LH1529FP/FPTR
LH1529GP/GPTR
Telecom Switch – 1 Form A
Solid State Relay
FEATURES
• Solid State Relay and Optocoupler in One Package
• Surface Mount Package—
NEW FLAT PAK
• l/O Isolation, 3000 V
RMS
• LH1529FP, CTR Min.=33%
• LH1529GP, CTR Min.=100%
• Optocoupler
– Bidirectional Current Detection
• Solid-state Relay (Equivalent to TS117P)
– Typical
R
ON
20
Ω
– Load Voltage 350 V
– Load Current 120 mA
– Current Limit Protection
– High Surge Capability
– Linear, AC/DC Operation
– Clean Bounce Free Switching
– Low Power Consumption
– High Reliability Monolithic Receptor
AGENCY APPROVALS
• UL – File No. E 52744
• FIMKO Approval
APPLICATIONS
• PCMCIA/Notebook
• General Telecom Switching
– On/off Hook Control
– Dial Pulse
– Ring Current Detection
– Loop Current Sensing
• See Appnote 56
DESCRIPTION
The LH1529FP and LH1529GP Telecom switches con-
sist of an optically coupled solid state relay (SSR) and a
bidirectional input optocoupler. The SSR is ideal for per-
forming switchhook and dial-pulse switching while the
optocoupler performs ring detection and loop current
sensing functions. Both the SSR and opto coupler pro-
vide 3000 V
RMS
of input to ouput isolation.
The SSR is integrated on a monolithic receptor die using
high voltage technology. The SSR features low ON-
resistance, high breakdown voltage and current-limit
circuitry that protects the relay from telephone line
induced lightning surges.
The optocoupler provides bidirectional current sensing
via two antiparallel GaAs infrared emitting diodes. The
opto channel provides a minimum CTR of 33% at 6.0 mA.
The LH1529FP and LH1529GP come in an 8 pin, 0.080
inch thick plastic flat pak, SMD.
©
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
Dimensions in Inches (mm)
.029
(.74)
pin
one
ID
.180
(4.57)
A
1
K
2
C
3
E
4
8
S
7
S’
6
A/K
5
A/K
.374 typ.
(9.50)
See Detail A
.000–.004
(.000–.102)
.080
(2.03)
.016
(.41)
.100
(2.54)
Lead
coplarity
.004 (.10)
max.
.274
.216 (6.96)
(5.48)
40°
.015 (.39)
.010 typ.
(.25)
.020
(.50)
Detail A
(not to scale)
3°–7°
)
13
(2. 1)
4
.08 6 (.4
1
.0
.020 (.51)
.010 (.25)
Part Identification
Part Number
LH1529FP
LH1529FPTR
LH1529GP
LH1529GPTR
Description
8-pin SMD, Tubes
8-pin SMD, Tape and Reel
1
April 19, 2000-20
Recommended Operating Conditions
Absolute Maximum Ratings,
T
A
=25
°
C
Stresses in excess of the absolute Maximum Ratings can cause permanent
damage to the device. These are absolute stress ratings only. Functional oper-
ation of the device is not implied at these or any other conditions in excess of
those given in the operational sections of this document. Exposure to absolute
Maximum Ratings for extended periods of time can adversely affect reliability.
Package
Ambient Temperature Range ........................................... –40 to +85
°
C
Storage Temperature Range .......................................... –40 to +125
°
C
Soldering Temperature (t=10 s max.) ......................................... 260
°
C
Isolation Test Voltage (for 1.0 s) ........................................... 3000 V
RMS
Isolation Resistance
V
IO
=500 V,
T
A
=25
°
C
.....................................................................≥
10
12
Ω
V
IO
=500 V,
T
A
=100
°
C
...................................................................≥
10
11
Ω
Total Power Dissipation ............................................................ 600 mW
SSR
LED Continuous Forward Current ...............................................50 mA
LED Reverse Voltage (
I
R
≤
10
µ
A) .................................................. 6.0 V
DC or Peak AC Load Voltage (
I
L
≤
50
µ
A) ..................................... 350 V
Continues DC Load Current......................................................120 mA
Optocoupler
LED Continuous Forward Current ...............................................50 mA
LED Reverse Voltage (
I
R
≤
10
µ
A) .................................................. 6.0 V
Collector to Emitter Breakdown Voltage......................................... 30 V
Phototransistor Power Dissipation............................................ 150 mW
Electrical Characteristics,
T
A
=25
°
C
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
SSR
LED Forward Current for Switch Turn-on
LED Forward Current for Switch Turn-off
LED Forward Voltage
ON-Resistance
OFF-Resistance
Current Limit
Output Off-state Leakage Current
Output Capacitance
Pin 7 to Pin 8
Turn-on Time
Turn-off Time
Optocoupler
LED Forward Voltage
DC Current Transfer Ratio
Saturation Voltage
Dark Current Leakage
Trickle Current Leakage
FP
GP
Symbol
Min.
