LH1511AT [ETC]

;
LH1511AT
型号: LH1511AT
厂家: ETC    ETC
描述:

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LH1511AT/AAB/AABTR  
1 Form B  
Solid State Relay  
FEATURES  
• l/O Isolation, 5300 V  
Package Dimensions in Inches (mm)  
RMS  
DIP  
• Typical R 10 Ω  
• Load Voltage 200 V  
• Linear, AC/DC Operation  
ON  
DC  
5
S
S'  
Pin One ID.  
6
4
2
1
3
S
S'  
.256 (6.50)  
.248 (6.30)  
• Clean Bounce Free Switching  
• Low Power Consumption  
• High Reliability Monolithic Receptor  
• SMD Lead Available on Tape and Reel  
4
5
6
1
2
3
.343 (8.70)  
.335 (8.50)  
.300 (7.62)  
Typ.  
AGENCY APPROVALS  
.039  
(1.00)  
Min.  
• UL – File No. E52744  
• CSA – Certification 093751  
• BSI/BABT Cert. No. 7980  
• VDE 0884 Approval  
.150 (3.81)  
.130 (3.30)  
4° Typ.  
18° Typ.  
.150 (3.81)  
.110 (2.79)  
.020 (.051) Min.  
.014 (.35)  
.010 (.25)  
.035 (0.90)  
.031 (0.80)  
• FIMKO Approval  
.022 (0.55)  
.018 (0.45)  
.347 (8.82)  
.300 (7.62)  
.100 (2.54) Typ.  
Pin one I.D.  
APPLICATIONS  
SMD  
• General Telecom Switching  
• Security Equipment  
• Instrumentation  
.343 (8.71)  
.335 (8.51)  
• Industrial Controls  
.256 (6.50)  
.248 (6.30)  
DESCRIPTION  
The LH1511 relays are SPST normally closed switches  
(1 Form B) that can replace electromechanical relays in  
many applications. The relays are constructed by using  
a GaAlAs LED for actuation control and an integrated  
monolithic die for the switch output. The die, fabricated  
in a high-voltage dielectrically isolated technology, is  
comprised of a photodiode array, switch control circuity,  
and MOSFET switches. The relays can be configured for  
AC/DC or DC only operation.  
.050 (1.27) typ.  
.395 (10.03)  
.375 (9.63)  
.052 (1.33)  
.048 (1.22)  
.300 (7.62)  
typ.  
3° to 7°  
.039  
(0.99)  
min.  
.150 (3.81)  
.130 (3.30)  
.0098 (.25)  
.0040 (.10)  
18°  
4°  
.012 (0.31)  
.008 (0.20)  
.040 (1.016)  
.020 (0.508)  
.100 (2.54)  
.315 (8.00)  
min.  
Part Identification  
Part Number  
LH1511AT  
Description  
6-pin DIP, Tubes  
6-pin SMD, Gullwing, Tubes  
6-pin SMD, Gullwing, Tape and Reel  
LH1511AAB  
LH1511AABTR  
2000 Infineon Technologies Corp. • Optoelectronics Division • San Jose, CA  
www.infineon.com/opto • 1-888-Infineon (1-888-463-4636)  
OSRAM Opto Semiconductors GmbH & Co. OHG • Regensburg, Germany  
www.osram-os.com • +49-941-202-7178  
1
April 20, 2000-21  
Recommended Operating Conditions  
Absolute Maximum Ratings, T =25°C  
A
Stresses in excess of the Absolute Maximum Ratings can cause permanent  
damage to the device. These are absolute stress ratings only. Functional opera-  
tion of the device is not implied at these or any other conditions in excess of  
those given in the operational sections of the data sheet. Exposure to maximum  
rating conditions for extended periods can adversely affect device reliability.  
