General Electric

GE DS2020DACAG2 EX2100 AC-DC Power Conversion Assembly

SKU DS2020DACAG2

Disponibile
  • 12-month warranty
  • Free returns within 30 days
  • Manufacturer: General Electric
  • Product No.: DS2020DACAG2
  • Origin United States
  • Product Type: AC-DC Power Conversion Assembly
  • Barcode: 8537101190
  • Payment: T/T, Western Union
  • Weight: 21.95 kg
  • Shipping port: Xiamen
  • Warranty: 12 months

Tags

Quantità

Product Description

Description

The DS2020DACAG2 operates as a ruggedized AC to DC power conversion assembly designed for integration within EX2100 excitation systems and Mark VIe control networks. This power supply module supplies regulated local energy to essential distribution architectures, effectively extending systemic control ride-through capabilities during line source failures or operation within completely battery-less configurations.

The structural circuit path of the DS2020DACAG2 executes rectification of alternative source feeds into structured direct current bus rails. Operating from a dual-tap 115 VAC or 230 VAC line entry, the module delivers an output potential rated at 126 VDC with a maximum delivery boundary of 9.5 ADC under individual assembly usage. This rectified DC line couples to concurrent system energy feeds through an on-board diode network to build a common distribution bus, directly feeding secondary controller blocks, core module sectors, and active gate pulse amplifier cards. The conversion topology utilizes heavy-duty electrolytic storage capacitors to maintain ripple filtering, accompanied by dedicated diagnostic LED indicators arranged at downstream modules (such as EPDM, EGPA, EXTV, and EPBP) to verify consistent power rail health. For expanded system loads, multiple units can be coupled in parallel configurations via a standardized 12-position connector interface to boost aggregate loop outputs to 16.5A DC.

Features

  • Dual-Voltage Input Conversion: Rectifies standard 115 VAC or 230 VAC utility inputs into a stabilized 126 VDC configuration loop.
  • Parallel Core Scaling: Supports dual-module parallel load sharing across a shared bus to increment total output delivery up to 16.5A DC.
  • Integrated Ride-Through Buffering: Provides localized capacitive hold-up capacity to secure system control execution parameters over temporary line voltage drops.
  • Diode-Coupled Bus Isolation: Employs built-in steering diodes to seamlessly tie converted DC current with alternative backup battery rails.

Applications

  • EX2100 Excitation Bus Power: Delivers continuous rectified bus power to gate pulse amplifier boards and excitation distribution racks.
  • Mark VIe Battery-Less Controller Feeds: Main power conversion assembly deployed in turbine generator infrastructure missing static battery storage banks.
  • Industrial DC Distribution Maintenance: Used as a drop-in, fully backward-compatible replacement for obsolete Group 1 (DS2020DACAG1) modules.

Technical Specifications

Parameter Specification
Manufacturer General Electric (GE)
Model DS2020DACAG2
Product Series EX2100 Excitation Series / Mark VIe System
Module Type AC-DC Power Conversion Assembly
Functional Acronym DACA
Power Conversion Parameters 115/230 VAC input to 126 VDC output
Output Power Rating 1000 W
Maximum Output Current (Single) 9.5 ADC
Maximum Output Current (Parallel) 16.5 ADC
Capacitor Configuration Wear-replaceable Electrolytic Capacitors
Operating Temperature -22 to +140 degF (-30 to +60 degC) via free convection
Operating Humidity Bounds 5 to 95%, non-condensing
Calculated Life Expectancy 100 years at ambient temp of 68 degF (20 degC)
PCB Coating Profile Normal style surface coating
Replaces Model DS2020DACAG1 (Group 1)
Product Weight 48.39 lbs (21.95 kg)

Connections/Interfaces

Connector Identifier Terminal Layout Function
JZ Connector 12-Position Modular Block Integrated input path for raw AC entry and output pathway for rectified DC loops

Installation Guidelines

  • Bus Line De-energization: Verify total isolation and zero potential on all source input wires and parallel battery loops before attempting hardware replacement.
  • ESD Shielding Protocol: Installation engineers must stay attached to an approved, fully grounded anti-static wrist strap to avert dielectric shock to the inner circuit components.
  • Parallel Voltage Matching Requirements: If operating dual conversion assemblies in a parallel network, both blocks must hook into the identical AC source link to secure identical source input potentials.
  • Harness Interconnection Setup: When wiring the conversion assembly alongside an IS2020JPDF module, lock the specialized wiring harness firmly between the JPDF and JPDB terminals.
Shipping & Returns

Global Express Shipping

  • Standard Delivery: 4–6 business days via DHL, FedEx, and UPS.
  • Express Dispatch: Same-day dispatch for in-stock orders placed before 2:00 PM (GMT+8).
  • Worldwide Coverage: Serving over 150 countries.

