Gate Optocoupler. CT2601 Datasheet

CT2601 Optocoupler. Datasheet pdf. Equivalent

Part CT2601
Description High Speed Logic Gate Optocoupler
Feature 6N137, CT2601 10MBit/s High Speed Logic Gate Optocoupler Features  High speed 10MBit/s  High isol.
Manufacture CT Micro
Datasheet
Download CT2601 Datasheet



CT2601
6N137, CT2601
10MBit/s High Speed Logic Gate Optocoupler
Features
High speed 10MBit/s
High isolation voltage between input and output
(Viso=5000 Vrms )
Guaranteed performance from -40°C to 85°C
Wide operating temperature range of -55°C to
100°C
Regulatory Approvals
UL - UL1577 (E364000)
VDE - EN60747-5-5(VDE0884-5)
CQC GB4943.1, GB8898
IEC60065, IEC60950
Package Outline
Description
The 6N137, CT2601 optocouplers consist of a 850
nm AlGaAS LED, optically coupled to a very high
speed integrated photo-detector logic gate with a
strobable output. This output features an open
collector,
there by permitting wired OR outputs. The switching
parameters are guaranteed over the temperature
range of -40°C to +85°C. A maximum input signal of
5mA will provide a minimum output sink current of
13mA (fan out of 8).
Applications
Line receivers
Telecommunication equipment
Feedback loop in switch-mode power supplies
Home appliances
High speed logic ground isolation
Schematic
Note: Different lead forming options available. See package
dimension.
CT Micro
Proprietary & Confidential
Page 1
Rev 4
Jan, 2018



CT2601
6N137, CT2601
10MBit/s High Speed Logic Gate Optocoupler
Absolute Maximum Rating at 25oC
Symbol
Parameters
VISO Isolation voltage
TOPR Operating temperature
TSTG Storage temperature
TSOL Soldering temperature
Emitter
IF Forward current
VR Reverse voltage
PI Power dissipation
Detector
PO Power dissipation
IO Average Output current
VO Output voltage
VCC Supply voltage
VE Enable Input Voltage Not to Exceed VCC by more than 500mV
Ratings
5000
-55 ~ +100
-55 ~ +125
260
50
5
100
85
50
7.0
7.0
5.5
Notes
1. AC for 1 minute, RH = 40 ~ 60%.
2. For 10 second peak
Units
VRMS
oC
oC
oC
mA
V
mW
mW
mA
V
V
V
Notes
1
2
1min(Max.)
CT Micro
Proprietary & Confidential
Page 2
Rev 4
Jan, 2018





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