SMT10T01AHT7Q 产品图

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SMT10T01AHT7Q

中晶新源 SineSemi核心代理商

中低压 MOSFET车规TO263-7L
规格书下载

参数规格

封装
TO263-7L
结构
N
漏源电压 VDS
100 V
漏极电流 ID
324 A
导通电阻 RDS(ON)@10V 最大
1.6 mΩ
车规 (Y/N)
Y
阈值电压 VGS(th) 典型
3 V
导通电阻 RDS(ON)@10V 典型
1.3 mΩ
栅源电压 VGS 最大
±20 V
结温 Tj
175 °C
雪崩能量 EAS 最大
2016 mJ
输入电容 Ciss 典型
9660 pF
输出电容 Coss 典型
3476 pF
反向传输电容 Crss 典型
48 pF
总栅极电荷 Qg 典型
140 nC
ESD
No
最小包装量
800 pcs
最小订购量
4000 pcs
应用推荐-马达驱动
Y
应用推荐-高频电源
Y
应用推荐-通用开关
Y

封装与电路符号

SMT10T01AHT7Q 封装外形、引脚配置与电路符号图
封装外形 · 引脚配置 · 电路符号(源自中晶新源官方 datasheet)

在线规格书

以下内容整理自原厂规格书,实际参数以原厂正式文件为准。

SMT10T01AHT7Q

100V N-Channel Power MOSFET

Sinesemi Automotive MOSFET — AEC-Q101 Qualified

Product Summary
V_DS R_DS(ON), max I_D, max
100 V 1.6 mΩ @ V_GS = 10V 324 A

TO263-7L

Features
  • Low On-Resistance
  • Excellent FoM (figure of merit)
  • 100% ∆VDS & UIS & Rg Tested
  • RoHS compliant, HALOGEN FREE
Applications
  • General Automotive Applications
Mechanical Data
  • Green Molding Compound
  • Moisture Sensitivity: Level 1 per J-STD-020
  • UL Flammability Classification Rating 94V-0
Ordering Information
Orderable Part Number Package Type Device Marking Form Quantity (pcs)
SMT10T01AHT7Q TO263-7L 10T01AHQ 13" Tape&Reel 800
Maximum Ratings (@ T_A = 25°C, unless otherwise specified.)
Parameter Symbol Value Unit
Drain - Source Voltage V_DS 100 V
Gate - Source Voltage V_GS ±20 V
Continuous Drain Current (V_GS = 10V) ^(1) I_D T_A = 25°C: 324 A
T_A = 100°C: 229 A
Pulsed Drain Current ^(2) I_DM 1295 A
Single Pulse Avalanche Energy ^(3) E_AS 2016 mJ
Single Pulse Avalanche Current (L = 0.1mH) I_AS 117 A
Power Dissipation ^(4) P_D T_A = 25°C: 326 W
T_A = 100°C: 163 W
Junction & Storage Temperature Range T_J, T_STG -55 ~ +175 °C
Thermal Characteristics
Parameter Symbol Typ Max Unit
Thermal Resistance, Junction-to-Ambient ^(4) R_θJA 30 38 °C/W
Thermal Resistance, Junction-to-Case ^(5) R_θJC 0.35 0.46 °C/W

Electrical Characteristics (@ T_J = 25°C, unless otherwise specified.)

Off Characteristics ^(7)
Parameter Symbol Test Condition Min Typ Max Unit
Drain-Source Breakdown Voltage V_(BR)DSS V_GS = 0V, I_D = 250µA 100 V
Zero Gate Voltage Drain Current I_DSS V_DS = 100V, V_GS = 0V 1.0 µA
T_J = 125°C 100 µA
Gate-Source Leakage Current I_GSS V_GS = ±20V, V_DS = 0V ±100 nA
On Characteristics ^(7)
Parameter Symbol Test Condition Min Typ Max Unit
Gate Threshold Voltage V_GS(th) V_DS = V_GS, I_D = 250µA 2.0 3.0 4.0 V
Static Drain-Source On-Resistance R_DS(on) V_GS = 10V, I_D = 20A 1.3 1.6
Forward Transconductance g_fs V_DS = 5.0V, I_D = 20A 78 S
Diodes Forward Voltage V_SD I_S = 2.0A, V_GS = 0V 0.7 1.2 V
Dynamic Characteristics ^(7)
Parameter Symbol Test Condition Min Typ Max Unit
Input Capacitance C_iss V_DS = 50V, V_GS = 0V, f = 1MHz 9660 pF
Output Capacitance C_oss 3476 pF
Reverse Transfer Capacitance C_rss 48 pF
Gate Resistance R_g V_GS = 0V, V_DS = 0V, f = 1MHz 2.0 Ω
Switching Characteristics ^(7)
Parameter Symbol Test Condition Min Typ Max Unit
Turn-On Delay Time t_d(on) V_GS = 10V, V_DS = 50V 25 ns
Rise Time t_r I_D = 20A, R_GEN = 3.0Ω 42 ns
Turn-Off Delay Time t_d(off) 87 ns
Fall Time t_f 63 ns
Gate Charge Characteristics ^(7)
Parameter Symbol Test Condition Min Typ Max Unit
Total Gate Charge (V_GS = 10V) Q_g V_DS = 50V, I_D = 20A 140 nC
Total Gate Charge (V_GS = 6.0V) Q_g 88 nC
Gate-Source Charge Q_gs V_GS = 10V 38 nC
Gate-Drain Charge Q_gd 27 nC
Gate Plateau Voltage V_plateau 4.2 V
Drain-Source Diode Characteristics ^(7)
Parameter Symbol Test Condition Min Typ Max Unit
Body Diode Reverse Recovery Time t_rr I_S = 20A, di/dt = 100A/µs 105 ns
Body Diode Reverse Recovery Charge Q_rr T_J = 25°C 394 nC
Diode Forward Current I_S T_A = 25°C 204 A

Notes:

  1. This current is chip limited, which is calculated based on RθJC.
  2. This current is calculated on single pulse with 10µs Pulse & Duty Cycle = 1%.
  3. Defined by design, not subject to production test. E_AS condition, T_J=25°C, V_DS=50V, V_GS=10V, L=1.0mH.
  4. This device is tested without external heat sink.
  5. Thermal resistance from junction to soldering point (on the exposed drain pad).
  6. Short duration pulse test used to minimize self-heating effect.
  7. Defined by design; not subject to production.