q101 |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:3996575/)

**GEN2 SiC Schottky Diode** LSIC2SD065A20A, 650V, 20A, TO-220-2L 

~~HFL_|lO~~ ~~**RoHS Pb**~~ 

## ~~LSIC2SD065A20A 650 V, 20 A SiC Schottky Barrier Diode~~ 

## **Description** ~~LE~~ 

This series of silicon carbide (SiC) Schottky diodes has negligible reverse recovery current, high surge capability, and a maximum operating junction temperature of 175 °C. These diodes series are ideal for applications where improvements in efficiency, reliability, and thermal management are desired. 

## **Features** 

- AEC-Q101 qualified 

      - Excellent surge capability 

   - Positive temperature •   Extremely fast, coefficient for safe temperature-independent operation and ease of switching behavior paralleling 

- Dramatically reduced 

- *Image for reference only, for details refer to Dimensions-Package. •   175 °C maximum switching losses operating junction compared to Si bipolar temperature diodes 

- **Circuit Diagram TO-220-2L Applications** 

- ~~Lo a~~ Case •   Boost diodes in PFC or •   Solar inverters 

- Case DC/DC stages •   Industrial motor drives 

- •   Switch-mode power •   EV charging stations 

- supplies 

- •   Uninterruptible power supplies 

- J 4 **Environmental** 1 2 

- | | ~~Poo~~ 1 2 

   - Uninterruptible power supplies 

   - **Environmental** 

   - ~~Poo~~ •   Littelfuse “RoHS” logo = L **RoHS** | RoHS conform 

   - •   Littelfuse “HF” logo = HF Halogen Free 

   - •   Littelfuse “Pb-free” logo= @ **Pb** Pb-free lead plating 

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Maximum Ratings<br>**----- End of picture text -----**<br>


||**Maximum Ratings**|
|---|---|
||**Characteristics**<br>**Symbol**<br>**Conditions**<br>**Value**<br>**Unit**<br>Repetitive Peak Reverse Voltage<br>VRRM<br>-<br>650<br>V<br>~~es~~<br>~~esGs~~|
||DC Blocking Voltage<br>VR<br>TJ= 25 °C<br>650<br>V<br>Continuous Forward Current<br>IF<br>TC= 25 °C<br>45<br>A<br>TC= 135 °C<br>20<br>~~|~~<br>~~|~~<br>~~|~~<br>~~|~~|
||Non-Repetitive Forward Surge Current<br>IFSM<br>TC= 25 °C, TP= 10 ms, Half sine pulse<br>90<br>A<br>Power Dissipation<br>PTot<br>TC= 25 °C<br>135<br>W<br>TC= 110 °C<br>60<br>~~|~~<br>~~|~~<br>~~|~~<br>~~|~~|
|© 2020 Littelfuse, Inc.<br>Operating Junction Temperature<br>TJ<br>-<br>-55 to 175<br>°C<br>Storage Temperature<br>TSTG<br>-<br>-55 to 150<br>°C<br>Soldering Temperature<br>TSOLD<br>-<br>260<br>°C<br>~~|~~<br>~~|~~<br>~~|~~<br>~~|~~<br>~~GD(OQ~~||
||Specifications are subject to change without notice.|
||Revised: 10/16/20|



**GEN2 SiC Schottky Diode** LSIC2SD065A20A, 650V, 20A, TO-220-2L 

**Electrical Characteristics (TJ =25 °C unless otherwise specified) Value Characteristics Symbol Conditions Unit Min. Typ. Max.** Forward Voltage VF IIFF = 20 A, T = 20 A, TJJ = 175 °C = 25 °C -- 1.851.5 1.8V Reverse Current IR VVRR = 650 V = 650 V, T, TJJ = 175 °C = 25 °C -- <160 50μA VR = 1 V, f = 1 MHz - 960 - Total Capacitance C VR = 200 V, f = 1 MHz - 120 - pF VR = 400 V, f = 1 MHz - 86 - VVRR Total Capacitive Charge QC VR = 400 V, Q                    0cQ=∫ C(V)dVc = ∫C(V)dV - 63 - nC 0 ~~ene~~ **Thermal Characteristics Characteristics Symbol Value Unit** Thermal Resistance R Ɵ JC 1.1 °C/W **Figure 1:  Typical Foward Characteristics Figure 2:  Typical Reverse Characteristics** 

**Symbol Value Unit** R Ɵ JC 1.1 °C/W **Figure 2:  Typical Reverse Characteristics** 

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20<br>18 TJ =  25 °C<br>16<br>14 TJ =  125 °C TJ = 150 °C<br>12<br>TJ = 175 °C<br>10<br>8<br>6 TJ =  -55 °C<br>4<br>2<br>0 OT<br>0 0.25 0.5 0.75 1 1.25 1.5 1.75 2<br>Voltage (V)<br>Current (A)<br>**----- End of picture text -----**<br>


