1X00024H01 Emerson Ovation Power Module | New & Original Stock
1X00024H01 Emerson Ovation Power Module | New & Original Stock
1X00024H01 Emerson Ovation Power Module | New & Original Stock
/ 3

1X00024H01 Emerson Ovation Power Module | New & Original Stock

  • Manufacturer: GE Fanuc

  • Part Number: 1X00024H01

  • Condition:New with Original Package

  • Product Type: Power Supply Modules

  • Country of Origin: USA

  • Payment:T/T, Western Union

  • Shipping port: Xiamen

  • Warranty: 12 months

Emerson 1X00024H01 Ovation Power Supply Module

The Emerson 1X00024H01, also cataloged as the 1X00024 Industrial Power Supply Module, operates as a dedicated hardware component for discrete data routing and subsystem electrical distribution within Emerson Ovation DCS networks. This module converts a wide-range alternating current input into a stabilized direct current rail, providing power directly to internal controller frames and peripheral I/O chassis. The electrical topology integrates line-conditioning filters and active fault-clamping hardware to maintain an uncorrupted 24 VDC potential plane across common backplane architectures.

Hardware Specifications

Parameter Specification
Model 1X00024H01
Brand Emerson
Origin USA
Weight 0.73 kg (nominal spectrum 0.65-0.8 kg)
Dimensions 90 x 125 x 60 mm
Operating Temp 0 to 60 deg C
Power Consumption 500 W maximum output capacity (model WH1-2FF variant)
Input Voltage Range 100-240 VAC, 50/60 Hz
Output Voltage 24 VDC regulated (main and auxiliary branches)
Output Current Up to 5 A continuous
Conversion Efficiency Greater than 85% at rated load thresholds
Fault Protection Loops Over-current, short-circuit, over-voltage, under-voltage, and thermal protection
Mounting Method Standard DIN rail or rack chassis configuration
Status Diagnostics Integrated status monitoring arrays

Process Control Loops and Analog Field Configurations

The power distribution hardware isolates internal system logic from line-side disturbances that could propagate to field networks executing the 4-20 mA HART loop protocol. Internal rectification layers provide dedicated channel-to-system boundary isolation, preventing external ground loop currents or electromagnetic interference from compromising the precision of nearby analog inputs. By suppressing output ripple on the 24 VDC lines, the card maintains stable power references for adjacent high-resolution instrument modules, preventing tracking drift within delicate cold junction compensation (CJC) zones.

Frequently Asked Questions

Q: What specific engineering constraints apply to the hot-swap replacement of the 1X00024H01 module?

A: The hardware utilizes active isolation diodes on the output rail, allowing safe online extraction and insertion while the backplane remains energized. In redundant parallel configurations, the secondary power node absorbs the localized current load immediately without inducing an inline voltage sag or causing system watchdog timeouts.

Q: How does the internal protection logic manage a sustained short-circuit on the 24 VDC distribution path?

A: The module transitions into an automated foldback or current-limiting routine when an external short-circuit occurs. Once the field-side electrical fault is physically cleared, the regulation network automatically ramps the output voltage back to the nominal +24 VDC plane without requiring a hardware reset or software reboot.

Q: Can this power supply module handle input frequency variations without degrading output stability?

A: Yes. The internal switch-mode regulation stages are designed to track nominal input frequencies between 50 Hz and 60 Hz continuously. Fluctuations within standard grid boundaries do not alter the conversion efficiency or degrade the regulation tolerance of the +24 VDC output rails.

Field Installation Guidelines

  • Verify that the incoming line voltage conforms to the 100-240 VAC nominal specification prior to energizing the primary terminal block.
  • Attach the module firmly to the DIN rail or rack sub-assembly, ensuring the ground connection establishes low-impedance contact with the enclosure main earth bar.
  • Separate incoming AC source conductors from low-voltage 4-20 mA signaling lines within the panel wire ducts to avoid electromagnetic noise cross-talk.
  • Maintain specified structural spacing above and below the module chassis ventilation slots to prevent localized heat pockets from triggering thermal protection shutdowns.
  • Torque all termination screws to standard industrial ratings to prevent terminal resistance buildup and localized heat degradation under high-load states.
You may also like