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 JGC-4F
SOLID STATE RELAY
Features
File No.: E133481
* DC
File No.: R2024431
input-AC output for 2A load at 25 Volt blocking voltage * Photo isolation * Built-in snubber * Zero cross or random turn-on * Printed circuit board mount
* 600
File No.: CH0032705-2002A
INPUT (TA = 25*C)
05D Control voltage range 12D 24D 05D Must operate voltage 12D 24D Must release voltage Max. input current 4 to 6VDC 9.6 to 14.4VDC 19.2 to 28.8VDC 4VDC 9.6VDC 19.2VDC 1.0VDC max. max. max. min. 10mA
DESCRIPTION
This SPST-NO printed circuit board mount SIP SSR provides AC output switching in a high density package.The JGC-4F's DC input is compatible with 5, 12 and 24V logic systems .All models include an internal snubber.The relays provide 2000Vrms opto-isolation,between input and output. Encapsulation,thermally conductive epoxy.
PRECAUTIONS
1. Terminal arrangement
1
output
OUTPUT
Load voltage range (@47 to 63Hz) Load current range Max. surge current (10ms) Max. leakage current Max. on-state voltage drop Max. turn-on time Max. turn-off time Transient overvoltage Min. off-state dv/dt Zero-crossover voltage Min. power factor Zero cross turn-on Random turn-on 75 to 264VAC 0.1 to 2A 1.5mA 1.5VAC 10ms 1ms 10ms 600Vpk max. 100V/s min. 15V max. 0.5
input
load
AC line
0 2 3(+)
180
Pulse width Input signal
25Apk
4(-)
Input signal turn off Minimum 200s
2. Soldering must be completed within 10 seconds at 260 or within 5 seconds at 350 or less.
or less
3. The SSR case serves to dissipate heat. Install the relays so that they are adequately ventilated. If poor ventilation is unavoidable, reduce the load current by half. 4. The input circuitry does not incorporate a circuit protecting the SSR from being damaged due to a reversed connection. Make sure that the polarity is correct when connecting the input lines. 5. When using the JGC-4F series for an AC load with a peak voltage of more than 450V,connect the load terminals of the relay to an inrush absorber(varistor). The recommended varistor voltage, 440 to 470V. 6. The load terminals are internally connected to a snubber circuit that absorb noise. However, if wiring from these terminals is laid with or placed in the same duct as high-voltage or power lines, noise may be induced, causing the SSR to operate irregularly or malfunction. 7. When using the JGC-4F series in phase control applications, at a phase control angle close to 180 degrees the relay's input signal turn off at the trailing edge of the AC sine wave must be limited to end 200s before AC zero cross. This assures half cycle. that the relay has time to switch off. Shorter times may cause loss of control at the following
Solid State Relays JGC-4F
GENERAL
Dielectric strength ( input to output ) 2000VAC min., 50/60Hz 1min.
Insulation resistance Max. Capacitance ( input to output ) Vibration durability Shock durability Operating Ambient temperature Storage Ambient Humidity Unit weight
1000M , min. (at 500VDC) 5pF
10 to 55HZ Double amplitude 1.5mm
1000m/s2 -30 -30 to +80 to +100 45% to 85% 6g
HONGFA RELAY ISO9001/QS9000/ISO14000 CERTIFIED
176
ORDERING INFORMATION
JGC-4F /
Type Input voltage Input Form
12
D
1
T
05 : 4 to 6VDC 12 : 9.6 to 14.4VDC 24 : 19.2 to 28.8VDC D: DC
Zero Cross Function 0: Zero cross turn-on 1: Randm turn-on Termination T: Same as TOSHIBA TSZXX48S, M: Same as OMRON G3MB
OUTLINE DIMENSIONS, WIRING DIAGRAM AND PC BOARD LAYOUT
Outline Dimensions
24 max. 6.5max.
PCB layout
Wiring Diagram
1 JGC-4F/ D- T
20max
2
(+)3
4(_)
2.54
load
input
2.54
0.7 0.15 5.08 0.5 7.62 0.6
(2.5)
4-O1
3.9 0.5 2.54 0.3
0.4 0.15 1.7 0.3
(Bottom view)
24 max.
6.5max.
1
20max.
2
load
(+)3 4(_)
2.54
JGC-4F/ D- M
input
2.54
0.7 0.15 7.62 0.6 10.16 0.6
(2.5)
4-O1
Solid State Relays JGC-4F
3.9 0.5 2.54 0.3
0.4 0.15 1.7 0.3
CHARACTERISTICS CURVE
MAXIMUM LOAD CURRENT VS.AMBIENT TEMPERATURE
2.5
MAXIMUM PERMISSIBLE NON-REPETITIVE PEAK SURGE CURRENT VS. CONTINUANCE TIME
PULSE INPUT CURRENT VS. PULSE WIDTH
INPUT CURRENT VS. AMBIENT TEMPERATURE
1.6
Peak Surge Current(%)
IT 0
25 1.4 20
NORMALIZED TO: TA=25*C
1000 800
2.0
Load Current(A)
Iin(tw)/Iin
1.5
15
Normalized to: tw*100s
Iin(tw)/Iin
Tj=25*C F=50Hz
tw
1.2
600 400
1.0 0.5
10
1.0 0.8
200
5
0 -30 -20
0
20 25
40
60
80
100
0 10
0
100 1000 10000
1
2
5
10
20
50
100
0.6 -40
-20
0
20
40
60
80
Ambient Temperature(
)
Energizing Continuance Time(ms)
Pulse Width Tw (S)
Ambient Temperature(
)
177


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