Returns & Warranty

  • 30-Day Guarantee: Returns accepted for in-stock products in original, factory-sealed packaging.
  • 12-Month Warranty: Every industrial component is backed by our technical warranty.
FAQ
Are there any design differences between the DS2020DACAG1 and the DS2020DACAG2?
There are virtually no functional differences between the two models. The DS2020DACAG2 serves as a direct drop-in and fully backward-compatible replacement for the older DS2020DACAG1 module.
Can two parallel units be connected to separate AC power sources?
No. When running two parallel assemblies to increase current output to 16.5A, they must be tied to the exact same AC input source to maintain balanced input voltages.
How does extreme ambient operating temperature alter the expected service life of the module?
While the baseline life expectancy is 100 years at 68 degF, operating continuously at an elevated ambient temperature of 149 degF degrades the internal electrolytic capacitors, requiring module replacement roughly every five years.
What nominal voltage measurements should be checked on a grounded, coupled DC bus setup?
When the conversion module is correctly diode-coupled and grounded, nominal voltage checks across the bus rails should register +62.5 VDC and -62.5 VDC relative to ground.
Reviews

DS2020DACAG2

Stock & lead time on request

Call
1 su 3

GE DS2020DACAG2 EX2100 AC-DC Power Conversion Assembly

Only 4 item(s) left in stock
  • Manufacturer: General Electric

  • Product No.: DS2020DACAG2

  • Country of origin:United States

  • Product Type: AC-DC Power Conversion Assembly

  • Barcode: 8537101190

  • Payment: T/T, Western Union

  • Weight: 21950g

  • Shipping port: Xiamen

  • Warranty: 12 months

Quantità
Visualizza dettagli completi

Product Description

Description

The DS2020DACAG2 operates as a ruggedized AC to DC power conversion assembly designed for integration within EX2100 excitation systems and Mark VIe control networks. This power supply module supplies regulated local energy to essential distribution architectures, effectively extending systemic control ride-through capabilities during line source failures or operation within completely battery-less configurations.

The structural circuit path of the DS2020DACAG2 executes rectification of alternative source feeds into structured direct current bus rails. Operating from a dual-tap 115 VAC or 230 VAC line entry, the module delivers an output potential rated at 126 VDC with a maximum delivery boundary of 9.5 ADC under individual assembly usage. This rectified DC line couples to concurrent system energy feeds through an on-board diode network to build a common distribution bus, directly feeding secondary controller blocks, core module sectors, and active gate pulse amplifier cards. The conversion topology utilizes heavy-duty electrolytic storage capacitors to maintain ripple filtering, accompanied by dedicated diagnostic LED indicators arranged at downstream modules (such as EPDM, EGPA, EXTV, and EPBP) to verify consistent power rail health. For expanded system loads, multiple units can be coupled in parallel configurations via a standardized 12-position connector interface to boost aggregate loop outputs to 16.5A DC.

Features

  • Dual-Voltage Input Conversion: Rectifies standard 115 VAC or 230 VAC utility inputs into a stabilized 126 VDC configuration loop.
  • Parallel Core Scaling: Supports dual-module parallel load sharing across a shared bus to increment total output delivery up to 16.5A DC.
  • Integrated Ride-Through Buffering: Provides localized capacitive hold-up capacity to secure system control execution parameters over temporary line voltage drops.
  • Diode-Coupled Bus Isolation: Employs built-in steering diodes to seamlessly tie converted DC current with alternative backup battery rails.

Applications

  • EX2100 Excitation Bus Power: Delivers continuous rectified bus power to gate pulse amplifier boards and excitation distribution racks.
  • Mark VIe Battery-Less Controller Feeds: Main power conversion assembly deployed in turbine generator infrastructure missing static battery storage banks.
  • Industrial DC Distribution Maintenance: Used as a drop-in, fully backward-compatible replacement for obsolete Group 1 (DS2020DACAG1) modules.

