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Miscellaneous Functions


  • PIM Parallel IO Module: (from Dynamic Engineering)
    PIM-Parallel-IO: The PIM-Parallel-IO is part of the PMC family of modular I/O components. The purpose of the PIM-Parallel-IO is to facilitate rear panel IO in cPCI systems. A PIM Carrier is mounted to the underside of the backplane. The Pn4 [PMC] IO is passed through the backplane connectors to the PIM Carrier and to the installed PIM devices. Most PIM Carriers have two PIM sites that correspond to the two PMC's mounted to the host card. The PIM (PMC Interface Module) carrier supports the flexible PIM scheme for PMC rear I/O. http://www.dyneng.com/pim_parallel_io.shtml The PIM modules can be used with other PMC boards. For Dynamic Engineering's full line of PMC boards, visit: http://www.dyneng.com/pmc.html

  • PIM-Universal_IO: (from Dynamic Engineering)
    The PIM_Universal_IO facilitates rear panel IO in cPCI based systems using PMC's. The PIM_Universal_IO provides the PMC front panel IO where rear panel IO is desired. The PIM_Universal_IO can be used with any PMC implementing "Pn4" IO. The PIM_Universal_IO is part of the PMC family of modular I/O components. The purpose of the PIM_Universal_IO is to facilitate rear panel IO in cPCI systems. The Pn4 "user IO" on the PMC is routed through the host "carrier" board to the backplane. A PIM Carrier is mounted to the underside of the backplane. The Pn4 IO is passed through the backplane connectors to the PIM Carrier and to the installed PIM devices. Most PIM Carriers have two PIM sites which correspond to the two PMC's mounted to the host card. The PIM (PMC Interface Module) carrier supports the flexible PIM scheme for PMC rear I/O.

    When installed, the PIM_Universal_IO will re-create the PMC's Pn4 IO in the rear compartment of the chassis [under the backplane]. All of the 64 IO connections are routed to the 68 pin SCSI II connector. The signals are routed through 10 ohm resistors to provide signal damping. Alternate values can be implemented if desired.

  • PIM_Parallel_IO: (from Dynamic Engineering)
    The PIM-Parallel-IO facilitates rear panel IO in cPCI based systems using PMC's. The PIM-Parallel-IO provides the PMC_Parallel_IO front panel IO where rear panel IO is desired. The PIM-Parallel-IO can be used with other PMCs as well.

    The PIM-Parallel-IO is part of the PMC family of modular I/O components. The purpose of the PIM-Parallel-IO is to facilitate rear panel IO. A PIM Carrier is mounted to the underside of the backplane. The Pn4 [PMC] IO is passed through the backplane connectors to the PIM Carrier and to the installed PIM devices. Most PIM Carriers have two PIM sites which correspond to the two PMC's mounted to the host card. The PIM (PMC Interface Module) carrier supports the flexible PIM scheme for PMC rear I/O.

    When installed the PIM-Parallel-IO will recreate the PMC-Parallel-IO front bezel IO in the rear compartment of the chassis [under the backplane]. All of the 64 IOconnections are routed to the 68 pin SCSI II connector. The signals are routed through 10 ohm resistors to provide signal damping. Alternate values can be implemented if desired.

    The PIM specification provides for power and ground references. The ground reference is used to tie into internal planes used as references for the signals routed across the PIM. The Bezel, Connector and connections are the same as the PMC-Parallel-IO to allow the same cables to be used on the front panel bezel or the PIM bezel. The only exception being the signals on pins 1, 35 of the SCSI connector which are not available on the Pn4 connector. All 64 IO are available. Two signal grounds are provided. Please refer to the tables in the manual for the connector definitions.

    For custom versions please contact Dynamic Engineering.

