# Power MOSFET, N Channel, 600 V, 7.5 A, 0.55 ohm, TO-220AB, Through Hole

![Product image](https://novapart.co/image/farnell:2807275/)

**URL**: https://novapart.co/products/STP10N60M2/power-mosfet-n-channel-600-v-75-a-055-ohm-to-220ab
**SKU**: STP10N60M2
**Manufacturer**: STMICROELECTRONICS
**Category**: Semiconductors - Discretes || FETs || Single MOSFETs
**Price**: €0.4870
**Stock**: 500+
**Lead Time**: 127 days (indicative)

## Description

Transistor Polarity:N Channel; Continuous Drain Current Id:7.5A; Drain Source Voltage Vds:600V; On Resistance Rds(on):0.55ohm; Rds(on) Test Voltage Vgs:10V; Threshold Voltage Vgs:3V; P

## Specifications

| Parameter | Value |
|---|---|
| Msl | MSL 1 - Unlimited |
| Svhc | No SVHC (25-Jun-2025) |
| No. Of Pins | 3Pins |
| Channel Type | N Channel |
| Product Range | MDmesh M2 |
| Qualification | - |
| Power Dissipation | 85W |
| Transistor Mounting | Through Hole |
| Rds(On) Test Voltage | 10V |
| Transistor Case Style | TO-220AB |
| Drain Source Voltage Vds | 600V |
| Operating Temperature Max | 150°C |
| Continuous Drain Current Id | 7.5A |
| Drain Source On State Resistance | 0.55ohm |
| Gate Source Threshold Voltage Max | 3V |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:2807275/)

## **STB10N60M2, STD10N60M2, STP10N60M2, STU10N60M2** 

N-channel 600 V, 0.55 Ω typ., 7.5 A MDmesh™ M2 Power MOSFETs in D²PAK, DPAK, TO-220 and IPAK packages 

Datasheet - production data 

## **Features** 

|**Order code**|**VDS@TJmax.**|**RDS(on) max.**|**ID**|
|---|---|---|---|
|STB10N60M2|650 V|0.60 Ω|7.5 A|
|STD10N60M2||||
|STP10N60M2||||
|STU10N60M2||||



- Extremely low gate charge 

- Excellent output capacitance (COSS) profile 

- 100% avalanche tested 

- Zener-protected 

**Figure 1: Internal schematic diagram** 

## **Applications** 

- Switching applications 

## **Description** 

These devices are N-channel Power MOSFETs developed using MDmesh™ M2 technology. Thanks to their strip layout and improved vertical structure, these devices exhibit low on-resistance and optimized switching characteristics, rendering them suitable for the most demanding high efficiency converters. 

**Table 1: Device summary** 

|**Order code**|**Marking**|**Package**|**Packing**|
|---|---|---|---|
|STB10N60M2|10N60M2|D2PAK|Tape and reel|
|STD10N60M2||DPAK||
|STP10N60M2||TO-220|Tube|
|STU10N60M2||IPAK||



March 2017 

DocID024710 Rev 3 

1/29 

This is information on a product in full production. 

_www.st.com_ 

**Contents** 

**STB10N60M2, STD10N60M2, STP10N60M2, STU10N60M2** 

|**Contents**|**Contents**|**STB10N60M2, STD10N60M2, STP10N60M2,**<br>**STU10N60M2**|
|---|---|---|
|**Contents**|||
|**1**|**Electrical**|**ratings ............................................................................. 3**|
|**2**|**Electrical**|**characteristics ................................................................ 4**|
||2.1|Electrical characteristics (curves) ...................................................... 6|
|**3**|**Test circuits ..................................................................................... 9**||
|**4**|**Package information ..................................................................... 10**||
||4.1|D²PAK (TO-263) type A package information ................................. 10|
||4.2|DPAK (TO-252) type A package information................................... 13|
||4.3|DPAK (TO-252) type C package information .................................. 15|
||4.4|DPAK (TO-252) type E package information................................... 17|
||4.5|TO-220 type A package information ................................................ 19|
||4.6|IPAK (TO-251) type A package information .................................... 21|
||4.7|IPAK (TO-251) type C package information .................................... 23|
||4.8|D²PAK and DPAK packing information ........................................... 25|
|**5**|**Revision history ............................................................................ 28**||



