# Thyristor, 600 V, 15 mA, 30 A, 50 A, TO-220AB, 3 Pins

![Product image](https://novapart.co/image/farnell:2778114/)

**URL**: https://novapart.co/products/TN5015H-6I/thyristor-600-v-15-ma-30-a-50-to-220ab-3-pins
**SKU**: TN5015H-6I
**Manufacturer**: STMICROELECTRONICS
**Category**: Semiconductors - Discretes || Thyristors || Thyristors - SCRs
**Price**: €0.7790
**Stock**: 500+
**Lead Time**: 120 days (indicative)

## Description

Peak Repetitive Off-State Voltage, Vdrm:600V; Gate Trigger Current Max, Igt:15mA; Current It av:30A; On State RMS Current IT(rms):50A; Thyristor Case Style:TO-220AB; No. of Pins:3Pins; Pea

## Specifications

| Parameter | Value |
|---|---|
| Msl | MSL 1 - Unlimited |
| Svhc | No SVHC (25-Jun-2025) |
| No. Of Pins | 3Pins |
| Product Range | - |
| Thyristor Mounting | Through Hole |
| Holding Current Max | 60mA |
| On State Rms Current | 50A |
| Thyristor Case Style | TO-220AB |
| Average On State Current | 30A |
| Gate Trigger Current Max | 15mA |
| Gate Trigger Voltage Max | 1.3V |
| Operating Temperature Max | 150°C |
| Peak Non Repetitive Surge Current | 493A |
| Peak Repetitive Off State Voltage | 600V |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:2778114/)

## **TN5015H-6I** 

## High temperature 50 A SCRs 

Datasheet - production data 

## **Description** 

This device offers high thermal performance operation up to 50 A thanks to its junction temperature Tj up to 150 °C. 

Its fully tab insulated (thanks to ceramic inside) TO-220AB package allows a back to back configuration. 

## **Features** 

- High junction temperature: Tj = 150 °C 

- High noise immunity dV/dt = 500V/µs up to 150 °C 

- Gate triggering current IGT = 15 mA 

Its trade-off noise immunity (dV/dt = 500 V/μs) versus its gate triggering current (IGT = 15 mA) and its turn-on current rise (dI/dt = 100 A/μs) allow to design robust and compact control circuit for voltage regulator in motorbikes and industrial drives, overvoltage crowbar protection, motor control circuits in power tools and kitchen appliances, inrush current limiting circuits. 

**Table 1: Device summary** 

|**Order code**|**Package**|**VDRM/VRRM**|**IGT**|
|---|---|---|---|
|TN5015H-6I|TO-220AB ins.|600 V|15 mA|



- Peak off-state voltage VDRM/VRRM = 600 V 

- High turn-on current rise dI/dt = 100 A/µs 

- ECOPACK[®] 2 compliant component 

- Insulated package TO-220AB: 

   - Insulated voltage: 2500 VRMS 

   - Complies with UL 1557 (File ref : E81734) 

## **Applications** 

- Motorbike voltage regulator circuits 

- Inrush current limiting circuits 

- Motor control circuits and starters 

- Solid state relays 

June 2017 

DocID030701 Rev 1 

1/9 

This is information on a product in full production. 

_www.st.com_ 

**Characteristics** 

**TN5015H-6I** 

## **1 Characteristics** 

**Table 2: Absolute maximum ratings (limiting values), Tj = 25 °C unless otherwise specified** 

|**Symbol**|**Parameter**|**Parameter**||**Value**|**Unit**|
|---|---|---|---|---|---|
|IT(RMS)|RMS on-state current<br>(180 ° conduction angle)||Tc= 75 °C|50|A|
|IT(AV)|Average on-state current<br>(180 ° conduction angle)||Tc= 81 °C|30|A|
||||Tc= 97 °C|25||
||||Tc= 111 °C|20||
|ITSM|Non repetitive surge peak on-state current<br>( Tjinitial = 25 °C)||tp= 8.3 ms|493|A|
||||tp= 10 ms|450||
|I2t|I2t value for fusing||tp= 10 ms|1012|A2s|
|dl/dt|Critical rate of rise of on-state current<br>IG= 2 x IGT, tr ≤ 100 ns||f = 60 Hz|100|A/µs|
|VDRM/VRRM|Repetitivepeak off-state voltage||Tj= 150 °C|600|V|
|VDSM/VRSM|Non repetitive surge peak off-state voltage||tp= 10 ms|VDRM/VRRM+<br>100|V|
|IGM|Peakgate current|tp= 20µs|Tj= 150 °C|4|A|
|PG(AV)|Averagegatepower dissipation||Tj= 150 °C|1|W|
|VRGM|Maximumpeak reversegate voltage|||5|V|
|Tstg|Storagejunction temperature range|||-40 to +150|°C|
|Tj|Maximum operating junction temperature|||-40 to +150|°C|
|Tl|Maximum lead temperature solderingduring10 s|||260|°C|
|Vins|Insulation RMS voltage, 1 minute|||2500|V|



