VNQ860SP [STMICROELECTRONICS]
QUAD CHANNEL HIGH SIDE DRIVER; 四通道高端驱动器![VNQ860SP](http://pdffile.icpdf.com/pdf1/p00033/img/icpdf/VNQ860_173890_icpdf.jpg)
型号: | VNQ860SP |
厂家: | ![]() |
描述: | QUAD CHANNEL HIGH SIDE DRIVER |
文件: | 总10页 (文件大小:224K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
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P6
VNQ860
/ VNQ860SP
®
QUAD CHANNEL HIGH SIDE DRIVER
TYPE
VNQ860
VNQ860SP
R
(*)
I
V
CC
DS(on)
OUT
270mΩ
0.25A
36V
(*) Per each channel
■ CMOS COMPATIBLE I/Os
10
■ UNDERVOLTAGE & OVERVOLTAGE
SHUT- DOWN
1
■ SHORTED LOAD PROTECTION
■ THERMAL SHUTDOWN
SO-20
PowerSO-10™
■ VERY LOW STAND-BY CURRENT
ORDER CODES
■ PROTECTION AGAINST LOSS OF GROUND
SO-20
VNQ860
PowerSO-10™
VNQ860SP
DESCRIPTION
The VNQ860, VNQ860SP are monolithic devices
made using| STMicroelectronics VIPower M0-3
Technology, intended for driving any kind load
with one side connected to ground. Active current
limitation combined with thermal shutdown and
automatic restart protect the device against
overload. Device automatically turns off in case of
ground pin disconnection. This device is
especially suitable for industrial applications in
norms conformity with IEC1131 (Programmable
Controllers International Standard).
BLOCK DIAGRAM
V
CC
V
OVERVOLTAGE
DETECTION
CC
CLAMP
UNDERVOLTAGE
DETECTION
GND
Power CLAMP
I/O 1
OUTPUT1
OUTPUT2
OUTPUT3
OUTPUT4
OVERTEMP
CURRENT LIMITER
I/O 2
Power CLAMP
CURRENT LIMITER
OVERTEMP
OVERTEMP
I/O 3
I/O 4
LOGIC
Power CLAMP
CURRENT LIMITER
STATUS
Power CLAMP
CURRENT LIMITER
OVERTEMP
January 2003
1/10
1
VNQ860 / VNQ860SP
ABSOLUTE MAXIMUM RATING
Symbol
Value
PowerSO-10
Parameter
Unit
SO-20
V
DC supply voltage
41
V
V
CC
- V
Reverse DC supply voltage
DC reverse ground pin current
DC output current
- 0.3
- 200
CC
- I
mA
A
GND
I
Internally Limited
OUT
- I
Reverse DC output current
DC Input current
- 2
A
OUT
I
+/- 10
mA
V
IN
V
Input voltage range
-3/+V
CC
IN
V
DC Status voltage
+ V
V
STAT
CC
V
Electrostatic discharge (R=1.5 KΩ; C=100 pF)
2000
V
ESD
P
Power dissipation T =25 °C
16
90
W
°C
°C
°C
tot
C
T
Junction operating temperature
Case operating temperature
Storage temperature
Internally Limited
- 40 to 150
j
T
c
T
- 55 to 150
stg
CONNECTION DIAGRAM
1
GROUND
I/O 3
20
I/O 4
OUTPUT 4
N.C.
OUTPUT 3
5
4
3
OUTPUT 2
I/O 2
6
7
8
9
OUTPUT 3
I/O 3
V
V
CC
CC
GND
STATUS
I/O 1
V
V
CC
CC
I/O 4
2
1
V
V
CC
CC
OUTPUT 4
OUTPUT 1
10
V
V
CC
CC
N.C.
OUTPUT 1
I/O 1
TAB
OUTPUT 2
I/O 2
V
CC
STATUS
11
10
CURRENT AND VOLTAGE CONVENTIONS
I
CC
V
CC
V
CC
I
I/O1
I
OUT1
I/O1
I/O2
OUTPUT 1
OUTPUT 2
OUTPUT 3
V
I/O1
V
I
OUT1
I/O2
I
OUT2
V
I/O2
I
I/O3
V
OUT2
I/O 3
I
OUT3
V
I/O3
I
I/O4
V
OUT3
I/O 4
I
OUT4
V
I/O4
I
STAT
OUTPUT 4
STATUS
V
OUT4
V
STAT
GND
I
GND
2/10
1
VNQ860 / VNQ860SP
THERMAL DATA
Symbol
Value
Parameter
Unit
SO-20
PowerSO-10
o
R
Thermal resistance junction-pins
Thermal resistance junction-ambient (*)
Thermal resistance junction-case
(MAX)
(MAX)
(MAX)
8
58
-
-
C/W
C/W
C/W
tj-amb
o
o
R
50
1.4
tj-case
R
tj-pin
2
(*) When mounted on FR4 printed circuit board with 0.5 cm of copper area (at least 35µ thick) connected to all V pins.
