# Schottky Rectifier, 100 V, 30 A, Single, TO-220AB, 3 Pins, 950 mV

![Product image](https://novapart.co/image/farnell:2327904/)

**URL**: https://novapart.co/products/NTST30100SG../schottky-rectifier-100-v-30-a-single-to-220ab-3
**SKU**: NTST30100SG..
**Manufacturer**: ONSEMI
**Category**: Semiconductors - Discretes || Diodes & Rectifiers || Schottky Diodes || Schottky Rectifier Diodes
**Price**: €0.8870
**Stock**: 10+

## Description

Repetitive Reverse Voltage Vrrm Max:100V; Forward Current If(AV):30A; Diode Configuration:Single; Diode Case Style:TO-220AB; No. of Pins:3Pins; Forward Voltage VF Max:950mV; Forward

## Specifications

| Parameter | Value |
|---|---|
| No. Of Pins | 3Pins |
| Product Range | NTST3 |
| Qualification | - |
| Diode Mounting | Through Hole |
| Diode Case Style | TO-220AB |
| Diode Configuration | Single |
| Forward Voltage Max | 950mV |
| Forward Surge Current | 250A |
| Average Forward Current | 30A |
| Operating Temperature Max | 150°C |
| Repetitive Peak Reverse Voltage | 100V |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:2327904/)

## NTST30100SG, NTSB30100S-1G 

## Very Low Forward Voltage Trench-based Schottky Rectifier 

## **Exceptionally Low VF = 0.39 V at IF = 5 A** 

## **Features** 

- Fine Lithography Trench−based Schottky Technology for Very Low Forward Voltage and Low Leakage 

- Fast Switching with Exceptional Temperature Stability 

- Low Power Loss and Lower Operating Temperature 

- Higher Efficiency for Achieving Regulatory Compliance 

- Low Thermal Resistance 

- High Surge Capability 

- These are Pb−Free Devices 

## **Typical Applications** 

- Switching Power Supplies including Notebook/Netbook Adapters, ATX and Flat Panel Display 

- High Frequency and DC−DC Converters 

- Freewheeling and OR−ing Diodes 

- Reverse Battery Protection 

- Instrumentation 

## **Mechanical Characteristics** 

- Case: Epoxy, Molded 

- Epoxy Meets Flammability Rating UL 94−0 @ 0.125 in 

- Weight (Approximately): 1.9 Grams 

- Finish: All External Surfaces Corrosion Resistant and Terminal Leads are Readily Solderable 

- Lead Temperature for Soldering Purposes: 260°C Maximum for 10 sec 

## **http://onsemi.com** 

1 2, 4 3 

**==> picture [171 x 291] intentionally omitted <==**

**----- Start of picture text -----**<br>
MARKING<br>DIAGRAMS<br>Sy 4 TO−220  [o<br>CASE 221A AYWW<br>STYLE 6 TS30100SG<br>AKA<br>1<br>2<br>3<br>4<br>I [2] PAK (TO−262) AYWW<br>CASE 418D TS30100SG<br>STYLE 3 AKA<br>, 1<br>2<br>3<br>A = Assembly Location<br>Y = Year<br>WW = Work Week<br>G = Pb−Free Package<br>AKA = Polarity Designator<br>**----- End of picture text -----**<br>


## **ORDERING INFORMATION** 

|**Device**|**Package**|**Shipping**†|
|---|---|---|
|NTST30100SG|TO−220<br>(Pb−Free)|50 Units/Rail|
|NTSB30100S−1G|TO−262<br>(Pb−Free)|50 Units/Rail|



- †For information on tape and reel specifications, including part orientation and tape sizes, please refer to our Tape and Reel Packaging Specifications Brochure, BRD8011/D. 

