Features:
- IS200HSLAH2A provides the host-application interface for a high-speed serial link.
- An onboard FPGA implements the digital control logic used by HSSL communication.
- The interface architecture accommodates either a single-port or dual-port HSSL arrangement.
In EX2100e, IS200HSLAH2A forms a controller-side communication boundary rather than a customer terminal interface.
System-I/O status traverses IS200HSLAH2A on its way from ESYS toward the UCSx controller path.
The auxiliary route likewise uses IS200HSLAH2A to carry communication associated with EAUX and its M1, M2, and C control channels.
The General Electric IS200HSLAH2A High-Speed Serial Link Interface Board may still be available for purchase and support from Apter Power beyond End-Of-Life (EOL) by the manufacturer (OEM).
General Electric IS200HSLAH2A High-Speed Serial Link Interface Board Manuals, Datasheets, Links
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.
Serial Link Arrangement
- Link type: The board implements a High-Speed Serial Link interface.
- Host role: HSLA is installed as a daughterboard for a host application.
- Port options: The interface can be configured as single-port or dual-port hardware.
- Controller side: The HSSL path terminates at a UCSx controller interface.
Digital Link Logic
- Core device: A field-programmable gate array is the principal link-control element.
- Logic function: The FPGA supplies digital control logic for HSSL.
- Board boundary: Serial-link control remains on the HSLA daughterboard.
- Host relationship: The logic operates as part of the host application interface.
System Status Path
- I/O source: ESYS interfaces customer I/O to the EX2100e architecture.
- Status flow: Information from I/O modules passes through HSLA interfaces.
- Destination: The serial path delivers status to UCSx controllers.
- Functional split: Field termination remains outside the HSLA board.
Auxiliary Interface Chain
- EAUX role: The auxiliary board interfaces excitation-control channels.
- M1 route: The M1 CSLA control path reaches its controller through HSLA.
- M2 route: A separate M2 channel uses the same HSLA interface concept.
- C route: The C control-board channel is also carried through an HSLA path.