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PDF VND600-E Data sheet ( Hoja de datos )

Número de pieza VND600-E
Descripción DOUBLE CHANNEL HIGH SIDE DRIVER
Fabricantes STMicroelectronics 
Logotipo STMicroelectronics Logotipo



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No Preview Available ! VND600-E Hoja de datos, Descripción, Manual

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VND600-E
DOUBLE CHANNEL HIGH SIDE DRIVER
Table 1. General Features
Type
RDS(on)
VND600-E
35 m
Ilim
25 A
VCC
36 V
Figure 1. Package
s DC SHORT CIRCUIT CURRENT: 25 A
s CMOS COMPATIBLE INPUTS
s PROPORTIONAL LOAD CURRENT SENSE
ns UNDERVOLTAGE AND OVERVOLTAGE
SHUT-DOWN
s OVERVOLTAGE CLAMP
s THERMAL SHUT DOWN
s CURRENT LIMITATION
s VERY LOW STAND-BY POWER DISSIPATION
s PROTECTION AGAINST:
n LOSS OF GROUND AND LOSS OF VCC
s REVERSE BATTERY PROTECTION (*)
s IN COMPLIANCE WITH THE 2002/95/EC
EUROPEAN DIRECTIVE
SO-16L
DESCRIPTION
The VND600-E is a monolithic device made using
STMicroelectronics VIPower M0-3 technology. It
is intended for driving resistive or inductive loads
with one side connected to ground. Active VCC pin
voltage clamp protects the device against low
energy spikes (see ISO7637 transient
compatibility table).
This device has two channels in high side
configuration; each channel has an analog sense
output on which the sensing current is proportional
(according to a known ratio) to the corresponding
load current. Built-in thermal shut-down and
outputs current limitation protect the chip from
over temperature and short circuit. Device turns off
in case of ground pin disconnection.
Table 2. Order Codes
Package
SO-16L
VND600-E
Tube
Note: (*) See application schematic at page 9
October 2004
Tape and Reel
VND600TR-E
Rev. 1
1/18

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VND600-E pdf
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VND600-E
ELECTRICAL CHARACTERISTICS (continued)
Table 8. Current Sense CURRENT SENSE (9VVCC16V) (See fig. 6)
Symbol
K1
dK1/K1
K2
dK2/K2
K3
dK3/K3
VSENSE1,2
VSENSEH
RVSENSEH
tDSENSE
Parameter
IOUT/ISENSE
Current Sense Ratio Drift
IOUT/ISENSE
Current Sense Ratio Drift
IOUT/ISENSE
Current Sense Ratio Drift
Max analog sense
output voltage
Analog sense output
voltage in overtemperature
condition
Analog Sense Output
Impedance in
Overtemperature Condition
Current sense delay
response
Test Conditions
IOUT1 or IOUT2=0.5A; VSENSE=0.5V;
other channels open; Tj= -40°C...150°C
IOUT1 or IOUT2=0.5A; VSENSE=0.5V;
other channels open; Tj= -40°C...150°C
IOUT1 or IOUT2=5A; VSENSE=4V; other
channels open; Tj=-40°C
Tj=25°C...150°C
IOUT1 or IOUT2=5A; VSENSE=4V; other
channels open; Tj=-40°C...150°C
IOUT1 or IOUT2=15A; VSENSE=4V; other
channels open; Tj=-40°C
Tj=25°C...150°C
IOUT1 or IOUT2=15A; VSENSE=4V; other
channels open; Tj=-40°C...150°C
VCC=5.5V; IOUT1,2=2.5A; RSENSE=10k
VCC>8V, IOUT1,2=5A; RSENSE=10k
VCC=13V; RSENSE=3.9k
VCC=13V; Tj>TTSD; All channels Open
to 90% ISENSE (see note 3)
Min
3300
-10
4200
4400
-6
4200
4400
-6
2
4
Note: 3. Current sense signal delay after positive input slope.
Typ
4400
4900
4900
4900
4900
5.5
400
Max
6000
Unit
+10 %
6000
5750
+6
%
5500
5250
+6
%
V
V
V
500 µs
Table 9. Switching (VCC=13V)
Symbol
td(on)
td(off)
Parameter
Turn-on delay time
Turn-on delay time
Test Conditions
RL=2.6(see figure 6)
RL=2.6(see figure 6)
(dVOUT/dt)on Turn-on voltage slope RL=2.6(see figure 6)
(dVOUT/dt)off Turn-off voltage slope RL=2.6(see figure 6)
Min Typ
Max
30
30
See
relative
diagram
See
relative
diagram
Unit
µs
µs
Vs
Vs
Table 10. Logic Input (Channel 1, 2)
Symbol
VIL
IIL
VIH
IIH
VI(hyst)
VICL
Parameter
Test Conditions
Input low level voltage
Low level input current VIN=1.25V
Input high level voltage
High level input current VIN=3.25V
Input hysteresis voltage
Input clamp voltage
IIN=1mA
IIN=-1mA
Min
1
3.25
0.5
6
Typ
6.8
-0.7
Max
1.25
10
8
Unit
V
µA
V
µA
V
V
V
5/18

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VND600-E arduino
Figure 15. Overvoltage Shutdown
Vov (V)
50
48
46
44
42
40
38
36
34
32
30
-50 -25 0 25 50 75 100 125 150 175
Tc (°C)
Figure 16. Turn-on Voltage Slope
dVout/dt(on) (V/ms)
750
700
650 Vcc=13V
Rl=2.6Ohm
600
550
500
450
400
350
300
250
-50 -25 0 25
50 75
Tc (ºC)
100 125
150 175
Figure 17. On State Resistance Vs Tcase
Ron (mOhm)
100
90
80 Iout=5A
Vcc=8V & 36V
70
60
50
40
30
20
10
0
-75 -50 -25 0 25 50 75 100 125 150 175
Tc (°C)
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VND600-E
Figure 18. ILIM Vs Tcase
Ilim (A)
80
70
Vcc=13V
60
50
40
30
20
10
0
-50 -25 0 25 50 75 100 125 150 175
Tc (°C)
Figure 19. Turn-off Voltage Slope
dVout/dt(off) (V/ms)
500
450
400 Vcc=13V
Rl=2.6Ohm
350
300
250
200
150
100
50
0
-50 -25 0 25
50 75 100 125 150 175
Tc (ºC)
Figure 20. On State Resistance Vs VCC
Ron (mOhm)
80
70
Iout=5A
60
Tc= 150°C
50
40
30 Tc= 25°C
20
Tc= - 40°C
10
0
5 10 15 20 25 30 35 40
Vcc (V)
11/18

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