**Table 3: Electrical characteristics (Tj = 25 °C unless otherwise specified)** 

|**Symbol**|**Test conditions**|**Test conditions**||**Value**|**Unit**|
|---|---|---|---|---|---|
|IGT|VD= 12 V, RL= 33 Ω||Max.|15|mA|
|VGT|||Max.|1.3|V|
|VGD|VD= VDRM, RL= 3.3 kΩ|Tj= 150 °C|Min.|0.15|V|
|IH|IT= 500 mA,gate open||Max.|60|mA|
|IL|IG= 1.2 x IGT||Max.|80|mA|
|dV/dt|VD= 402 V,gate open|Tj= 150 °C|Min.|500|V/µs|
|tgt|ITM= 100 A, VD= 402 V, IG= 30 mA, (dIG/dt) max = 0.2 A/µs||Typ.|1.9|µs|
|tq|ITM= 100 A, VD= 402 V,<br>(dlG/dt)max = 30 A/µs, VR= 25 V,<br>dVD/dt = 50 V/µs|Tj= 150 °C|Typ.|85|µs|



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**Characteristics** 

**TN5015H-6I** 

## **Table 4: Static characteristics** 

|**Symbol**|**Test conditions**|||**Value**|**Unit**|
|---|---|---|---|---|---|
|VTM|ITM= 100 A, tp= 380µs|Tj= 25 °C|Max.|1.65|V|
|VTO|Threshold voltage|Tj= 150 °C|Max.|0.85||
|RD|Dynamic resistance|Tj= 150 °C|Max.|9|mΩ|
|IDRM, IRRM|VD= VDRM= VRRM|Tj= 25 °C|Max.|10|µA|
|||Tj= 150 °C||6|mA|



**Table 5: Thermal parameters** 

|**Symbol**|**Parameter**||**Value**|**Unit**|
|---|---|---|---|---|
|Rth(j-c)|Junction to case (DC)|Max.|1.5|°C/W|
|Rth(j-a)|Junction to ambient (DC)|Typ.|60||



## **Notes:** 

(1)S = Copper surface under tab 

DocID030701 Rev 1 

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**Characteristics** 

**TN5015H-6I** 

## **1.1 Characteristics (curves)** 

**Figure 1: Maximum average power dissipation Figure 2: Average and DC on-state current versus versus average on-state current case temperature** 

