ASSR-4128 [AVAGO]

Form A, Solid State Relay (Photo MOSFET) (400V/0.10A/35); A型,固态继电器(Photo MOSFET ) ( 400V / 0.10A / 35 )
ASSR-4128
型号: ASSR-4128
厂家: AVAGO TECHNOLOGIES LIMITED    AVAGO TECHNOLOGIES LIMITED
描述:

Form A, Solid State Relay (Photo MOSFET) (400V/0.10A/35)
A型,固态继电器(Photo MOSFET ) ( 400V / 0.10A / 35 )

继电器 固态继电器
文件: 总11页 (文件大小:160K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
ASSR-4118 , ASSR-4119 and ASSR-4128  
Form A, Solid State Relay (Photo MOSFET)  
(400V/0.10A/35)  
Data Sheet  
Description  
Features  
Compact Solid-State Bi-directional Signal Switch  
The ASSR-41XX Series consists of an AlGaAs infrared  
light-emitting diode (LED) input stage optically coupled  
to a high-voltage output detector circuit. The detector  
consists of a high-speed photovoltaic diode array and  
driver circuitry to switch on/off two discrete high volt-  
age MOSFETs. The relay turns on (contact closes) with a  
minimum input current of 3mA through the input LED.  
The relay turns off (contact opens) with an input voltage  
of 0.8V or less.  
Single and Dual Channel Normally-off Single-Pole-  
Single-Throw (SPST) Relay  
400V Output Withstand Voltage  
0.1A or 0.2A Current Rating  
(See Schematic for ASSR-4119 Connection A and B)  
Low Input Current: CMOS Compatibility  
Low On-Resistance: 8Typical for DC-only,  
25 Typical for AC/DC  
The single channel configurations, ASSR-4118 and ASSR-  
4119, are equivalent to 1 Form A Electromechanical Re-  
lays (EMR), and the dual channel configuration, ASSR-  
4128, is equivalent to 2 Form A EMR. They are available  
in 4-pin SO, 6-pin DIP, 8-pin DIP and Gull Wing Surface  
Mount for DIP packages. ASSR-4119 enables AC/DC and  
DC-only output connections. For DC-only connection,  
the output current, Io, increases to 0.2A and the on-re-  
sistance, R(ON) reduces to 10.  
High Input-to-Output Insulation Voltage  
(Safety and Regulatory Approvals Pending)  
- 3750 Vrms for 1 min per UL1577  
- CSA Component Acceptance  
Functional Diagram  
Opto-isolation  
1
2
4
3
Truth Table  
Applications  
LED Output  
Off Open  
On Close  
Telecommunication Switching  
Data Communications  
Industrial Controls  
Medical  
Security  
Single Channel, SPST Relay,  
1 Form A in 4-Pin SO Package  
EMR / Reed Relay Replacement  
CAUTION: It is advised that normal static precautions be taken in handling and assembly  
of this component to prevent damage and/or degradation which may be induced by ESD.  
Ordering Information  
ASSR-xxxx is UL Recognized with 3750 Vrms for 1 minute per UL1577 and is approved under CSA Component Accept-  
ance Notice #5.  
Option  
Part number  
RoHS Compliant  
Package  
Surface Mount Gull Wing Tape & Reel Quantity  
-003E  
X
100 units per tube  
ASSR-4118  
SO-4  
-503E  
-001E  
-301E  
-501E  
-002E  
-302E  
-502E  
X
X
X
X
1500 units per reel  
50 units per tube  
50 units per tube  
1000 units per reel  
50 units per tube  
50 units per tube  
1000 units per reel  
X
X
X
X
ASSR-4119  
ASSR-4128  
300mil DIP-6  
300 mil DIP-8  
X
X
X
X
To order, choose a part number from the part number column and combine with the desired option from the option  
column to form an order entry.  
Example 1:  
ASSR-4119-501E to order product of 300mil DIP-6 Gull Wing Surface Mount package in Tape and Reel packaging  
and RoHS Compliant.  
Example 2:  
ASSR-4128-002E to order product of 300mil DIP-8 package in tube packaging and RoHS Compliant.  
Option datasheets are available. Contact your Avago sales representative or authorized distributor for information.  
