Features: LINEAR CURRENT LIMITATION THERMAL SHUT DOWN SHORT CIRCUIT PROTECTION INTEGRATED CLAMPLOW CURRENT DRAWN FROM INPUT PINDIAGNOSTIC FEEDBACK THROUGH INPUT PINESD PROTECTIONDIRECT ACCESS TO THE GATE OF THE POWER MOSFET (ANALOG DRIVING) COMPATIBLE WITH STANDARD POWER MOSFETPinoutSpecification...
200807101809259768: Features: LINEAR CURRENT LIMITATION THERMAL SHUT DOWN SHORT CIRCUIT PROTECTION INTEGRATED CLAMPLOW CURRENT DRAWN FROM INPUT PINDIAGNOSTIC FEEDBACK THROUGH INPUT PINESD PROTECTIONDIRECT ACCESS TO TH...
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Features: • Choice of CMR performance of 10 kV/µs,5 kV/µs, and 100 V/µs...
Features: • Choice of CMR performance of 10 kV/µs, 5 kV/µs, and 100 V/µs...
Features: • Choice of CMR performance of 10 kV/µs,5 kV/µs, and 100 V/µs...
Parameter |
Symbol |
Value |
Units | ||
PENTAWATT | P2PAK | SO-16L | |||
DC supply voltage (Overvoltage protected) |
VCC |
45 |
V | ||
DC ground pin reverse current
TRAN Ground pin reverse current pulse duration < 1ms) |
VC |
- 0.3
|
MA
| ||
DC reverse ground pin current |
-IGND |
- 200 |
A | ||
DC output current |
IOUT |
Internally limited |
mA | ||
Reverse DC output current |
- IOUT |
- 21 |
mA | ||
DC input current |
IIN |
+/- 10 |
mA
| ||
DC current sense disable input current |
ICSD |
-3 +15 |
V V | ||
Electrostatic Discharge (Human Body Model: R=1.5KΩ; C=100pF) - INPUT - CURRENT SENSE - OUTPUT - VCC |
-ICSENSE |
4000 2000 5000 5000 |
V V V V | ||
Maximum Switching Energy
(L=0.25mH; RL=0Ω; Vbat=13.5V; Tjstart=150ºC; IL=45A) |
VCSENSE |
364 | 352 |
mJ | |
Power Dissipation TC25°C |
E MAX(1) |
96.1 | 96.1 | 8.3 |
H |
Junction Operating Temperature |
VESD |
Internally limited |
°C | ||
Case operating temperature |
VESD |
- 40 to 150 |
°C | ||
Storage temperature |
Tj |
- 55 to 150 |
°C |
The VNP49N04FI, VNB49N04, VNV49N04 are monolithic devices designed in STMicroelectronics VIPower M0 Technology, VNP49N04FI, VNB49N04, VNV49N04 are intended for replacement of standard Power and overvoltage clamp protect the chip in harsh environments. Fault feedback can be detected by monitoring the voltage at the input pin. BLOCK DIAGRAM