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AB 1746-OX8 OUTPUT MODULE ISOLATED RELAY SLC 500 8 POINT 50/60 HZ
About 1747-ASB :
The AB 1746-OX8 is a contact output module under the SLC 500 family of programmable controllers. The 1746-OX8 has 8 isolated high-current relay contact outputs. It has an operating voltage ranging between 5-125V DC and 5-265V AC. Additionally, the 1746-OX8 operates at a backplane current of 85mA at 5V DC and 90mA at 24V AC. The heat dissipation for the module is 0.825W per point. Minimum dissipation measures at 2.590W with a total of 8.60W.
The 1746-OX8 has a maximum resistive load single delay of 10.0ms when ON and 10.0ms when OFF. Backplane current consumption for the module is 0.085A at 5V DC and 0.090A at 24V DC. In addition, the module has a 0mA maximum off-state leakage and a minimum load current of 10mA at 5V DC. The continuous current per module must be limited to prevent the module power from exceeding 1440VA. The 1746-OX8 has a relay contact rating of 30A at 120V AC maximum with a break of 3.0A at 240V AC, and a relay contact rating of 15A with a break of 1.5A. In addition, the 1746-OX8 has a relay contact rating of 0.22A and 1.2A at 125V DC and 24V DC respectively.
The 1746-OX8 has a Class 1, Division 2 endorsement to be used in a hazardous environment. The operating temperature for the 1746-OX8 ranges between 0-60º C (32-140º F) and the non-operating temperature ranges between -40-85º C (-40-185º F) at 5-95% non-condensing operating humidity. The module adheres to the CS-232 NEMA standard for noise standards. The 1746-OX8 has an operating vibration displacement of 0.015” peak at a speed of 5-57 Hz with an acceleration of 2.5g at 57-2000Hz. It has an operating shock of 10g and a 1500V isolation.
The AB 1746-OX8 module is an SLC 500 channel to channel isolated
relay output module. The operating temperature range for the module
is 32 to 140 degrees Fahrenheit. The non-operating temperature
range is -40 to 185 degrees Fahrenheit. The recommended
non-condensing operating humidity range is 5 to 95%. The rated
noise immunity meets the NEMA ICS 2-230 standard. The operating
vibration rating is 0.015 inches of displacement at 5 to 57 Hertz.
The operating shock rating for the 1746-OX8 module is 10 g. the
module is certified by the UL, CSA, and CE standards. The rated
heat dissipation per energized point for the module is 0.825 Watts.
The minimum heat dissipation when no field power is applied is 2.59
points. The total heat dissipation for the module when all the
outputs are energized is 8.6 Watts.
The 1746-OX8 module has 8 individually isolated outputs. At 24
Volts DC backplane voltage, the module consumes 0.09 Amps of
current and at 5 Volts DC backplane voltage, the module consumes
0.085 Amps. In the on-state the signal delay with a maximum
resistive load is 10 milliseconds. In the off-state, the signal
delay for the maximum resistive load is 10 milliseconds. The
operating voltage range with a 5 Volts DC supply is 5 to 125 Volts
and with a 24 Volts DC supply, it is 5 to 265 Volts. The peak
off-state leakage is 0 milliamps. The minimum level of recommended
load current is 10 milliamps at 5 Volts DC. At 120/240 Volts AC,
the continuous current per point is 2.5 Amps. At 125 Volts DC, the
continuous current per point is 1 Amp and at 24 Volts DC, the
continuous current per point is 2 Amps.
More information:
Manufacturer | AB / Rockwell Automation |
---|---|
Series | SLC 500 |
Part Number | 1746-OX8 |
Product Type | Output Module |
Output Type | Relay Outputs |
Outputs | 8 |
Operating Temperature | 32 to 140 degrees Fahrenheit |
Storage Temperature | -40 to 185 degrees Fahrenheit |
Total Heat Dissipation | 8.6 Watts |
Heat Dissipation per Point | 0.825 Watts |
Check publication for error codes and explanations on the meaning of these codes.
Ensure dip switches are configured correctly, publication will also help with this process.
Check to see that the RIO cable is properly terminated on both ends.
Visually inspect RIO communications cable for damages if possible.
If using a scanner module be sure to double check configuration as well as G-Data used in programming
Visually check the module for damage such as burnt out components broken board as well as terminating pins that insert into the backplane.
Ensure the rack that the ASB module is being plugged into is in good working condition
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