Description
Key Technical Specifications
| Parameter | Specification |
|---|---|
| Manufacturer | GE / GE Fanuc VMIC |
| GE Board Model | IS215UCVEH2AB |
| VMIC Model | VMIVME-7614-132 |
| Assembly / Catalog Number | 350-007614-132C |
| Product Type | VMEbus Single Board Computer |
| Form Factor | 6U VMEbus |
| Processor Architecture | Intel Socket 370 |
| Processor Class | Celeron-based configuration |
| VME Interface | VMEbus |
| Serial Interface | Dual 16550-compatible serial ports |
| Network Interface | Ethernet |
| Local Storage | IDE / CompactFlash support |
| Reported Memory | 32 MB DRAM / 16 MB Flash configuration |
| Battery-Backed Memory | 32 KB SRAM |
| Operating Systems | QNX, Windows NT/2000, Linux, VxWorks, Solaris |
| Typical Mounting | VME chassis / backplane |
| Application | Industrial control and embedded computing |
The VMIVME-7614-132 is documented as a Socket 370 processor-based VMEbus single-board computer, with support for several operating environments and a 6U VME form factor.
Another technical listing associates IS215UCVEH2AB, VMIVME-7614-132, and 350-007614-132C as the same product identification chain and describes the board as an SBC used in GE turbine-control environments.
One caution: secondary listings disagree on whether this hardware should be described as an I/O module, power module, or CPU. The stronger VMIC-specific evidence identifies VMIVME-7614-132 as a VMEbus SBC, so that is the classification I would use for procurement.
Application Scenarios & Pain Points
A failed VME CPU can create a deceptively broad fault pattern: communication loss, application failure, missing I/O updates, or a controller that simply refuses to boot. With equipment this old, the replacement board itself is only part of the problem—the software image and storage device can be equally important.
- GE turbine-control systems: The IS215UCVEH2AB identification is associated with GE Mark VI control equipment in available technical references.
- VME-based industrial controllers: The VMIVME-7614-132 provides processor resources for systems built around the VMEbus backplane.
- Legacy control-system maintenance: Suitable where an existing application depends on the 7614-132 hardware platform rather than a modern Ethernet-based controller.
- Industrial embedded computing: The combination of processor, VME interface, serial ports, Ethernet, and local storage makes the board suitable for standalone embedded control-computing duties.
Field note: Do not assume a replacement SBC is ready to run simply because it reaches POST. A missing or incorrect boot image can leave the hardware healthy while the application remains completely unusable.
Brief Field Case
A common legacy-system failure involves a VME CPU that powers normally but cannot load its application. Before replacing the entire controller rack, check the CPU board, CompactFlash or other storage, memory, battery-backed SRAM, and VME backplane connections. On these systems, software preservation can be just as important as finding the correct hardware suffix.

IS215UCVEH2AB
Related Products
- GE IS215UCVEH2AB / VMIVME-7614-132 / 350-007614-132C — Subject VME single-board computer. These three identifiers should be recorded together when sourcing a replacement.
- — The principal VMIC model designation for the SBC. It is the most useful identifier when searching the VME hardware family.
- GE 350-007614-132C — Associated GE catalog/assembly identifier for the 7614-132 configuration. Match the suffix rather than assuming every 7614 board is identical.
- GE IS215UCVEH2AE / VMIVME-017614-132 — Related UCVE/7614-family hardware with a different GE assembly identification. It should not be substituted without checking the exact processor, firmware, and system configuration.
- GE 350-017614-132D — Associated with the VMIVME-017614-132 variant. The different catalog number indicates a different configuration from 350-007614-132C.
- GE VMIVME-7750 — Another VME computing platform appearing in the same GE/VMIC ecosystem. It is a different SBC family and should be considered an alternative platform only after software and backplane compatibility review.
- GE VMIVME-7750-834 — A related 7750 configuration with a different assembly number. Useful as a family reference, not a drop-in replacement for the 7614-132.
- GE VMIVME-017614-132 — Alternate 7614-family designation. The different prefix and associated GE number warrant a hardware and application check before substitution.
- GE IS215UCVEH2AE — Closely related UCVE VME CPU variant. It has a different assembly identification and should be treated as a separate configuration.
The Engineer’s Guide: Field Pitfalls to Avoid
WARNING 1 — Do not substitute a physically similar VME CPU without checking the software image.
The 7614 platform can operate with different operating systems, including QNX, Windows NT/2000, Linux, VxWorks, and Solaris.
How to avoid it: Before removing the failed board, document the boot media, operating system, application version, BIOS settings, and storage configuration. A replacement CPU without the correct software environment may boot successfully and still fail its actual control task.
WARNING 2 — Match the complete part-number chain.
IS215UCVEH2AB, , and 350-007614-132C should be treated as related identification numbers for the required configuration. Other UCVE/7614 variants exist, including IS215UCVEH2AE / VMIVME-017614-132 / 350-017614-132D.
How to avoid it: Photograph the board label and record every GE and VMIC number before ordering.
WARNING 3 — Do not overlook the VME backplane and storage hardware.
A CPU that fails to boot may not actually be defective. Oxidized VME contacts, a marginal backplane connection, degraded CompactFlash media, or a weak battery-backed memory circuit can produce confusing symptoms.
How to avoid it: Inspect the VME connectors for oxidation or mechanical damage, reseat the board correctly, inspect storage media, and verify the power rails before condemning the SBC. On an old VME rack, a close look at the backplane pins is often worthwhile.
Frequently Asked Questions (FAQ)
What is GE IS215UCVEH2AB?
is associated with the VMEbus single-board computer platform. Available VMIC documentation identifies the 7614-132 as a Socket 370 processor-based 6U VME SBC.
It should therefore be treated primarily as a VME CPU/SBC, rather than a conventional analog or digital I/O card.
Is the same as ?
Available product references explicitly associate , , and 350-007614-132C.
For procurement, list all three identifiers. This is particularly useful with older GE hardware because a supplier may catalog the same physical assembly under either the GE board number or the VMIC designation.
What processor does use?
The 7614-132 is described as a Socket 370 processor-based VME SBC, with a Celeron-class configuration.
Do not assume the exact CPU frequency from the generic 7614-132 designation alone. If software timing or application compatibility is critical, verify the processor actually installed on the replacement board.
What operating systems can the support?
Available documentation lists support for Windows NT, Windows 2000, Linux, VxWorks, QNX, and Solaris configurations.
The installed operating system is application-dependent. For a replacement, the boot image and application environment should be treated as part of the spare—not as an afterthought.
Is 350-007614-132C an I/O module?
The more credible VMIC-specific evidence identifies as a VMEbus single-board computer, rather than a conventional I/O module.
Some secondary inventory pages misclassify the board as an input/output module. I would use VME SBC / CPU controller in a technical purchase specification.
Can be replaced with IS215UCVEH2AE?
Not automatically. The two UCVE variants are associated with different VMIVME and GE assembly identifiers.
Before substitution, compare:
- Processor configuration
- VME interface
- Memory
- Storage device
- BIOS revision
- Operating system
- Application image
- GE control-system compatibility
- Board revision
A connector-level match is not sufficient.
What should I request when buying a refurbished ?
For a production-critical spare, request:
- Actual photographs of the board.
- marking.
- marking.
- 350-007614-132C identification.
- Processor identification.
- Memory configuration.
- Storage-media condition.
- BIOS/firmware information.
- VMEbus functional test.
- Ethernet and serial-port test results.
- Boot-test evidence.
- Test report and warranty.
A simple power-on test is not enough. For this class of SBC, successful boot and VME communication are much more meaningful acceptance criteria than a visual inspection alone.