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**Electrical ratings** 

## **1 Electrical ratings** 

**Table 2: Absolute maximum ratings** 

|**Symbol**|**Parameter**|**Value**|**Unit**|
|---|---|---|---|
|VGS|Gate-source voltage|±25|V|
|ID|Drain current (continuous) at Tcase= 25 °C|7.5|A|
||Drain current (continuous) at Tcase= 100 °C|4.9||
|IDM_(1)_|Drain current (pulsed)|30|A|
|PTOT|Total dissipation at Tcase= 25 °C|85|W|
|dv/dt_(2)_|Peak diode recoveryvoltage slope|15|V/ns|
|dv/dt_(3)_|MOSFET dv/dt ruggedness|50||
|Tstg|Storage temperature range|-55 to 150|°C|
|Tj|Operating junction temperature range|||



## **Notes:** 

(1)Pulse limited by safe operating area. 

(2) ISD ≤ 7.5 A, di/dt ≤ 400 A/μs; VDS peak < V(BR)DSS, VDD = 400 V 

- (3) VDS ≤ 480 V. 

**Table 3: Thermal data** 

||||**Value**|**Value**||**Unit**|
|---|---|---|---|---|---|---|
|**Symbol**|**Parameter**|**D2PAK**|**DPAK**|**TO-220**|**IPAK**||
|Rthj-case|Thermal resistancejunction-case||1.47|||°C/W|
|Rthj-pcb|Thermal resistance junction-pcb_(1)_|30|50||||
|Rthj-amb|Thermal resistance junction-<br>ambient|||62.5|100||



## **Notes:** 

(1)When mounted on 1 inch² FR-4, 2 Oz copper board. 

**Table 4: Avalanche characteristics** 

|**Symbol**|**Parameter**|**Value**|**Unit**|
|---|---|---|---|
|IAR_(1)_|Avalanche current, repetitive or not repetitive|1.5|A|
|EAS_(2)_|Singlepulse avalanche energy|110|mJ|



## **Notes:** 

(1) Pulse width limited by Tjmax. 

(2) Starting Tj = 25 °C, ID = IAR, VDD = 50 V. 

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**Electrical characteristics** 

## **2 Electrical characteristics** 

(Tcase = 25 °C unless otherwise specified) 

**Table 5: Static** 

|**Symbol**|**Parameter**|**Test conditions**|**Min.**|**Typ.**|**Max.**|**Unit**|
|---|---|---|---|---|---|---|
|V(BR)DSS|Drain-source breakdown<br>voltage|VGS= 0 V, ID= 1 mA|600|||V|
|IDSS|Zero gate voltage drain<br>current|VGS= 0 V, VDS= 600 V|||1|µA|
|||VGS= 0 V, VDS= 600 V,<br>Tcase= 125 °C_(1)_|||100||
|IGSS|Gate-body leakage<br>current|VDS= 0 V, VGS= ±25 V|||±10|µA|
|VGS(th)|Gate threshold voltage|VDS= VGS, ID= 250µA|2|3|4|V|
|RDS(on)|Static drain-source on-<br>resistance|VGS= 10 V, ID= 3 A||0.55|0.60|Ω|



## **Notes:** 

(1)Defined by design, not subject to production test. 

