Bulletin 700-SH "Hockey Puck" Relay
Bulletin 700-SH
- 100 A max. continuous load (output) current with appropriate heat sink
- 264V AC, 530V AC, or 660V AC max. load voltage options
- 3…32V DC, 4…32V DC, 80…130V AC, 200…260V AC, 20…280V AC/22…48V DC control (input) voltage options
- LED indicator for input/logic ON/OFF status monitoring
- Protective cover for added safety
Standards Compliance and Certifications
Product Selection
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Input-to-Output Isolation Method
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Zero Cross Function
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Status Indicator
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Output (Load) Max. Continuous Current and Rated Voltage RangeT
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Rated Input Control Voltage
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Cat. No.¬
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Optocoupler
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Yes
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Yes
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10 A @ 42…265V AC
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3…32V DC
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700-SH10JZ24
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| 10 A @ 42…265V AC
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80…130V AC
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700-SH10JA12
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| 10 A @ 42…265V AC
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200…260V AC
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700-SH10JA22
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| 10 A @ 42…530V AC
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4…32V DC
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700-SH10HZ25 (Series B)
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| 25 A @ 42…530V AC
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4…32V DC
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700-SH25HZ25 (Series B)
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| 25 A @ 24…265V AC
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3…32V DC
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700-SH25GZ24
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| 25 A @ 24…265V AC
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20…280V AC/22…48V DC
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700-SH25GA24
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| 50 A @ 24…265V AC
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3…32V DC
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700-SH50GZ24
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| 50 A @ 24…265V AC
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20…280V AC/22…48V DC
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700-SH50GA24
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| 50 A @ 42…530V AC
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4…32V DC
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700-SH50HZ25
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| 25 A @ 42…660V AC
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4…32V DC
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700-SH25VZ25
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| 25 A @ 42…660V AC
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20…280V AC/22…48V DC
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700-SH25VA24
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| 50 A @ 42…660V AC
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4…32V DC
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700-SH50VZ25
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| 50 A @ 42…660V AC
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20…280V AC/22…48V DC
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700-SH50VA24
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| 75 A @ 42…530V AC
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4…32V DC
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700-SH75HZ25
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| 75 A @ 42…660V AC
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4…32V DC
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700-SH75VZ25
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| 75 A @ 42…530V AC
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20…280V AC/22…48V DC
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700-SH75HA24
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| 75 A @ 42…660V AC
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20…280V AC/22…48V DC
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700-SH75VA24
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| 100 A @ 42…530V AC
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4…32V DC
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700-SH100HZ25
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| 100 A @ 42…530V AC
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20…280V AC/22…48V DC
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700-SH100HA24
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| 100 A @ 42…660V AC
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4…32V DC
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700-SH100VZ25
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| 100 A @ 42…660V AC
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20…280V AC/22…48V DC
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700-SH100VA24
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| Yes
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No
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5A @ 3...60V DC
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3…32V DC
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700-SH5FZ24
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| Yes
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Yes
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25 A @ 90…280V AC
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4…20 mA DC
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700-SH25WA25
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| 50 A @ 90…280V AC
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4…20 mA DC
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700-SH50WA25
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| ¬ All catalog numbers are Series A unless noted.
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| T This type is also called Phase Angle 0 when used with heat sink.
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Accessories
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Description
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Pkg. Quantity
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Cat. No.
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Heat Sink— Panel or DIN Rail Mount
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1
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700-SN10
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Heat Sink— Panel or DIN Rail Mount
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1
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700-SN25
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Heat Sink— Panel or DIN Rail Mount
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1
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700-SN50
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Heat Sink— Panel or DIN Rail Mount
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1
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700-SN50HC
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Heat Sink— Panel or DIN Rail Mount
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1
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700-SN50VHC
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DIN (#3) Symmetrical Rail 35 x 7.5 x 1 m
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10
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199-DR1
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Specifications
| Control/Input Ratings
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| Cat. No.
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Operating Voltage
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Input Current @ Max. Voltage
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Voltage Level Pickup Voltage
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Drop-Out Voltage
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| 700-SH10J…
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3…32V DC
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12 mA
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2.75V DC max.
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1.2V DC min.
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| 80…130V AC
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13 mA
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70V AC max.
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30V AC min.¬
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| 200...280V AC
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13 mA
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190V AC max.
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90V AC min.
