HCPL-4200#300 Avago Technologies US Inc., HCPL-4200#300 Datasheet - Page 10

OPTOCOUPLER 20MA LOOP 8-SMD GW

HCPL-4200#300

Manufacturer Part Number
HCPL-4200#300
Description
OPTOCOUPLER 20MA LOOP 8-SMD GW
Manufacturer
Avago Technologies US Inc.
Type
Receiverr
Datasheet

Specifications of HCPL-4200#300

Package / Case
8-SMD Gull Wing
Voltage - Isolation
3750Vrms
Input Type
DC
Voltage - Supply
4.5 V ~ 20 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Logic Gate Type
AND
Maximum Baud Rate
20 KBps
Configuration
1 Channel
Isolation Voltage
3750 Vrms
Output Type
Open Collector
Maximum Propagation Delay Time
1.6 us
Maximum Forward Diode Current
24 mA
Maximum Continuous Output Current
25 mA
Maximum Power Dissipation
255 mW
Maximum Operating Temperature
+ 70 C
Minimum Operating Temperature
0 C
Number Of Elements
1
Baud Rate
20Kbps
Forward Current
30mA
Output Current
25mA
Package Type
PDIP SMD
Operating Temp Range
0C to 70C
Power Dissipation
255mW
Propagation Delay Time
1600ns
Pin Count
8
Mounting
Surface Mount
Operating Temperature Classification
Commercial
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Contains lead / RoHS non-compliant

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Quantity
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Figure 16. Test Circuit for Common Mode Transient Immunity.
Figure 14. Typical Logic High Enable Propagation Delay vs. Temperature.
Applications
Data transfer between equipment which employs cur-
rent loop circuits can be accomplished via one of three
configurations: simplex, half duplex or full duplex com-
munication. With these configurations, point-to-point
and multidrop arrange ments are possible. The appropri-
ate configuration to use depends upon data rate, num-
ber of stations, number and length of lines, direction of
data flow, protocol, current source location and voltage
compliance value, etc.
Simplex
The simplex configuration, whether point to point or
multi drop, gives unidirectional data flow from transmit-
ter to receiver(s). This is the simplest configuration for use
in long line length (two wire), for high data rate, and low
current source compliance level applications. Block dia-
grams of simplex point-to-point and multidrop arrange-
ments are given in Figures 17a and 17b respectively for
the HCPL-4200 receiver optocoupler.
10
200
150
100
50
0
-60
-40
-20
T
A
– TEMPERATURE –°C
0
C
L
t
t
= 15 pF
PHZ
PZH
20
40
60
4.5 V
4.5 V
V
20 V
20 V
CC
80
100
Figure 15. Typical Logic Low Enable Propagation Delay vs. Temperature.
For the highest data rate per formance in a current loop,
the configuration of a non-isolated active transmitter
(containing current source) transmitting data to a re-
mote isolated receiver(s) should be used. When the cur-
rent source is located at the trans mitter end, the loop is
charged approximately to V
the current source is located at the receiver end, the loop
is charged to the full compliance voltage level. The lower
the charged voltage level the faster the data rate will be.
In the configurations of Figures 17a and 17b, data rate is
independent of the current source voltage compliance
level. An adequate compliance level of current source
must be available for voltage drops across station(s) dur-
ing the MARK state in multi drop applications or for long
line length. The maximum compliance level is deter-
mined by the trans mitter breakdown characteristic.
100
80
60
40
20
0
-60
-40
-20
T
A
– TEMPERATURE –°C
0
C
L
= 15 pF
t
t
PLZ
PZL
20
40
60
4.5 V
4.5 V
V
20 V
20 V
MI
CC
80
(2.5 V). Alternatively, when
100

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