# Bipolar (BJT) Single Transistor, NPN, 80 V, 500 mA, 200 mW, SOT-323, Surface Mount

![Product image](https://novapart.co/image/farnell:3943305/)

**URL**: https://novapart.co/products/MMSTA06Q-7-F/bipolar-bjt-single-transistor-npn-80-v-500-ma-200
**SKU**: MMSTA06Q-7-F
**Manufacturer**: DIODES INC.
**Price**: €0.0360
**Stock**: 500+
**Lead Time**: 106 days (indicative)

## Specifications

| Parameter | Value |
|---|---|
| Msl | MSL 1 - Unlimited |
| Svhc | No SVHC (25-Jun-2025) |
| No. Of Pins | 3Pins |
| Product Range | - |
| Qualification | AEC-Q101 |
| Power Dissipation | 200mW |
| Transistor Mounting | Surface Mount |
| Transistor Polarity | NPN |
| Transition Frequency | 100MHz |
| Transistor Case Style | SOT-323 |
| Dc Current Gain Hfe Min | 100hFE |
| Operating Temperature Max | 150°C |
| Continuous Collector Current | 500mA |
| Collector Emitter Voltage Max | 80V |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:3943305/)

**MMSTA06Q** — **80V NPN SMALL SIGNAL TRANSISTOR IN SOT323** 

## **Description** 

This Bipolar Junction Transistor (BJT) is designed to meet the stringent requirements of automotive applications. 

## **Features** 

- BVCEO > 80V 

- IC = 500mA Collector Current 

## **Mechanical Data** 

   - Case: SOT323 

   - Case Material: Molded Plastic. “Green” Molding Compound. UL Flammability Rating 94V-0 

   - Moisture Sensitivity: Level 1 per J-STD-020 

   - Terminals: Finish - Matte Tin Plated Leads. Solderable per MIL-STD-202, Method 208 

   - Weight: 0.006 grams (Approximate) 

- Epitaxial Planar Die Construction 

- Ultra-Small Surface Mount Package 

- Complementary PNP Type: MMSTA56Q 

- **Totally Lead-Free & Fully RoHS Compliant (Notes 1 & 2)** 

- **Halogen and Antimony Free. “Green” Device (Note 3)** 

- **Qualified to AEC-Q101 Standards for High Reliability** 

- **PPAP Capable (Note 4)** 

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    SOT323  C<br>B<br>~ ©<br>E<br>Top View  Device Symbol  Pin-Out Top View<br>**----- End of picture text -----**<br>


## **Ordering Information** (Notes 4 & 5) 

|**Product**<br>**Compliance**<br>**Marking**<br>**Reel Size (inches)**<br>**Tape Width (mm)**<br>**Quantity per Reel**<br>MMSTA06Q-7-F<br>Automotive<br>K1G<br>7<br>8<br>3,000|**Product**<br>**Compliance**<br>**Marking**<br>**Reel Size (inches)**<br>**Tape Width (mm)**<br>**Quantity per Reel**<br>MMSTA06Q-7-F<br>Automotive<br>K1G<br>7<br>8<br>3,000|**Product**<br>**Compliance**<br>**Marking**<br>**Reel Size (inches)**<br>**Tape Width (mm)**<br>**Quantity per Reel**<br>MMSTA06Q-7-F<br>Automotive<br>K1G<br>7<br>8<br>3,000|**Product**<br>**Compliance**<br>**Marking**<br>**Reel Size (inches)**<br>**Tape Width (mm)**<br>**Quantity per Reel**<br>MMSTA06Q-7-F<br>Automotive<br>K1G<br>7<br>8<br>3,000|**Product**<br>**Compliance**<br>**Marking**<br>**Reel Size (inches)**<br>**Tape Width (mm)**<br>**Quantity per Reel**<br>MMSTA06Q-7-F<br>Automotive<br>K1G<br>7<br>8<br>3,000|**Product**<br>**Compliance**<br>**Marking**<br>**Reel Size (inches)**<br>**Tape Width (mm)**<br>**Quantity per Reel**<br>MMSTA06Q-7-F<br>Automotive<br>K1G<br>7<br>8<br>3,000|
|---|---|---|---|---|---|
|**Product**|**Compliance**|**Marking**|**Reel Size (inches)**|**Tape Width (mm)**|**Quantity per Reel**|
|MMSTA06Q-7-F|Automotive|K1G|7|8|3,000|



- Notes: 1. No purposely added lead. Fully EU Directive 2002/95/EC (RoHS) & 2011/65/EU (RoHS 2) compliant. 