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| 700-SH_ _ H…
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4…32V DC
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12 mA
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4V DC max.
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1V DC min.
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| 20…280V AC/22…48V DC
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20 mA
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18V AC/DC
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6V AC/DC
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| 700-SH_ _ G…
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3…32V DC
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12 mA
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2.5V DC
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1.2V DC
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| 20…280V AC/22…48V DC
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20 mA
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-32V DC
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6V AC/DC
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| 700-SH_ _ V…
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4…32V DC
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12 mA
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3.5V DC
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1.2V DC
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| 20…280V AC/22…48V DC
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20 mA
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18V AC/DC
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6V AC/DC
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| 700-SH_ _ W…
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Current Control
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4…20 mA
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—
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—
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| 700-SH_ _ F…
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3…32V DC
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12 mA
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3V DC max.
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1.0V DC
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| ¬ When specified heatsink is used.
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| Output Ratings
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| Cat. No.
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Load Voltage Range
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Applicable Load Current with Heat Sink [A]T
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| 700-SH5FZ24
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3…60V DC
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0.001…5 A DC
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| 700-SH10J…
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42…265V AC
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0.15…10
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| 700-SH10H…
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42…530V AC
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0.15…10
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| 700-SH25G…
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24…265V AC
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0.15…25
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| 700-SH25H…
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42…530V AC
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0.15…25
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| 700-SH25V…
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42…660V AC
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0.15…25
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| 700-SH25W…
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90…280V AC
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0.15…25
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| 700-SH50G…
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24…265V AC
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0.15…50
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| 700-SH50H…
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42…530V AC
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0.15…50
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| 700-SH50V…
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42…660V AC
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0.15…50
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| 700-SH50W…
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90…280V AC
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0.15…50
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| 700-SH75H…
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42…530V AC
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0.15…75
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| 700-SH75V…
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42…660V AC
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0.15…75
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| 700-SH100H…
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42…530V AC
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0.15…100
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| 700-SH100V…
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42…660V AC
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0.15…100
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| T AC unless indicated.
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| Characteristics
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| Description
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Cat. Nos. 700-SH10, 25, 50 (not including 700-SH_ _W)
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Cat. Nos. 700-SH75, 100
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| Pick-up Time
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1/2 of load power source cycle time(DC input) 1 of load power source cycle time (AC input)
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| Drop-out Time
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1/2 of load power source cycle time (DC input) 2 of load power source cycle time (AC input)
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| Output ON Voltage Drop
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1.6V (RMS) max.
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| Output Leakage Current
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<3 mArms 100 MW min (@ 500V DC)
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| Insulation Resistance
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100 MW min. (at 500V DC)
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| Dielectric Strength
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>4000 VACrms
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| Vibration Resistance
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Malfunction: 10…55 Hz, 1.5 mm double amplitude
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| Shock Resistance
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Malfunction: 1000 m/s2
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| Ambient Temperature
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Operating: 20…+70 °C with no icing or condensation
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| Storage: 40…+100 °C with no icing or condensation
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| Ambient Humidity
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0…95% no condensing
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| Standards Compliance
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UL 508, CSA C22.2 No. 14, EN/IEC 60947-1, -4-2, -4-3, EN 61000-6-2, EN 61000-6-4
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| Certifications
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cURus Recognized (File No. E96956, Guide NMFT2/NMFT8), CSA Certified (File No. 240924)
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| Weight
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Approx. 60 g
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Approx. 100 g
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| Characteristics
