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    Apter Power offers quotations, product documents and configuration assistance for General Electric IS215UCVEM06A.

IS215UCVEM06A

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General Electric IS215UCVEM06A is a Mark VI UCVE controller assembly with two ISBus channels for controller processing and rack-level communication.
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Technical specifications for IS215UCVEM06A

  • Manufacturer:
    General Electric
  • Part Number:
    IS215UCVEM06A
  • Product Family:
    GE Mark VI Gas Turbine Control
  • Product Type:
    Mark VI UCVE Two-ISBus Controller
  • Stock:
    1
  • Channel Arrangement:
    Two ISBus channels
  • Rack Architecture:
    VME controller environment
  • External Access:
    Ethernet and serial interfaces
  • Tariff Code:
    8537101190
  • Country of origin:
    USA
  • Place of shipment:
    Xiamen,Fujian,China
By purchasing this item, you agree to the Terms & Conditions, ApterPower is not an authorized distributor for listed manufacturers or tradenames and therefore the manufacturer's warranty does not apply. All our products come with ApterPower's 1-year warranty.

More Information

Overview Manuals ISBus Paths Rack Exchange External Access Match Checks

Features:

  • Combines Mark VI UCVE processing with two ISBus channels.
  • Operates within the VME controller environment.
  • Maintains distinct internal-bus and external-access paths.
The M06 configuration identifies the dual-ISBus arrangement of IS215UCVEM06A within the UCVE family.

Controller execution, rack exchange and channel communication remain separate parts of the installed architecture.

Rack position and both channel assignments define how the module exchanges internal Mark VI data.

The General Electric IS215UCVEM06A Mark VI Two-ISBus UCVE Controller may still be available for purchase and support from Apter Power beyond End-Of-Life (EOL) by the manufacturer (OEM).
General Electric IS215UCVEM06A Mark VI Two-ISBus UCVE Controller Manuals,Datasheets,Link Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.

Dual-Channel Boundary

  • Channel count: IS215UCVEM06A is identified with two ISBus channels.
  • Channel identity: Each installed path must retain its original assignment.
  • Isolation step: A fault on one channel should be separated from the condition of the other.
  • Variant boundary: The M06 designation distinguishes this arrangement from other UCVE assemblies.

VME Relationship

  • Controller role: IS215UCVEM06A executes the application within the Mark VI rack.
  • Internal transport: VME carries data between controller and rack resources.
  • Bus distinction: VME exchange and the two ISBus channels are checked as different paths.
  • Position control: The original rack location forms part of the module configuration.

Service Interfaces

  • Network access: Ethernet provides an external controller communication route.
  • Serial access: Serial interfaces provide local or connected-device paths.
  • Diagnostic split: External-port symptoms are compared with VME and ISBus status.
  • Cable record: Every attached service lead should retain its original port identity.

Configuration Control

  • Full catalog: Match IS215UCVEM06A rather than UCVE alone.
  • Channel mapping: Confirm both ISBus assignments before energizing the rack.
  • Rack position: Preserve the documented VME slot.
  • Interface record: Compare Ethernet, serial and internal-bus connections with the removed controller.
Description
Two ISBus channels define the communication arrangement of the General Electric IS215UCVEM06A UCVE controller assembly in the Mark VI platform. The M06 configuration combines that dual-channel layout with the controller function rather than using the channel arrangement assigned to other UCVE assemblies.

Application processing on IS215UCVEM06A follows the UCVE controller architecture: turbine application code executes on the controller while rack data is exchanged through the VME environment. The two ISBus channels add separate controller-side communication paths that remain individually identified in the installed system.

Front connections and status indications on IS215UCVEM06A provide separate evidence for controller, channel and rack conditions. Ethernet and serial interfaces serve external communication, while the VME and ISBus paths handle internal system exchange.

Within IS215UCVEM06A, the M06 configuration identifies the two-ISBus arrangement. Rack position, channel mapping and connected interface paths define how the controller exchanges data inside the Mark VI assembly.
Alternative Names
GE IS215UCVEM06A IS215-UCVE-M06A General Electric UCVE M06A IS215 UCVE M06A IS215UCVEM06-A Mark VI UCVE M06A Two-ISBus UCVE M06A IS215UCVEMO6A
Technical notes
General Electric IS215UCVEM06A is a Mark VI UCVE controller assembly identified with two ISBus communication channels.
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FAQS

The following is a list of questions commonly asked by our customers. Please contact us if you have a question about our process that is not answered below.
How should a technician isolate one failed communication path on IS215UCVEM06A?
IS215UCVEM06A has two ISBus channels, so record and test each channel independently before treating the controller assembly as the common fault.
Why must both ISBus assignments be preserved when IS215UCVEM06A is reinstalled?
The M06 configuration of IS215UCVEM06A uses two distinct ISBus paths; exchanging their assignments changes the installed communication arrangement.
What helps separate a VME rack problem from an ISBus problem on IS215UCVEM06A?
For IS215UCVEM06A, compare rack-level VME exchange with the behavior of each ISBus channel instead of assuming every lost data path has one cause.
Which information should be recorded before IS215UCVEM06A is removed?
Record the complete IS215UCVEM06A suffix, rack position, two ISBus channel assignments and every Ethernet or serial connection before disconnecting the module.
Why can a generic UCVE replacement leave one ISBus route unavailable in an IS215UCVEM06A rack?
IS215UCVEM06A is defined by two ISBus channels, so a UCVE assembly without the M06 channel arrangement does not provide the same internal communication layout.
How can external communication symptoms be separated from internal bus symptoms on IS215UCVEM06A?
IS215UCVEM06A uses Ethernet and serial ports for external access while VME and ISBus handle internal exchange, so each interface group should be checked independently.
What does a simultaneous loss of both ISBus paths on IS215UCVEM06A suggest should be checked next?
When both ISBus paths disappear together, compare IS215UCVEM06A controller and VME-rack status before treating the two channel cables as separate failures.