System Schematics  
ASSR-4118  
Opto-isolation  
Opto-isolation  
1
2
4
3
1
2
4
3
Equivalent  
Relay  
Diagram  
2
System Schematics (Continued)  
ASSR-4119 Connection A  
Opto-Isolation  
Opto-Isolation  
6
1
1
2
6
4
Equivalent  
Relay  
Diagram  
5
2
3
Vo  
4
ASSR-4119 Connection B  
Opto-Isolation  
Opto-Isolation  
1
6
+
1
4 and 6  
Vo  
Equivalent  
Relay  
Diagram  
5
2
3
-
2
5
4
ASSR-4128  
Opto-isolation  
Opto-isolation  
1
2
3
4
8
7
6
5
8
7
1
2
Equivalent  
Relay  
Diagram  
3
4
6
5
3
Package Outline Drawings  
ASSR-4118 4-Pin Small Outline Package  
LAND PATTERN RECOMMENDATION  
[ 0.100 ]  
2.54  
[ 0.31 ]  
0.80  
LEAD FREE  
TYPE NUMBER  
DATE CODE  
[ 0.047 ]  
1.20  
XXXX  
[ 0.189 ]  
4.80  
[ 0.173 0.008 ]  
4.40 0.20  
YWW  
[ 0.268 0.016 ]  
6.8 0.4  
[ 0.015 ]  
0.375  
[ 0.10 ]  
2.540  
[ 0.016 ]  
0.41  
[ 0.079 0.009 ]  
2.0 0.2  
[ 0.169 0.008 ]  
4.3 0.2  
[ 0.018 ]  
0.46  
[ 0.008 ]  
0.20  
[ 0.02 ]  
0.5  
[ 0.004 0.004 ]  
0.102 0.102  
[ 0.02 ]  
0.5  
DIMENSIONS IN MILLIMETERS AND [INCHES]  
OPTION NUMBER 500 AND UL RECOGNITION NOT MARKED  
ASSR-4119 6-Pin DIP Package  
7.36 (0.290)  
7.88 (0.310)  
9.40 (0.370)  
9.90 (0.390)  
TYPE  
NUMBER  
6
5
4
0.20 (0.008)  
0.33 (0.013)  
LEAD FREE  
DATE CODE  
A XXXX  
UL  
YYWW  
2
UR  
RECOGNITION  
5 ° TYP.  
PIN  
ONE  
DOT  
1
3
6.10 (0.240)  
6.60 (0.260)  
1.78 (0.070) MAX.  
4.70 (0.185) MAX.  
(0.020)  
(0.040)  
2.66 (0.105) MIN.  
0.45 (0.018)  
0.65 (0.025)  
2.28 (0.090)  
2.80 (0.110)  
2.16 (0.085)  
2.54 (0.100)  
DIMENSIONS IN MILLIMETERS AND (INCHES).  
4
ASSR-4119 6-Pin DIP Package with Gull Wing Surface Mount Option 300  
9.65 0.25  
(0.380 0.010)  
LAND PATTERN RECOMMENDATION  
6.35 0.25  
(0.250 0.010)  
10.9 (0.430)  
2.0 (0.080)  
1.27 (0.050)  
9.65 0.25  
(0.380 0.010)  
1.78  
(0.070)  
MAX.  
7.62 0.25  
(0.300 0.010)  
0.635 0.130  
0.20 (0.008)  
0.30 (0.013)  
(0.025 0.005)  
4.19  
(0.165)  
MAX.  
0.635 0.25  
(0.025 0.010)  
2.54  
(0.100)  
2.29  
(0.090)  
TYP.  
12 ¡ NOM.  
NOTE: FLOATING LEAD PROTRUSION IS 0.25 mm (10 mils) MAX.  
ASSR-4128 8-Pin DIP Package  
7.62 0.25  
(0.300 0.010)  
9.65 0.25  
(0.380 0.010)  
8
1
7
6
5
6.35 0.25  
(0.250 0.010)  
TYPE NUMBER  
OPTION CODE*  
DATE CODE  
A XXXX  
LEAD FREE  
U R  
YYWW  
UL  
2
3
4
RECOGNITION  
1.78 (0.070) MAX.  
1.19 (0.047) MAX.  
+ 0.076  
- 0.051  
0.254  
5° TYP.  
+ 0.003)  
- 0.002)  
3.56 0.13  
(0.140 0.005)  
(0.010  
4.70 (0.185) MAX.  
