CPC1966Y
600V, 3Arms
AC Power Switch
INTEGRATED CIRCUITS DIVISION
Parameter
AC Operating Voltage
Load Current
On-State Voltage Drop
Blocking Voltage
Rating
20 - 240
3
0.8
600
Features
•
•
•
•
•
•
•
•
•
Load Current up to 3Arms
600VP Blocking Voltage
5mA Sensitivity
Zero-Crossing Detection
DC Control, AC Output
Optically Isolated
Low EMI and RFI Generation
High Noise Immunity
Flammability Rating UL 94 V-0
Units
Vrms
Arms
Vrms (at IL = 3Arms)
VP
Description
CPC1966Y is an AC Solid State Switch utilizing
dual power SCR outputs. This device also includes
zero-cross turn-on circuitry, and is specified with a
blocking voltage of 600VP .
In addition, the tightly controlled zero-cross circuitry
ensures low noise switching of AC loads by minimizing
the generation of transients.
The optically coupled input and output circuits
provide 3750Vrms of isolation and noise immunity
between the control and load circuits. As a result, the
CPC1966Y is well suited for industrial environments
where electromagnetic interference would disrupt the
operation of plant facility communication and control
systems.
Approvals
Applications
•
•
•
•
•
•
•
•
•
•
Programmable Control
Process Control
Power Control Panels
Remote Switching
Gas Pump Electronics
Contactors
Large Relays
Solenoids
Motors
Heaters
• UL Recognized Component: File E69938
• CSA Certified Component: File 1172007
Ordering Information
Part #
CPC1966Y
Description
4-Pin (8-Pin Body) Power SIP Package(25/Tube)
Pin Configuration
ZC
1
2
– LED + LED
DS-CPC1966-R06
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3
4
AC Load AC Load
1
INTEGRATED CIRCUITS DIVISION
CPC1966Y
Absolute Maximum Ratings @ 25ºC
Parameter
Blocking Voltage (VDRM)
Reverse Input Voltage
Input Control Current
Peak (10ms)
Input Power Dissipation 1
Total Power Dissipation 2
Isolation Voltage, Input to Output
Operational Temperature, Ambient
Storage Temperature
1
2
Ratings
600
5
50
1
150
2400
3750
-40 to +85
-40 to +125
Units
VP
V
mA
A
mW
mW
Vrms
°C
°C
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.
Derate linearly 1.33 mW / ºC
Derate output power linearly 20 mW / ºC
Electrical Characteristics @ 25ºC
Parameters
Output Characteristics
Blocking Voltage
Load Current
Continuous
Surge
Off State Leakage Current
On-State Voltage Drop 1
Off-State dV/dt
Switching Speeds
Turn-on
Turn-off
Zero-Cross Turn-On Voltage 2
Holding Current
Latching Current
Operating Frequency
Load Power Factor for
Guaranteed Turn-On 3
Input Characteristics
Input Control Current to Activate 4
Input Drop-out Voltage
Input Voltage Drop
Reverse Input Current
Common Characteristics
Input to Output Capacitance
Conditions
Symbol
Min
Typ
Max
Units
IL=1A
Free Air, VL=120-240Vrms
VDRM
600
-
-
V
IL
IP
0.1
500
0.88
-
3
30
100
1.1
-
Arms
A
AP
VP
V/s
ton
toff
IH
IL
20
5
44
48
-
0.5
0.5
20
5
50
75
500
cycles
cycles
V
V
mA
mA
Hz
60Hz
PF
0.25
-
-
-
60Hz
IF=5mA
VR=5V
IF
VF
IR
0.8
0.9
-
1.36
-
5
1.5
10
mA
V
V
A
VIO=0V, f=1MHz
CIO
-
-
3
pF
t < 16ms
VDRM
IL=2AP
IF = 5 mA
1st half-cycle
Subsequent half-cycle
-
ILEAK
dV/dt
1
Tested at a peak value equivalent.
Zero Cross 1st half-cycle @ 10mA.
F
2
3
2
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R06
INTEGRATED CIRCUITS DIVISION
CPC1966Y
PERFORMANCE DATA*
30
25
Device Count (N)
Device Count (N)
25
20
15
10
5
LED Current to Operate Distribution
(60Hz Resistive Load)
(N=50, VL=120VAC, TA=25ºC)
20
15
10
5
0
0
1.364
1.40
1.366
1.368
1.370
1.372
LED Forward Voltage Drop (V)
1.44
1.48
1.52
30
30
25
Device Count (N)
Device Count (N)
35
25
20
15
10
10
5
0
1.64
4.0
4.3
4.6
4.9
5.2
5.5
Zero Cross Voltage (V)
5.8
Typical Blocking Voltage Distribution
(N=50, TA=25ºC)
20
15
10
0
0.86
0.88 0.90 0.92 0.94 0.96
SCR Forward Voltage (V)
2.6
1.6
IF=10mA
IF=5mA
IF=2mA
1.5
1.4
1.3
1.2
1.8
1.6
1.2
100
3.0
2.0
1.4
860
LED Current to Operate
(fO=60Hz)
3.5
2.2
1.0
75
852
854
856
858
Blocking Voltage (VP)
2.4
1.1
0
25
50
Temperature (ºC)
850
LED Current (mA)
2.8
1.7
LED Current (mA)
1.8
0.98
LED Current to Operate
vs. Load Frequency
(VL=140Vrms, RL=400:)
Typical LED Forward Voltage Drop
vs. Temperature
LED Forward Voltage Drop (V)
1.60
15
5
5
0
-25
1.56
Zero Cross Voltage Distribution
(N=50, IF=5mA, TA=25ºC)
LED Current (mA)
Typical SCR Forward Voltage Distribution
(N=50, IF=5mA, IL=2A, TA=25ºC)
-50
20
Device Count (N)
Typical LED Forward Voltage Drop
(N=50, IF=5mA)
ZL=200mH
IL=500mA
2.5
2.0
RL=400:
IL=350mA
1.5
1.0
0
100
200
300
400
Load Frequency (Hz)
500
600
0.5
-40
-20
0
20
40
60
Temperature (ºC)
80
100
*Unless otherwise noted, data presented in these graphs is typical of device operation at 25ºC.