  • PMC Spacewire: (from Dynamic Engineering)
    Utilize SpaceWire to communicate with the European Space Agency and NASA equipment utilizing the ECSS-E-50-12A specification. SpaceWire is configured using routers to create a hierarchical point-to-point system with high speed parallel paths.
    The PMC SpaceWire is easy to use. Point and shoot - just fill the FIFO and set the start bit to get your custom protocol transmitting. Built in loop-back capabilities and engineering kits help with integration into your system. Windows driver available. Utilize SpaceWire to communicate with the European Space Agency and NASA equipment utilizing the ECSS-E-50-12A specification. SpaceWire is configured using routers to create a hierarchical point-to-point system with high-speed parallel paths. http://www.dyneng.com/pmc_SpaceWire.html


  • 2283 -- PMC Socket Saver: (from Technobox, Inc.)
    For production and testing environments, the 2283 Socket Saver is intended to preserve the integrity of a host or test adapter´s PMC connectors by absorbing the wear and tear of repeated insertions and extractions that otherwise would have to be withstood by the connectors themselves. A disposable device, the 2283 can be easily replaced when a failure occurs. It also may be used in situations were a 10 mm elevation of a PMC is desired. The 2283 is an ideal extra for use with Technobox adapters (e.g., the 3390 PMC-to-PCI Adapter for Test).

  • 3188 -- SCSI Ultra2 LVD/SE PIM: (from Technobox, Inc.)
    The 3188 supports LVD/SE ear I/O interface for SCSI PMCs (e.g., Technobox P/Ns 2044, 3145, and 3156). Converts the PN4 signals to 68-pin SCSI connector for convenient routing to a transition panel, etc.

  • 3189 -- Dual 10/100-TX Ethernet PIM: (from Technobox, Inc.)
    The 3189 provides rear I/O interface for Ethernet PMCs (e.g., P/N 2894). Provides dual RJ45 connectors.

  • 3190 -- Generic PIM: (from Technobox, Inc.)
    The 3190 provides rear I/O interface for 'other' PMCs. Converts the PN4 signals to 68-pin SCSI connector.

  • 3797 -- x86-based Processor PMC (PrPMC): (from Technobox, Inc.)
    Low-power, x86 processor solution built around a National Semiconductor SC2200 GEODE. Single-wide. CompactFlash site for storing OS image (Windows or Linux) and files.

    Use as main CPU or adjunct processor to offload tasks or provide Windows GUI through network, etc. Front-panel connector (36-position) for cable-attached keyboard, video (SVGA or DVI), mouse, USB etc.

    Optional external breakout board (P/N 3917) available to separate various front I/O into individual connectors. Ethernet port at front panel. Rear I/O for external IDE device (e.g. CD ROM) or floppy drive.

    See also: http://www.technobox.com/4390-Geode_DevBundle.pdf

  • 3923 -- Flex ATX Processor PMC (PrPMC) Carrier: (from Technobox, Inc.)
    Provides sites for two (2) PMC sites plus THREE (3) PCI card slots (two 64-bit and one 32-bit). Using the 3923, a designer can work with a single PrPMC, dual PrPMCs, or a PrPMC and PMC for hardware or software development.

  • 4400 -- LVD SCSI P2 Paddle Card: (from Technobox, Inc.)
    Rear I/O interface for SCSI PMCs (e.g., P/N 3145). Converts the PN4 signals to 68-pin SCSI connector.

  • NPMC-EXT64: (from N.A.T. GmbH)
    The NPMC-EXT64 is a passive 64Bit PMC extender, providing a versatile means for development in a PMC environment. The NPMC-EXT64 allows access to all signals of the PMC bus, including the I/O signals, especially for access by a logic analyzer or a digital oszilloscope.

  • PMC Interface Modules: (from Motorola Inc., Embedded Communications Computing)
    PMC Interface Module (PIM) simplifies rear I/O from PMCs. The PMC vendor creates PMC & PIM pairs while the CPU or IO controller vendor creates CPU/IO & Transition module pairs. Rather than create a custom Transition Module for each combination of PMC and carrier board, the vendors need only create these module pairs once. PMC/PIM pairs can then be easily mixed on carrier cards without requiring new transition module artwork.