Publication Order Number: **NTST30100S/D** 

**1** 

© Semiconductor Components Industries, LLC, 2014 **September, 2014 − Rev. 4** 

**NTST30100SG, NTSB30100S−1G** 

## **MAXIMUM RATINGS** 

|**MAXIMUM RATINGS**||||
|---|---|---|---|
|**Rating**|**Symbol**|**Value**|**Unit**|
|Peak Repetitive Reverse Voltage<br>Working Peak Reverse Voltage<br>DC Blocking Voltage|VRRM<br>VRWM<br>VR|100|V|
|Average Rectified Forward Current<br>(Rated VR, TC= 105°C)|IF(AV)|30|A|
|Peak Repetitive Forward Current<br>(Rated VR, Square Wave, 20 kHz, TC= 95°C)|IFRM|60|A|
|Nonrepetitive Peak Surge Current<br>(Surge applied at rated load conditions halfwave, single phase, 60 Hz)|IFSM|250|A|
|Operating Junction Temperature|TJ|−40 to +150|°C|
|Storage Temperature|Tstg|−65 to +175|°C|
|Voltage Rate of Change (Rated VR)|dv/dt|10,000|V/�s|



Stresses exceeding those listed in the Maximum Ratings table may damage the device. If any of these limits are exceeded, device functionality should not be assumed, damage may occur and reliability may be affected. 

## **THERMAL CHARACTERISTICS** 

|**THERMAL CHARACTERISTICS**||||
|---|---|---|---|
|**Rating**|**Symbol**|**Value**|**Unit**|
|Maximum Thermal Resistance<br>Junction−to−Case<br>Junction−to−Ambient|R�JC<br>R�JA|2.0<br>70|°C/W|



## **ELECTRICAL CHARACTERISTICS** 

|**ELECTRICAL CHARACTERISTICS**|||||
|---|---|---|---|---|
|**Rating**|**Symbol**|**Typ**|**Max**|**Unit**|
|Maximum Instantaneous Forward Voltage (Note 1)<br>(IF= 5 A, TJ= 25°C)<br>(IF= 10 A, TJ= 25°C)<br>(IF= 30 A, TJ= 25°C)<br>(IF= 5 A, TJ= 125°C)<br>(IF= 10 A, TJ= 125°C)<br>(IF= 30 A, TJ= 125°C)|vF|0.47<br>0.55<br>0.84<br>0.39<br>0.51<br>0.7|−<br>−<br>0.95<br>−<br>−<br>0.78|V|
|Maximum Instantaneous Reverse Current (Note 1)<br>(VR= 70 V, TJ= 25°C)<br>(VR= 70 V, TJ= 125°C)<br>(Rated dc Voltage, TJ= 25°C)<br>(Rated dc Voltage, TJ= 125°C)|IR|27<br>11<br>70<br>23|1000<br>45|�A<br>mA<br>�A<br>mA|



Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product performance may not be indicated by the Electrical Characteristics if operated under different conditions. 1. Pulse Test: Pulse Width = 300 � s, Duty Cycle ≤ 2.0% 