**Table 6: Dynamic** 

|**Symbol**|**Parameter**|**Test conditions**|**Min.**|**Typ.**|**Max.**|**Unit**|
|---|---|---|---|---|---|---|
|Ciss|Input capacitance|VDS= 100 V, f = 1 MHz,<br>VGS= 0 V|-|400|-|pF|
|Coss|Output capacitance||-|22|-||
|Crss|Reverse transfer<br>capacitance||-|0.84|-||
|Coss<br>eq._(1)_|Equivalent output<br>capacitance|VDS= 0 to 480 V, VGS= 0 V|-|83|-|pF|
|RG|Intrinsicgate resistance|f = 1 MHz, ID= 0 A|-|6.4|-|Ω|
|Qg|Totalgate charge|VDD= 480 V, ID= 7.5 A,<br>VGS= 0 to 10 V (see_Figure 17:_<br>_"Test circuit for gate charge_<br>_behavior"_)|-|13.5|-|nC|
|Qgs|Gate-source charge||-|2.1|-||
|Qgd|Gate-drain charge||-|7.2|-||



## **Notes:** 

(1) Coss eq. is defined as a constant equivalent capacitance giving the same charging time as Coss when VDS increases from 0 to 80% VDSS. 

**Table 7: Switching times** 

|**Symbol**|**Parameter**|**Test conditions**|**Min.**|**Typ.**|**Max.**|**Unit**|
|---|---|---|---|---|---|---|
|td(on)|Turn-on delaytime|VDD= 300 V, ID= 3.75 A<br>RG= 4.7 Ω, VGS= 10 V (see<br>_Figure 16: "Test circuit for_<br>_resistive load switching times"_<br>and_Figure 21: "Switching time_<br>_waveform"_)|-|8.8|-|ns|
|tr|Rise time||-|8|-||
|td(off)|Turn-off delaytime||-|32.5|-||
|tf|Fall time||-|13.2|-||



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**Electrical characteristics** 

**Table 8: Source-drain diode** 

|**Symbol**|**Parameter**|**Test conditions**|**Min.**|**Typ.**|**Max.**|**Unit**|
|---|---|---|---|---|---|---|
|ISD|Source-drain current||-||7.5|A|
|ISDM_(1)_|Source-drain current<br>(pulsed)||-||30|A|
|VSD_(2)_|Forward on voltage|VGS= 0 V, ISD= 7.5 A|-||1.6|V|
|trr|Reverse recoverytime|ISD= 7.5  A, di/dt = 100 A/µs,<br>VDD= 60 V (see_Figure 18:_<br>_"Test circuit for inductive load_<br>_switching and diode recovery_<br>_times"_)|-|270||ns|
|Qrr|Reverse recoverycharge||-|2||µC|
|IRRM|Reverse recovery current||-|14.4||A|
|trr|Reverse recoverytime|ISD= 7.5 A, di/dt = 100 A/µs,<br>VDD= 60 V, Tj= 150 °C (see<br>_Figure 18: "Test circuit for_<br>_inductive load switching and_<br>_diode recovery times"_)|-|376||ns|
|Qrr|Reverse recoverycharge||-|2.8||µC|
|IRRM|Reverse recovery current||-|15||A|



## **Notes:** 

(1) Pulse width is limited by safe operating area. 

(2) Pulse test: pulse duration = 300 µs, duty cycle 1.5%. 

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**Electrical characteristics** 