Typ.
Max.
Unit
Test Condition
I
Fon
I
Foff
V
F
R
ON
R
OFF
I
limit
—
—
—
—
—
0.2
1.0
—
—
170
—
—
—
—
—
—
1.1
1.0
1.2
20
5000
210
0.6
—
55
10
1.3
0.1
3.0
—
1.5
25
—
250
200
1.0
—
—
2.5
2.5
mA
mA
V
Ω
G
Ω
mA
nA
µ
A
pF
ms
ms
I
L
=100 mA, t=10 ms
V
L
=
±
300 V
I
F
=10 mA
I
F
=5.0 mA,
I
L
=
±
50 mA
I
F
=0 mA,
V
L
=
±
100 V
I
F
=5.0 mA, t=5.0 ms
I
F
=0 mA,
V
L
=
±
100 V
I
F
=0 mA,
V
L
=
±
350 V
I
F
=0 mA,
V
L
=1.0 V
I
F
=0 mA,
V
L
=50 V
I
F
=5.0 mA,
I
L
=50 mA
I
F
=5.0 mA,
I
L
=50 mA
I
F
=10 mA
I
F
=6.0 mA,
V
CE
=0.5 V
I
F
=16 mA,
I
C
=2.0 mA
I
F
=0 mA,
V
CE
=5.0 V
I
F
=5.0
µ
A,
V
CE
=5.0 V
t
on
t
off
V
F
CTR
0.9
33
100
—
—
—
1.2
150
0.07
—
—
1.5
—
0.5
500
1.0
V
%
V
nA
µ
A
V
CEsat
I
CEO1
I
CEO2
©
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
LH1529FP/FPTR/LH1529GP/GPTR
2
April 19, 2000-20
Typical Performance Characteristics
Figure 1. LED Voltage vs. Temperature
1.6
1.5
LED Forward Voltage (V)
1.4
1.3
1.2
1.1
I
F
=1.0 mA
I
F
=2.0 mA
I
F
=5.0 mA
I
F
=10 mA
–20
0
20
40
60
Ambient Temperature (°C)
80
I
F
=20 mA
Change in Current Limit (%)
Normalized to 25°C
Figure 4. Current Limit vs. Temperature
40
30
20
10
0
–10
–20
–30
–40
–40
–20
0
20
40
60
80
I
F
= 5.0 mA
t = 5.0 ms
V
L
=
SEE ELEC. CHAR
.
I
F
=50 mA
1.0
–40
Ambient Temperature (°C)
Figure 2. LED Current for Switch Turn-on vs. Temperature
100
I
L
= 100 mA
Figure 5. Switch Breakdown Voltage vs. Temperature
8
Change in Breakdown Voltage (%)
Normalized to 25°C
6
4
2
0
–2
–4
–6
–8
–40
–20
0
20
40
60
80
LED Forward Current for Switch
Turn-on (%), Normalized to 25
°C
80
60
40
20
0
–20
–40
–60
–40
–20
0
20
40
60
80
Ambient Temperature (°C)
Ambient Temperature (°C)
Figure 3. ON-Resistance vs. Temperature
40
30
Change in R
ON
(%)
20
10
0
–10
–20
–30
–40
–40
–20
0
20
40
60
80
I
F
= 5.0 mA
I
L
= 50 mA
Figure 6. Switch Capacitance vs. Applied Voltage
80
70
60
Capacitance (pF)
50
40
30
20
10
0
0
20
40
60
80
100
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
Applied Voltage (V)
LH1529FP/FPTR/LH1529GP/GPTR
3
April 19, 2000-20
Figure 7. Leakage Current vs. Applied Voltage
100
T=85°C
Figure 10. Turn-on Time vs. LED Current
7
6
5
10
Leakage (pA)
T=50°C
T=70°C
Ton (ms)
4
3
2
1
1.0
T=25°C
T=85°C
T=25°C
T=–45°C
0.1
0
50
100
150
200
250
300
350
400
0
0
5
10
15
20
25
30
35
40
45
50
LED Forward Current (mA)
Load Voltage (V)
Figure 8. Leakage Current vs. Applied Voltage
10000
1000
Leakage (pA)
100
10
1
0
50
100
150
200
250
300
350
400
Load Voltage (V)
Figure 9. Turn-off Time vs. Temperature
80
I
F
=10 mA
60
Change in Toff (%)
Normalized to 25°C
40
20
0
–20
–40
–60
–80
–40
I
F
=5.0 mA
I
F
=4.0 mA
I
F
=3.0 mA
I
F
=2.0 mA
–20
0
20
40
60
80
I
F
=8.0 mA
I
F
=6.0 mA
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
LH1529FP/FPTR/LH1529GP/GPTR
4
April 19, 2000-20