   2. See http://www.diodes.com/quality/lead_free.html for more information about Diodes Incorporated’s definitions of Halogen- and Antimony-free, "Green" and Lead-free. 

   3. Halogen- and Antimony-free "Green” products are defined as those which contain <900ppm bromine, <900ppm chlorine (<1500ppm total Br + Cl) and <1000ppm antimony compounds. 

4. Automotive products are AEC-Q101 qualified and are PPAP capable. Refer to http://www.diodes.com/product_compliance_definitions.html. 

5. For packaging details, go to our website at http://www.diodes.com/products/packages.html. 

## **Marking Information** 

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**----- Start of picture text -----**<br>
    SOT323<br>K1G = Product Type Marking Code<br>YM = Date Code Marking<br>K1G Y or Y = Year (ex: D = 2016)<br>M or M = Month (ex: 9 = September)<br>Date Code Key<br>Year  2016  2017  2018  2019  2020  2021  2022  2023  2024  2025  2026<br>ee Code D  E  F  G  H  I  J  K  L  ee M  N<br>Month Jan Feb Mar Apr May Jun Jul Aug Sep Oct Nov Dec<br>ee Code 1  2  3 4  5 6 7  8 9 O N  D<br>YM<br>**----- End of picture text -----**<br>


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## **Absolute Maximum Ratings** (@TA = +25°C, unless otherwise specified.) 

|**Absolute Maximum Ratingsgss **(@TA = +25°C, unless otherwise specified.)A = +25°C, unless otherwise specified.)= +25°C, unless otherwise specified.)|(@TA = +25°C, unless otherwise specified.)A = +25°C, unless otherwise specified.)= +25°C, unless otherwise specified.)|||
|---|---|---|---|
|**Characteristic**|**Symbol**|**Value**|**Unit**|
|Collector-BaseVoltage|VCBO|80|V|
|Collector-Emitter Voltage|VCEO|80|V|
|Emitter-BaseVoltage|VEBO|4|V|
|Collector Current|IC|500|mA|



## **Thermal Characteristics** (@TA = +25°C, unless otherwise specified.) 

|**Thermal Characteristics **(@TA = +25°C, unless otherwise specified.)A = +25°C, unless otherwise specified.)= +25°C, unless otherwise specified.)|**Thermal Characteristics **(@TA = +25°C, unless otherwise specified.)A = +25°C, unless otherwise specified.)= +25°C, unless otherwise specified.)|**Thermal Characteristics **(@TA = +25°C, unless otherwise specified.)A = +25°C, unless otherwise specified.)= +25°C, unless otherwise specified.)|**Thermal Characteristics **(@TA = +25°C, unless otherwise specified.)A = +25°C, unless otherwise specified.)= +25°C, unless otherwise specified.)|
|---|---|---|---|
|||||
|**Characteristic**|**Symbol**|**Value**|**Unit**|
|Power Dissipation(Note 6)|PD|200|mW|
|Thermal Resistance, JunctiontoAmbient (Note 6)|RθJA|625|°C/W|
|Operatingand Storage Temperature Range|TJ,TSTG|-55 to +150|°C|



## **ESD Ratings** (Note 7) 

|**ESD Ratingsgss **(Note 7)|**ESD Ratingsgss **(Note 7)|**ESD Ratingsgss **(Note 7)|**ESD Ratingsgss **(Note 7)|**ESD Ratingsgss **(Note 7)|
|---|---|---|---|---|
||||||
|**Characteristic**|**Symbol**|**Value**|**Unit**|**JEDEC Class**|
|Electrostatic Discharge - Human BodyModel|ESD HBM|4,000|V|3A|
|Electrostatic Discharge - Machine Model|ESD MM|400|V|C|



Notes: 6. For a device mounted with the collector lead on minimum recommended pad layout 1oz copper that is on a single-sided 1.6mm FR-4 PCB; device is measured under still air conditions whilst operating in a steady-state. 