## **2.1 Electrical characteristics (curves)** 

**Figure 2: Safe operating area for DPAK and IPAK** 

**Figure 3: Thermal impedance for DPAK and IPAK** 

**Figure 5: Thermal impedance for D[[2]] PAK and TO-220** 

**==> picture [471 x 424] intentionally omitted <==**

**----- Start of picture text -----**<br>
Figure 4: Safe operating area for D [2] PAK and TO-220  Figure 5: Thermal impedance for D [[2]] PAK and TO-220<br>ID AM15834¥1 CG20930<br>K<br>(A) beta<br>δ = 0.5<br>NTS N NON x<br>\ Neo<br>10 i Vs x Ny Nu NyN<br>ee SN x s δ = 0.2 Y<br>&CaSRS)Fy SCNHENESYaanNONN 10ys δ = 0.1<br>1 ofNS RZ NolsNEN ‘ 100yus 10 [-1]<br>SxYN Zδ = tZ δ = tthth  = k R = k pp / /  Ƭ  Ƭ<br>Tj=150°C in Ims SG, δ = 0.05 thj-C<br>0.1 Tc=25°C Ny] 10ms δ = 0.02 7 1<br>Single aN SINGLE PULSEδ = 0.01 A tt pp ƬƬ<br>pulse<br>0.01 10 [-2]<br>0.1 1 10 100 Vps(V)} 10 [-5] 10 [-4] 10 [-3] 10 [-2] 10 [-1] tp(s)<br>Figure 6: Output characteristics  Figure 7: Transfer characteristics<br>AM15823v1 AM15824v1<br>ID ID(A)<br>(A) VGS=7, 8, 9, 10V VDS=18V<br>14 14<br>6V<br>12 12<br>10 10<br>8 8<br>6 6<br>5V<br>4 4<br>2 2<br>4V<br>0 0<br>0 5 10 15 20 VDS(V) 0 2 4 6 8 10 VGS(V)<br>AW<br>6/29 DocID024710 Rev 3<br>**----- End of picture text -----**<br>


**Electrical characteristics** 

## **STB10N60M2, STD10N60M2, STP10N60M2, STU10N60M2** 

**Figure 8: Gate charge vs gate-source voltage** 

**Figure 9: Static drain-source on-resistance** 

**==> picture [196 x 167] intentionally omitted <==**

**----- Start of picture text -----**<br>
AM15825v1<br>VGS VDS<br>(V)<br>(V)<br>12 VDS VDD=480V<br>ID=7.5A 500<br>10<br>400<br>8<br>300<br>6<br>200<br>4<br>100<br>2<br>0 J\ 0<br>0 2 4 6 8 10 12 Qg(nC)<br>**----- End of picture text -----**<br>


**Figure 10: Capacitance variations** 

**Figure 11: Normalized gate threshold voltage vs temperature** 

**==> picture [186 x 162] intentionally omitted <==**

**----- Start of picture text -----**<br>
VGS(th)<br>(norm)<br>ID=250 µA<br>1.1<br>1.0<br>0.9<br>0.8<br>0.7<br>-50 -25 0 25 50 75 100 125 TJ(°C)<br>**----- End of picture text -----**<br>


**Figure 12: Normalized on-resistance vs temperature** 

**Figure 13: Normalized V(BR)DSS vs temperature** 

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**Electrical characteristics** 

**Figure 14: Source-drain diode forward characteristics** 

**==> picture [208 x 175] intentionally omitted <==**

**----- Start of picture text -----**<br>
AM15830v1<br>VSD(V)<br>1.4<br>1.2<br>TJ=-50°C<br>1<br>0.8<br>0.6 TJ=25°C<br>TJ=150°C<br>0.4<br>0.2<br>0<br>0 1 2 3 4 5 6 7 ISD(A)<br>**----- End of picture text -----**<br>


**Figure 15: Output capacitance stored energy** 

**==> picture [176 x 159] intentionally omitted <==**

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**Test circuits** 

## **3 Test circuits** 

**==> picture [416 x 572] intentionally omitted <==**

**----- Start of picture text -----**<br>
Figure 16: Test circuit for resistive load  Figure 17: Test circuit for gate charge<br>switching times  behavior<br>Figure 18: Test circuit for inductive load<br>switching and diode recovery times  Figure 19: Unclamped inductive load test<br>circuit<br>Figure 20: Unclamped inductive waveform  Figure 21: Switching time waveform<br>**----- End of picture text -----**<br>


