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Part Number VND830PEP

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October 2003 - Revision 1.3 (Working document)
1/14
This is preliminary information on a new product foreseen to be developed. Details are subject to change without notice.
VND830PEP
DOUBLE CHANNEL HIGH SIDE DRIVER
s
CMOS COMPATIBLE INPUTS
s
OPEN DRAIN STATUS OUTPUTS
s
ON STATE OPEN LOAD DETECTION
s
OFF STATE OPEN LOAD DETECTION
s
SHORTED LOAD PROTECTION
s
UNDERVOLTAGE AND OVERVOLTAGE
SHUTDOWN
s
PROTECTION
AGAINST
LOSS OF GROUND
s
VERY LOW STAND-BY CURRENT
s
REVERSE BATTERY PROTECTION (**)
DESCRIPTION
The VND830PEP is a monolithic device designed
in STMicroelectronics VIPower M0-3 Technology,
intended for driving any kind of load with one side
connected to ground.
Active V
CC
pin voltage clamp protects the device
against low energy spikes (see ISO7637 transient
compatibility table). Active current limitation
combined with thermal shutdown and automatic
restart protects the device against overload. The
device detects open load condition both in on and
off state. Output shorted to V
CC
is detected in the
off state. Device automatically turns off in case of
ground pin disconnection.
TYPE
R
DS(on)
I
OUT
V
CC
VND830PEP
60 m
(*)
6.0 A (*)
36 V
PowerSSO-24
ORDER CODES
PACKAGE
TUBE
T&R
PowerSSO-24
VND830PEP
VND830PEP13TR
(*)
Per each channel
BLOCK DIAGRAM
(**) See application schematic at page 8
OVERTEMP. 1
V
cc
GND
INPUT1
OUTPUT1
OVERVOLTAGE
LOGIC
DRIVER 1
STATUS1
V
cc
CLAMP
UNDERVOLTAGE
CLAMP 1
OPENLOAD ON 1
CURRENT LIMITER 1
OPENLOAD OFF 1
OUTPUT2
DRIVER 2
CLAMP 2
OPENLOAD ON 2
OPENLOAD OFF 2
OVERTEMP. 2
INPUT2
STATUS2
CURRENT LIMITER 2
TARGET SPECIFICATION
2/14
VND830PEP
ABSOLUTE MAXIMUM RATING
CONNECTION DIAGRAM (TOP VIEW)
CURRENT AND VOLTAGE CONVENTIONS
Symbol
Parameter
Value
Unit
V
CC
DC Supply Voltage
41
V
- V
CC
Reverse DC Supply Voltage
- 0.3
V
- I
GND
DC Reverse Ground Pin Current
- 200
mA
I
OUT
DC Output Current
Internally Limited
A
- I
OUT
Reverse DC Output Current
- 6
A
I
IN
DC Input Current
+/- 10
mA
I
stat
DC Status Current
+/- 10
mA
V
ESD
Electrostatic Discharge (Human Body Model: R=1.5K
;
C=100pF)
- INPUT
- STATUS
- OUTPUT
- V
CC
4000
4000
5000
5000
V
V
V
V
P
tot
Power Dissipation T
C
=25°C
74
W
T
j
Junction Operating Temperature
Internally Limited
°C
T
c
Case Operating Temperature
- 40 to 150
°C
T
stg
Storage Temperature
- 55 to 150
°C
1
I
S
I
GND
OUTPUT 2
V
CC
GND
STATUS 2
INPUT 2
I
OUT2
I
IN2
I
STAT2
V
STAT2
V
IN2
V
CC
V
OUT2
OUTPUT 1
I
OUT1
V
OUT1
INPUT 1
I
IN1
STATUS 1
I
STAT1
V
IN1
V
STAT1
1
2
3
4
5
6
OUTPUT1
OUTPUT1
OUTPUT1
OUTPUT1
INPUT1
STATUS1
GND
V
CC
24
23
22
21
20
19
NC
NC
OUTPUT1
OUTPUT1
TAB = V
CC
7
8
9
10
11
12
OUTPUT2
OUTPUT2
OUTPUT2
OUTPUT2
NC
V
CC
STATUS2
NC
18
17
16
15
14
13
NC
INPUT2
OUTPUT2
OUTPUT2
3/14
VND830PEP
THERMAL DATA
(*) When mounted on a standard single-sided FR-4 board with 1 cm
2
of Cu (at least 35
µ
m thick) connected to all V
CC
pins.
