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Lithic Backboard Product List

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Monolithic VME backplane

16/32-bit VME bus backplane designed based on IEEE standard P1014.

<Specifications> ◆Board Material: Epoxy Glass (FR-4, 3.2t, 4-layer board) ◆Connector: DIN41612 standard product ◆Terminator: 330Ω pull-up / 470Ω pull-down split termination ◆Power Supply Method: Screw terminal (standard, 1 terminal 20A) Faston terminal *Option (1 terminal 10A) is also available ◆Check Terminals: System reset, AC fail, system fail, +5V, GND sensing ◆Bus Configuration: J1 VME SYSTEM Bus, J2 VME 32-bit expansion Bus ◆Transfer Rate: 60MByte/sec <Features> ◆This is a 16/32-bit VME bus backplane designed based on IEEE standard P1014 ◆The a and c columns of the J2 side connector are independent and not connected, allowing for user-defined configurations ◆All signals have GND patterns arranged, minimizing crosstalk between signals ◆+5V and GND are provided as full surface patterns in the inner layers, ensuring power stability ◆The adoption of a multilayer board (4 layers) ensures stable impedance *The short plug specified for the daisy chain is optional.

  • Embedded Board Computers

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Auto-Digi-Chain Monolithic VME Backplane

16/32-bit VME bus backplane designed based on IEEE standard P1014.

<Specifications> ◆Board Material: Epoxy Glass (FR-4, 3.2t, 4-layer board) ◆Connector: DIN41612 standard product ◆Terminator: 330Ω pull-up / 470Ω pull-down split termination ◆Power Supply Method: Screw terminal (standard, 1 terminal 20A) Faston terminal *Options (1 terminal 10A) are also available ◆Check Terminals: System reset, AC fail, system fail, +5V, GND sensing ◆Bus Configuration: J1 VME SYSTEM Bus, J2 VME 32-bit expansion Bus ◆Transfer Rate: 60MByte/sec <Features> ◆A 16/32-bit VME bus backplane designed based on IEEE standard P1014 ◆Adopts auto-daisy-chain connectors ◆The a and c columns of the J2 side connector are independent and not connected, allowing for user-defined configurations ◆+5V and GND patterns are arranged to minimize crosstalk between signals ◆+5V and GND are provided as full surface patterns in the inner layers, ensuring power stability ◆The use of a multi-layer board (4 layers) results in a design with stable impedance

  • Embedded Board Computers

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