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KRF7509

Guangdong Kexin Industrial
Part Number KRF7509
Manufacturer Guangdong Kexin Industrial
Description HEXFET Power MOSFET
Published Aug 20, 2009
Detailed Description SMD Type HEXFET Power MOSFET KRF7509 IC IC Features Generation V Technology Ultra Low On-Resistance Dual N and P Chann...
Datasheet PDF File KRF7509 PDF File

KRF7509
KRF7509


Overview
SMD Type HEXFET Power MOSFET KRF7509 IC IC Features Generation V Technology Ultra Low On-Resistance Dual N and P Channel MOSFET Very Small SOIC Package Low Profile (<1.
1mm) Available in Tape & Reel Fast Switching Absolute Maximum Ratings Ta = 25 Parameter Drain-Source Voltage Continuous Drain Current, VGS @ 10V @ Ta = 25 Continuous Drain Current, VGS @ 10V @ Ta = 70 Pulsed Drain Current *1 Power Dissipation Power Dissipation Linear Derating Factor Gate-to-Source Voltage Gate-to-Source Voltage Single Pulse tp<10 S Peak Diode Recovery dv/dt *2 Junction and Storage Temperature Range Maximum Junction-to-Ambient *3 VGS VGSM dv/dt TJ, TSTG R JA Symbol VDS ID ID IDM N-Channel 30 2.
7 2.
1 21 1.
25 0.
8 10 20 30 5.
0 P-Channel -30 -2 -1.
6 -16 Unit V A @Ta= 25 @Ta= 70 PD W m W/ V V/ns -55 to + 150 100 /W *1 Repetitive rating; pulse width limited by max.
junction temperature.
*2 N-Channel ISD P-Channel ISD 1.
7A, di/dt -1.
2A, di/dt 120A/ 160A/ s, VDD s, VDD 10sec.
V(BR)DSS, TJ V(BR)DSS, TJ 150 150 *3 Surface mounted on FR-4 board, t www.
kexin.
com.
cn 1 SMD Type KRF7509 Electrical Characteristics TJ = 25 Parameter Drain-to-Source Breakdown Voltage Breakdown Voltage Temp.
Coefficient Static Drain-to-Source On-Resistance Static Drain-to-Source On-Resistance Gate Threshold Voltage Forward Transconductance Symbol V(BR)DSS V(BR)DSS/ IC IC Testconditons VGS = 0V, ID = 250 A VGS = 0V, ID = -250 A ID = 1mA,Reference to 25 ID = -1mA,Reference to 25 VGS =10V, ID = 1.
7A*1 VGS = 4.
5V, ID = 0.
85A*1 VGS = -10V, ID = -1.
2A*1 VGS = -4.
5V, ID = -0.
6A*1 VDS = VGS, ID = 250 A VDS = VGS, ID = -250 A VDS = 10V, ID = 0.
85A*1 VDS = -10V, ID = -0.
6A*1 VDS = 24V, VGS = 0V VDS = -24V, VGS = 0V VDS = 24V, VGS = 0V, TJ = 125 VDS = -24V, VGS = 0V, TJ = 125 N-Ch P-Ch N-Ch P-Ch N-Ch P-Ch N-Ch P-Ch N-Ch P-Ch N-Ch P-Ch N-Ch P-Ch N-Ch P-Ch N-Ch P-Ch N-Ch P-Channel ID = -1.
2A,VDS = -24V,VGS = -10V N-Channel VDD = 15V,ID = 1.
7A,RG = 6.
1 RD=8.
7 P-Channel VDD = -15V,ID = -1.
2A,RG = 6.
2 RD=12 P-Ch N-Ch ...



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