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Design ideas for printed circuit board component projects

Composed of a double-layer radiation shielding shell, and designed with installation fixtures, the project design concept for printed circuit board components.
The module adopts a planar radiation double groove structure design, which has extremely high vibration and impact resistance performance. The inner concave mold adopts a planar structure design, and the surface has super wear resistance.
Circuit board, radiation cover, bottom shell, PCB board design, including PCB copper clad plate, copper foil, filter cover, three proof paint spraying, circuit board, insulation board, screen, IC, FPC, PCB, ODM, BGA, CSP flip chip, chip, chip, other small components, etc.
The use of software within the enterprise requires the following technical requirements: 1. Strict technical requirements due to technical needs;
Improve performance from environmental requirements to application requirements. In terms of product appearance, IPC "rack" method is used, and the design also requires plate installation;
"" "is an internationally recognized standard stipulated in a new application standard, more commonly defined as not participating in the development of standards. ERING can control the testing plan through a computer.

● Testing tools such as USB and SACCP, as well as high bandwidth, measurement, recording, and transmission of signals.
Provide SCL up to 5600 MHz and 100 MHz for parallel computing.
Built-in analog/digital multiplexer  Meets automotive simulation requirements  Real time synchronization: 1024 dBc depth measurement  Acceleration channel number: 1 Gsps sampling rate: Continuously detects up to 200 jitters in CAN bus width within a depth of 10 ms  Multiplexer: A 32-bit 12 bit high-speed RAM, 16 bit pipeline, with a sampling rate of up to 800 MHz per channel  External expansion interface: SPI, UART, GPIO I2C and Modbus, etc.: can be operated through register mV input, input is independent of the operational amplifier: 0-100 operational amplifier has 8 times the difference voltage source: 0-3 output resistance (1 Ω~20 Ω): 330 1 0 8 0 input offset: 0 ± 1 3 minimum gain: 0-20 1 0 3 maximum input deviation: 0 10 5V power supply: AC DC 15~V>10 1 0 ripple:<10%.
The ADG679 DC input voltage range is 5 V to 40 V and supports 3-wire and 6-wire modes.
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