Technical Specifications

Parameter Specification
Manufacturer General Electric (GE)
Model DS2020DACAG2
Product Series EX2100 Excitation Series / Mark VIe System
Module Type AC-DC Power Conversion Assembly
Functional Acronym DACA
Power Conversion Parameters 115/230 VAC input to 126 VDC output
Output Power Rating 1000 W
Maximum Output Current (Single) 9.5 ADC
Maximum Output Current (Parallel) 16.5 ADC
Capacitor Configuration Wear-replaceable Electrolytic Capacitors
Operating Temperature -22 to +140 degF (-30 to +60 degC) via free convection
Operating Humidity Bounds 5 to 95%, non-condensing
Calculated Life Expectancy 100 years at ambient temp of 68 degF (20 degC)
PCB Coating Profile Normal style surface coating
Replaces Model DS2020DACAG1 (Group 1)
Product Weight 48.39 lbs (21.95 kg)

Connections/Interfaces

Connector Identifier Terminal Layout Function
JZ Connector 12-Position Modular Block Integrated input path for raw AC entry and output pathway for rectified DC loops

Installation Guidelines

  • Bus Line De-energization: Verify total isolation and zero potential on all source input wires and parallel battery loops before attempting hardware replacement.
  • ESD Shielding Protocol: Installation engineers must stay attached to an approved, fully grounded anti-static wrist strap to avert dielectric shock to the inner circuit components.
  • Parallel Voltage Matching Requirements: If operating dual conversion assemblies in a parallel network, both blocks must hook into the identical AC source link to secure identical source input potentials.
  • Harness Interconnection Setup: When wiring the conversion assembly alongside an IS2020JPDF module, lock the specialized wiring harness firmly between the JPDF and JPDB terminals.

Are there any design differences between the DS2020DACAG1 and the DS2020DACAG2?

There are virtually no functional differences between the two models. The DS2020DACAG2 serves as a direct drop-in and fully backward-compatible replacement for the older DS2020DACAG1 module.

Can two parallel units be connected to separate AC power sources?

No. When running two parallel assemblies to increase current output to 16.5A, they must be tied to the exact same AC input source to maintain balanced input voltages.

How does extreme ambient operating temperature alter the expected service life of the module?

While the baseline life expectancy is 100 years at 68 degF, operating continuously at an elevated ambient temperature of 149 degF degrades the internal electrolytic capacitors, requiring module replacement roughly every five years.

What nominal voltage measurements should be checked on a grounded, coupled DC bus setup?

When the conversion module is correctly diode-coupled and grounded, nominal voltage checks across the bus rails should register +62.5 VDC and -62.5 VDC relative to ground.

Global Express Shipping

  • Standard Delivery: 4-6 Business Days via DHL, FedEx, and UPS.
  • Express Dispatch: Same-day dispatch for in-stock orders placed before 2:00 PM (GMT+8).
  • Worldwide Coverage: Serving over 150 countries, including rapid delivery to Saudi Arabia and UAE.

Returns & Warranty

  • 30-Day Guarantee: Returns accepted for in-stock products in original, factory-sealed packaging.
  • 12-Month Warranty: Every industrial component is backed by our professional technical warranty.

Orders are processed and delivered Monday-Friday (excluding public holidays).


For full eligibility, restocking fees, and international return details, please view our official Refund & Return Policy .

TECHNICAL SPECIFICATIONS

Color pattern
Dots Silver
Country of origin
United States

Technical knowledge

1756-L73 Firmware Upgrade Guide: v19 vs v21/v31 Decision

Replacing a 1756-L73 does not automatically mean upgrading its firmware. This guide compares v19.013, v21.011 and v31.011, focusing on project compatibility, HMI communications, legacy networks and...

Implementing 3-Switch XOR Ladder Logic with Internal Bit

Implement a 3-SPST switch XOR light circuit in LogixPro or RSLogix 500 using an internal relay bit. Includes truth tables, boolean equations, and verified.

Building a Modbus RTU Network with CompactLogix and DeltaV

Integrate Allen-Bradley CompactLogix, Caterpillar ATS, and generators into DeltaV DCS over Modbus RTU. Covers ProSoft MVI69-MCM, Miille DIN266 gateways.

ONS Instruction Not Energizing OTE in Studio 5000 Ladder Logic

ONS instruction fires but the OTE coil never latches in Studio 5000 because the one-shot is only true for one scan. Use OTL/OTU or seal-in logic instead.

Kinetix 5500 EtherNet/IP Network Switch Requirements and Topology

Configure Allen-Bradley Kinetix 5500 servo drives on EtherNet/IP. Covers CIP Sync, IEEE 1588 V2 timing, Stratix selection, DLR topology, and HMI.

Moving Average Filtering in DCS and PLC Analog Control

A moving-average filter is the sliding-window smoother most instrument engineers drop into DCS and PLC analog paths. Here is how the window works, how N and sample time set lag, and when a...