I/O Module to Termination Module Cable Manufacturers ABB
Bailey Model(s) ABB Bailey Infi 90, ABB Bailey Infi 90 and Net 90
Additional Information I/O Module to Termination Unit Cable, NKTU11-09
Connects I/O Module to Termination Unit, 09 feet long, non-PVC
Estimated Shipping Size Dimensions: 1.0" x 1.0" x 15.0" (2.5 cm x 2.5 cm x 38.1 cm)
Weight: 1 lbs 2.4 oz (0.5kg )
Tariff Code: 8544429000
Country of Origin: United States Ships from Webster NY, USA
I/O Module to Termination Module Cable
Specifically, HPC800 solutions:
− Use the extensive set of field-proven INFI 90 function code
algorithms as previous generation controllers
− Use traditional INFI-Net exception reporting over
redundant 100 Mbps Fast-Ethernet (PN800)
− Extend current Composer graphical design engineering
tools with device management capabilities
Further, Symphony Plus Rack and DIN control networks,
INFI-Net and PN800 respectively, can be connected via a
self-configuring INFI-Net to Ethernet bridge (IEB800) module.
Use of this bridge makes resident data on either network
available for use in control applications or display in the other
system.
Application areas of 086349-002 BB 41055 stepper linear control motherboard:
Distribution automation applications:
Automatic reclosing: A circuit breaker used for automatic reclosing tripping to handle instantaneous faults.
Automatic recovery: The 086349-002 BB 41055 stepper linear control motherboard isolates faults through a patented load transfer scheme and restores
Distribution capacitor control algorithm: more effectively utilize existing capacitor banks to achieve peak cycles.
Fault location: locate and isolate faults to reduce customer downtime.
Load and dead bus transmission: Monitor the substation network and transfer the load of overloaded transformers to other substations.
Load shedding/limiting: Provide intelligent load shedding conditions during overload.
Below is a side internal view of the EL mechanism and the associated anti-pumping component.
When the opening pushbutton or coils are activated the opening shaft lever pushes down on point C of the anti-pump device.
This causes the device to side down slot D in direction of arrow B.
Then the trigger portion A moves out from between the closing push-button and the closing shaft lever.
So if the closing button or signal is held active and the opening button or signal is then activated.
The trigger A will pull out from between closing shaft lever and the closing push button.
Once the open signal is released the trigger A will come to rest under the closing push-button and will
not return between the closing shaft lever and closing push-button until the button or closing command is released.
The closing push button is operated by the closing coil (MC) directly by the shaft closing device.
This allows the anti-pumping device to prohibit closing by manual or electrical means.
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