CC
ELECTRICAL CHARACTERISTICS (8V<VCC<36V; -40oC<Tj<150oC; unless otherwise specified)
POWER
Symbol
Parameter
Operating supply voltage
Undervoltage shut-down
Overvoltage shut-down
On state resistance
(per channel)
Test Conditions
Min
5.5
3
Typ
Max
36
Unit
V
V
CC
V
4
5.5
48
V
USD
V
36
42
V
OV
I
=0.25A; T =25oC
270
540
120
10
mΩ
mΩ
µA
mA
OUT
j
R
ON
I
=0.25A
OUT
Off state; VCC=24V; T =25oC
70
5
c
I
Supply current
Output current
S
On state (all channels on)
V
V
-V
=V =V
=24V
GND
CC STAT
IN
I
1
mA
µA
µA
LGND
=0V
OUT
I
Off state output current
Off state output leakage
current
V =V
=0V
0
10
L(off)
IN
OUT
V =V
T
=0V; V =V
=25 C
=24V;
OUT
IN
GND
o
CC
I
I
240
OUTleak
amb
Off state output leakage
current
V =V
V
=0V; V =24V;
CC
IN
GND
100
µA
o
OUTleak
=10V; T
=25 C
OUT
amb
SWITCHING (VCC=24V) (Per channel)
Symbol
Parameter
Test Conditions
Min
Typ
Max
Unit
R =96Ω from V rising edge to
L
IN
t
t
Turn-on delay time
10
µs
D(on)
D(off)
V
=2.4V
OUT
R =96Ω from V falling edge to
L
IN
Turn-off delay time
40
µs
V
=21.6V
OUT
(dV
(dV
/dt)
/dt)
Turn-on voltage slope
Turn-off voltage slope
R =96Ω from V
=2.4V to 19.2V
=21.6V to 2.4V
0.75
0.25
V/µs
V/µs
OUT
on
off
L
OUT
R =96Ω from V
OUT
L
OUT
PROTECTIONS (Per channel)
Symbol
Parameter
Current limitation
Test Conditions
Min
0.35
7
Typ
0.7
15
Max
Unit
I
1.1
A
lim
o
T
Thermal hysteresis
Thermal shut-down
temperature
C
(hyst)
o
T
150
135
175
200
C
TSD
o
T
Reset temperature
Turn-off output clamp voltage
C
R
V
I
=0.25A
V
-47 V -52 V -59
V
demag
OUT
CC
CC
CC
3/10
1
VNQ860 / VNQ860SP
ELECTRICAL CHARACTERISTICS (continued)
LOGIC INPUT (Per channel)
Symbol
Parameter
Low level input voltage
Low level input current
High level input voltage
High level input current
Input hysteresis Voltage
Input current
Test Conditions
V =1.25V
Min
Typ
Max
Unit
V
V
1.25
IL
I
1
µA
V
IL
IN
V
3.25
IH
IH
I
V =3.25V
10
µA
V
IN
V
0.5
I(hyst)
I
V =V =36V
200
1
µA
V
IN
IN
CC
V
I/O Output voltage
I =5mA (Fault condition)
OL
IN
STATUS PIN
Symbol
Parameter
Test conditions
Min
Typ
Max
1
Unit
V
V
Status low output voltage
Status leakage current
I
=5mA (Fault condition)
STAT
STAT
I
Normal operation; V
=V =36V
10
µA
pF
LSTAT
STAT
CC
C
Status pin input capacitance Normal operation; V
=5V
100
STAT
STAT
TRUTH TABLE
CONDITIONS
MCOUTn
I/On
OUTPUTn
STATUS
L
H
L
H
L
H
H
H
Normal operation
L
H
L
H
L
X
H
H
Current limitation
Overtemperature
L
H
L
L
L
L
L
L
L
L
L
L
Driven low
L
H
L
X
X
H
H
Undervoltage
Overvoltage
H
L
H
H
4/10
2
VNQ860 / VNQ860SP
SWITCHING CHARACTERISTICS
V
OUT
90%
80%
(dV
/dt)
off
(dV
/dt)
OUT
OUT
on
t
t
r
f
10%
t
t
t
d(on)
d(off)
V
IN
t
Typical application schematic
I/On
OUTPUTn
MCOUTn
MCINn
MCU
VNQ860
5/10
1
VNQ860 / VNQ860SP
Figure 1: Waveforms
NORMAL OPERATION
V
I/On
V
OUTn
V
STAT
UNDERVOLTAGE
V
USDhyst
V
V
CC
V
USD
I/On
V
OUTn
V
undefined
STAT
OVERVOLTAGE
V
OV
V
CC
V
OVhyst
V
>V
CC USD
V
I/On
V
OUTn
V
STAT
OVERTEMPERATURE
TTSD
TR
Tj
VMCOUT
VI/On
IOUTn
VSTAT
6/10
1
VNQ860 / VNQ860SP
SO-20 MECHANICAL DATA
mm.
inch
DIM.