  • PMC SpaceWire: (from Dynamic Engineering)
    PMC SpaceWire implements SpaceWire in a convenient PMC format. With PMC you can install the adapter into PCI [PCIBPMC], cPCI [cPCI2PMC], or processor board pmc slots. The SpaceWire specification calls for LVDS signaling and a specific 9 pin micro-D connector. You can connect the PMC-SpaceWire to other SpaceWire compliant devices without electrical interface issues


  • PMC-Audio: (from SBS Technologies)
    General purpose Soundblaster(TM) compatible audio PMC module. Front or rear-panel I/O.

  • PMC410A: (from GE Fanuc)
    User Configuration & Display module 16 LEDs (Green)

  • PMC410B: (from GE Fanuc)
    User Configuration & Display module 16 LEDs (Multicolor)

  • PMC420: (from GE Fanuc)
    PMC Front Panel Data Port (FPDP)

  • PMC420/M: (from GE Fanuc)
    PMC Front Panel Data Port (FPDP) with RaceWay Interface

  • PMC447: (from GE Fanuc)
    PMC Intelligent RaceWay Gateway

  • PMC471: (from GE Fanuc)
    PMC TAXI Interface

  • PMC498: (from GE Fanuc)
    10BaseT to 10Base2 media converter with rotary switch / 16 LEDs

  • PMC668: (from GE Fanuc)
    ATM

  • PMC669: (from GE Fanuc)
    FDDI Single Channel

  • PMC670: (from GE Fanuc)
    FDDI Dual Channel

  • PrPMC600: (from Motorola Inc., Embedded Communications Computing)
    PowerPC® MPMC8240 microprocessor @ 200 or 250 MHz CPU-memory subsystem on a single-wide PMC. 32 MB-64MB ECC DRAM, Front-Panel 10/100Mbit Ethernet, 9MB Flash.

  • PrPMC750: (from Motorola Inc., Embedded Communications Computing)
    32-bit PowerPC 750T microprocessor (primary or host) CPU-memory subsystem on a single-wide PMC. Motorola Powerplus II architecture, integrated 64-bit PCI host bridge, 144-bit ECC memory controller ASIC, 1MB L2 cache. Supports 100MHz local bus operation making use of PC100 synchronous DRAM.

  • PrPMC800: (from Motorola Inc., Embedded Communications Computing)
    PowerPC 7410 with Altivec technology or PowerPC 750 microprocessor, Motorola Powerplus 3 architecture, 64-bit PCI host bridge, 256MB on-board ECC SDRAM, 10/100Base Tx Ethernet interface, 72-bit ECC memory controller ASIC, 2MB/1MB L2 cache. Supports 100MHz local bus operation.

  • TCP020-TM-10: (from TEWS TECHNOLGIES GmbH)
    PIM Carrier Transition Module for 6U cPCI; 6U 2 slot PIM Carrier Transition Module for 6U cPCI PMC carrier; distributes all I/O lines of two PMC's from the cPCI RJ3 and RJ5 connectors to two PIM modules; Operating temperature -40°C to +85°C

  • TCP021-TM-10: (from TEWS TECHNOLGIES GmbH)
    PIM Carrier Transition Module for 6U cPCI; 2 slot PIM Carrier Transition Module for 6U cPCI PMC carrier; distributes all I/O lines of two PMC's from the cPCI RJ3 and RJ4 connectors to two PIM modulesl; Operating temperature -40°C to +85°C

  • TCP030-TM-10: (from TEWS TECHNOLGIES GmbH)
    Transition Module for 3U cPCI PMC carrier; 64 PMC I/O lines at RJ2 connector mapped to 68 pin SCSI-3 type connector in EMI front panel; Operating temperature -40°C to +85°C

  • TPIM001-10: (from TEWS TECHNOLGIES GmbH)
    PIM I/O module used with any PIM carrier like TEWS' TCP020-TM-10; I/O lines 1 to 50 routed to a HD50 SCSI-2 type connector in EMI front panel; Operating temperature -40°C to +85°C

  • TPIM002-10: (from TEWS TECHNOLGIES GmbH)
    PIM I/O module used with any PIM carrier like TEWS' TCP020-TM-10; I/O lines routed to a HD68 SCSI-3 type connector in EMI front panel; Operating temperature -40°C to +85°C