**==> picture [21 x 8] intentionally omitted <==**

**----- Start of picture text -----**<br>
9/29<br>**----- End of picture text -----**<br>


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**Package information** 

## **4 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. 

## **4.1 D²PAK (TO-263) type A package information** 

**Figure 22: D²PAK (TO-263) type A package outline** 

**==> picture [408 x 360] intentionally omitted <==**

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**Package information** 

## **STB10N60M2, STD10N60M2, STP10N60M2, STU10N60M2** 

**Table 9: D²PAK (TO-263) type A package mechanical data** 

|**Dim.**||**mm**||
|---|---|---|---|
||**Min.**|**Typ.**|**Max.**|
|A|4.40||4.60|
|A1|0.03||0.23|
|b|0.70||0.93|
|b2|1.14||1.70|
|c|0.45||0.60|
|c2|1.23||1.36|
|D|8.95||9.35|
|D1|7.50|7.75|8.00|
|D2|1.10|1.30|1.50|
|E|10.00||10.40|
|E1|8.50|8.70|8.90|
|E2|6.85|7.05|7.25|
|e||2.54||
|e1|4.88||5.28|
|H|15.00||15.85|
|J1|2.49||2.69|
|L|2.29||2.79|
|L1|1.27||1.40|
|L2|1.30||1.75|
|R||0.40||
|V2|0°||8°|



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**Package information** 

**Figure 23: D²PAK (TO-263) type A recommended footprint (dimensions are in mm)** 

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**Package information** 

## **STB10N60M2, STD10N60M2, STP10N60M2, STU10N60M2** 

## **4.2 DPAK (TO-252) type A package information** 

**Figure 24: DPAK (TO-252) type A package outline** 

**==> picture [408 x 315] intentionally omitted <==**

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**Package information STB10N60M2, STD10N60M2, STP10N60M2, STU10N60M2** 

|**formation**|**STB10N60M2, STD10N60M2, STP10N60M2,**<br>**STU10N60M2**|**STB10N60M2, STD10N60M2, STP10N60M2,**<br>**STU10N60M2**|**STB10N60M2, STD10N60M2, STP10N60M2,**<br>**STU10N60M2**|
|---|---|---|---|
||**Table 10: DPAK(TO-252) type A mechanical data**|||
|**Dim.**||**mm**||
||**Min.**|**Typ.**|**Max.**|
|A|2.20||2.40|
|A1|0.90||1.10|
|A2|0.03||0.23|
|b|0.64||0.90|
|b4|5.20||5.40|
|c|0.45||0.60|
|c2|0.48||0.60|
|D|6.00||6.20|
|D1|4.95|5.10|5.25|
|E|6.40||6.60|
|E1|4.60|4.70|4.80|
|e|2.16|2.28|2.40|
|e1|4.40||4.60|
|H|9.35||10.10|
|L|1.00||1.50|
|(L1)|2.60|2.80|3.00|
|L2|0.65|0.80|0.95|
|L4|0.60||1.00|
|R||0.20||
|V2|0°||8°|



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**Package information** 

## **STB10N60M2, STD10N60M2, STP10N60M2, STU10N60M2** 

## **4.3 DPAK (TO-252) type C package information** 

**Figure 25: DPAK (TO-252) type C package outline** 

**==> picture [408 x 383] intentionally omitted <==**

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**Package information STB10N60M2, STD10N60M2, STP10N60M2, STU10N60M2** 

**Table 11: DPAK (TO-252) type C mechanical data** 

|**Dim.**||**mm**||
|---|---|---|---|
||**Min.**|**Typ.**|**Max.**|
|A|2.20|2.30|2.38|
|A1|0.90|1.01|1.10|
|A2|0.00||0.10|
|b|0.72||0.85|
|b4|5.13|5.33|5.46|
|c|0.47||0.60|
|c2|0.47||0.60|
|D|6.00|6.10|6.20|
|D1|5.25|||
|E|6.50|6.60|6.70|
|E1|4.70|||
|e|2.186|2.286|2.386|
|H|9.80|10.10|10.40|
|L|1.40|1.50|1.70|
|L1||2.90 REF||
|L2|0.90||1.25|
|L3||0.51 BSC||
|L4|0.60|0.80|1.00|
|L6||1.80 BSC||
|θ1|5°|7°|9°|
|θ2|5°|7°|9°|
|V2|0°||8°|



