HM-H200E1-8CP1-TG30L

3M HM-H200E1-8CP1-TG30L

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  • HM-H200E1-8CP1-TG30L
  • 3M
  • CONN HEADER HM 200POS 8ROW STR
  • Backplane Connectors - Hard Metric, Standard
  • HM-H200E1-8CP1-TG30L Datasheet
  • -
  • -
  • Lead free / RoHS CompliantLead free / RoHS Compliant
  • 15675
  • Spot Inventory / Athorized Dstributor / Factory Excess Stock
  • 1 year quality assurance 》
  • Click to get rates

What is HM-H200E1-8CP1-TG30L

3M Part Number HM-H200E1-8CP1-TG30LBackplane Connectors - Hard Metric, Standard), developed and manufactured by 3M, distributed globally by Jinftry. We distribute various electronic components from world-renowned brands and provide one-stop services, making us a trusted global electronic component distributor.

HM-H200E1-8CP1-TG30L is one of the part numbers distributed by Jinftry, and you can learn about its specifications/configurations, package/case, Datasheet, and other information here. Electronic components are affected by supply and demand, and prices fluctuate frequently. If you have a demand, please do not hesitate to send us an RFQ or email us immediately [email protected] Please inquire about the real-time unit price, Data Code, Lead time, payment terms, and any other information you would like to know. We will do our best to provide you with a quotation and reply as soon as possible.

HM-H200E1-8CP1-TG30L Specifications

  • Part NumberHM-H200E1-8CP1-TG30L
  • CategoryBackplane Connectors - Hard Metric, Standard
  • Manufacturer3M
  • DescriptionCONN HEADER HM 200POS 8ROW STR
  • Package-
  • SeriesMetPak? HM
  • Mounting TypeThrough Hole
  • TerminationPress-Fit
  • Contact FinishGold
  • Number of Positions200
  • Pitch0.079" (2.00mm)
  • Connector TypeHeader, Male Pins
  • Contact Finish Thickness30µin (0.76µm)
  • Number of Positions LoadedAll
  • Number of Rows8
  • Connector StyleE 25

Application of HM-H200E1-8CP1-TG30L

Backplane Connectors - Hard Metric connectors are mainly used in areas where connection performance and reliability are highly required. This includes ultra-high performance computers, supercomputers, high-speed switches, data centers, etc., which need to process massive amounts of data, transmit high-speed signals, and operate stably under high loads. Standard Backplane Connectors are widely used in a wider range of electronic devices. From consumer electronics and industrial automation to network communications and medical equipment, standard backplane connectors can be seen in almost all occasions that require electrical connections.

HM-H200E1-8CP1-TG30L Datasheet

HM-H200E1-8CP1-TG30L Datasheet , MetPak? HM,Through Hole,Press-Fit,Gold,200,0.079" (2.00mm),Header, Male Pins,30µin (0.76µm),All,8,E 25

HM-H200E1-8CP1-TG30L Classification

Backplane Connectors - Hard Metric, Standard

Backplane Connectors - Hard Metric As a backplane connector with specific specifications and high performance requirements, its design follows strict "Hard Metric" standards. This usually refers to a strictly defined set of dimensions, tolerances, material characteristics and electrical performance requirements. These standards are designed to ensure that connectors maintain excellent stability and reliability under a variety of extreme conditions. Standard Backplane Connectors refer to backplane connectors designed and manufactured in accordance with industry standards or common specifications. These standards are usually developed by industry organizations or international standardization bodies to ensure a high degree of compatibility and interchangeability between connectors produced by different manufacturers.

FAQ about Backplane Connectors - Hard Metric, Standard

  • 1. What is a power backplane?

    The power backplane is a metal plate installed at the rear of the server chassis. It integrates complex circuits and is mainly responsible for converting external input power into the DC power required by various components inside the server, and efficiently and safely distributes it to key components such as CPU, memory, hard disk, and graphics card. The power backplane achieves stable current output and overload protection through precise circuit design, ensuring the stability and reliability of the server under high-load operation.
    Core functions and design principles of power backplane
    Voltage conversion: The power backplane converts external input power into the DC power required by various components inside the server.
    Current stable output and overload protection: Through precise circuit design, stable current output is achieved, and overload protection is performed when necessary to ensure the stable operation of the server.
    Intelligent management: The power backplane is also embedded with intelligent monitoring and management functions, such as current monitoring, temperature sensing, fault warning, etc., so that operation and maintenance personnel can monitor the power status of the server in real time and respond to potential problems in a timely manner.

  • 2. What is the difference between a backplane and a PCB?

    The main difference between a backplane and a PCB (Printed Circuit Board) lies in their definition, function and purpose.
    Definition and function
    A backplane is a bracket used to fix and connect circuit boards, usually made of metal, plastic or composite materials. It has threaded holes, slots, block accessories, etc. to facilitate the fixing of other devices and modules. Backplanes are mainly used in rack-mounted equipment in fields such as servers, communication equipment and industrial control systems.
    PCB (Printed Circuit Board) is a board for electronic components and conductive channels. It is made of insulating material, coated with a film on the surface, and printed with metal lines. Its main function is to conduct electricity and is used to connect and support electronic components. PCB is widely used in computers, mobile phones, televisions, audio and industrial control.
    Application scenarios
    The backplane is mainly used in rack-mounted equipment in the fields of servers, communication equipment and industrial control systems to fix and connect other devices and modules.
    PCB is widely used in various electronic devices, including computers, mobile phones, televisions, audio, etc., as a support for electronic components and a carrier for electrical connections.
    Design and manufacturing process
    The backplane design needs to consider the signal interface with each hardware module in the system and the design of the whole machine frame structure, which is special.
    The PCB manufacturing process includes printing the circuit pattern using film, and then making the required copper foil circuit by exposure and chemical etching methods. With the advancement of science and technology, the manufacturing of PCB is becoming more and more sophisticated and complex.

  • 3. What are the two types of connectors?

    There are two main types of connectors: contact connectors and non-contact connectors. Contact connectors transmit signals or electrical energy through physical contact, and common ones include optical fiber connectors and electrical connectors; contactless connectors transmit signals through electromagnetic induction and other methods, such as proximity switches.
    Contact connectors
    Contact connectors transmit signals or electrical energy through physical contact, and mainly include the following types:
    Fiber optic connectors: used for optical fiber connections in optical fiber communication systems, with advantages such as low loss, high transmission capacity and anti-electromagnetic interference, and are widely used in communication networks, data centers and other fields.
    Electrical connectors: including plugs, sockets, etc., used to transmit low-voltage and low-current signals or high-voltage and high-current power signals, and are widely used in electronic equipment, communication networks, power systems, etc.
    Contactless connectors
    Contactless connectors transmit signals through electromagnetic induction and other methods, and common ones include proximity switches. Proximity switches can detect the proximity of objects without physical contact and are often used in automation equipment and sensors.

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