LH1501BT/BAB/BABTR
1 Form B
Solid State Relay
FEATURES
• l/O Isolation, 3750 V
RMS
• Typical
R
ON
20
Ω
• Load Voltage 350 V
• Linear, AC/DC Operation
• Clean Bounce Free Switching
• Low Power Consumption
• SMD Lead Available on Tape and Reel
AGENCY APPROVALS
• UL – File No. E52744
• CSA – Certification 093751
• BSI
APPLICATIONS
• General Telecom Switching
• Security Equipment
• Instrumentation
• Industrial Controls
DESCRIPTION
The LH1501 relays are SPST normally closed switches
(1 Form B) that can replace electromechanical relays in
many applications. The relays are constructed as a
mult.-chip hybrid device. Actuation contral is via an
Infrared LED. The output switch is a combination of a
photodiode array with MOSFET switches and control
circuity. The relays can be configured for AC/DC or DC
only operation..
.018 (.46)
6-.031 (6-.80) Dia. .100 (2.54)
Package Dimensions in Inches (mm)
DIP
.330 (8.38)
.100 (2.54)
S
6
DC
5
S'
4
S'
S'
.250 (6.35)
.360 (9.14)
1
2
3
.300 (7.62)
.130 (3.30)
.250 (6.35)
.360 (9.14) .285 (7.24) Typ.
.360 (9.14)
.200 (5.08)
SMD
.330 (8.38)
.100 (2.54)
.100 (2.54)
.250 (6.35)
.375 (9.53)
.075 (1.90)
.327 (8.31)
.018 (.46)
.059 (1.50)
.300 (7.62)
.175 (4.45)
.130 (3.30)
.025 (.64) Typ.
.010 (.25) Typ.
Part Identification
Part Number
LH1501BT
LH1501BAB
LH1501BABTR
Description
6-pin DIP, Tubes
6-pin SMD, Gullwing, Tubes
6-pin SMD, Gullwing, Tape and Reel
Document Number: 83805
Revision 17-August-01
www.vishay.com
3–41
Recommended Operating Conditions
150
5.0 mA
Load Current (mA)
120
90
50
30
0
–40
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 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.
–20
0
20
40
60
Ambient Temperature (°C)
80
Ambient Temperature Range (
T
A
) .................................... –40 to +85
°
C
Storage Temperature Range (
T
stg
) ................................. –40 to +125
°
C
Pin Soldering Temperature (t=10 s max) (
T
S
) ............................. 260
°
C
Input/Output Isolation Voltage
(
V
RMS
t=1.0 s,
I
ISO
=10
µ
A max) (
V
ISO
) .............................. 3750 V
RMS
LED Continuous Forward Current (
I
F
) .........................................50 mA
LED Reverse Voltage (
I
R
≤
10
µ
A) (
V
R
)........................................... 5.0 V
DC or Peak AC Load Voltage (
I
L
≤
50
µ
A) (
V
L
) .............................. 350 V
Continuous DC Load Current (
I
L
)
Bidirectional Operation............................................................150 mA
Unidirectional Operation..........................................................200 mA
Peak Load Current (t=100 ms) (single shot) (
I
P
) ......................350 mA
Output Power Dissipation (continuous) (
P
DISS
)........................ 550 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
Input
LED Forward Current, Switch Turn-on
LED Forward Current, Switch Turn-off
LED Forward Voltage
Output
ON-resistance
ac/dc: Pin 4, 6 (+) to 5 (–)
dc: Pin 4, 6 (+) to 5 (–)
OFF-resistance
Off-state Leakage Current
Output Capacitance
Transfer
Input/Output Capacitance
Turn-on Time
Turn-off Time
I
Fon
I
Foff
V
F
0.2
—
1.15
0.9
1.0
1.26
—
2.0
1.45
mA
mA
V
Ω
I
L
=±150 mA, t=10 ms
V
L
±300 V
I
F
=10 mA
I
F
=0 mA,
I
L
=50 mA
I
F
=0 mA,
I
L
=100 mA
G
Ω
µ
A
pF
I
F
=5.0 mA,
V
L
=±100 V
I
F
=5.0 mA,
V
L
=±350 V
I
F
=5.0 mA,
V
L
=50 V
V
ISO
=1.0 V
I
F
=5.0 mA,
I
L
=50 mA
I
F
=5.0 mA,
I
L
=50 mA
Sym.
Min.
Typ.
Max.
Units
Test Conditions
R
ON
—
20
5.0
25
6.25
—
1.0
—
R
OFF
—
0.1
—
—
1.4
0.08
35
C
ISO
t
on
t
off
—
—
—
3.0
2.0
1.0
—
3.0
3.0
pF
ms
ms
Document Number: 83805
Revision 17-August-01
www.vishay.com
3–42