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**Package information** 

## **4.4 DPAK (TO-252) type E package information** 

**Figure 26: DPAK (TO-252) type E package outline** 

**==> picture [407 x 552] intentionally omitted <==**

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**Package information STB10N60M2, STD10N60M2, STP10N60M2, STU10N60M2** 

|**formation**|**STB10N60M2, STD10N60M2, STP10N60M2,**<br>**STU10N60M2**|**STB10N60M2, STD10N60M2, STP10N60M2,**<br>**STU10N60M2**|**STB10N60M2, STD10N60M2, STP10N60M2,**<br>**STU10N60M2**|
|---|---|---|---|
||**Table 12: DPAK(TO-252) type E mechanical data**|||
|**Dim.**||**mm**||
||**Min.**|**Typ.**|**Max.**|
|A|2.18||2.39|
|A2|||0.13|
|b|0.65||0.884|
|b4|4.95||5.46|
|c|0.46||0.61|
|c2|0.46||0.60|
|D|5.97||6.22|
|D1|5.21|||
|E|6.35||6.73|
|E1|4.32|||
|e||2.286||
|e1||4.572||
|H|9.94||10.34|
|L|1.50||1.78|
|L1||2.74||
|L2|0.89||1.27|
|L4|||1.02|



**Figure 27: DPAK (TO-252) recommended footprint (dimensions are in mm)** 

**==> picture [407 x 273] intentionally omitted <==**

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**Package information** 

## **STB10N60M2, STD10N60M2, STP10N60M2, STU10N60M2** 

## **4.5 TO-220 type A package information** 

**Figure 28: TO-220 type A package outline** 

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**Package information STB10N60M2, STD10N60M2, STP10N60M2, STU10N60M2** 

**Table 13: TO-220 type A mechanical data** 

|**Dim.**||**mm**||
|---|---|---|---|
||**Min.**|**Typ.**|**Max.**|
|A|4.40||4.60|
|b|0.61||0.88|
|b1|1.14||1.55|
|c|0.48||0.70|
|D|15.25||15.75|
|D1||1.27||
|E|10.00||10.40|
|e|2.40||2.70|
|e1|4.95||5.15|
|F|1.23||1.32|
|H1|6.20||6.60|
|J1|2.40||2.72|
|L|13.00||14.00|
|L1|3.50||3.93|
|L20||16.40||
|L30||28.90||
|øP|3.75||3.85|
|Q|2.65||2.95|



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**STB10N60M2, STD10N60M2, STP10N60M2, STU10N60M2** 

**Package information** 

## **4.6 IPAK (TO-251) type A package information** 

**Figure 29: IPAK (TO-251) type A package outline** 

**==> picture [406 x 462] intentionally omitted <==**

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**Package information STB10N60M2, STD10N60M2, STP10N60M2, STU10N60M2** 

||||**STU10N60M2**|
|---|---|---|---|
|**Table 14: IPAK(TO-251) type Apackage mechanical**|||**data**|
|**Dim.**||**mm**||
||**Min.**|**Typ.**|**Max.**|
|A|2.20||2.40|
|A1|0.90||1.10|
|b|0.64||0.90|
|b2|||0.95|
|b4|5.20||5.40|
|B5||0.30||
|c|0.45||0.60|
|c2|0.48||0.60|
|D|6.00||6.20|
|E|6.40||6.60|
|e||2.28||
|e1|4.40||4.60|
|H||16.10||
|L|9.00||9.40|
|L1|0.80||1.20|
|L2||0.80|1.00|
|V1||10°||



