hcpl-193k-200 Avago Technologies, hcpl-193k-200 Datasheet - Page 2

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hcpl-193k-200

Manufacturer Part Number
hcpl-193k-200
Description
Dual Channel Line Receiver Hermetically Sealed Optocoupler
Manufacturer
Avago Technologies
Datasheet
All devices are manufactured and tested on a MIL-PRF-
38534 certified line and are included in the DSCC Qualified
Manufacturers List QML-38534 for Hybrid Microcircuits.
Each unit contains two independent channels, consisting
of a GaAsP light emitting diode, an input current regulator,
and an integrated high gain photon detector. The input
regulator serves as a line termination for line receiver
applications. It clamps the line voltage and regulates the
LED current so line reflections do not interfere with circuit
performance. The regulator allows a typical LED current of
12.5 mA before it starts to shunt excess current. The output
*Solder contains lead.
2
Selection Guide–Lead Configuration Options
Avago Part # and Options
Commercial
MIL-PRF-38534 Class H
MIL-PRF-38534 Class K
Standard Lead Finish
Solder Dipped*
Butt Joint/Gold Plate
Gull Wing/Soldered*
Crew Cut/Gold Plate
Class H SMD Part #
Prescript for all below
Either Gold or Soldered
Gold Plate
Solder Dipped*
Butt Joint/Gold Plate
Butt Joint/Soldered*
Gull Wing/Soldered*
Crew Cut/Gold Plate
Crew Cut/Soldered*
Class K SMD Part #
Prescript for all below
Either Gold or Soldered
Gold Plate
Solder Dipped*
Butt Joint/Gold Plate
Butt Joint/Soldered*
Gull Wing/Soldered*
HCPL-1930
HCPL-1931
HCPL-193K
Gold
Option #200
Option #100
Option #300
Option #600
5962-
8957201EX
8957201EC
8957201EA
8957201YC
8957201YA
8957201XA
Available
Available
5962-
8957202KEX
8957202KEC
8957202KEA
8957202KYC
8957202KYA
8957202KXA
of the detector IC is an open collector Schottky clamped
transistor. An enable input gates the detector. The internal
detector shield provides a guaranteed common mode
transient immunity specification of +1000 V/ sec.
DC specifications are compatible with TTL logic and are
guaranteed from -55 C to +125 C allowing trouble-free
interfacing with digital logic circuits. An input current of
10 mA will sink a six gate fan-out (TTL) at the output with
a typical propagation delay from input to output of only
45 nsec.

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