7. Refer to JEDEC specification JESD22-A114 and JESD22-A115. 

## **Thermal Characteristics and Derating Information** 

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**MMSTA06Q** 

**Electrical Characteristics** (@TA = +25°C, unless otherwise specified.) 

|**Electrical Characteristics **(@TA = +25°C, unless otherwise specified.)A = +25°C, unless otherwise specified.)= +25°C, unless otherwise specified.)|(@TA = +25°C, unless otherwise specified.)A = +25°C, unless otherwise specified.)= +25°C, unless otherwise specified.)|(@TA = +25°C, unless otherwise specified.)A = +25°C, unless otherwise specified.)= +25°C, unless otherwise specified.)||||
|---|---|---|---|---|---|
|**Characteristic**<br>~~ee~~|**Symbol**<br>~~ee~~|**Min**<br>~~ee~~|**Max**<br>~~ee~~|**Unit**<br>~~ee~~|**Test Condition**<br>~~ee~~|
|**OFFCHARACTERISTICS (Note 8)**<br>~~ee~~||||||
|Collector-Base Breakdown Voltage<br>~~ee~~|BVCBO<br>~~ee~~<br>~~a~~|80<br>~~ee~~<br>~~a~~|<br>~~ee~~<br>~~a~~|V<br>~~ee~~|IC= 100µA<br>~~ee~~|
|Collector-Emitter Breakdown Voltage<br>~~a~~|BVCEO<br>~~a~~<br>~~a~~|80<br>~~a~~<br>~~a~~|<br>~~a~~<br>~~a~~|V<br>~~a~~|IC= 1mA<br>~~a~~|
|Emitter-Base Breakdown Voltage<br>~~a~~|BVEBO<br>~~a~~<br>~~a~~|4<br>~~a~~<br>~~a~~|<br>~~a~~<br>~~a~~|V<br>~~a~~|IE= 100µA<br>~~a~~|
|Collector Base Cutoff Current<br>~~ee~~|ICBO<br>~~a~~<br>~~ee~~|<br>~~a ~~<br>~~ee~~|100<br> ~~a~~<br>~~ee~~|nA<br>~~ee~~|VCB= 80V, TA= +125°C<br>~~ee~~|
|CollectorCutoffCurrent<br>~~ee~~|ICES<br>~~ee~~|<br>~~ee~~<br>~~OO~~|100<br>~~ee~~<br>~~OO~~|nA<br>~~ee~~|VCE=80V<br>~~ee~~|
|**ON CHARACTERISTICS(Note 8)**<br>~~ee~~<br>~~LO~~<br>~~OO~~||||||
|DC Current Gain<br>~~LO~~|hFE<br>~~LO~~|100<br>~~LO~~<br>~~OO~~|<br>~~LO~~<br>~~OO~~|<br>~~LO~~|IC= 10mA, VCE= 1.0V<br>IC= 100mA,VCE= 1.0V<br>~~LO~~|
|Collector-EmitterSaturation Voltage<br>~~a~~|VCE(SAT)<br>~~a~~|<br>~~OO~~<br>~~a~~|0.25<br>~~OO~~<br>~~a~~|V<br>~~a~~|IC= 100mA,IB= 10mA<br>~~a~~|
|Base-EmitterSaturation Voltage<br>~~a~~|CE(SAT)<br>VBE(SAT)<br>~~a~~|<br>~~a~~|1.2<br>~~a~~|V<br>~~a~~|IC= 100mA,VCE= 1.0V<br>~~a~~|
|BE(SAT)<br>**SMALLSIGNALCHARACTERISTICS**<br>~~a~~<br>~~[LL~~||||||
|Current Gain-Bandwidth Product<br>~~[LL~~|fT<br>~~[LL~~|100<br>~~[LL~~|<br>~~[LL~~|MHz<br>~~[LL~~|VCE= 2.0V, IC= 10mA,<br>f = 100MHz<br>~~[LL~~|