0.51 (0.020) MIN.  
2.92 (0.115) MIN.  
DIMENSIONS IN MILLIMETERS AND (INCHES).  
OPTION NUMBERS 300 AND 500 NOT MARKED.  
1.080 0.320  
(0.043 0.013)  
0.65 (0.025) MAX.  
2.54 0.25  
(0.100 0.010)  
5
ASSR-4128 8-Pin DIP Package with Gull Wing Surface Mount Option 300  
LAND PATTERN RECOMMENDATION  
9.65 0.25  
(0.380 0.010)  
1.016 (0.040)  
6
8
1
7
5
6.350 0.25  
(0.250 0.010)  
10.9 (0.430)  
2.0 (0.080)  
3
2
4
1.27 (0.050)  
9.65 0.25  
1.780  
(0.070)  
MAX.  
(0.380 0.010)  
1.19  
(0.047)  
MAX.  
7.62 0.25  
(0.300 0.010)  
+ 0.076  
0.254  
- 0.051  
3.56 0.13  
(0.140 0.005)  
+ 0.003)  
- 0.002)  
(0.010  
1.080 0.320  
(0.043 0.013)  
0.635 0.25  
(0.025 0.010)  
12° NOM.  
0.635 0.130  
(0.025 0.005)  
2.54  
(0.100)  
BSC  
DIMENSIONS IN MILLIMETERS (INCHES).  
LEAD COPLANARITY = 0.10 mm (0.004 INCHES).  
NOTE: FLOATING LEAD PROTRUSION IS 0.25 mm (10 mils) MAX.  
Lead Free IR Profile  
TIME WITHIN 5°C of ACTUAL  
PEAK TEMPERATURE  
t
p
20-40 SEC.  
260 +0/-5°C  
T p  
217°C  
T L  
RAMP-UP  
3°C/SEC. MAX.  
RAMP-DOWN  
6°C/SEC. MAX.  
150 - 200°C  
T smax  
T smin  
ts  
tL  
60 to 150 SEC.  
PREHEAT  
60 to 180 SEC.  
25  
t 25°C to PEAK  
TIME (SECONDS)  
NOTES:  
THE TIME FROM 25°C to PEAK TEMPERATURE = 8 MINUTES MAX.  
Tsmax = 200°C, T = 150°C  
smin  
Non-halide flux should be used  
6
Regulatory Information  
The ASSR-4118, ASSR-4119 and ASSR-4128 are approved by the following organizations:  
UL  
Approved under UL 1577, component recognition program up to V = 3750 V  
ISO  
RMS  
CSA  
Approved under CSA Component Acceptance Notice #5.  
Insulation and Safety Related Specifications  
ASSR-4119  
Symbol ASSR-4118 ASSR-4128  
Parameter  
Units Conditions  
Minimum External Air Gap  
(Clearance)  
L(101)  
4.9  
7.1  
7.4  
mm  
Measured from input terminals to output  
terminals, shortest distance through air.  
Minimum External Tracking  
(Creepage)  
L(102)  
4.9  
mm  
Measured from input terminals to output  
terminals, shortest distance path along  
body.  
Minimum Internal Plastic Gap  
(Internal Clearance)  
0.08  
0.08  
mm  
V
Through insulation distance conductor to  
conductor, usually the straight line distance  
thickness between the emitter and detector.  
Tracking Resistance  
(Comparative Tracking Index)  
CTI  
175  
IIIa  
175  
IIIa  
DIN IEC 112/VDE 0303 Part 1  
Isolation Group  
(DIN VDE0109)  
Material Group (DIN VDE 0109)  
7
Absolute Maximum Ratings  
Parameter  
Symbol  
TS  
Min.  
-55  
-40  
Max.  