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Figure 3:  Power Derating<br>**----- End of picture text -----**<br>


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Figure 4:  Current Derating<br>**----- End of picture text -----**<br>


© 2020 Littelfuse, Inc. Specifications are subject to change without notice. Revised: 10/16/20 

**GEN2 SiC Schottky Diode** LSIC2SD065A20A, 650V, 20A, TO-220-2L 

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Figure 5:  Capacitance vs. Reverse Voltage<br>**----- End of picture text -----**<br>


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Figure 7:  Stored Energy vs. Reverse Voltage<br>**----- End of picture text -----**<br>


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Figure 6: Capacitive Charge vs. Reverse Voltage<br>**----- End of picture text -----**<br>


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Figure 8: Transient Thermal Impedance<br>**----- End of picture text -----**<br>


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1E+0 a<br>0.5<br>1E-1 0.10.3 A<br>fA<br>0.05<br>,<br>0.02<br>0.01<br>1E-2 Single<br>1E-3<br>1E-6 1E-5 1E-4 1E-3 1E-2 1E-1 1E+0<br>Pulse Width (s)<br>Normalized  Transient Thermal Impedance<br>**----- End of picture text -----**<br>


© 2020 Littelfuse, Inc. Specifications are subject to change without notice. Revised: 10/16/20 

**GEN2 SiC Schottky Diode** LSIC2SD065A20A, 650V, 20A, TO-220-2L 

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Dimensions-Package TO-220-2L<br>E A E1<br>E/2 A1 Symbol Millimeters<br>Min Nom Max<br>A 4.30 4.45 4.70<br>A1 1.14 1.27 1.40<br>A2 2.20 - 2.74<br>b 0.69 - 0.90<br>b2 1.17 - 1.62<br>c 0.36 - 0.60<br>EMC protrusion e1 D 14.90 - 15.90<br>D1 8.62 - 9.40<br>D2 12.50 - 12.95<br>b2 c e E 9.70 10.18 10.36<br>b A2<br>E1 7.57 7.61 8.30<br>e1 - 2.54 -<br>Recommended Hole Pattern<br>e 5.03 5.08 5.13<br>5,08<br>H1 6.30 6.55 6.80<br>L 12.88 13.50 14.00<br>L1 2.39 - 3.25<br>UNIT: mm øP 3.50 3.84 3.96<br>Q 2.65 - 3.05<br>R - - 0.25<br>Part Numbering and Marking System Packing Options<br>Part Number Marking Packing Mode M.O.Q<br>SIC              = SiC Diode<br>2                  = Gen2  LSIC2SD065A20A SIC2SD065A20 Tube(50pcs) 1000<br>SIC2SD065A20 SD               = Schottky Diode<br>L [F] 065              = Voltage Rating (650 V)<br>YYWWX A                 = TO-220 Package (2 Lead)<br>ZZZZZZ-ZZ 20                = Current Rating (20 A)<br>YY               = Year<br>WW             = Week<br>X                 = Special Code<br>ZZZZZZ-ZZ = Lot Number<br>2x R0,62<br>� P<br>Q<br>H1<br>D D2<br>D1 R<br>L1<br>L<br>1,93<br>**----- End of picture text -----**<br>


© 2020 Littelfuse, Inc. Specifications are subject to change without notice. Revised: 10/16/20 

**GEN2 SiC Schottky Diode** LSIC2SD065A20A, 650V, 20A, TO-220-2L 

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Packing Specification (Tube for  TO-220-2L)<br>**----- End of picture text -----**<br>


**Disclaimer Notice -** Littelfuse products are not designed for, and shall not be used for, any purpose (including, without limitation, automotive, military, aerospace, medical, life-saving, life-sustaining or nuclear facility applications, Components intended for surgical implant into the body, or any other application in which the failure or lack of desired operation of the product may result in personal injury, death, or property damage) other than those expressly set forth in applicable Littelfuse product documentation. Warranties granted by Littelfuse shall be deemed void for products used for any purpose not expressly set forth in applicable Littelfuse documentation. Littelfuse shall not be liable for any claims or damages arising out of products used in applications not expressly intended by Littelfuse as set forth in applicable Littelfuse documentation. The sale and use of Littelfuse products is subject to Littelfuse Terms and Conditions of Sale, unless otherwise agreed by Littelfuse. Information furnished is believed to be accurate and reliable. However, users should independently evaluate the suitability of and test each product selected for their own applications. Littelfuse products are not designed for, and may not be used in, all applications. Read complete Disclaimer Notice at www.littelfuse.com/disclaimer-electronics. 

© 2020 Littelfuse, Inc. Specifications are subject to change without notice. Revised: 10/16/20 



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---

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