**http://onsemi.com** 

**2** 

**NTST30100SG, NTSB30100S−1G** 

## **TYPICAL CHARACTERISTICS** 

**==> picture [493 x 615] intentionally omitted <==**

**----- Start of picture text -----**<br>
100 1000<br>100 TA = 150 ° C<br>10 TA = 150 ° C 10<br>TA = 125 ° C<br>TA = 25 ° C<br>1<br>1 TA = 125 ° C 0.1<br>TA = 25 ° C<br>0.01<br>0.1 0.001<br>0.0 0.2 0.4 0.6 0.8 1.0 1.2 20 30 40 50 60 70 80 90 100<br>VF, INSTANTANEOUS FORWARD VOLTAGE (V) VR, INSTANTANEOUS REVERSE VOLTAGE (V)<br>Figure 1. Typical Instantaneous Forward Figure 2. Typical Reverse Characteristics<br>Characteristics<br>10000 60<br>TJ = 25 ° C 55 R � JC = 2.0 ° C/W<br>50 dc<br>45<br>40<br>35<br>1000 30<br>SQUARE WAVE<br>25<br>20<br>15<br>10<br>5<br>100 0<br>0.1 1 10 100 0 20 40 60 80 100 120 140<br>VR, REVERSE VOLTAGE (V) TC, CASE TEMPERATURE ( ° C)<br>Figure 3. Typical Junction Capacitance Figure 4. Current Derating, Case<br>45<br>40 IPK/IAV = 10 TA = 150 ° C<br>35<br>IPK/IAV = 20<br>30 SQUARE<br>WAVE<br>25 IPK/IAV = 5<br>20<br>15<br>dc<br>10<br>5<br>0<br>0 5 10 15 20 25 30<br>IF(AV), AVERAGE FORWARD CURRENT (A)<br>Figure 5. Forward Power Dissipation<br>CURRENT (A)<br>CURRENT (mA)<br>, INSTANTANEOUS FORWARDIF , INSTANTANEOUS REVERSEIR<br>RENT (A)<br>, AVERAGE FORWARD CUR-<br>C, JUNCTION CAPACITANCE (pF) IF(AV)<br>ER DISSIPATION (W)<br>, AVERAGE FORWARD POW-<br>F(AV)<br>P<br>**----- End of picture text -----**<br>


**http://onsemi.com** 

**3** 

**NTST30100SG, NTSB30100S−1G** 

**==> picture [495 x 187] intentionally omitted <==**

**----- Start of picture text -----**<br>
10<br>TD<br>RE<br>1 50% Duty Cycle<br>PE[petLATIN EI | e e r<br>a a a SS LL Le eee eee eee<br>20%<br>10%<br>CT emer TI nl<br>0.1 er 5%<br>2%<br>=e ETT EI ETT ewTLL Ul<br>1% Single Pulse<br>0.01 ee a |<br>rain  a I) VT ETT PETTITTE | DUTV CYCLE, D=tyte lll<br>0.000001 0.00001 0.0001 0.001 0.01 0.1 1 10 100 1000<br>t, Pulse Time (sec)<br>Figure 6. Typical Transient Thermal Response, Junction−to−Case<br>C/W)<br>°<br>RESISTANCE (<br>R(t), TYPICAL TRANSIENT THERMAL<br>**----- End of picture text -----**<br>


**http://onsemi.com** 

**4** 

**NTST30100SG, NTSB30100S−1G** 

## **PACKAGE DIMENSIONS** 

**TO−220** CASE 221A−09 ISSUE AH 

**==> picture [234 x 185] intentionally omitted <==**

**----- Start of picture text -----**<br>
SEATING<br>−T− PLANE<br>B F C<br>T S<br>4<br>Q A<br>1 2 3 U<br>H<br>K<br>Z<br>L R<br>V J<br>G<br>D<br>N<br>**----- End of picture text -----**<br>


NOTES: 

1. DIMENSIONING AND TOLERANCING PER ANSI Y14.5M, 1982. 

2. CONTROLLING DIMENSION: INCH. 3. DIMENSION Z DEFINES A ZONE WHERE ALL BODY AND LEAD IRREGULARITIES ARE ALLOWED. 

|**DIM**|**INCHES**|**INCHES**|**MILLIMETERS**|**MILLIMETERS**|
|---|---|---|---|---|
||**MIN**<br>|**MAX**<br>|**MIN**<br>|**MAX**<br>|
|**A**|0.570|0.620|14.48|15.75|
|**B**|0380|0415|966|1053|
|**C**|.<br>0.160|.<br>0.190|.<br>4.07|.<br>4.83|
|**D**|0.025|0.038|0.64|0.96|
|**F**|0.142|0.161|3.61|4.09|
|**G**|0.095|0.105|2.42|2.66|
|**H**|0.110|0.161|2.80|4.10|
|**J**|0.014|0.024|0.36|0.61|
|**K**|0.500|0.562|12.70|14.27|
|**L**|0.045|0.060|1.15|1.52|
|**N**|0.190|0.210|4.83|5.33|
|**Q**|0100|0120|254|304|
|**R**|.<br>0.080|.<br>0.110|.<br>2.04|.<br>2.79|
|**S**|0.045|0.055|1.15|1.39|
|**T**|0.235|0.255|5.97|6.47|
|**U**|0.000|0.050|0.00|1.27|
|**V**|0.045|---|1.15|---|
|**Z**|---|0.080|---|2.04|
|STYLE<br>PIN|6:<br>1.<br>ANODE<br>2.<br>CATHODE<br>3.<br>ANODE<br>4.<br>CATHODE||||



