Configured for controller and module mounting in industrial automation platforms, the YOKOGAWA NFBU200-S10 (NFBU200-S10) Base Module provides direct physical and electrical execution for STARDOM control system environments.
Configured for controller and module mounting in industrial automation platforms, the YOKOGAWA NFBU200-S10 (NFBU200-S10) Base Module provides direct physical and electrical execution for STARDOM control system environments.
Hardware Specifications
Parameter
Specification
Model
NFBU200-S10
Brand
YOKOGAWA
Origin
Japan
Weight
3 kg
Dimensions
2.2 cm x 12.4 cm x 12.6 cm
Operating Temp
0 deg C to 50 deg C
Power Consumption
Backplane power distribution bus
Mounting Options
DIN rail or rack mount
Bus Interfaces
SB Bus and E2 Bus
Channel Isolation and Control Bus Architecture
The base module integrates robust backplane communication pathways designed to maintain high-speed deterministic data transfer between mounted CPU, power supply units, and associated I/O modules. Internal isolation traces suppress electromagnetic interference across data buses, ensuring signal integrity in high-noise industrial environments. Built-in power distribution circuitry supports reliable system power delivery and continuous operational stability across mounted card slots.
Frequently Asked Questions
Q: What is the total weight of the NFBU200-S10 base module assembly?
A: The total hardware weight is approximately 3 kg.
Q: Does the module support standard backplane bus communication?
A: Yes, the unit incorporates internal SB Bus and E2 Bus interfaces to facilitate data exchange between the controller and connected I/O hardware.
Field Installation Guidelines
Mount the NFBU200-S10 base module securely onto industrial DIN rails or cabinet backplanes using approved mechanical fasteners, ensuring adequate clearance for thermal dissipation and module insertion. Align module connector pins carefully with backplane slots prior to insertion to prevent damage to internal bus pins. Verify ground continuity across the module chassis and confirm supply voltage levels before energizing the system.
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