Master Drive System Module ABB 57310255-AV DSRF180A
Master Drive System Module ABB 57310255-AV DSRF180A
Master Drive System Module ABB 57310255-AV DSRF180A
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Master Drive System Module ABB 57310255-AV DSRF180A

  • Manufacturer: ABB

  • Part Number: DSRF180A 57310255-AV

  • Condition:New with Original Package

  • Product Type: Drive System Modules

  • Country of Origin: Sweden

  • Payment:T/T, Western Union

  • Shipping port: Xiamen

  • Warranty: 12 months

ABB DSRF180A Master Drive System Module

The ABB 57310255-AV, also cataloged as the DSRF180A Drive System Module, operates as a dedicated hardware component for communication and control interface execution within ABB Master drive systems. The module establishes direct electrical and data routing paths between the core drive logic and external automation network topologies. Operating via high-speed physical interface channels, the hardware processes internal bus data packets using an embedded Intel dual-core processor clocked from 1.5 GHz to 2.33 GHz to coordinate drive feedback signals without software-induced runtime delays.

Hardware Specifications

Parameter Specification
Model DSRF180A (Part Numbers: 57310255-AV / 57311001-S / 57311002-S)
Brand ABB Master
Origin Sweden
Weight 0.5 kg (1 lbs 0.0 oz)
Dimensions 2.5 cm x 2.5 cm x 2.5 cm (1.0 in x 1.0 in x 1.0 in)
Operating Temp -20 to +60 deg C
Power Consumption Less than 3 W @ 12 VDC full load
Operating Voltage 9 to 24 VDC (includes reverse polarity and overcurrent protection)
Internal Memory 2 DDR2 slots supporting up to 4 GB
Flash Storage Compact Flash slot with IDE/SATA infrastructure support
Physical Layer Ports RS-232 serial ports, RJ-45 Ethernet (10/100/1000Base-T), optical fiber ports
Media Distance Limits 100 m copper, 550 m multimode fiber, 10 to 80 km single-mode fiber
Harmonized Tariff Code 8537109070
Certifications CE, UL, TUV, ATEX Zone 2

Deterministic Network Architectures and Firmware Alignment

The electronic assembly utilizes integrated hardware transceivers configured specifically to sustain Profinet and EtherNet/IP deterministic networks under sustained full-load conditions. The layout allocates distinct memory spaces within the 4 GB DDR2 array to manage I/O density scaling continuously across the host backplane bus channels. Factory-loaded boot code maintains complete firmware flash compatibility with the industrial master rack controllers, preventing parameter mismatch errors during data arbitration loops and keeping interface velocity at baseline hardware specifications.

Frequently Asked Questions

Q: Does this drive interface module support live hot-swap replacement routines while powered?

A: No. The backplane contact matrix does not possess sequential pin engagement geometries or pre-charge isolation rails. Performing an extraction or insertion while the 24 VDC rail is active causes electrical transients that corrupt active registers inside the dual-core processor and can damage adjacent I/O modules.

Q: How does the internal storage architecture manage runtime parameters and system recovery data?

A: The hardware routes primary operating system parameters and diagnostic logs through the onboard Compact Flash slot using native IDE/SATA electrical buses. This localizes the configuration file structure directly on the physical module, eliminating dependence on external network servers during startup cold-boots.

Field Installation Guidelines

Mount the module securely in its designated slot within the ABB Master system subrack, confirming that the module aligns precisely with the rear backplane connectors before fully seating the assembly. Tighten all mechanical retaining screws to lock the unit against low-frequency industrial vibrations that can loosen internal DDR2 slots.

Route all copper and fiber optic communication lines away from high-power AC inverter output cabling and three-phase motor lines to prevent electromagnetic field coupling. For copper Ethernet loops, ensure the total distance does not exceed 100 m. When pulling single-mode fiber runs for remote nodes, maintain a minimum physical bend radius of 30 mm to prevent micro-bend losses and signal attenuation at the optical reception interface.

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