VN1160-1 [ETC]

The VN1160, VN1160-1, VN1160T are a monolithic device made by using STMicroelectronics VIPower technology, intended for building a complete flashing unit for two wheel vehicles.; 该VN1160 , VN1160-1 , VN1160T是一个整体>设备采用意法半导体的VIPower做>技术,旨在建立一个完整的闪光单元,两轮车辆。
VN1160-1
型号: VN1160-1
厂家: ETC    ETC
描述:

The VN1160, VN1160-1, VN1160T are a monolithic device made by using STMicroelectronics VIPower technology, intended for building a complete flashing unit for two wheel vehicles.
该VN1160 , VN1160-1 , VN1160T是一个整体>设备采用意法半导体的VIPower做>技术,旨在建立一个完整的闪光单元,两轮车辆。

半导体
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中文:  中文翻译
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VN1160/  
VN1160-1/ VN1160T  
®
DIRECTION INDICATOR  
DRIVER FOR MOTORBIKE  
TARGET SPECIFICATION  
TYPE  
VN1160  
R
I
V
CC  
DS(on)  
lim  
VN1160-1  
VN1160T  
0.08 Ω  
12 A  
40 V  
3
2
1
3
2
1
COMPLETE DIRECTION INDICATOR IN A 3  
PIN PACKAGE  
TO-220  
TO251 (IPAK)  
REQUIRES ONLY ONE EXTERNAL  
CAPACITOR TO SET FLASHING FREQUENCY  
3
1
DOUBLE FREQUENCY FLASHING IN LOW  
LOAD CONDITIONS  
TO252 (DPAK)  
ORDER CODES  
CYCLE BY CYCLE OVERTEMPERATURE  
SHUTDOWN  
VN1160  
VN1160-1  
VN1160T  
TO-252 (DPAK)  
TO-251 (IPAK)  
TO-220  
REVERSE BATTERY PROTECTION  
DESCRIPTION  
The VN1160, VN1160-1, VN1160T are a monolithic  
device made by using STMicroelectronics VIPower  
technology, intended for building a complete flashing unit  
for two wheel vehicles. The device is connected between  
connected between the CEXT pin and the OUT pin  
stores energy for powering the device during the ON  
phase and sets the flashing frequency.  
the battery positive terminal (V pin) and a mechanical  
CC  
switch to the right and/or left bulbs. As soon as the series  
switch connects the OUT pin to the bulbs, the device  
begins to turn on/off with a 50% duty cycle.  
When a low load is detected (output current lower than  
I ), flashing frequency is automatically doubled.  
df  
An external low voltage capacitor (220µF, 10V)  
BLOCK DIAGRAM  
V
CC  
CEXT CAPACITOR  
CHARGING  
OVERVOLTAGE  
CLAMP  
CONTROL  
LOGIC  
SAWTOOTH  
GENERATOR  
CEXT  
FLASHING FREQUENCY POWER MOSFET  
REGULATION  
GATE DRIVER  
CURRENT  
LIMITER  
OUT  
LOW LOAD  
DETECTION  
REVERSE BATTERY  
PROTECTION  
JUNCTION  
OVERTEMPERATURE  
February 1999  
1/10  
1
VN1160/ VN1160-1/ VN1160T  
ABSOLUTE MAXIMUM RATING  
Value  
Unit  
Symbol  
Parameter  
TO-220  
IPAK  
DPAK  
V
DC Supply Voltage  
40  
V
V
CC  
V
CEXT Capacitor Voltage  
6.5  
Internally Limited  
- 5  
dd  
I
Maximum DC drain Current  
Reverse DC Output Current  
Electrostatic Discharge (R=1.5K; C=100 pF)  
A
D
- I  
A
D
V
2000  
V
esd  
P
Power Dissipation T = 25 °C  
55  
45  
45  
W
°C  
°C  
tot  
C
T
Junction Operating Temperature  
Storage Temperature  
Internally Limited  
- 55 to 150  
j
T
stg  
THERMAL DATA  
Symbol  
Value  
IPAK  
3.33  
Unit  
Parameter  
TO-220  
2.2  
DPAK  
3.33  
R
Thermal Resistance Junction-case  
Thermal Resistance Junction-ambient  
Max  
Max  
°C/W  
°C/W  
thj-case  
R
60  
100  
100  
thj-amb  
CONNECTION DIAGRAM (TOP VIEW)  
3
2
1
OUT  
V
CC  
CEXT  
CURRENT AND VOLTAGE CONVENTIONS  
I
CC  
V
+
CC  
V
CC  
I
CEXT  
V
Buzzer  
CC  
CEXT  
V
ds  
OUT  
V
dd  
220mF, 10V  
I
OUT  
V
CEXT  