200  
160  
120  
Ambient Temperature Range (T ) ....................................40 to +85°C  
A
I
I
I
I
=2.0 mA  
=3.0 mA  
=4.0 mA  
=
Foff  
Foff  
Foff  
Foff  
Storage Temperature Range (T ).................................40 to +150°C  
stg  
80  
40  
0
Pin Soldering Temperature (t=10 s max) (T ) .............................260°C  
S
Input/Output Isolation Voltage  
(V  
t=1.0 s, I =10 µA max) (V ).............................. 5300 V  
RMS  
ISO ISO RMS  
5.0 to 20 mA  
LED Continuous Forward Current (I ).........................................50 mA  
F
LED Reverse Voltage (I 10 µA) (V )...........................................8.0 V  
R
R
DC or Peak AC Load Voltage (I 50 µA) (V )..............................200 V  
L
L
–40  
–20  
0
20  
40  
60  
80  
Continuous DC Load Current (I )  
L
Ambient Temperature (°C)  
Bidirectional Operation............................................................200 mA  
Unidirectional Operation..........................................................350 mA  
Peak Load Current (t=100 ms) (single shot) (I ) ......................600 mA  
P
Output Power Dissipation (continuous) (P  
)........................550 mW  
DISS  
Electrical Characteristics, T =25°C  
A
Minimum and maximum values are testing requirements. Typical values are characteristics of the device and are the result of  
engineering evaluations. Typical values are for information only and are not part of the testing requirements.  
Parameter  
Sym.  
Min.  
Typ.  
Max.  
Units  
Test Conditions  
Input  
LED Forward Current, Switch Turn-on  
LED Forward Current, Switch Turn-off  
LED Forward Voltage  
Output  
I
I
0.2  
0.9  
mA  
mA  
V
I =±200 mA, t=10 ms  
L
Fon  
Foff  
1.0  
2.0  
1.45  
V ±150 V  
L
V
1.15  
1.26  
I =10 mA  
F
F
ON-resistance  
ac/dc: Pin 4, 6 (+) to 5 (–)  
6.0  
10  
15  
I =0 mA, I =50 mA  
R
F
L
ON  
dc: Pin 4, 6 (+) to 5 (–)  
OFF-resistance  
1.5  
0.1  
2.5  
1.4  
0.07  
0.07  
35  
3.75  
I =0 mA, I =100 mA  
F L  
GΩ  
µA  
I =5.0 mA, V =±100 V  
F L  
R
OFF  
Off-state Leakage Current  
1.0  
1.0  
I =5.0 mA, V =±100 V  
F L  
C
I =5.0 mA, V =±200 V  
F L  
Output Capacitance  
pF  
I =5.0 mA, V =1.0 V  
F L  
15  
I =5.0 mA, V =50 V  
F L  
Switch Offset  
0.1  
µV  
I =0 mA  
F
Transfer  
Input/Output Capacitance  
Turn-on Time  
0.8  
pF  
ms  
ms  
V
=1.0 V  
ISO  
ISO  
1.2*  
1.0*  
3.0*  
3.0*  
I =5.0 mA, I =50 mA  
F L  
t
t
on  
Turn-off Time  
I =5.0 mA, I =50 mA  
F
L
off  
* I =10 mA  
F
2000 Infineon Technologies Corp. • Optoelectronics Division • San Jose, CA  
www.infineon.com/opto • 1-888-Infineon (1-888-463-4636)  
OSRAM Opto Semiconductors GmbH & Co. OHG • Regensburg, Germany  
www.osram-os.com • +49-941-202-7178  
LH1511AT/AAB/AABTR  
April 20, 2000-21  
2
Typical Performance Characteristics  
Figure 1. LED Voltage vs.Temperature  
Figure 4. LED Dropout Voltage vs.Temperature  
1.6  
1.20  
I = 100 mA  
L
1.5  
1.15  
1.10  
1.05  
I =50 mA  
F
TYP.  
I =20 mA  
F
1.4  
1.3  
1.2  
1.1  
1.0  
MIN.  