R06
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3
INTEGRATED CIRCUITS DIVISION
CPC1966Y
PERFORMANCE DATA*
1.00
2
0
-2
0.90
0.85
0.80
-4
0.75
-6
-1.5
0.70
-40
-1.0
-0.5
0.0
0.5
Load Voltage (VP)
1.0
1.5
0
20
40
60
Temperature (ºC)
80
Leakage Current vs. Temperature
100
VL=300V
10
1
-40
-20
0
20
40
60
Temperature (ºC)
80
100
50
40
30
-20
0
20
40
60
Temperature (ºC)
80
100
35
30
880
Load Current (AP)
Blocking Voltage (VP)
VL=600V
60
Maximum Surge Current
(Non-Repetitive)
(Values Apply to TJ=50ºC Before Surge)
920
1000
70
20
-40
100
Typical Blocking Voltage
vs. Temperature
10000
Leakage Current (nA)
-20
Holding Current vs. Temperature
(IF=0mA)
80
IL=3AP
IL=2AP
IL=1AP
0.95
Voltage Drop (VP)
Load Current (AP)
4
Voltage Drop vs. Temperature
(IF=5mA)
Holding Current (mA)
6
Typical Load Voltage vs. Load Current
(IF=5mA)
840
800
760
25
20
15
10
5
720
-40
0
-20
0
20
40
60
Temperature (ºC)
80
100
1
10
100
1000
Time (ms)
*Unless otherwise noted, data presented in these graphs is typical of device operation at 25ºC.
4
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R06
INTEGRATED CIRCUITS DIVISION
CPC1966Y
Manufacturing Information
ESD Sensitivity
This product is ESD Sensitive, and should be handled according to the industry standard JESD-625.
Soldering Profile
The Maximum Solder Temperature and the Maximum Total Dwell Time in all solder waves the device pins (leads)
may be at the Maximum Solder Temperature is given in the table below. The body temperature of the device must not
exceed the Maximum Body Temperature shown below at any time during the soldering process.
Device
CPC1966Y
Maximum Solder Temperature
260ºC
Maximum Body Temperature
245ºC
Maximum Total Dwell Time
10 seconds
Wave Cycles
1
Board Wash
IXYS Integrated Circuits recommends the use of no-clean flux formulations. Board washing to reduce or remove flux
residue following the solder reflow process is acceptable provided proper precautions are taken to prevent damage
to the device. These precautions include but are not limited to: using a low pressure wash and providing a follow
up bake cycle sufficient to remove any moisture trapped within the device due to the washing process. Due to the
variability of the wash parameters used to clean the board, determination of the bake temperature and duration
necessary to remove the moisture trapped within the package is the responsibility of the user (assembler). Cleaning
or drying methods that employ ultrasonic energy may damage the device and should not be used. Additionally, the
device must not be exposed to halide flux or solvents.
R06
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5
INTEGRATED CIRCUITS DIVISION
CPC1966Y
MECHANICAL DIMENSIONS
CPC1966Y
21.082±0.381
(0.830±0.015)
PCB Hole Pattern
3.302±0.051
(0.130±0.002)
10.160±0.127
(0.400±0.005)
1.75
(0.069)
7º TYP
4 Places
Pin 1
1.778
(0.070)
0.762±0.076
(0.030±0.003)
2.540±0.127
(0.100±0.005)
4.572±0.127
(0.180±0.005)
10.160±0.127
(0.400±0.005)
5.080±0.127
(0.200±0.005)
1.651±0.102
(0.065±0.004)
5.080
(0.200)
10.160
(0.400)
1.016±0.127
(0.040±0.005)
Pin 1
1.150 DIA. x4
(0.045 DIA. x4)
0.381±0.013
(0.015±0.0005)
2.540
(0.100)
1.778
(0.070)
7º TYP
4 Places
Note: Pin-to-pin tolerances are non-cumulative.
Dimensions
mm
(inches)
For additional information please visit our website at: https://www.ixysic.com
Disclaimer Notice - Information furnished is believed to be accurate and reliable. However, users should independently evaluate the suitability of and
test each product selected for their own applications. Littelfuse products are not designed for, and may not be used in, all applications.
Read complete Disclaimer Notice at https://www.littelfuse.com/disclaimer-electronics.
6
Specification: DS-CPC1966-R06
©Copyright 2021, Littelfuse, Inc.
All rights reserved. Printed in USA.
8/3/2021