VN460SPTR-E [STMICROELECTRONICS]

IC,PERIPHERAL DRIVER,1 DRIVER,MOS,SOP,10PIN,PLASTIC;
VN460SPTR-E
型号: VN460SPTR-E
厂家: ST    ST
描述:

IC,PERIPHERAL DRIVER,1 DRIVER,MOS,SOP,10PIN,PLASTIC

继电器 固态继电器
文件: 总9页 (文件大小:80K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
VN460SP  
SINGLE CHANNEL HIGH SIDE SMART  
SOLID STATE RELAY  
TYPE  
Vdemag  
RDS(on)  
IOUT  
VCC  
VN460SP VCC-55V 20 m  
25 A  
36 V  
OUTPUT CURRENT (CONTINUOUS):  
25 A @ TC = 25 o  
C
10  
5 V LOGIC LEVEL COMPATIBLE INPUT  
UNDER VOLTAGE SHUT-DOWN  
OVER VOLTAGE SHUT-DOWN  
THERMAL SHUT-DOWN  
OPEN DRAIN DIAGNOSTIC OUTPUT  
VERY LOW STAND-BY POWER  
DISSIPATION  
1
Power SO-10 TM  
DESCRIPTION  
The VN460SP is a monolithic device made using  
SGS-THOMSON Vertical Intelligent Power  
Technology, intended for driving resistive or  
inductive loads with one side connected to  
ground.  
The control input is 5V CMOS logic level  
compatible.  
Built-in thermal shut-down protects the chip from The open drain diagnostic output indicates open  
over temperature and short circuit.  
circuit (no load) and overtemperature status.  
BLOCK DIAGRAM  
1/9  
June 1998  
VN460SP  
ABSOLUTE MAXIMUM RATING  
Symbol  
Parameter  
Value  
Unit  
V
VCC  
-VCC  
IOUT  
IR  
Power Supply Voltage (continuous)  
Reverse Supply Voltage (continuous)  
Output Current (continuous)  
Reverse Output Current  
45  
-0.3  
V
Internally Limited  
-25  
A
A
IIN  
Input Current  
±10  
mA  
mA  
mA  
V
ISTAT  
-IGND  
VESD  
Ptot  
Tj  
Status Pin Current  
±10  
Reverse Ground Current  
-200  
Electrostatic Discharge (1.5 k, 100 pF)  
2000  
o
Power Dissipation at Tc 25 C  
112  
W
Junction Operating Temperature  
Storage Temperature  
-40 to 150  
-55 to 150  
oC  
oC  
Tstg  
CONNECTION DIAGRAM  
CURRENT AND VOLTAGE CONVENTIONS  
2/9  
VN460SP  
ELECTRICAL TRANSIENTS REQUIREMENTS  
ISO T/R  
7637/1  
Test Pulse  
TEST LEVELS  
III  
I
II  
IV  
Delays and  
Impedance  
1
2
-25 V  
+25 V  
-25 V  
-50 V  
+50 V  
-50 V  
+50 V  
-5 V  
-75 V  
+75 V  
-100 V  
+75 V  
-6 V  
-100 V  
+100 V  
-150 V  
+100 V  
-7 V  
2 ms, 10 Ω  
0.2 ms, 10 Ω  
0.1 µs, 50 Ω  
0.1 µs, 50 Ω  
100 ms, 0.01 Ω  
400 ms, 2 Ω  
3a  
3b  
4
+25 V  
-4 V  
5
+26.5  
+46.5  
+66.5  
+86.5  
ISO T/R  
7637/1  
TEST LEVELS RESULTS  
Test Pulse  
I
C
C
C
C
C
C
II  
C
C
C
C
C
E
III  
C
C
C
C
C
E
IV  
C
C
C
C
C
E
1
2
3a  
3b  
4
5
(With a series resistor 1 Kin input and status pins).  
CLASS  
CONTENTS  
C
E
All function of the device are performed as designed after exposure to disturbance.  
One or more functions of the device is not performed as designed after exposure and  
cannot be returned to proper operation without replacing the device.  
3/9  
VN460SP  
THERMAL DATA  
Rthj-case Thermal Resistance Junction-case  
Max  
Max  
1.1  
50  
oC/W  
oC/W  
Rthj-a( ) Thermal Resistance Junction-ambient  
( ) When mounted using minimum recommended pad size on FR-4 board.  
ELECTRICAL CHARACTERISTICS (VCC = 13 V; -40 oC < TJ < 125 oC unless otherwise specified)  
POWER  
Symbol  
Parameter  
Test Conditions  
Min.  
Typ.  
Max.  
Unit  
VCC  
Operating Supply  
Voltage  
5.5  
13  
36  
V
Vusd  
Under Voltage Shut  
Down  
3
4
5.5  
V
Vov  
Ron  
Overvoltage Shut Down  
On State Resistance  
36  
39  
45  
V
o
IOUT = 5 A  
IOUT = 5 A  
TJ = 25 C  
20  
36  
mΩ  
mΩ  
o
IS  
Supply Current  
Off state  
On State  
TCase = 25 C  
15  
1.4  
30  
3.3  
µA  
mA  
LOGIC INPUT  
Symbol  
Parameter  
Test Conditions  
Min.  
Typ.  
Max.  
Unit  
VIL  
Input Low Level  
Voltage  
(*)  
(*)  
1.5  
V
VIH  
Input High Level  
Voltage (see note 1)  
3.5  
0.2  
V
V
VI(hyst.) Input Hysteresis  
Voltage  
0.85  
1.5  
IIN  
Input Current  
VIN = 5 V  
Tcase = 25 oC  
100  
7
µA  
VICL  
Input Clamp Voltage  
IIN = 10 mA  
IIN = -10 mA  
5
6
-0.7  
V
V
(*) : The input voltage is internally clamped at 6 V about. It is possible to connect this pin to an higher voltage via an external resistor  
