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Supplier: Accuris
Description: A user's guide to the VME, VME64 and VME64x bus specifications
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Supplier: Accuris
Description: VME64bus - Specification
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Description: VME64bus -- Specification
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Description: Parallel Sub-system Bus of the IEC 821 VME bus
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Supplier: Accuris
Description: VME64bus Specification
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Supplier: Accuris
Description: Specification for IEC 822 VSB. Parallel sub-system bus of the IEC 821 VME bus
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Description: The VMEbus specification defines an interfacing system used to interconnect microprocessors, data storage and peripheral control devices in a closely-coupled hardware configuration. Its objectives include allowing communication between devices on the VMEbus without disturbing the internal
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Supplier: ELMA Electronic Inc.
Description: backplanes. The result is that the equivalent circuit of the backplane is a simple lumped 200 pF capacitance. In a standard VME backplane, the signals have propagation delay and must "wait" for their turn to True 320 Mbytes/sec. data rate, 8 times standard VME Exceeds
- VME / VXI / MXI Slots: 6 to 21
- Features: Other
- Board Function: Passive Backplane
- Bus / Standard: VME
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Supplier: ELMA Electronic Inc.
Description: The Elma Electronic 6U VME64x backplane series is designed to fully comply with the ANSI/VITA VME extension standard. We provide all standard features required for VME64x compatibility, including 160-pin VME extension connectors in J1 and J2, all defined ground pins
- VME / VXI / MXI Slots: 5 to 21
- Features: Other
- Board Function: Passive Backplane
- Bus / Standard: VME
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Supplier: ELMA Electronic Inc.
Description: convenient and effective than wire wraps and ribbon cables. The standard type module uses flush tail DIN connectors. Features 4-layer controlled impedance stripline design Minimum width permits use of several overlays on one backplane Replaces wirewrap or ribbon cable assembly Virtually zero
- VME / VXI / MXI Slots: 2 to 6
- Form Factor: 3U x 160mm (Size A)
- Board Function: Passive Backplane
- Bus / Standard: VME
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Supplier: ELMA Electronic Inc.
Description: The VME64x bus specification (ANSI/VITA 1.1-1997) is an extension of the VME64 standard ANSIVITA 1-1994. It defines a set of features that can be added to the VME and VME64 boards, backplanes and subracks. The major new features include expanded 160-pin P1/J1 and P2/J2
- VME / VXI / MXI Slots: 2 to 21
- Form Factor: 3U x 160mm (Size A)
- Board Function: Passive Backplane
- Bus / Standard: VME
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Description: Withdrawn Standard. Withdrawn Date: May 01, 2000. The logical protocol layer for bridging between a Futurebus+ system and a VME64 system in a tightly coupled fashion is defined. Transferring of both data and events is specified. The physical layer is not defined in this standard.
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Supplier: SIE Computing Solutions, Inc.
Description: Optimized performance for cost-effective six layer design 100% Level 3 electrical testing Superior power distribution Unique signal routing minimizes crosstalk 100% press-ft construction for reliability Option codes specify shrouds or automatic bus grant jumper feature Bus bar kits
- ISA Slots: 0
- PCI Slots: 0
- PISA Slots: 0
- CompactPCI / PXI Slots: 0
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Supplier: SIE Computing Solutions, Inc.
Description: Optimized performance for cost-effective six layer design 100% Level 3 electrical testing Superior power distribution Unique signal routing minimizes crosstalk 100% press-ft construction for reliability Option codes specify shrouds or automatic bus grant jumper feature Bus bar kits
- ISA Slots: 0
- PCI Slots: 0
- PISA Slots: 0
- CompactPCI / PXI Slots: 0
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Supplier: SIE Computing Solutions, Inc.
Description: propagation delay required by VME64 Common power planes for +5V and GND across J1 and J2 eliminate ground loops Matched impedance of J2 100% press-ft construction for reliability All signal pins accessible from both sides of the backplane Bus bar kits available
- ISA Slots: 0
- PCI Slots: 0
- PISA Slots: 0
- CompactPCI / PXI Slots: 0
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Supplier: Integrated Device Technology
Description: The CA91C142D (Universe II ) is the industry’s leading high-performance PCI to VME interconnect. It is fully compliant with the VME64 bus standard, and is tailored to support advanced PCI processors and peripherals. With a zero wait state implementation for write transactions,
- Pd: 3,200 milliwatts
- TJ: 0 to 70 C
- Pin Count: 313 #
- Package Type: PBGA
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Supplier: SIE Computing Solutions, Inc.
