Relay. CPC2025N Datasheet

CPC2025N Relay. Datasheet pdf. Equivalent

Part CPC2025N
Description Relay
Feature INTEGRATED CIRCUITS DIVISION CPC2025N 400V Dual Normally-Open Single-Pole 8-Pin SOIC OptoMOS® Relay.
Manufacture IXYS
Datasheet
Download CPC2025N Datasheet



CPC2025N
INTEGRATED CIRCUITS DIVISION
CPC2025N
400V Dual Normally-Open Single-Pole
8-Pin SOIC OptoMOS® Relay
Parameter
Blocking Voltage
Load Current
On-Resistance (max)
LED Forward Current (to Activate)
Rating
400
120
30
2
Units
VP
mArms / mADC
mA
Features
1500Vrms Input/Output Isolation
Arc-Free With No Snubbing Circuits
No EMI/RFI Generation
Immune to Radiated EM Fields
Tape & Reel Version Available
Small 8-Pin SOIC Package
Flammability Rating UL 94 V-0
Applications
Telecommunications
Telecom Switching
Tip/Ring Circuits
Modem Switching (Laptop, Notebook, Pocket Size)
Hook Switch
Dial Pulsing
Ground Start
Ringing Injection
Security
Passive Infrared Detectors (PIR)
Data Signaling
Sensor Circuitry
Instrumentation
Multiplexers
Data Acquisition
Electronic Switching
I/O Subsystems
Medical Equipment—Patient/Equipment Isolation
Aerospace
Industrial Controls
Description
The CPC2025N is a miniature device with two
independent, normally-open (1-Form-A) solid state
relays in an 8-pin SOIC package that employs
optically coupled MOSFET technology to provide
1500Vrms of input to output isolation.
Optically coupled outputs that use the patented
OptoMOS architecture are controlled by a highly
efficient infrared LED.
The CPC2025N uses IXYS Integrated Circuits'
state of the art, double-molded vertical construction
packaging to produce one of the world’s smallest
relays. It offers substantial board space savings over
the competitor’s larger 8-pin SOIC relay.
Approvals
UL Recognized Component: File E76270
CSA Approval Pending
EN/IEC 60950-1 Certified Component:
Certificate available on our website
Ordering Information
Part #
CPC2025N
CPC2025NTR
Description
8-Pin SOIC (50/tube)
8-Pin SOIC (2000/reel)
Pin Configuration
1
+ Control
2
– Control
3
+ Control
4
– Control
8
Load
7
Load
6
Load
5
Load
Switching Characteristics
of Normally-Open (Form-A) Devices
Form-A
IF
ILOAD
90%
ton
10%
toff
DS-CPC2025N-R04
www.ixysic.com
1



CPC2025N
INTEGRATED CIRCUITS DIVISION
Absolute Maximum Ratings @ 25ºC
Parameter
Blocking Voltage (Peak)
Reverse Input Voltage
LED Forward Current
Peak (10ms)
Input Power Dissipation
Total Power Dissipation 1
Isolation Voltage, Input to Output
(60 Seconds)
ESD Rating, Human Body Model
Operational Temperature
Storage Temperature
1 Derate linearly 5mW / ºC
Ratings
400
5
50
1
70
600
1500
8
-40 to +85
-40 to +125
Units
VP
V
mA
A
mW
mW
Vrms
kV
°C
°C
CPC2025N
Absolute Maximum Ratings are stress ratings. Stresses in
excess of these ratings can cause permanent damage to the
device. Functional operation of the device at conditions beyond
those indicated in the operational sections of this data sheet is
not implied.
Typical values are characteristic of the device at +25°C, and
are the result of engineering evaluations. They are provided for
information purposes only, and are not part of the manufacturing
testing requirements.
Electrical Characteristics @ 25ºC
Parameter
Conditions
Symbol
Min
Typ
Output Characteristics
Load Current
Continuous 1
Peak
On-Resistance 2
Off-State Leakage Current
Switching Speeds
-
t=10ms
IL=120mA
VL=400VP
IL
ILPK
RON
ILEAK
-
-
-
-
-
-
20
-
Turn-On
Turn-Off
IF=5mA, VL=10V
ton
toff
- 0.76
- 0.36
Output Capacitance
IF=0mA, VL=50V, f=1MHz
COUT
-
9
Input Characteristics
LED Forward Current
To Activate 3
To Deactivate
IL=120mA
-
- 0.6
IF 0.3 0.55
Input Voltage Drop
Reverse Input Current
Common Characteristics
IF=5mA
VR=5V
VF 0.9 1.2
IR - -
Capacitance, Input to Output
VIO=0V, f=1MHz
CIO
-
1
1 Load current derates linearly from 120mA @ 25oC to 60mA @ 85oC, and must be derated if both poles are operating simultaneously.
2 Measurement taken within 1 second of on-time.
3 For applications requiring high temperature operation (greater than 60°C) a minimum LED forward current of 4mA is recomended.
Max
120
±350
30
1
2
1
-
2
-
1.5
10
-
Units
mArms / mADC
mAP
µA
ms
pF
mA
V
µA
pF
2
www.ixysic.com
R04







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