The powerful advantages of M8 connector
- Place of Origin: gaungdong, China
- Service: OEM ODM Accept
In the modular planning of M8 connectors, by using minimal system support and flexible pin distribution to fix the direction of electrical signals, the energy and resources of the planning can be minimized to the greatest extent possible. This not only improves power, but also brings many significant advantages, mainly including the following: reusability of the planning: whether choosing customized internal board planning or commercially completed daughter cards or FMC standards, it helps to apply existing FPGA/card loading plans to new I/O from the beginning, only replacing FMC modules and slightly adjusting FPGA plans. Data throughput: supports high signal transmission rates, with a potential total bandwidth of 40GB/s between daughter cards and carrier cards. Multiple I/O: provides sufficient I/O capacity, compact, and occupies small space.
Compatibility: Standardized power supply, standard signal definition, increased compatibility stability: wide area contact, selected BGA package, and added M8 connector with seismic performance and single width module support on the carrier card. The FMC standard provides two scales that can optimize the board according to spatial and demand requirements or more flexibly. They all support single ended and differential signal transmission rates of up to 2GB/s, while the serial M8 connector has a high signal transmission rate. M8 connectors all use the same mechanical M8 connector, the only difference being what signal is actually transplanted, so cards with LPC M8 connectors can also be inserted into HPC, as long as they are planned properly, providing many derivative functions when inserted. In addition, in addition to 68 user-defined single ended signals or 34 user-defined differences, the LPC M8 connector also provides serial transceiver, clock, JTAG interface, and I2C interface as optional support for basic intelligent platform management interface commands. In the early stages of planning, engineers of M8 connectors often focus too much on the overall system planning and place M8 connectors in the final stage of planning.
They think the M8 connector is very simple, so they can put the relevant planning in the final stage. Then they fell into their own plan. In early planning, m8 connector engineers often focused too much on planning the entire system and placed m8 connectors in the final stage of planning. The head of the product development engineering department said that they think the M8 connector is very simple, so they can put the relevant planning in the final stage. Then they fell into their own plan. Too many planners have hurriedly passed the final stage of m8 connector planning. Understand space limitations.
Although m8 connectors from microboards to boards are typically less than 1 millimeter thick, they are also often used in tightly packaged applications. To address potential packaging issues, planners need to consider wiring on the PCB board and additional wires attached to the M8 connector. Due to the smaller spacing, wires need to be arranged narrower. When it comes to system planning, you need to consider these triggers. For example, if there is another component on the back of the backward m8 connector, it may not be easy to access. Ultimately, planners also need to be aware that external installation equipment sometimes cannot handle smaller components. As the scale of M8 connectors decreases, the current load capacity of M8 connectors also decreases. To compensate for the issue of low current carrying capacity, planners may need to increase the number of terminals.
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