Description: propagation delay required by VME64 Common power planes for +5V and GND across J1 and J2 eliminate ground loops Matched impedance of J1 and J2 100% press-ft construction for reliability All signal pins accessible from both sides of the backplane Bus bar kits available
- ISA Slots: 0
- PCI Slots: 0
- PISA Slots: 0
- CompactPCI / PXI Slots: 0
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Standards and Technical Documents - IEEE Standard for a Versatile Backplane Bus: VMEbus -- 1014-1987
Description: This IEEE 1014 standard specifies a high-performance backplane bus for use in microcomputer systems that employ single or multiple microprocessors. It is based on the VMEbus specification, released by the VME Manufacturers' Group in August of 1982. The bus includes four
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Supplier: CSA Group
Description: Scope and object The VMEbus specification defines an interfacing system used to interconnect microprocessors, data storage, and peripheral control devices in a closely coupled hardware configuration. The system has been conceived with the following objectives: a) to allow communication between
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Description: multiprocessor architectures. This bus also supports inter-module interrupts for facilitating quick response to internal and external events. The mechanics of the boards and chassis are based on IEC 60297. Note: -1.This bus is similar to the VME bus. 2.For the price of
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Supplier: CSA Group
Description: multiprocessor architectures. This bus also supports inter-module interrupts for facilitating quick response to internal and external events. The mechanics of the boards and chassis are based on IEC 60297. Note: -1.This bus is similar to the VME bus. 2.For the price of
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Supplier: AMETEK Programmable Power
Description: a precision DC voltage standard which is designed to be used in conjunction with high-performance digitizers, such as the VM2601 family, to facilitate calibration with a test system. The VM7510 provides a precision +/- 0.5 V signal which can be used as the DC reference during calibration to
- Features: Bus Interfaces / Adapters
- Interface to: VME / VXI
- Technology: VXITM Compliant
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Supplier: Aitech Defense Systems, Inc.
Description: A versatile and reliable 6U VME power supply providing VME systems with an exceptionally wide input voltage range and all standard VME outputs and assures excellent load and line regulation. 175 Watt Output with Greater Than 75% Efficiency 16 - 36 Volt DC Input Range with
- Features: Bus Interfaces / Adapters
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Supplier: Aitech Defense Systems, Inc.
Description: Delivers reliable and sustainable 300W outputs for larger, more complex 6U VMEbus and CompactPCI-based subsystems. The P226 provides an exceptionally wide DC input voltage range, standard +5, +3.3 and +/-12V output voltages, high currents and optional power hold-up while maintaining excellent
- Features: Bus Interfaces / Adapters
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Description: provided to enable DC power. Power is provided via the included 6U VPX VITA 62 power supply. An included external XPm9001 power supply plugs into a standard 120 V wall outlet to produce 28 V DC to power the VITA 62 supply. The XPand1015 dissipates heat from the conduction-cooled modules to
- Features: Bus Interfaces / Adapters
- Technology: VPX
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Description: well as reset and other I/O signals. Power is provided via the included 3U VPX VITA 62 power supply. An included external XPm9001 power supply plugs into a standard 120 V wall outlet to produce 24 V DC to power the VITA 62 supply. The XPand1007 dissipates heat from the conduction-cooled
- Features: Bus Interfaces / Adapters
- Technology: VPX
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Description: rapid-development standard configurations. Custom configurations of modules, RTMs, and backplanes are also available utilizing X-ES and third-party components. Features Development platform for conduction-cooled modules Forced-air-cooled sidewall heat exchangers Supports eight 0.8 in. or 1.0
- Features: Bus Interfaces / Adapters
- Technology: VPX
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Description: ruggedized chassis is designed to meet the rigorous standards of MIL-STD-810 and DO-160, while integrating the latest power-saving and performance-enhancing technology. The heat from the internal conduction-cooled modules is conducted to sidewall heat exchangers, where it is dissipated to the
- Features: Bus Interfaces / Adapters
- Interface to: Ethernet
- Technology: VPX
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Supplier: ValueTronics International, Inc.