I =1.0 mA  
F
1.00  
0.95  
I =2.0 mA  
F
I =5.0 mA  
F
I =10 mA  
F
–40  
–20  
0
20  
40  
60  
80  
–40  
–20  
0
20  
40  
60  
80  
Ambient Temperature (°C)  
Ambient Temperature (°C)  
Figure 2. LED Current for Switch Turn-off vs.Temperature  
Figure 5. ON-resistance vs.Temperature  
50  
40  
100  
I = 100 mA  
L
80  
60  
30  
20  
40  
10  
20  
0
0
–10  
–20  
–20  
–40  
–60  
I = 50 mA  
L
–30  
–40  
–40  
–20  
0
20  
40  
60  
80  
–40  
–20  
0
20  
40  
60  
80  
Ambient Temperature (°C)  
Ambient Temperature (°C)  
Figure 3. Switch Capacitance vs. Applied Voltage  
Figure 6. Output Isolation  
80  
100  
70  
60  
I = 5.0 mA  
F
T =25°C  
80  
60  
A
f=1.0 MHz  
50  
40  
30  
I =10 mA  
F
V =10 V  
P
R =50 Ω  
L
40  
20  
20  
0
10  
0
2
3
4
5
6
7
10  
0
20  
40  
60  
80  
100  
10  
10  
10  
10  
10  
Applied Voltage (V)  
Frequency (Hz)  
2000 Infineon Technologies Corp. • Optoelectronics Division • San Jose, CA  
www.infineon.com/opto • 1-888-Infineon (1-888-463-4636)  
OSRAM Opto Semiconductors GmbH & Co. OHG • Regensburg, Germany  
www.osram-os.com • +49-941-202-7178  
LH1511AT/AAB/AABTR  
April 20, 2000-21  
3
Figure 7. Insertion Loss vs. Frequency  
Figure 10. Leakage Current vs. Applied Voltage at 25°C  
0.30  
400  
360  
I =20 mA  
F
R = 600  
L
0.25  
0.20  
320  
280  
240  
200  
160  
120  
80  
0.15  
0.10  
0.05  
0
I =10 mA  
F
I =5.0 mA  
F
40  
I =2.0 mA  
F
0
2
3
4
5
10  
10  
10  
10  
0
50  
100  
150  
200  
250  
300  
350  
Frequency (Hz)  
Load Voltage (V)  
Figure 8. Leakage Current vs. Applied Voltage at 50°C  
Figure 11. Leakage Current vs. Applied Voltage at 70°C  
700  
700  
600  
500  
600  
500  
I =20 mA  
F
I =20 mA  
F
400  
400  
300  
200  
100  
0
I =10 mA  
F
300  
200  
100  
0
I =10 mA  
F
I =5.0 mA  
F
I =5.0 mA  
F
I =2.0 mA  
F
I =2.0 mA  
F
0
50  
100  
150 200  
250  
300 350 400  
0
50  
100  
150  
200  
250  
300  
350 400  
Load Voltage (V)  
Load Voltage (V)  
Figure 9. Leakage Current vs. Applied Voltage at 85°C  
Figure 12. Switch Breakdown Voltage vs.Temperature  
8
700  
I =20 mA  
F
6
4
2
0
600  
500  
400  
300  
200  
I =10 mA  
F
I =5.0 mA  
F
I =2.0 mA  
F
–2  
–4  
–6  
–8  
100  
0
0
50  
100  
150  
200  
250  
300  
350 400  
–40  
–20  
0
20  
40  
60  
80  
Ambient Temperature (°C)  
Load Voltage (V)  
2000 Infineon Technologies Corp. • Optoelectronics Division • San Jose, CA  
www.infineon.com/opto • 1-888-Infineon (1-888-463-4636)  
OSRAM Opto Semiconductors GmbH & Co. OHG • Regensburg, Germany  
www.osram-os.com • +49-941-202-7178  
LH1511AT/AAB/AABTR  
April 20, 2000-21  
4
Figure 13. Switch Offset Voltage vs.Temperature  
Figure 16.Turn-off Time vs. LED Current  
3.5  
10  
I =50 mA  
L
3.0  
2.5  
2.0  
1.5  
8
6
4
–40°C  
25°C  
85°C  
1.0  
0.5  
0
2
0
20  
30  
40  
50  
60  
70  
80  
90  
0
10  
20  
30  
40  
50  
Ambient Temperature (°C)  
LED Forward Current (mA)  
Figure 14.Turn-on Time vs. LED Current  
2.5  
I =50 mA  
L
–40°C  
2.0  
1.5  
25°C  
85°C  
1.0  
0.5  
0
10  
20  
30  
40  
50  
LED Forward Current (mA)  
Figure 15.Turn-on/off vs.Temperature  
90  
t
on  
I =5.0 mA  
70  
50  
F
I =50 mA  
L
t
off  
30  
10  
–10  
–30  
–50  
–40  
–20  
0
20  
40  
60  
80  
Ambient Temperature (°C)  
2000 Infineon Technologies Corp. • Optoelectronics Division • San Jose, CA  
www.infineon.com/opto • 1-888-Infineon (1-888-463-4636)  
OSRAM Opto Semiconductors GmbH & Co. OHG • Regensburg, Germany  
www.osram-os.com • +49-941-202-7178  
LH1511AT/AAB/AABTR  
April 20, 2000-21  
5

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