MIN.
TYP
MAX.
2.65
0.20
2.45
0.49
0.32
MIN.
TYP.
MAX.
0.104
0.007
0.096
0.019
0.012
A
a1
a2
b
0.10
0.004
0.35
0.23
0.013
0.009
b1
C
0.50
0.020
c1
D
45° (typ.)
12.60
10.00
13.00
10.65
0.496
0.393
0.512
0.419
E
e
1.27
0.050
F
7.40
0.50
7.60
1.27
0.75
0.291
0.19
0.299
0.050
0.029
L
M
S
8° (max.)
7/10
VNQ860 / VNQ860SP
PowerSO-10™ MECHANICAL DATA
mm.
inch
TYP.
DIM.
MIN.
TYP
MAX.
MIN.
MAX.
A
A (*)
A1
B
B (*)
C
C (*)
D
D1
E
E2
E2 (*)
E4
E4 (*)
e
F
F (*)
H
3.35
3.4
3.65
3.6
0.132
0.134
0.000
0.016
0.014
0.013
0.009
0.370
0.291
0.366
0.283
0.287
0.232
0.232
0.144
0.142
0.004
0.024
0.021
0.022
0.0126
0.378
0.300
0.374
300
0.00
0.40
0.37
0.35
0.23
9.40
7.40
9.30
7.20
7.30
5.90
5.90
0.10
0.60
0.53
0.55
0.32
9.60
7.60
9.50
7.60
7.50
6.10
6.30
0.295
0.240
0.248
1.27
0.50
0.050
0.002
1.25
1.20
13.80
13.85
1.35
1.40
14.40
14.35
0.049
0.047
0.543
0.545
0.053
0.055
0.567
0.565
H (*)
h
L
L (*)
α
1.20
0.80
0º
1.80
1.10
8º
0.047
0.031
0º
0.070
0.043
8º
α (*)
2º
8º
2º
8º
(*) Muar only POA P013P
B
0.10
A B
10
H
E
E2
E4
1
SEATING
PLANE
DETAIL "A"
e
B
A
C
0.25
D
=
=
=
h
D1
=
SEATING
PLANE
A
F
A1
L
A1
DETAIL "A"
P095A
α
8/10
VNQ860 / VNQ860SP
PowerSO-10™ SUGGESTED PAD LAYOUT
TUBE SHIPMENT (no suffix)
14.6 - 14.9
CASABLANCA
MUAR
B
10.8- 11
6.30
C
A
C
A
0.67 - 0.73
B
1
2
3
10
9
0.54 - 0.6
All dimensions are in mm.
Base Q.ty Bulk Q.ty Tube length (± 0.5)
8
9.5
7
4
5
1.27
A
B
C (± 0.1)
0.8
6
Casablanca
Muar
50
50
1000
1000
532
532
10.4 16.4
4.9 17.2
0.8
TAPE AND REEL SHIPMENT (suffix “13TR”)
REEL DIMENSIONS
Base Q.ty
Bulk Q.ty
A (max)
B (min)
C (± 0.2)
F
600
600
330
1.5
13
20.2
24.4
60
G (+ 2 / -0)
N (min)
T (max)
30.4
All dimensions are in mm.
TAPE DIMENSIONS
According to Electronic Industries Association
(EIA) Standard 481 rev. A, Feb. 1986
Tape width
W
P0 (± 0.1)
P
24
4
Tape Hole Spacing
Component Spacing
Hole Diameter
24
D (± 0.1/-0) 1.5
Hole Diameter
D1 (min)
F (± 0.05)
K (max)
1.5
11.5
6.5
2
Hole Position
Compartment Depth
Hole Spacing
P1 (± 0.1)
All dimensions are in mm.
End
Start
Top
No components
500mm min
Components
No components
cover
tape
Empty components pockets
saled with cover tape.
500mm min
User direction of feed
9/10
1
VNQ860 / VNQ860SP
Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the consequences
of use of such information nor for any infringement of patents or other rights of third parties which may results from its use. No license is
granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are
subject to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products
are not authorized for use as critical components in life support devices or systems without express written approval of STMicroelectronics.
The ST logo is a trademark of STMicroelectronics
2003 STMicroelectronics - Printed in ITALY- All Rights Reserved.
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10/10
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