Description: or with bus masters. The standard module is 1-slot wide; option 002 is 2 slots wide. Any number of adapters can be used in a C-size mainframe.
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Supplier: Advantech
Description: with optional Mellanox ConnectX®-4 Multi-Host™ Technology and drivers, the MIC-6030 enables high speed communication of up to 10Gbps bandwidth between up to 4 processor VPX blades VPX by transforming the PCIe bus into a programmable network interface, facilitating the development of data
- Features: Switches
- Technology: VPX
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Supplier: Molex Signal Tech Industrial Ltd.
Description: high density differential pair signals from the LRU via motherboard to daughter-card plug in modules with a single connector P1 type housing. Features & Benefits Use of standard VME bus architecture cages for high speed fibre channel connection. Bandwidth: Up to 3 Gigahertz P1
- Frequency Range: 3 GHz
- Features: Board-to-Board Connector, Coaxial Connector
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electrical connectors that are widely used in rack based electrical systems. The most common application of DIN 41612 connectors is in the VMEbus system. They are also used by NuBus. The standard has subsequently been upgraded to international standards IEC 60603-2 and EN 60603-2. Rego's DIN 41612 Backplane (read more)
Browse Board Mount Connectors Datasheets for Rego Electronics Inc. -
modern warfare, reliable and stable power sources are paramount. The PS Series offers a wide array of AC/DC, DC/DC, and DC/AC inverters, including VME standards and VITA 62 VPX Power Supplies. These solutions are tailored to provide a steady and dependable power source for critical systems (read more)
Browse Uncategorized Products Datasheets for Amphenol Communications Solutions
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Connecting Local PCI Interconnect to the VMEbus - Make or Buy?
systems. The make option would be either designing a custom ASIC or an FPGA while the buy option is to use a commercially available bridge chip. This brief provides a basic financial model to assist VME system builders in making an informed decision. The VMEbus standard is used in products serving
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Optimal Utilization Of A State-Of-The-Art Machine Vision Architecture
All the Vision system modules have been designed compatible with the VME bus standard and can therefore benefit from the use of other vendors modules and readily available, proven, operating .
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Strong partitioning protocol for a multiprocessor VME system
However, VME bus standard supports multiprocessing through shared memory, which does not impose strong function partitioning and allows fault propagation from one board to another.
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ANDROX Parallel Image Array Processor
We have chosen the VME bus standard and a board form factor that accommodates our system design.
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Modular version of SIMCON, FPGA based, DSP integrated, LLRF control system for TESLA FEL part I: SIMCON 3.0 motherboard
The VME bus standard communication is realized by the module VME-BUS CONTROLLER (see paragraph 3 .1).
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An integrated data acquisition system for J-PARC hadron experiments
KEK-VME is a local extension of the VME bus standard .
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Analog And Digital ASICs Developments For Nuclear Instrumentation
Only four VME bus standard modules controlling the data transfer.
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Advanced technologies for a command and data handling subsystem in a “better, faster, cheaper” environment
The open architecture definition includes the following four elements: hardware functionality to support an open data bus (1553 capability, as well as the multifunction bus); standardinterfaces ( VME Bus standard , 1553, standard analog and digital I/O, standard RS422 interfaces); commercial software development capability …
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Fully embedded board-level guided-wave optoelectronic interconnects
The propagation time does not affect the maximum data rate of an uncompelled asynchronous block transfer [such as the source-synchronous block transfer (SSBLT), which is proposed for addition to the VME bus standard ].
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IEEE Micro Annual Index Volume 5, 1985
Farrell, JamesiJ, III, Ed.-in-Chief, M-MApr85 3 IEEE standards high-performance VME bus standard P1014.
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The enhanced data acquisition system for the 4π detector CHIMERA
… 'set-up' 6U VME crate); the CAMAC set-up operations Both silicon and CsI analog signals are ChWgC integrated, Due to thc largc number of electronic channels and Cast read- out requircmcnr a compact 9U VME bus standard was adoptcd to house …
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