2 x 10W + 2W  
V
2 x 10W + 2W  
OUT  
2/10  
1
VN1160/ VN1160-1/ VN1160T  
(9V<V <16V; -20°C<T <85°C unless otherwise specified)  
ELECTRICAL CHARACTERISTICS  
CC  
j
POWER  
Symbol  
Parameter  
Test Conditions  
Min  
Typ  
Max  
Unit  
V
V
Clamp Voltage  
I
=1.6A  
40  
45  
50  
V
clamp  
DS  
OUT  
Supply Current from  
CEXT Pin  
I
V
=0V; V =5V; T =25 °C  
810  
TBD  
-1.0  
880  
7.2  
950  
TBD  
-0.3  
0.08  
µA  
V
CEXT  
DS  
dd  
j
V
CEXT Clamp Voltage  
I
I
=2mA; V =0V  
DS  
ddcl  
CEXT  
CEXT  
CEXT Reverse Clamp  
Voltage  
V
=-2mA; V =0V  
V
ddrcl  
DS  
R
On State Resistance  
V
=5V; I  
=1.6A; T =25 °C  
ON  
dd  
OUT  
j
SWITCHING (V =V =13.5V)  
CC  
en  
Symbol  
Parameter  
Test Conditions  
Min  
Typ  
0.02  
0.02  
Max  
Unit  
A/µs  
A/µs  
dI/dt  
dI/dt  
Turn-on Current Slope  
Turn-off Current Slope  
R
R
=8Ω  
(on)  
(off)  
LOAD  
=8Ω  
LOAD  
DYNAMIC PARAMETERS  
Symbol  
Parameter  
Test Conditions  
Min  
Typ  
Max  
Unit  
Self Oscillating Frequency  
V
=13.5V; 220µF between CEXT and  
CC  
f
1.08  
1.33  
1.58  
Hz  
osc  
OUT; R  
=8Ω  
LOAD  
Sawtooth High Level  
between CEXT and OUT  
V
V
=13.5V  
6
V
V
ch  
CC  
CC  
Sawtooth Low Level  
between CEXT and OUT  
V
V
=13.5V  
4.5  
cl  
PROTECTIONS  
Symbol  
Parameter  
Test Conditions  
=5V; V =13.5V  
Min  
Typ  
Max  
Unit  
A
I
Drain Current Limit  
V
12  
lim  
dd  
DS  
T
Overtemperature Shutdown  
Overtemperature Reset  
125  
100  
°C  
°C  
jsh  
T
jrs  
Double Frequency  
Flashing Threshold  
I
V
V
=9.5V (*)  
816  
940  
1066  
1417  
mA  
mA  
df1  
CC  
Double Frequency  
Flashing Threshold  
=15.5V (*)  
CC  
I
1062  
1240  
df2  
(*) See double frequency test configuration  
3/10  
1
VN1160/ VN1160-1/ VN1160T  
SWITCHING CHARACTERISTICS  
I
LOAD  
80%  
dI/dt(on)  
dI/dt(off)  
20%  
t
DOUBLE FREQUENCY TEST CONFIGURATION  
10V<V <15V  
CC  
10V<V <15V  
CC  
V
CC  
V
CC  
CEXT  
CEXT  
OUT  
OUT  
0.33Ω  
10W  
10W  
10W  
2W  
68Ω  
Test1: no defect, minimum load.  
Test2: defect, maximum load.  
The VN1160 must oscillate at f=F  
.
The VN1160 must oscillate at f=2 x F  
.
osc  
osc  
4/10  
2
1
VN1160/ VN1160-1/ VN1160T  
FUNCTIONAL DESCRIPTION  
1) Normal operation (see Fig.1)  
2) Low load condition (see Fig.1)  
When a nominal load (higher than a 20W bulb) is  
connected to the OUT pin, the device oscillates by  
charging the CEXT capacitor up to the threshold voltage  
If the load is lower than the load of a 14W bulb, the  
device will detect the low load at the end of the ON  
phase, and will double the oscillating frequency.  
3) Overload and overtemperature shutdown (see  
Fig.1)  
V
quickly, and then slowly discharging CEXT to the  
ch  
threshold voltage V by a constant current I  
.
cl  
CEXT  
The self oscillating frequency of the device is determined  
In the case of a short circuit of the load, the output current  
by the relation :  
I
is limited to the I  
value.  
OUT  
LIM  
If the junction temperature becomes too hot (T > T ),  
j
jsh  
the device turns off, and waits for the next cycle to turn on  
providing that the junction temperature has cooled to  
Icext  
-----------------------------------------------------------  
fosc =  
2 × Cext × (Vch – Vcl)  
below T  
.
jrs  
The duty cycle is close to 50%.  