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| Description
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Cat. No. 700-SH_ _W
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| Pick-up Current
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4.2 mA
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| Drop-out Current
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4.1 mA
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| Voltage Drop
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<10V DC @ 20 mA
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| Leakage Current
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<3 mA
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| Insulation Voltage
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<4000 Vrms
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| Vibration Resistance
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Malfunction: 10…55 Hz, 1.5 mm double amplitude
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| Shock Resistance
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Malfunction: 1000 m/s2
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| Ambient Temperature
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Operating: 20…+70 °C with no icing or condensation
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| Ambient Humidity
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0…95% no condensing
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| Standards Compliance
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UL 508, CSA C22.2 No. 14, EN/IEC 60947-1, -4-2, -4-3, EN 61000-6-2, EN 61000-6-4
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| Certifications
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cURus Recognized (File No. E96956, Guide NMFT2/NMFT8), CSA Certified (File No. 24024)
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| Weight
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Approx. 60 g
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| Characteristics
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| Description
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Cat. No. 700-SH5FZ24
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| Pick-up voltage
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<3V DC
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| Drop-out voltage
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>1V DC
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| Activating Frequency
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<100 Hz
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| Input Impedance
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1kW
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| Response Time Pick-up @ Vin > 5V
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<4000 uS
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| Response Time Drop-out
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<1 mS
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| On-state Voltage Drop @ Rated Current
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<1.5V
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| Off-state Current Drop @ Rated Voltage
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<1mA
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| Insulation Voltage
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<1mA
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| Vibration Resistance
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Malfunction: 10…55 Hz, 1.5 mm double amplitude
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| Shock Resistance
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Malfunction: 1,000 m/s2
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| Ambient Temperature
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Operating: 20…+70 °C with no icing or condensation
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| Ambient Humidity
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0…95% no condensing
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| Standards Compliance
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UL 508, CSA C22.2 No. 14, EN/IEC 60947-1, -4-2, -4-3, EN 61000-6-2, EN61000-6-4
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| Certifications
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cURus Recognized (File No. E96956, Guide NMFT2/NMFT8), CSA Certified (File No. 240924)
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| Weight
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Approx. 60 g
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Surge Current vs. Ambient Temperature Characterstics
Load Current vs. Ambient Temperature Characteristics
Approximate Dimensions
Mounting Considerations¬ § §
All units are in mm's unless otherwise indicated. To convert to inches multiply by 0.0394. Dimensions are not intended for manufacturing purposes.
Cat. No. 700-SH05…
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Cat. No. 700-SH40
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¬ The proper mounting orientation of the heat sink is so the heat fins run perpendicular to the floor (vertical) to maximize ventilation flow. If the fins do not run perpendicular to the floor, a 30% current derating is required.
When attaching a heat sink to Bulletin 700-SH, apply a thin layer of heat conductive grease (approximately 0.002 in. thick) on the heat sink to maximize heat transfer between the SSR and the heat sink. Recommended types: Silicon based, Dow Corning 340, Toshiba YG6240; Non-silicon based, AOS company type 53300 (Cat. No. 46801-010-01).
§ Tighten the SSR panel/heat sink mounting screws to a torque of 0.78…0.98 Nm (6.9…8.7 lbin).
§ Tighten the SSR terminal wiring screws as follows M4: 0.98…1.37 Nm (8.67…12.12 lbin), M5: 1.57…2.35 Nm (13.89…20.8 lbin).
Heat SinksØ z
Cat. No. 700-S10
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Cat. No. 700-S20
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Cat. No. 700-S30
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Ø Tighten the heat sink mounting screws (M4) to a torque of 0.98…1.37 Nm (8.67…12.12 lbin).
z Heat sink weight: Cat. Nos. 700-S10 = 200 g, 700-S20 = 400 g, 700-S30 = 560 g.
Basic Application Considerations
Load Connection
- For an AC load, use a power supply rated at 50 or 60 Hz. The maximum operating frequency is 10 Hz.
- The Bulletin 700-SH has a built-in varistor for surge/inrush protection of AC loads. If additional suppression is required, connect an external varistor across the load device terminals. Select a varistor which meets the load voltage condition outlined in the table below.
| Load Voltage [V AC]
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Varistor Voltage [V]
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Varistor Surge Resistance
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| 100…120
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240…270
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1000 A min.
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| 200…240
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440…470
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| 380…480
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820…1000
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Zero Cross Function
A SSR with a zero cross function operates when an AC load voltage reaches the zero point or its vicinity. This reduces clicking noises when the load is switched, and minimizes the influence of an inductive load, such as a lamp, heater, or motor, on the power supply because the inrush current of the load is reduced. This can also minimize the scale of the inrush current protection circuit.
At a low applied voltage, such as 24V AC, the load current is not fully supplied. When the unit is switched ON, the voltage required to power the unit deprives the output signal of the necessary voltage level and thus creates loss time. The lower the load voltage is, the greater the loss time is. This condition, however, will not create any serious problems.
For a DC inductive load, a diode should be connected parallel to the load to absorb the counter electromotive force (OFF) of the load.
Note: For additional details when using Solid-State Relays, refer to pub. 700-AT001_-EN-E, Solid-State Relay Application Guide".