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PDF VNQ690SP-E Data sheet ( Hoja de datos )

Número de pieza VNQ690SP-E
Descripción QUAD CHANNEL HIGH SIDE DRIVER
Fabricantes STMicroelectronics 
Logotipo STMicroelectronics Logotipo



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No Preview Available ! VNQ690SP-E Hoja de datos, Descripción, Manual

VNQ690SP-E
QUAD CHANNEL HIGH SIDE DRIVER
Table 1. General Features
Type
RDS(on)
VNQ690SP-E
(*) Per each channel
90m(*)
Iout
10A
VCC
36V
www.DataSheet4U.com
s OUTPUT CURRENT PER CHANNEL: 10A
s CMOS COMPATIBLE INPUTS
s OPEN LOAD DETECTION (OFF STATE)
s UNDERVOLTAGE & OVERVOLTAGE
n 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 & LOSS OF VCC
s REVERSE BATTERY PROTECTION (**)
s IN COMPLIANCE WITH THE 2002/95/EC
EUROPEAN DIRECTIVE
Figure 1. Package
10
1
PowerSO-10
DESCRIPTION
The VNQ690SP-E is a monolithic device made by
using| STMicroelectronics VIPower M0-3
Technology, intended for driving resistive or
inductive loads with one side connected to ground.
This device has four independent channels.
Built-in thermal shut down and output current
limitation protect the chip from over temperature
and short circuit.
Table 2. Order Codes
Package
PowerSO-10
Tube
VNQ690SP-E
Note: (**) See application schematic at page 9
October 2004
Tape and Reel
VNQ690SPTR-E
Rev. 1
1/20

1 page




VNQ690SP-E pdf
VNQ690SP-E
ELECTRICAL CHARACTERISTICS (continued)
Table 7. VCC - Output Diode
Symbol
Parameter
VF Forward on Voltage
Test Conditions
-IOUT=0.9A; Tj=150°C
Min Typ Max Unit
0.6 V
Table 8. Switching (VCC=13V)
Symbol
td(on)
td(off)
Parameter
Turn-on delay time
Turn-off delay time
dVOUT/dt(on) Turn-on voltage slope
Test Conditions
RL=13channels 1,2,3,4
RL=13channels 1,2,3,4
RL=13channels 1,2,3,4
dVOUT/dt(off) Turn-off voltage slope
RL=13channels 1,2,3,4
Min Typ Max
30
30
See
relative
diagram
See
relative
diagram
Unit
µs
µs
Vs
Vs
Table 9. Openload Detection (off state) per each channel
Symbol
tSDL
VOL
TDOL
Parameter
Status Delay
Openload Voltage
Detection Threshold
Openload Detection Delay
at Turn Off
Test Conditions
See Figure 1 (Openload detection
reading must be performed after TDOL).
VIN=0V
VCC=18V
Min
1.5
Typ Max Unit
20 µs
2.5 3.5
V
300 µs
Table 10. Logic Input
Symbol
VIL
VIH
VHYST
IIH
IIL
VICL
Parameter
Input Low Level Voltage
Input High Level Voltage
Input Hysteresis Voltage
Input high level voltage
Input Current
Input Clamp Voltage
Test Conditions
VIN=3.25V
VIN=1.25V
IIN=1mA
IIN=-1mA
Figure 5. Status Timing Waveforms
OPENLOAD STATUS TIMING
Min Typ Max Unit
1.25 V
3.25 V
0.5 V
10 µA
1 µA
6 6.8 8
V
-0.7 V
OVERTEMP STATUS TIMING
VIN VIN
VSTAT
tDOL
tSDL
VSTAT
tSDL
tSDL
5/20

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VNQ690SP-E arduino
Figure 9. Off State Output Current
IL(off1) (µA)
3.5
3.25
3 Vcc=24V
Vout=0V
2.75
2.5
2.25
2
1.75
1.5
1.25
1
-50 -25 0 25
50 75
Tc (ºC)
100 125 150 175
Figure 10. Input High Level
Vih (V)
4
3.75
3.5
3.25
3
2.75
2.5
2.25
2
-50 -25 0 25 50 75 100 125 150 175
Tc (ºC)
Figure 11. Input Clamp Voltage
Vicl (V)
8
7.75
Iin=1mA
7.5
7.25
7
6.75
6.5
6.25
6
-50 -25 0 25 50 75 100 125 150 175
Tc (ºC)
VNQ690SP-E
Figure 12. High Level Input Current
Iih (µA)
5
4.5
Vin=3.25V
4
3.5
3
2.5
2
1.5
1
0.5
0
-50 -25 0 25
50 75
Tc (ºC)
100 125 150 175
Figure 13. Input Low Level
Vil (V)
2.6
2.4
2.2
2
1.8
1.6
1.4
1.2
1
-50 -25 0 25 50 75 100 125 150 175
Tc (ºC)
Figure 14. Input Hysteresis Voltage
Vihyst (V)
1.4
1.3
1.2
1.1
1
0.9
0.8
0.7
0.6
0.5
-50 -25 0 25 50 75 100 125 150 175
Tc (ºC)
11/20

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