  • TPIM003-10: (from TEWS TECHNOLGIES GmbH)
    PIM I/O Module with 68 pin connector and special pin assignment maps all 64 I/O lines of the PMC P14 I/O connector to a 68 pin SCSI-3 type connector resulting in the same pin assignment as the 68 pin SCSI-3 type connector used on the PMC ; Operating temperature -40°C to +85°C

  • TPIM004-10: (from TEWS TECHNOLGIES GmbH)
    PIM I/O Module for Quad Ethernet PMC providing 4 RJ45 connectors to support rear I/O for TPMC382 and TPMC882; Operating temperature -40°C to +85°C

  • TPIM005-10: (from TEWS TECHNOLGIES GmbH)
    PIM I/O module provides a HD68 SCSI-3 type connector to support rear I/O for TEWS´ TPMC362 and TPMC862; Operating temperature -40°C to +85°C

  • TPMC871-10: (from TEWS TECHNOLGIES GmbH)
    One CardBus / PC Card Socket supporting Memory and I/O Cards of type I and II accessible through front panel; PC Card controller with power management; Operating temperature 0°C to +70°C

  • TPMC871-11: (from TEWS TECHNOLGIES GmbH)
    One CardBus / PC Card Socket supporting Memory and I/O Cards of type I and II; inserted PC Card aligned with PMC board border, no front panel; PC Card controller with power management; Operating temperature 0°C to +70°C

  • TPMC871-50: (from TEWS TECHNOLGIES GmbH)
    One CardBus / PC Card Socket supporting Memory and I/O Cards of type I and II; inserted PC Card aligned with PMC board border, accessible through front panel; PC Card controller with power management; Operating temperature 0°C to +70°C

  • TPMC872-10: (from TEWS TECHNOLGIES GmbH)
    One CardBus / PC Card Socket supporting Memory and I/O Cards of type I and II accessible through front panel; PC Card controller with power management; Operating temperature -40°C to +85°C

  • TPMC872-11: (from TEWS TECHNOLGIES GmbH)
    One CardBus / PC Card Socket supporting Memory and I/O Cards of type I and II; inserted PC Card aligned with PMC board border, no front panel; PC Card controller with power management; Operating temperature -40°C to +85°C

  • TPMC872-12: (from TEWS TECHNOLGIES GmbH)
    One CardBus / PC Card Socket supporting Memory and I/O Cards of type I and II; inserted PC Card aligned with PMC board border, accessible through front panel; PC Card controller with power management; Operating temperature -40°C to +85°C

  • TPMC872-20: (from TEWS TECHNOLGIES GmbH)
    Two Socket PC Card Interface; 1 CardBus / PC Card Socket supporting Memory and I/O Cards of type I and II accessible through front panel; PC Card controller with power management; additionally PC Card slot on solder side supporting card types I, II and III; Operating temperature -40°C to +85°C

  • TPMC872-21: (from TEWS TECHNOLGIES GmbH)
    Two Socket PC Card Interface; 1 CardBus / PC Card Socket supporting Memory and I/O Cards of type I and II; inserted PC Card aligned with PMC board border, no front panel; PC Card controller with power management; additionally PC Card slot on solder side supporting card types I, II and III; Operating temperature -40°C to +85°C

  • TPMC872-22: (from TEWS TECHNOLGIES GmbH)
    Two Socket PC Card Interface; 1 CardBus / PC Card Socket supporting Memory and I/O Cards of type I and II; inserted PC Card aligned with PMC board border, accessible through front panel; PC Card controller with power management; additionally PC Card slot on solder side supporting card types I, II and III; Operating temperature -40°C to +85°C

  • TVME020-TM-10: (from TEWS TECHNOLGIES GmbH)
    6U/4TE Transition Module for VME64x PMC Carrier providing two PIM slots; P2 mapping conforms to ANSI/VITA 35-2000 PMC to VME-P2/VME64x-P2 I/O mapping; Operating temperature -40°C to +85°C