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HARTING Board-To-Board Connectors(Representative Standard:UL)

HARTING offers products Board-To-Board Connectors specified by Representative Standard UL from Wiring Components product category. There are a total of 1 items. Equipment and parts for electrical systems, cables and electrical connections. HARTING products are available to order through MISUMI online 24 hours a day. Free shipping, no minimum order.

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    Circuit Board Connector / DIN 41612

    Circuit Board Connector / DIN 41612

    HARTING

    Connector for HARTIG Circuit Board, DIN41612. (See manufacturer catalog for details)

    Connector Shape A/B/C D/E/F G/H/I J/K/L M/N/O P/Q/R S/T/U V/W/X Y and Z Number Applicable pin/contact Number Of Pins Application Allowable Current(A) Allowable Voltage(V) Wire connection method Connection direction Protection function (environmentally resistant) Representative Standard
    - - - - - - - - - - - Male (plug) 15 ~ 48 Board-to-Board 15 - - - - UL
    From: ₹ 1,227.02
    Days to Ship: 6 Day(s) or more
    day to ship 6 Day(s) or more
Brand
Product Series
From
Days to Ship
Connector Shape
A/B/C
D/E/F
G/H/I
J/K/L
M/N/O
P/Q/R
S/T/U
V/W/X
Y and Z
Number
Applicable pin/contact
Number Of Pins
Application
Allowable Current(A)
Allowable Voltage(V)
Wire connection method
Connection direction
Protection function (environmentally resistant)
Representative Standard

You can add up to 6 items per a category to the compare list.

Circuit Board Connector / DIN 41612
    Brand

    HARTING

    Product Series

    Circuit Board Connector / DIN 41612

    From

    ₹ 1,227.02-

    Days to Ship 6 Day(s) or more
    Connector Shape-
    A/B/C-
    D/E/F-
    G/H/I-
    J/K/L-
    M/N/O-
    P/Q/R-
    S/T/U-
    V/W/X-
    Y and Z-
    Number-
    Applicable pin/contactMale (plug)
    Number Of Pins15 ~ 48
    ApplicationBoard-to-Board
    Allowable Current(A)15
    Allowable Voltage(V)-
    Wire connection method-
    Connection direction-
    Protection function (environmentally resistant)-
    Representative StandardUL

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    1. 1

    Related Categories to Board-To-Board Connectors

    FAQ Board Connectors

    Question: What factors should be considered when selecting a board-to-board connector?
    Answer: When selecting a board-to-board connector, consider:
    1. Pitch: Ensure the connector's pitch matches the spacing between corresponding points on the boards.
    2. Number of Contacts or Pins: Select a connector with the appropriate number of contacts for the application.
    3. Voltage and Current Ratings: Consider the connector's capacity to handle the electrical requirements of the system, for example High current board-to-board connectors
    4. Size : physical dimensions like height and orientation, for example, low profile or right angle PCB board connectors, should match your design to maintain a compact and efficient assembly.
    5. Environmental Conditions: Consider factors like temperature, humidity, and exposure to chemicals to ensure the connector can withstand the intended operating environment.
    Question: How do you ensure a secure connection with board-to-board connectors?
    Answer: To ensure a secure connection, consider
    1. Robust Locking Mechanisms: Select connectors with sturdy locking features to ensure a secure and stable connection.
    2. Adequate Contact Pressure: Choose connectors that provide sufficient contact pressure, preventing unintentional disconnections and maintaining a reliable electrical connection.
    3. Reliable Solder Profile: For surface mount board interconnects, prioritize connectors with a dependable solder profile to establish a strong bond with the PCB.
    4. Consider Environmental Factors: Evaluate the application's environmental conditions and, if exposed to moisture or other elements, opt for waterproof board-to-board connectors to enhance durability and prevent damage.
    Question: What are the differences between mezzanine, coplanar, and backplane board-to-board connectors?
    Answer: 1. Mezzanine Connectors:
        • Application: Join parallel PCBs in compact spaces.
        • Characteristic: Small stacking height.
        • Usage: Common in applications where space efficiency is crucial.
    2. Coplanar Connectors:
        • Application: Facilitate edge-to-edge connections on the same plane.
        • Characteristic: Allow for flexibility in board orientation.
        • Usage: Often used in modular designs.
    3. Backplane Connectors:
        • Application: Connect multiple PCBs within a chassis.
        • Characteristic: Provide a higher number of connections.
        • Usage: Ideal for scalable and complex systems, especially those requiring high-speed electronic board connections.
    Question: Can you explain the role of pitch and stacking heights in board-to-board connectors?
    Answer: Pitch in board-to-board connectors denotes the distance between contact points, influencing density. A smaller pitch allows more contacts in a given space, crucial for compact designs. Stacking height represents the vertical space occupied when connectors are mated. It affects the overall system profile and is pivotal for applications with tight space constraints. Engineers optimize pitch for connectivity and stacking height for space efficiency, ensuring an ideal balance for electronic designs where minimizing size is essential.
    Question: What are the latest trends in miniaturization for board-to-board connectors?
    Answer: The latest trends in miniaturization for board-to-board connectors involve reduced pitch sizes, such as 0.4mm or even smaller, enabling higher contact density in limited spaces. Additionally, advancements in materials and manufacturing techniques contribute to smaller connector footprints. Robust and compact designs, like micro connectors and low-profile options, cater to applications with stringent size constraints, such IoT devices.
    Question: How do board-to-board connectors cater to the high-speed data transfer requirements?
    Answer: Board-to-board connectors meet high-speed data transfer demands by employing impedance matching, shielding against electromagnetic interference, and supporting high data rates (Gbps/Tbps). Differential signaling reduces noise susceptibility, while minimized crosstalk enhances signal integrity. These connectors play a pivotal role in various electronic applications, ensuring efficient and stable data transmission across interconnected boards.
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