**http://onsemi.com** 

**5** 

**NTST30100SG, NTSB30100S−1G** 

## **PACKAGE DIMENSIONS** 

**I[2] PAK (TO−262)** CASE 418D ISSUE D 

**==> picture [226 x 214] intentionally omitted <==**

**----- Start of picture text -----**<br>
C<br>E<br>−B− V<br>4<br>A<br>W<br>; 1 2 3 ee<br>F<br>−T−<br>SEATING<br>PLANE K<br>L S<br>G ; J<br>D 3 PL H<br>0.13 (0.005) M T B M<br>**----- End of picture text -----**<br>


**==> picture [123 x 184] intentionally omitted <==**

**----- Start of picture text -----**<br>
NOTES:<br>1. DIMENSIONING AND TOLERANCING PER ANSI<br>Y14.5M, 1982.<br>2. CONTROLLING DIMENSION: INCH.<br>INCHES MILLIMETERS<br>DIM MIN MAX MIN MAX<br>A 0.335 0.380 8.51 9.65<br>==== B 0.380 0.406 9.65 10.31<br>C 0.160 0.185 4.06 4.70<br>D 0.026 0.035 0.66 0.89<br>E 0.045 0.055 1.14 1.40<br>F 0.122 REF 3.10 REF<br>G 0.100 BSC 2.54 BSC<br>H 0.094 0.110 2.39 2.79<br>J 0.013 0.025 0.33 0.64<br>K 0.500 0.562 12.70 14.27<br>S 0.390 REF 9.90 REF<br>V 0.045 0.070 1.14 1.78<br>W 0.522 0.551 13.25 14.00<br>:====<br>STYLE 3:<br>PIN 1. ANODE<br>2. CATHODE<br>3. ANODE<br>4. CATHODE<br>**----- End of picture text -----**<br>


ON Semiconductor and the         are registered trademarks of Semiconductor Components Industries, LLC (SCILLC) or its subsidiaries in the United States and/or other countries. SCILLC owns the rights to a number of patents, trademarks, copyrights, trade secrets, and other intellectual property. A listing of SCILLC’s product/patent coverage may be accessed at www.onsemi.com/site/pdf/Patent−Marking.pdf.  SCILLC reserves the right to make changes without further notice to any products herein.  SCILLC makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does SCILLC assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation special, consequential or incidental damages.  “Typical” parameters which may be provided in SCILLC data sheets and/or specifications can and do vary in different applications and actual performance may vary over time.  All operating parameters, including “Typicals” must be validated for each customer application by customer’s technical experts.  SCILLC does not convey any license under its patent rights nor the rights of others.  SCILLC products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other applications intended to support or sustain life, or for any other application in which the failure of the SCILLC product could create a situation where personal injury or death may occur.  Should Buyer purchase or use SCILLC products for any such unintended or unauthorized application, Buyer shall indemnify and hold SCILLC and its officers, employees, subsidiaries, affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that SCILLC was negligent regarding the design or manufacture of the part.  SCILLC is an Equal Opportunity/Affirmative Action Employer.  This literature is subject to all applicable copyright laws and is not for resale in any manner. 

## **PUBLICATION ORDERING INFORMATION** 

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**NTST30100S/D** 

**6** 



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