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**Package information** 

## **STB10N60M2, STD10N60M2, STP10N60M2, STU10N60M2** 

## **4.7 IPAK (TO-251) type C package information** 

**Figure 30: IPAK (TO-251) type C package outline** 

**==> picture [406 x 369] intentionally omitted <==**

**----- Start of picture text -----**<br>
0068771_IK_typeC_rev14<br>**----- End of picture text -----**<br>


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**Table 15: IPAK (TO-251) type C package mechanical data** 

|**Dim.**||**mm**||
|---|---|---|---|
||**Min.**|**Typ.**|**Max.**|
|A|2.20|2.30|2.35|
|A1|0.90|1.00|1.10|
|b|0.66||0.79|
|b2|||0.90|
|b4|5.23|5.33|5.43|
|c|0.46||0.59|
|c2|0.46||0.59|
|D|6.00|6.10|6.20|
|D1|5.20|5.37|5.55|
|E|6.50|6.60|6.70|
|E1|4.60|4.78|4.95|
|e|2.20|2.25|2.30|
|e1|4.40|4.50|4.60|
|H|16.18|16.48|16.78|
|L|9.00|9.30|9.60|
|L1|0.80|1.00|1.20|
|L2|0.90|1.08|1.25|
|θ1|3°|5°|7°|
|θ2|1°|3°|5°|



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**Package information** 

## **4.8 D²PAK and DPAK packing information** 

**Figure 31: Tape outline** 

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**Figure 32: Reel outline** 

**Table 16: D²PAK tape and reel mechanical data** 

|**Tape**|**Tape**|**Tape**|**Reel**|**Reel**|**Reel**|
|---|---|---|---|---|---|
|**Dim.**|**mm**||**Dim.**|**mm**||
||**Min.**|**Max.**||**Min.**|**Max.**|
|A0|10.5|10.7|A||330|
|B0|15.7|15.9|B|1.5||
|D|1.5|1.6|C|12.8|13.2|
|D1|1.59|1.61|D|20.2||
|E|1.65|1.85|G|24.4|26.4|
|F|11.4|11.6|N|100||
|K0|4.8|5.0|T||30.4|
|P0|3.9|4.1||||
|P1|11.9|12.1|Basequantity||1000|
|P2|1.9|2.1|Bulkquantity||1000|
|R|50|||||
|T|0.25|0.35||||
|W|23.7|24.3||||



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## **STB10N60M2, STD10N60M2, STP10N60M2, STU10N60M2** 

**Table 17: DPAK tape and reel mechanical data** 

||**Tape**|||**Reel**||
|---|---|---|---|---|---|
|**Dim.**|**m**|**m**|**Dim.**|**m**|**m**|
||**Min.**|**Max.**||**Min.**|**Max.**|
|A0|6.8|7|A||330|
|B0|10.4|10.6|B|1.5||
|B1||12.1|C|12.8|13.2|
|D|1.5|1.6|D|20.2||
|D1|1.5||G|16.4|18.4|
|E|1.65|1.85|N|50||
|F|7.4|7.6|T||22.4|
|K0|2.55|2.75||||
|P0|3.9|4.1|Baseqty.||2500|
|P1|7.9|8.1|Bulkqty.||2500|
|P2|1.9|2.1||||
|R|40|||||
|T|0.25|0.35||||
|W|15.7|16.3||||



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**Revision history** 

## **5 Revision history** 

**Table 18: Document revision history** 

|**Date**|**Revision**|**Changes**|
|---|---|---|
|29-May-2013|1|First release.|
|06-Dec-2013|2|– Added: D2PAK package<br>– Modified: title and RDS(on)values in cover page<br>-Modified: RDS(on)values in_Table 5_<br>– Modified: RGvalue in_Table 6_<br>– Modified:_Figure 9_and IDvalue in_Figure 12_<br>– Added:_Table 9_,_13_,_Figure 22_and_23_<br>– Updated:_Table 10_,_11_,_Figure 24_,_25_and_26_<br>– Minor text changes|
|13-Mar-2017|3|Updated the title and the description in cover page.<br>Updated_Table 4: "Avalanche characteristics"_.<br>Updated_Section 4.2: "DPAK (TO-252) type A package information"_.<br>Added_Section 4.4: "DPAK (TO-252) type E package information"_and<br>_Section 4.7: "IPAK (TO-251) type C package information"_.<br>Minor text changes.|



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## **STB10N60M2, STD10N60M2, STP10N60M2, STU10N60M2** 

## **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. 

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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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