**==> picture [452 x 534] intentionally omitted <==**

**----- Start of picture text -----**<br>
50 P(W) α = 120° α = 180° D.C 60 IT(AV)(A)<br>40 SEGaeEEREEEM α = 60° α = 90° pptfeatecee |  ELE 50 _ α = 30° α = 60° α = 90° α = 120° α = 180° D.C Cf<br>α = 30 °<br>40<br>30 oo ee |  ERNE<br>Pitt | YY AAA ee<br>LITT ET 30 a<br>20 BEE  VI AAT et won<br>20<br>[li Ver6/727 400 R Ree SSes aeeeeeT<br>10 gr 10<br>| tt ste SEG<br>I T(AV) (A) T C (°C)<br>0 0<br>0 ALI 5 10 Tt 15 t 20 tt 25 30 35 ox 40 45 50 0 ee 25 50 75 100 125 NN 150<br>Figure 3: Average and D.C. on state current versus  Figure 4: Relative variation of thermal impedance<br>ambient temperature  versus pulse duration<br>3.0 IT(AV)(A) 1.0E+00 K=[Z th /Rth]<br>Z th(j-c)<br>2.5 D.C Z th(j-a)<br>2.0 α = 180 ° 1.0E-01<br>ET TSSSS LarWWEI TUT 7<br>1.5 a Iw IFAConn ConEE eetATcncAT<br>1.0 1.0E-02<br>i a IN MeTTTTT<br>0.5<br>TA(°C) tp(s)<br>0.0 S[ | | |} Pt E ees)tt ENN 1.0E-03 ELHRTTI LTTEEEESVIII TTT PIT ayll<br>0 25 50 75 100 125 150 1.0E-03 1.0E-02 1.0E-01 1.0E+00 1.0E+01 1.0E+02 1.0E+03<br>Figure 5: Relative variation of gate trigger current  Figure 6: Relative variation of holding and latching<br>and gate voltage versus junction temperature  current versus junction temperature<br>(typical values)  (typical values)<br>IGT,VGT [T j] / IGT,VGT [T j=25 °C] IH , IL[T j]/ IH , IL[T j=25 °C]<br>2.5 2.5<br>2.3<br>ee IGT ee<br>2.0 ptt] 2.0 IH<br>1.8<br>PNET | EN Tf<br>| |  essere<br>1.5 Ne eee 1.5 Po IN| | ff<br>1.3<br>1.0 VGT 1.0 I L<br>ieeea eee 0.8 ONOSS<br>0.5 ee ee 0.5 ee ee ee ee<br>Tj(°C) 0.3 T j (°C)<br>0.0 ee eee || 0.0 eeee ee<br>-50 -25 0 25 50 75 100 125 150 -50 -25 0 25 50 75 100 125 150<br>**----- End of picture text -----**<br>


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**Characteristics** 

**TN5015H-6I** 

**==> picture [451 x 179] intentionally omitted <==**

**----- Start of picture text -----**<br>
Figure 7: Relative variation of static dV/dt  Figure 8: Surge peak on-state current versus<br>immunity versus junction temperature   number of cycles<br>(typical values)<br>12 dV/dt [ Tj ] / dV/dt [ Tj = 150 °C ] 450 ITSM(A)<br>11 OO VD = 402 V<br>400<br>109 Kf Above test equipment capability | tT Tt tT GO 350 7| TNon repetitive j initial = 25 °C TTT lea A |il<br>8 SNEPNEEE 300 FL[Ab PTT oa ll<br>7<br>6 a ~ 250 a|<br>5 Poa ee ee iSN) 200 LTR Hh ~~AEE TT]<br>4<br>3 pj} } ff fof | Kft 150 RepetitiveTc = 75 °C PULTE FAYE ET<br>2 Ses}a Ds es ee ee 100 LRT Th  So<br>1<br>0 50 Number of cycles<br>90 teeth 95 100 105 110 115 120 125 130 135 140 145 150 0 ll<br>Tj(°C) 1 10 100 1000<br>**----- End of picture text -----**<br>


**==> picture [419 x 20] intentionally omitted <==**

**----- Start of picture text -----**<br>
Figure 9: Non repetitive surge peak on-state  Figure 10: On-state characteristics<br>current for a sinusoidal pulse with width tp < 10 ms  (maximum values)<br>**----- End of picture text -----**<br>


**==> picture [327 x 182] intentionally omitted <==**

**----- Start of picture text -----**<br>
Figure 11: Relative variation of leakage current versus junction temperature<br>IDRM , IRRM [Tj; VDRM , VRRM ] / IDRM , IRRM [150 °C; 600 V]<br>1.0E+00 ——— ee a<br>| V DRM = V RRM = 600 V rs |<br>1.0E-01 ===Lf | | |er=——<br>SS<br>1.0E-02 aa GeeeOO<br>SS ee<br>ooa roo ooo eo<br>1.0E-03 || QOfT6c OO<br>SS ee EEE EEE<br>a GO<br>1.0E-04 ee ee ee eee<br>=<br>1.0E-05 LPa|OCC[| {| jf jf J jf GOjf ff<br>25 50 75 100 125 150<br>Tj(°C)<br>**----- End of picture text -----**<br>


DocID030701 Rev 1 

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**Package** information 

**TN5015H-6I** 

## **2 Package information** 

In order to meet environmental requirements, ST offers these devices in different grades of ECOPACK[®] packages, depending on their level of environmental compliance. ECOPACK[®] specifications, grade definitions and product status are available at: _**www.st.com**_ . ECOPACK[®] is an ST trademark. 