125  
85  
Units  
C  
Note  
Storage Temperature  
Operating Temperature  
Junction Temperature  
Lead Soldering Cycle  
TA  
C  
TJ  
125  
260  
10  
C  
Temperature  
Time  
C  
s
Input Current  
Average  
Surge  
IF  
25  
mA  
50  
Transient  
1000  
5
Reversed Input Voltage  
Input Power Dissipation  
VR  
PIN  
PIN  
PIN  
PO  
PO  
PO  
IO  
V
ASSR-4118  
ASSR-4119  
ASSR-4128  
ASSR-4118  
ASSR-4119  
ASSR-4128  
40  
mW  
mW  
mW  
mW  
mW  
mW  
A
40  
80  
Output Power Dissipation  
300  
300  
600  
0.10  
0.20  
Average Output Current  
1
1
(TA = 25°C, TC 100°C)  
ASSR-4119  
IO  
A
Connection B  
Output Voltage (TA = 25°C)  
VO  
VO  
-400  
0
400  
400  
V
V
2
ASSR-4119  
Connection B  
Solder Reflow Temperature Profile  
See Lead Free IR Profile  
Recommended Operating Conditions  
Parameter  
Symbol  
Min.  
3
Max.  
20  
Units  
mA  
V
Note  
Input Current (ON)  
Input Voltage (OFF)  
Operating Temperature  
IF(ON)  
VF(OFF)  
TA  
3
0
0.8  
-40  
+85  
C  
Package Characteristics  
Unless otherwise specified, T = 25°C.  
A
Parameter  
Sym.  
Min.  
Typ.  
Max.  
Units  
Conditions  
Note  
Input-Output Momentary  
Withstand Voltage  
VISO  
3750  
Vrms  
RH 50%,  
t = 1 min  
4, 5  
Input-Output Resistance  
Input-Output Capacitance  
RI-O  
1012  
0.4  
V
I-O = 500 Vdc  
f = 1 MHz;  
I-O = 0 Vdc  
f = 1 MHz;  
I-O = 0 Vdc  
f = 1 MHz;  
I-O = 0 Vdc  
ASSR-4118  
CI-O  
pF  
4
V
ASSR-4119  
CI-O  
0.5  
0.8  
pF  
pF  
V
ASSR-4128  
CI-O  
V
8
Electrical Specifications (DC)  
For operating T = +25°C  
A
Parameter  
Sym.  
Min.  
Typ.  
Max.  
Units  
Conditions  
Fig.  
Note  
Output Withstand  
Voltage  
|VO(OFF)  
|
400  
450  
V
VF =0.8V, IO=250 A  
5
Output Leakage  
Current  
IO(OFF)  
VR  
0.005  
1
A  
V
VF =0.8V, VO=400V  
IR =10 A  
Input Reverse  
Breakdown Voltage  
5
Input Forward  
Voltage  
VF  
1.1  
1.3  
25  
8
1.6  
35  
10  
V
IF =5mA  
6, 7  
8, 9  
Output  
On-resistance  
R(ON)  
IF =5mA, IO=100mA,  
Pulse 30ms  
6
ASSR-4119  
Connection B  
IF =5mA, IO=200mA,  
Pulse 30ms  
Switching Specifications (AC)  
For operating T = +25°C  
A
Parameter  
Sym.  
TON  
Min.  
Typ.  
0.7  
Max.  
5.0  
Units  
Conditions  
Fig.  
Note  
Turn On Time  
Turn Off Time  
ms  
ms  
IF =5mA, IO=100mA  
IF =5mA, IO=100mA  
TOFF  
0.04  
5.0  
Notes:  
1. For derating, refer to Figure 1, 2, 3 and 4.  
2. The voltage across the output terminals of the relay should not exceed this rated withstand voltage. Over-voltage protection circuits should  
be added in some applications to protect against over-voltage transients.  
3. Threshold to switch device is I 0.5mA, however, for qualified device performance over temperature range, it is recommended to operate at  
F
I =5mA.  
F
4. Device is considered as a two terminal device:  
ASSR-4118 - pin 1, 2 shorted and pin 3, 4 shorted.  
ASSR-4119 - pin 1, 2, 3 shorted and pin 4, 5, 6 shorted.  
ASSR-4128 - pin 1, 2, 3, 4 shorted and pin 5, 6, 7, 8 shorted.  
5. The Input-Output Momentary Withstand Voltage is a dielectric voltage rating that should not be interpreted as an input-output continuous  
voltage rating. For the continuous voltage rating refer to the IEC/EN/DIN EN 60747-5-2 Insulation Characteristics Table (if applicable), your  
equipment level safety specification, or Avago Technologies Application Note 1074, “Optocoupler Input-Output Endurance Voltage.”  