provided the input current does not exceed 10 mA.  
SWITCHING (VCC = 13 V)  
Symbol  
Parameter  
Test Conditions  
Resistive Load  
Min.  
Typ.  
Max.  
Unit  
td(on)  
Turn-on Delay Time Of IOUT = 5 A  
Output Current  
25  
90  
250  
µs  
o
Input Rise Time < 0.1 µs Tj = 25 C  
IOUT = 5 A Resistive Load  
Input Rise Time < 0.1 µs Tj = 25 C  
Resistive Load  
tr  
td(off)  
tf  
Rise Time Of Output  
Current  
80  
300  
80  
300  
750  
200  
650  
1500  
400  
µs  
µs  
µs  
o
Turn-off Delay Time Of IOUT = 5 A  
Output Current  
o
Input Rise Time < 0.1 µs Tj = 25 C  
IOUT = 5 A Resistive Load  
Input Rise Time < 0.1 µs Tj = 25 C  
Fall Time Of Output  
Current  
o
(di/dt)on Turn-on Current Slope IOUT = 5 A  
(di/dt)off Turn-off Current Slope IOUT = 5 A  
0.02  
0.02  
0.05  
0.05  
A/µs  
A/µs  
4/9  
VN460SP  
ELECTRICAL CHARACTERISTICS (continued)  
PROTECTIONS AND DIAGNOSTICS  
Symbol  
Parameter  
Test Conditions  
Min.  
Typ.  
Max.  
Unit  
TTSD  
Thermal Shut-down  
Temperature  
150  
170  
190  
oC  
TTR  
Thermal Reset  
Temperature  
135  
5
oC  
oC  
V
TRSD  
Thermal Hysteresis  
15  
50  
8
(HYST)  
VENOL  
Output Voltage  
Authorizing Openload  
Detection  
8VVCC30V  
5.2  
6.6  
IOL  
IOV  
IAV  
Open Load Current  
Level  
8VVCC30V  
100  
25  
800  
50  
1500  
mA  
A
Over Current  
RLOAD 10 mΩ  
- 40oC<TCase<125oC  
Average Current in  
Short Circuit  
RLOAD 10 mΩ  
5.4  
A
TC = 85oC  
VSTAT  
VSCL  
Status Output Voltage ISTAT = 1.6 mA (Fault Condition)  
0.4  
7
V
Status Clamp Voltage  
ISTAT = 10 mA  
ISTAT = -10 mA  
5.5  
50  
6
-0.7  
V
V
tPOL  
Status Delay  
Status Delay  
( )  
( )  
300  
950  
10  
µs  
µs  
V
tPOVL  
VDEMAG Turn-off Output Clamp IOUT = 5 A, L = 1 mH, VIN = 0  
Voltage  
VCC-45 VCC-50 VCC-55  
( ) ISO definitions TPOL = Status delay in case of open load conditions  
TPOVL = Status delay in case of over load conditions  
5/9  
VN460SP  
FIGURE 1  
SWITCHING PARAMETERS TEST CONDITIONS  
TRUTH TABLE  
Conditions  
Normal Operation  
INPUT  
OUTPUT  
STATUS  
L
H
L
H
H
H
Over-voltage  
Under-voltage  
Thermal shut-down  
Open load  
X
X
H
H
L
L
H
H
L
L
H
L
H = high level, L= low level, X= unspecified  
6/9  
VN460SP  
FIGURE 2: Switching Waveforms  
7/9  
VN460SP  
PowerSO-10 MECHANICAL DATA  
mm  
inch  
TYP.  
DIM.  
MIN.  
3.35  
0.00  
0.40  
0.35  
9.40  
7.40  
9.30  
7.20  
7.20  
6.10  
5.90  
TYP.  
MAX.  
3.65  
0.10  
0.60  
0.55  
9.60  
7.60  
9.50  
7.40  
7.60  
6.35  
6.10  
MIN.  
0.132  
0.000  
0.016  
0.013  
0.370  
0.291  
0.366  
0.283  
0.283  
0.240  
0.232  
MAX.  
0.144  
0.004  
0.024  
0.022  
0.378  
0.300  
0.374  
0.291  
0.300  
0.250  
0.240  
A
A1  
B
c
D
D1  
E
E1  
E2  
E3  
E4  
e
1.27  
0.050  
F
1.25  
1.35  
0.049  
0.543  
0.053  
0.567  
H
13.80  
14.40  
h
0.50  
1.70  
0.002  
0.067  
L
1.20  
0o  
1.80  
8o  
0.047  
0.071  
q
α
B
0.10  
A
B
10  
6
H
E
E3 E1  
E2  
E4  
1
5
SEATING  
PLANE  
DETAILA”  
e
B
A
C
M
0.25  
Q
D
=
=
=
=
h
D1  
SEATING  
PLANE  
A
F
A1  
L
A1  
DETAILA”  
α
0068039-C  
8/9  
VN460SP  
Information furnished is believed tobe 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 result from its use. No license is  
granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specification mentioned in this publication are  
subject tochange without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products  
are not authorized for use as critical componentsin life support devices or systems without express written approval of STMicroelectronics.  
The ST logo isa trademarkof STMicroelectronics  
1998 STMicroelectronics – Printed in Italy – All Rights Reserved  
STMicroelectronicsGROUP OF COMPANIES  
Australia - Brazil - Canada- China - France- Germany- Italy - Japan - Korea- Malaysia - Malta - Mexico - Morocco - The Netherlands -  
Singapore - Spain - Sweden- Switzerland- Taiwan - Thailand - United Kingdom- U.S.A.  
.
9/9  

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