5/10  
1
VN1160/ VN1160-1/ VN1160T  
Figure1: Waveforms  
NORMAL OPERATION  
V
V
V
CC  
OUT  
Vch  
Vcl  
dd  
fosc  
I
OUT  
LOW LOAD CONDITION  
V
CC  
V
OUT  
Vch  
Vcl  
V
dd  
2 fosc  
Idf  
I
OUT  
OVERLOAD AND OVERTEMPERATURE SHUTDOWN  
V
V
V
CC  
OUT  
Vch  
Vcl  
dd  
ILIM  
I
OUT  
The device stays OFF and  
restarts at next cycle, if Tj<Tjrs  
Tjsh  
Tjrs  
T
J
6/10  
1
1
VN1160/ VN1160-1/ VN1160T  
TO-220 MECHANICAL DATA  
mm.  
TYP  
inch  
TYP.  
DIM.  
MIN.  
4.40  
1.23  
2.40  
MAX.  
4.60  
1.32  
2.72  
MIN.  
0.173  
0.048  
0.094  
MAX.  
0.181  
0.051  
0.107  
A
C
D
D1  
E
1.27  
0.050  
0.49  
0.61  
1.14  
1.14  
4.95  
10.0  
0.70  
0.88  
1.70  
1.70  
5.15  
10.40  
0.019  
0.024  
0.044  
0.044  
0.194  
0.393  
0.027  
0.034  
0.067  
0.067  
0.203  
0.409  
F
F1  
F2  
G
H2  
L2  
L4  
L5  
L6  
L7  
L9  
DIA.  
16.4  
0.645  
13.0  
2.65  
15.25  
6.2  
14.0  
2.95  
15.75  
6.6  
0.511  
0.104  
0.600  
0.244  
0.137  
0.147  
0.551  
0.116  
0.620  
0.260  
3.5  
3.93  
3.85  
0.154  
3.75  
0.151  
7/10  
1
1
VN1160/ VN1160-1/ VN1160T  
TO-251 (IPAK) MECHANICAL DATA  
mm.  
TYP  
inch  
TYP.  
DIM.  
MIN.  
2.2  
MAX.  
2.4  
MIN.  
0.086  
0.035  
0.027  
0.025  
0.204  
MAX.  
0.094  
0.043  
0.051  
0.031  
0.212  
0.033  
A
A1  
A3  
B
0.9  
1.1  
0.7  
1.3  
0.64  
5.2  
0.9  
B2  
B3  
B5  
B6  
C
5.4  
0.85  
0.3  
0.012  
0.95  
0.6  
0.6  
6.2  
6.6  
4.6  
16.3  
9.4  
1.2  
1
0.037  
0.023  
0.023  
0.244  
0.260  
0.181  
0.641  
0.370  
0.047  
0.039  
0.45  
0.48  
6
0.017  
0.019  
0.236  
0.252  
0.173  
0.626  
0.354  
0.031  
C2  
D
E
6.4  
4.4  
15.9  
9
G
H
L
L1  
L2  
0.8  
0.8  
0.031  
H
L
D
L2  
L1  
8/10  
1
1
1
VN1160/ VN1160-1/ VN1160T  
TO-252 (DPAK) MECHANICAL DATA  
mm.  
TYP  
inch  
TYP.  
DIM.  
MIN.  
2.2  
MAX.  
2.4  
MIN.  
0.086  
0.035  
0.001  
0.025  
0.204  
0.017  
0.019  
0.236  
0.252  
0.173  
0.368  
MAX.  
0.094  
0.043  
0.009  
0.035  
0.212  
0.023  
0.023  
0.244  
0.260  
0.181  
0.397  
A
A1  
A3  
B
0.9  
1.1  
0.03  
0.64  
5.2  
0.23  
0.9  
B2  
C
5.4  
0.45  
0.48  
6
0.6  
C2  
D
0.6  
6.2  
E
6.4  
6.6  
G
4.4  
4.6  
H
9.35  
10.1  
L2  
L4  
0.8  
0.031  
0.6  
1
0.023  
0.039  
H
DETAIL "A"  
D
L2  
DETAIL "A"  
L4  
9/10  
1
1
1
1
VN1160/ VN1160-1/ VN1160T  
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  
1998 STMicroelectronics - Printed in ITALY- All Rights Reserved.  
STMicroelectronics GROUP OF COMPANIES  
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The Netherlands- Singapore - Spain - Sweden - Switzerland - Taiwan - Thailand - United Kingdom - U.S.A.  
http://www.st.com  
10/10  

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