6. During the pulsed R  
measurement ( I duration 30ms), ambient (T ) and case temperature (T ) are equal.  
O A C  
(ON)  
9
Application Information  
On-Resistance and Derating Curves  
Figure 1, 2, 3 and 4 specify the maximum average out-  
put current allowable for a given ambient temperature.  
The maximum allowable output current and power dis-  
sipation are related by the expression Rss = Po(max)/  
(lo(max)) from which Rss can be calculated. Staying  
within the safe area assures that the steady state MOS-  
FET junction temperature remains less than 125 °C.  
The Output On-Resistance, R  
specified in this data  
(ON),  
sheet, is the resistance measured across the output con-  
tact when a pulse current signal (lo=100mA) is applied  
to the output pins. The use of a pulsed signal (≤30ms)  
implies that each junction temperature is equal to the  
ambient and case temperatures. The steady-state resis-  
tance, Rss, on the other hand, is the value of resistance  
measured across the output contact when a DC current  
signal is applied to the output pins for a duration suf-  
ficient to reach thermal equilibrium. Rss includes the ef-  
fects of the temperature rise in the device.  
2
IF = 10mA, 4-Layer Board  
IF = 10mA, 4-Layer Board  
0.12  
0.12  
0.1  
0.1  
0.08  
0.08  
0.06  
Safe  
Safe  
Operating  
0.06  
0.04  
0.02  
Operating  
Area  
Area  
0.04  
0.02  
0
0
-40  
-20  
80  
-40  
-20  
80  
0
0
20  
60  
100  
20  
TA - TEMPERATURE - ˚C  
60  
100  
40  
40  
TA - TEMPERATURE - ˚C  
Figure 1. Maximum Output Current Rating vs Ambient Temperature  
(ASSR-4118-003E)  
Figure 2. Maximum Output Current Rating vs Ambient Temperature  
(ASSR-4119-001E)  
IF = 10mA, 4-Layer Board  
IF = 10mA, 4-Layer Board  
0.12  
0.2  
0.1  
2-Channel  
0.15  
0.08  
0.06  
0.04  
1-Channel  
Safe  
0.1  
Safe  
Operating  
Operating  
Area  
Area  
0.05  
0.02  
0
0
-40  
-20  
80  
0
20  
TA - TEMPERATURE - ˚C  
60  
100  
-40  
-20  
80  
0
20  
A - TEMPERATURE - ˚C  
60  
100  
40  
40  
T
Figure 3. Maximum Output Current Rating vs Ambient Temperature  
(ASSR-4119-001E DC Connection)  
Figure 4. Maximum Output Current Rating vs Ambient Temperature  
(ASSR-4128-002E)  
10  
1.1  
1.05  
1
1.4  
1.3  
1.2  
1.1  
IF = 5mA  
IO = 250μA  
VF = 0.8V  
0.95  
0.9  
-40  
-15  
10  
35  
60  
85  
-40  
-15  
10  
35  
60  
85  
TA - TEMPERATURE - ˚C  
TA - TEMPERATURE - ˚C  
Figure 5. Normalized Output Withstand Voltage vs Temperature  
Figure 6. Typical Forward Voltage vs Temperature  
22  
30.0  
25.0  
20  
IF = 5mA  
TA = -40ºC  
TA = 0ºC  
18  
16  
14  
12  
10  
8
20.0  
15.0  
TA = 25ºC  
10.0  
T
A = 85ºC  
5.0  
0.0  
0.6  
-40  
-15  
10  
35  
60  
85  
0.8  
1.0  
1.2  
1.4  
TA - TEMPERATURE - ˚C  
VF - FORWARD VOLTAGE - V  
Figure 7. Typical Forward Current vs Forward Voltage  
0.10  
Figure 8. Typical on Resistance vs Temperature  
0.06  
TA= 85ºC  
0.02  
TA = 25ºC  
-0.02  
-0.06  
-0.10  
TA= 0ºC  
TA= -40ºC  
-2  
-1  
0
1
2
OUTPUT VOLTAGEVO (V)  
Figure 9. Typical Output Current vs Output Voltage  
For product information and a complete list of distributors, please go to our web site: www.avagotech.com  
Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and other countries.  
Data subject to change. Copyright © 2005-2012 Avago Technologies. All rights reserved.  
AV02-0218EN - March 19, 2012  

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