- Epoxy meets UL94, V0 

- Lead-free, halogen-free package 

## **2.1 TO-220AB package information** 

**Figure 12: TO-220AB (NIns. & Ins.) package outline** 

**==> picture [407 x 417] intentionally omitted <==**

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**Package** information 

**TN5015H-6I** 

**Table 6: TO-220AB (NIns. & Ins.) package mechanical data** 

|**Ref.**|||**Dimensions**|**Dimensions**|||
|---|---|---|---|---|---|---|
|||**Millimeters**|||**Inches****_(1)_**||
||**Min.**|**Typ.**|**Max.**|**Min.**|**Typ.**|**Max.**|
|A|15.20||15.90|0.5984||0.6260|
|a1||3.75|||0.1476||
|a2|13.00||14.00|0.5118||0.5512|
|B|10.00||10.40|0.3937||0.4094|
|b1|0.61||0.88|0.0240||0.0346|
|b2|1.23||1.32|0.0484||0.0520|
|C|4.40||4.60|0.1732||0.1811|
|c1|0.49||0.70|0.0193||0.0276|
|c2|2.40||2.72|0.0945||0.1071|
|e|2.40||2.70|0.0945||0.1063|
|F|6.20||6.60|0.2441||0.2598|
|I|3.73||3.88|0.1469||0.1528|
|L|2.65||2.95|0.1043||0.1161|
|I2|1.14||1.70|0.0449||0.0669|
|I3|1.14||1.70|0.0449||0.0669|
|I4|15.80|16.40|16.80|0.6220|0.6457|0.6614|
|M||2.6|||0.1024||



## **Notes:** 

(1)Inch dimensions are for reference only. 

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**Ordering** information 

**TN5015H-6I** 

## **3 Ordering information** 

**Figure 13: Ordering information scheme** 

**==> picture [406 x 286] intentionally omitted <==**

**----- Start of picture text -----**<br>
TN 50 15 H - 6 I<br>Series<br>TN = SCR<br>Current<br>50 = 50 A<br>Gate sensitivity<br>15= 15 m A<br>High temperature<br>H = 150 °C<br>Voltage<br>6 = 600 V<br>Package<br>T = TO-220AB insulated<br>Packing mode<br>Blank = tube<br>**----- End of picture text -----**<br>


**==> picture [416 x 44] intentionally omitted <==**

**----- Start of picture text -----**<br>
Table 7: Ordering information<br>Order code  Marking  Package  Weight  Base qty.  Delivery mode<br>TN5015H-6I  TN5015H6I  TO-220AB ins.  2.3 g 50  Tube<br>**----- End of picture text -----**<br>


## **4 Revision history** 

**Table 8: Document revision history** 

|**Date**|**Revision**|**Changes**|
|---|---|---|
|02-Jun-2017|1|Initial release.|



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## **IMPORTANT NOTICE – PLEASE READ CAREFULLY** 

STMicroelectronics NV and its subsidiaries (“ST”) reserve the right to make changes, corrections, enhancements, modifications, and improvements to ST products and/or to this document at any time without notice. Purchasers should obtain the latest relevant information on ST products before placing orders. ST products are sold pursuant to ST’s terms and conditions of sale in place at the time of order acknowledgement. 

Purchasers are solely responsible for the choice, selection, and use of ST products and ST assumes no liability for application assistance or the design of Purchasers’ products. 

No license, express or implied, to any intellectual property right is granted by ST herein. 

Resale of ST products with provisions different from the information set forth herein shall void any warranty granted by ST for such product. 

ST and the ST logo are trademarks of ST. All other product or service names are the property of their respective owners. 

Information in this document supersedes and replaces information previously supplied in any prior versions of this document. 

- © 2017 STMicroelectronics – All rights reserved 

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- [View this product on Novapart](https://novapart.co/products/TN5015H-6I/thyristor-600-v-15-ma-30-a-50-to-220ab-3-pins)
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- [Supplier page](https://es.farnell.com/stmicroelectronics/tn5015h-6i/thyristor-50a-600v-to-220ab/dp/2778114)
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