VNV35N07 STMicroelectronics, VNV35N07 Datasheet - Page 4

MOSFET N-CH 70V 35A POWERSO-10

VNV35N07

Manufacturer Part Number
VNV35N07
Description
MOSFET N-CH 70V 35A POWERSO-10
Manufacturer
STMicroelectronics
Series
OMNIFET™r
Type
Low Sider
Datasheet

Specifications of VNV35N07

Input Type
Non-Inverting
Number Of Outputs
1
On-state Resistance
28 mOhm
Current - Peak Output
35A
Mounting Type
Surface Mount
Package / Case
PowerSO-10 Exposed Bottom Pad
Switch Type
Low Side
Power Switch Family
VNV35N07
Input Voltage
18V
Power Switch On Resistance
35mOhm
Output Current
25A
Mounting
Surface Mount
Supply Current
250uA
Package Type
PowerSO
Pin Count
10
Power Dissipation
125W
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Voltage - Supply
-
Operating Temperature
-
Current - Output / Channel
-
Lead Free Status / Rohs Status
Not Compliant
Other names
497-3319-5

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Price
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Manufacturer:
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VNP35N07FI-VNB35N07-VNV35N07
4/13
PROTECTION FEATURES
During normal operation, the Input pin is
electrically connected to the gate of the internal
power MOSFET. The device then behaves like a
standard power MOSFET and can be used as a
switch from DC to 50 KHz. The only difference
from the user’s standpoint is that a small DC
current (I
supply the internal circuitry.
The device integrates:
-
-
OVERVOLTAGE
internally set at 70V, along with the rugged
avalanche
MOSFET stage give this device unrivalled
ruggedness and energy handling capability.
This feature is mainly important when driving
inductive loads.
LINEAR CURRENT LIMITER CIRCUIT: limits
the drain current Id to Ilim whatever the Input
pin voltage. When the current limiter is active,
the device operates in the linear region, so
power dissipation may exceed the capability of
the
temperatures increase, and if this phase lasts
long enough, junction temperature may reach
the overtemperature threshold T
heatsink.
iss
) flows into the Input pin in order to
characteristics
Both
CLAMP
case
of
PROTECTION:
jsh
and
.
the
junction
Power
-
-
Additional features of this device are ESD
protection according to the Human Body model
and the ability to be driven from a TTL Logic
circuit (with a small increase in R
PROTECTION: these are based on sensing
the chip temperature and are not dependent on
the input voltage. The location of the sensing
element on the chip in the power stage area
ensures fast, accurate detection of the junction
temperature. Overtemperature cutout occurs at
minimum 150
restarted when the chip temperature falls
below 135
overtemperature fault condition, a Status
Feedback is provided through the Input pin.
The internal protection circuit disconnects the
input from the gate and connects it instead to
ground via an equivalent resistance of 100
The failure can be detected by monitoring the
voltage at the Input pin, which will be close to
ground potential.
OVERTEMPERATURE AND SHORT CIRCUIT
STATUS FEEDBACK: In the case of an
o
C.
o
C. The device is automatically
DS(on)
).
.

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