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**MMSTA06Q** 

## **Typical Electrical Characteristics** (@TA = +25°C, unless otherwise specified.) 

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**----- Start of picture text -----**<br>
10 =e<br>ee a<br>1 4<br>——<br>————<br>0.1 aeSes=ee ee<br>EE<br>a<br>0.01 a ee<br>25 50 75 100 125<br>TA, AMBIENT TEMPERATURE  ( ° 篊 C )<br>Fig. 2  Typical Collector-Cutoff Current vs. Ambient Temperature<br>0.500<br>0.450 IC = 10<br>IB<br>0.400 ene TT THIN TT<br>0.350 a a |<br>0.300<br>TTA A= 25°C = 25 癈<br>0.250 ey ce<br>0.200 I TAT = 150A = 150°C 癈 Atl<br>| ee 8<br>0.150 a Nall<br>0.100<br>ET Aa<br>0.050<br>TA TA= -50°C = -50 癈<br>0 emai |||<br>1 10 100 1,000<br>IC, COLLECTOR CURRENT (mA)<br>, COLLECTOR-BASE CURRENT (nA)<br>ICBO<br>, COLLECTOR TO EMITTER<br>SATURATION VOLTAGE (V)<br>CE(SAT)<br>V<br>**----- End of picture text -----**<br>


Fig. 4  Collector Emitter Saturation Voltage vs. Collector Current 

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**----- Start of picture text -----**<br>
1.0<br>VCE = 5V<br>0.9 | a |<br>0.8<br>|<br>0.7 ENi ell<br>0.6<br>Mr<br>0.5<br>er TA<br>0.4<br>0.3 SHEa esESTElll<br>rH<br>0.2 LLL<br>0.1 a a lll<br>0.1 1 10 100<br>IC, COLLECTOR CURRENT (mA)<br>Fig. 6, Base Emitter Voltage vs. Collector Current<br>, BASE EMITTER VOLTAGE (V)<br>BE(ON)<br>V<br>**----- End of picture text -----**<br>


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2.0<br>1.8<br>aE a |<br>1.6 Ue a<br>1.4<br>a a |<br>1.2 IC = 30mA<br>1.0 cpp IC = 10mA beets<br>aime BU all<br>0.8<br>aT ene Re)<br>0.6 IC = 100mA<br>0.4 eal<br>IC = 1mA<br>0.2 a N<br>0 CthET<br>0.001 0.01 0.1 1 10 100<br>IB, BASE CURRENT (mA)<br>Fig. 3 Typical Collector Saturation Region<br>10,000 Eyerseer o) te<br>1,000 eo ef |<br>al ll<br>SS S<br>100<br>AN<br>SS a rae att<br>nN<br>10<br>||<br>1 TCO CCl<br>1 10 100 1,000<br>IC, COLLECTOR CURRENT (mA)<br>Fig. 5, DC Current Gain vs. Collector Current<br>1,000 ——————_—<br>—— ee e<br>100 eee e ell<br>——_——— ae<br>ee eal<br>10<br>eee ell<br>— eee<br>ee ee<br>FF<br>1 EE ETT<br>1 10<br>IC, COLLECTOR CURRENT (mA)<br>Fig. 7, Gain Bandwidth Product vs Collector Current<br>FE<br>, DC CURRENT GAIN<br>h<br>, COLLECTOR EMITTER VOLTAGE (V)<br>V<br>CE<br>T<br>, GAIN BANDWIDTH PRODUCT (MHz)<br>f<br>**----- End of picture text -----**<br>


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## **Package Outline Dimensions** 

Please see http://www.diodes.com/package-outlines.html for the latest version. 