ELECTRICAL CHARACTERISTICS (8V<V
CC
<36V; -40°C< T
j
<150°C, unless otherwise specified)
(Per each channel)
POWER OUTPUTS
SWITCHING (V
CC
=13V)
LOGIC INPUT
V
CC
- OUTPUT DIODE
Symbol
Parameter
Value
Unit
R
thj-case
Thermal Resistance Junction-case
1.7
°C/W
R
thj-amb
Thermal Resistance Junction-ambient
60 (*)
°C/W
Symbol
Parameter
Test Conditions
Min
Typ
Max
Unit
V
CC
Operating Supply Voltage
5.5
13
36
V
V
USD
Undervoltage Shut-down
3
4
5.5
V
V
OV
Overvoltage Shut-down
36
V
R
ON
On State Resistance
I
OUT
=2A; T
j
=25°C
I
OUT
=2A; V
CC
>8V
60
120
m
m
I
S
Supply Current
Off State; V
CC
=13V; V
IN
=V
OUT
=0V
Off State; V
CC
=13V; V
IN
=V
OUT
=0V;
T
j
=25
°C
On State; V
CC
=13V; V
IN
=5V; I
OUT
=0A
12
12
5
40
25
7
µ
A
µ
A
mA
I
L(off1)
Off State Output Current
V
IN
=V
OUT
=0V
0
50
µ
A
I
L(off2)
Off State Output Current
V
IN
=0V; V
OUT
=3.5V
-75
0
µ
A
I
L(off3)
Off State Output Current
V
IN
=V
OUT
=0V; V
CC
=13V; T
j
=125°C
5
µ
A
I
L(off4)
Off State Output Current
V
IN
=V
OUT
=0V; V
CC
=13V; T
j
=25°C
3
µ
A
Symbol
Parameter
Test Conditions
Min
Typ
Max
Unit
t
d(on)
Turn-on Delay Time
R
L
=6.5
from V
IN
rising edge to
V
OUT
=1.3V
30
µ
s
t
d(off)
Turn-off Delay Time
R
L
=6.5
from V
IN
falling edge to
V
OUT
=11.7V
30
µ
s
dV
OUT
/
dt
(on)
Turn-on Voltage Slope
R
L
=6.5
from V
OUT
=1.3V to
V
OUT
=10.4V
0.5
V/
µ
s
dV
OUT
/
dt
(off)
Turn-off Voltage Slope
R
L
=6.5
from V
OUT
=11.7V to
V
OUT
=1.3V
0.25
V/
µ
s
Symbol
Parameter
Test Conditions
Min
Typ
Max
Unit
V
IL
Input Low Level
1.25
V
I
IL
Low Level Input Current
V
IN
= 1.25V
1
µ
A
V
IH
Input High Level
3.25
V
I
IH
High Level Input Current
V
IN
= 3.25V
10
µ
A
V
I(hyst)
Input Hysteresis Voltage
0.5
V
V
ICL
Input Clamp Voltage
I
IN
= 1mA
I
IN
= -1mA
6
6.8
-0.7
8
V
V
Symbol
Parameter
Test Conditions
Min
Typ
Max
Unit
V
F
Forward on Voltage
-I
OUT
=2A; T
j
=150°C
0.6
V
1
4/14
VND830PEP
ELECTRICAL CHARACTERISTICS (continued)
STATUS PIN
PROTECTIONS
OPENLOAD DETECTION
Symbol
Parameter
Test Conditions
Min
Typ
Max
Unit
V
STAT
Status Low Output Voltage I
STAT
= 1.6 mA
0.5
V
I
LSTAT
Status Leakage Current
Normal Operation; V
STAT
= 5V
10
µ
A
C
STAT
Status Pin Input
Capacitance
Normal Operation; V
STAT
= 5V
100
pF
V
SCL
Status Clamp Voltage
I
STAT
= 1mA
I
STAT
= - 1mA
6
6.8
-0.7
8
V
V
Symbol
Parameter
Test Conditions
Min
Typ
Max
Unit
T
TSD
Shut-down Temperature
150
175
200
°C
T
R
Reset Temperature
135
°C
T
hyst
Thermal Hysteresis
7
15
°C
t
SDL
Status Delay in Overload
Conditions
T
j
>T
TSD
20
µ
s
I
lim
Current limitation
5.5V<V
CC
<36V
6
9
15
15
A
A
V
demag
Turn-off Output Clamp
Voltage
I
OUT
=2A; L=6mH
V
CC
-41 V
CC
-48 V
CC
-55
V
Symbol
Parameter
Test Conditions
Min
Typ
Max
Unit
I
OL
Openload ON State
Detection Threshold
V
IN
=5V 50
100
200
mA
t
DOL(on)
Openload ON State
Detection Delay
I
OUT
=0A 200
µ
s
V
OL
Openload OFF State
Voltage Detection
Threshold
V
IN
=0V
1.5
2.5
3.5
V
t
DOL(off)
Openload Detection Delay
at Turn Off
1000
µ
s
2
V
INn
V
STAT n
t
DOL(off)
OPEN LOAD STATUS TIMING (with external pull-up)
V
INn
V
STAT n
OVERTEMP STATUS TIMING
t
SDL
t
SDL
I
OUT
< I
OL
V
OUT
> V
OL
t
DOL(on)
T
j
> T
TSD
5/14
VND830PEP
t
t
V
OUTn
V
INn
80%
10%
dV
OUT
/dt
(on)
t
d(off)
90%
dV
OUT
/dt
(off)
t
d(on)
Switching time Waveforms
TRUTH TABLE
CONDITIONS
INPUT
n
OUTPUT
n
STATUS
n
Normal Operation
L
H
L
H
H
H
Current Limitation
L
H
H
L
X
X
H
(T
j
< T
TSD
) H
(T
j
> T
TSD
) L
Overtemperature
L
H
L
L
H
L
Undervoltage
L
H
L
L
X
X
Overvoltage
L
H
L
L
H
H
Output Voltage > V
OLn
L
H
H
H
L
H
Output Current < I
OLn
L
H
L
H
H
L