VMIVME-7700 Ultra Low Voltage Intel® Celeron® VMEbus
VMIVME-7700 Ultra Low Voltage Intel® Celeron® VMEbus
•
Intel
®
’s Ultra Low Voltage Celeron
®
400 MHz/650 MHz processor
•
Special features for embedded applications include:
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Up to 1 GB bootable Flash on secondary IDE (optional)
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Two 16-bit and two 32-bit programmable timers
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32 KB of nonvolatile SRAM
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Software-selectable Watchdog timer with reset
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Remote Ethernet booting
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One PMC expansion site (IEEE-1386.1 PCI mezzanine card standard,
5 V)
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VME64 modes supported: A32/A24/D32/D16/D08(EO)/MBLT64/BLT32
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VMEbus interrupt handler, interrupter, and system controller
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Includes real-time endian conversion hardware for little-endian and
big-endian data interfacing (patent no. 6,032,212)
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Enhanced bus error handling
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Passive heat sink
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Real-time clock and miniature speaker included
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Dual front panel universal serial bus (USB) connections
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Standard features include:
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Up to 512 MB PC100 SDRAM
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100 MHz system bus via Intel 815E chipset
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Dual Ethernet controllers supporting 10BaseT and 100BaseTX
interfaces
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Ultra DMA/100 hard drive and floppy drive controllers (uses VMEbus P2
for connection to IDE/floppy)
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Two high performance 16550-compatible serial ports
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PS/2-style keyboard and mouse ports on front panel
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VMEbus backplane interface
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User programmable Watchdog timer
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Passive processor heat sink
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Replacing an electrical equipment unit in a plant is a complex task that requires careful planning and execution to ensure safety and minimize downtime. Here is a general step-by-step guide on how to replace electrical equipment in a plant:
Pre-Planning:
Safety Precautions:
Shutdown Procedures:
Disconnection:
Removal of Existing Equipment:
Installation of New Equipment:
Testing and Commissioning:
Documentation:
Training:
Startup:
Throughout the process, it’s important to work closely with a team that includes electrical engineers, technicians, and maintenance staff. Communication is key to a successful equipment replacement. Additionally, always adhere to local electrical codes and standards to ensure compliance and safety. If the task is beyond the expertise of in-house staff, consider hiring a professional contractor experienced in industrial electrical work.
Obtaining industrial automation programming software typically involves the following steps:
Identify Your Needs:
Research Software Options:
Contact Equipment Manufacturers:
Purchase or Download:
Academic or Evaluation Versions:
Open Source Options:
Licensing:
Training and Support:
Legal and Compliance:
Installation and Setup:
Here are some common ways to obtain industrial automation programming software:
Remember to keep your software updated to benefit from the latest features and security patches. Also, ensure that you have the necessary backup and recovery procedures in place to protect your programming work.
All new products and surplus products of the industrial intelligence industry, as well as the discontinued products of the original manufacturers. We are not an authorized distributor or representative of any of the above manufacturers (except for brand authorization). The trademarks, brand names and brands appearing in this agreement are the property of their respective manufacturers.
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