**==> picture [292 x 243] intentionally omitted <==**

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D<br>A2<br>c a<br>A1 e L<br>b<br>E E1<br>hs<br>F e1<br>**----- End of picture text -----**<br>


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**----- Start of picture text -----**<br>
SOT323<br>on Dim  Min  Max  Typ<br>A1  0.00 0.10 0.05<br>A2  0.90 1.00 0.95<br>b  0.25 0.40 0.30<br>c  0.10 0.18 0.11<br>D  1.80 2.20 2.15<br>E  2.00 2.20 2.10<br>E1  1.15 1.35 1.30<br>e  0.650 BSC<br>e1  1.20 1.40 1.30<br>F  0.375 0.475 0.425<br>L  0.25 0.40 0.30<br>a 0° 8° --<br>All Dimensions in mm<br>**----- End of picture text -----**<br>


## **Suggested Pad Layout** 

Please see http://www.diodes.com/package-outlines.html for the latest version. 

**==> picture [353 x 152] intentionally omitted <==**

**----- Start of picture text -----**<br>
X<br>Y Value<br>Dimensions<br>(in mm)<br>C  0.650<br>G  1.300<br>Y1 G X  0.470<br>Y  0.600<br>- = Y1  2.500<br>C<br>iit<br>**----- End of picture text -----**<br>


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## **IMPORTANT NOTICE** 

DIODES INCORPORATED MAKES NO WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, WITH REGARDS TO THIS DOCUMENT, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE (AND THEIR EQUIVALENTS UNDER THE LAWS OF ANY JURISDICTION). Diodes Incorporated and its subsidiaries reserve the right to make modifications, enhancements, improvements, corrections or other changes without further notice to this document and any product described herein. Diodes Incorporated does not assume any liability arising out of the application or use of this document or any product described herein; neither does Diodes Incorporated convey any license under its patent or trademark rights, nor the rights of others.  Any Customer or user of this document or products described herein in such applications shall assume all risks of such use and will agree to hold Diodes Incorporated and all the companies whose products are represented on Diodes Incorporated website, harmless against all damages. Diodes Incorporated does not warrant or accept any liability whatsoever in respect of any products purchased through unauthorized sales channel. Should Customers purchase or use Diodes Incorporated products for any unintended or unauthorized application, Customers shall indemnify and hold Diodes Incorporated and its representatives harmless against all claims, damages, expenses, and attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized application. Products described herein may be covered by one or more United States, international or foreign patents pending. Product names and markings noted herein may also be covered by one or more United States, international or foreign trademarks. This document is written in English but may be translated into multiple languages for reference. Only the English version of this document is the final and determinative format released by Diodes Incorporated. 

## **LIFE SUPPORT** 

Diodes Incorporated products are specifically not authorized for use as critical components in life support devices or systems without the express written approval of the Chief Executive Officer of Diodes Incorporated. As used herein: 

- A.   Life support devices or systems are devices or systems which: 

   1. are intended to implant into the body, or 

   2. support or sustain life and whose failure to perform when properly used in accordance with instructions for use provided in the labeling can be reasonably expected to result in significant injury to the user. 

B.   A critical component is any component in a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or to affect its safety or effectiveness. 

Customers represent that they have all necessary expertise in the safety and regulatory ramifications of their life support devices or systems, and acknowledge and agree that they are solely responsible for all legal, regulatory and safety-related requirements concerning their products and any use of Diodes Incorporated products in such safety-critical, life support devices or systems, notwithstanding any devices- or systems-related information or support that may be provided by Diodes Incorporated.  Further, Customers must fully indemnify Diodes Incorporated and its representatives against any damages arising out of the use of Diodes Incorporated products in such safety-critical, life support devices or systems. 

Copyright © 2017, Diodes Incorporated 

**www.diodes.com** 

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---

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