ITT Cannon, LLC MDM04-D25-04
ITT Cannon, LLC MDM04-D25-04
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ITT Cannon, LLC MDM04-D25-04

Manufacturer No:

MDM04-D25-04

Manufacturer:

ITT Cannon, LLC

Utmel No:

1268-MDM04-D25-04

Package:

-

ECAD Model:

Description:

Cable Assembly RG178/U 0.914m 26AWG 25 POS Micro D-Sub RCP Crimp

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DHLTNTUPSFedExSF-Express

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In Stock : Please Inquire

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User Guide

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Our sales will reply to your request by email within 24 hours.

IMPORTANT NOTICE

1. You'll receive an order information email in your inbox. (Please remember to check the spam folder if you didn't hear from us).
2. Since inventories and prices may fluctuate to some extent, the sales manager is going to reconfirm the order and let you know if there are any updates.

Shipping Cost

Shipping starts at $40, but some countries will exceed $40. For example (South Africa, Brazil, India, Pakistan, Israel, etc.)
The basic freight (for package ≤0.5kg or corresponding volume) depends on the time zone and country.

Shipping Method

Currently, our products are shipped through DHL, FedEx, SF, and UPS.

Delivery Time

Once the goods are shipped, estimated delivery time depends on the shipping methods you chose:

FedEx International, 5-7 business days.

The following are some common countries' logistic time.transport
  • Prepare productStep1:Prepare product
  • Vacuum packagingStep2:Vacuum packaging
  • Anti-static bagStep3:Anti-static bag
  • Individual packageStep4:Individual package
  • Packaging boxStep5:Packaging box
  • Barcode shipping labelStep6:Barcode shipping label
MDM04-D25-04 information

Specifications
Documents & Media
ITT Cannon, LLC MDM04-D25-04 technical specifications, attributes, parameters and parts with similar specifications to ITT Cannon, LLC MDM04-D25-04.
  • Type
    Parameter
  • Factory Lead Time
    10 Weeks
  • Shell Material

    The "Shell Material" parameter in electronic components refers to the material used to encase or cover the internal components of the device. This material is chosen based on various factors such as durability, heat resistance, electrical insulation properties, and environmental considerations. Common shell materials include plastics, metals, and ceramics, each offering different levels of protection and performance characteristics. The choice of shell material can impact the overall reliability, safety, and functionality of the electronic component in different operating conditions.

    ALUMINUM ALLOY
  • Mounting Option 1

    Mounting Option 1 in electronic components refers to a specific method or configuration for attaching or installing the component onto a circuit board or other electronic device. This parameter typically provides information on the recommended mounting technique, such as surface mount technology (SMT), through-hole mounting, or other specialized mounting options. Understanding the mounting option is crucial for proper assembly and integration of the component into the electronic system. It helps ensure that the component is securely attached and electrically connected, optimizing its performance and reliability within the overall circuit design.

    #4-40
  • Mounting Option 2

    Mounting Option 2 in electronic components refers to a specific method or configuration for attaching or installing the component onto a circuit board or other electronic device. This parameter typically provides details on the physical dimensions, orientation, and connection points required for proper mounting and integration within a larger electronic system. Different mounting options may include surface mount technology (SMT), through-hole mounting, or other specialized techniques depending on the specific component and application requirements. Understanding the mounting option is crucial for ensuring proper assembly, functionality, and reliability of the electronic component within the overall system design.

    JACKPOST
  • Contact Materials
    COPPER ALLOY
  • Insulation Materials
    LIQUID CRYSTAL POLYMER (LCP)
  • Packaging

    Semiconductor package is a carrier / shell used to contain and cover one or more semiconductor components or integrated circuits. The material of the shell can be metal, plastic, glass or ceramic.

    Bulk
  • Series

    In electronic components, the "Series" refers to a group of products that share similar characteristics, designs, or functionalities, often produced by the same manufacturer. These components within a series typically have common specifications but may vary in terms of voltage, power, or packaging to meet different application needs. The series name helps identify and differentiate between various product lines within a manufacturer's catalog.

    83513-Style Micro D Metal Shell (MDM)
  • Part Status

    Parts can have many statuses as they progress through the configuration, analysis, review, and approval stages.

    Active
  • Termination

    Termination in electronic components refers to the practice of matching the impedance of a circuit to prevent signal reflections and ensure maximum power transfer. It involves the use of resistors or other components at the end of transmission lines or connections. Proper termination is crucial in high-frequency applications to maintain signal integrity and reduce noise.

    Crimp
  • Connector Type

    Connector Type in electronic components refers to the specific design and configuration of the connector used to establish electrical connections between different devices or components. This parameter describes the physical shape, size, and layout of the connector, as well as the number and arrangement of pins or contacts. Common connector types include USB, HDMI, RJ45, and D-sub connectors, each serving different purposes and applications. Understanding the connector type is crucial for ensuring compatibility and proper functionality when connecting electronic devices together.

    D-Sub
  • Type
    D-Type, Micro-D
  • Number of Positions
    25
  • Color
    Multiple, Individual
  • Number of Rows
    2
  • MIL Conformance

    MIL Conformance refers to the compliance of electronic components with military standards set by the Department of Defense. These standards define rigorous requirements for reliability, performance, and durability under extreme conditions. Components that meet MIL Conformance are often used in defense, aerospace, and other critical applications where failure is not an option. Adherence to these standards ensures that the components can withstand harsh environments, such as extreme temperatures, vibrations, and humidity.

    YES
  • Total Number of Contacts
    25
  • Shell Finish

    Shell Finish in electronic components refers to the surface treatment or coating applied to the outer shell or casing of the component. This finish is designed to provide protection against environmental factors such as moisture, dust, and corrosion, as well as to enhance the component's appearance. Common types of shell finishes include nickel plating, anodizing, powder coating, and epoxy resin coating. The choice of shell finish depends on the specific requirements of the component, such as the operating environment, durability needs, and aesthetic considerations.

    CADMIUM
  • Contact Finish

    Contact finish refers to the surface coating or treatment applied to the electrical contacts of electronic components. This finish is crucial for ensuring reliable electrical connections and preventing corrosion or oxidation of the contacts. Common contact finishes include gold, silver, tin, and nickel, each offering different levels of conductivity, durability, and resistance to environmental factors. The choice of contact finish depends on the specific application requirements, such as operating conditions, cost considerations, and compatibility with other components in the circuit. Selecting the appropriate contact finish is essential for maintaining the performance and longevity of electronic devices.

    Gold
  • Reliability

    Reliability in electronic components refers to the ability of a component to perform its required functions under stated conditions for a specified period of time. It is a measure of the likelihood that a component will not fail during its intended lifespan. High reliability indicates that the component is less likely to experience unexpected failures, which is crucial for maintaining the overall performance and safety of electronic systems. Factors affecting reliability include material quality, manufacturing processes, and environmental conditions.

    MIL-C-83513
  • Body Breadth

    Body breadth in electronic components refers to the width of the physical body of a component, such as a resistor, capacitor, or integrated circuit. This measurement is crucial for ensuring proper fit within a circuit board or enclosure. It can affect the component's thermal performance, mechanical stability, and overall compatibility with other components in a design. Body breadth is typically specified in millimeters or inches and is an important factor in the selection and design of electronic assemblies.

    0.308 inch
  • Body Depth

    Body Depth is a parameter that refers to the physical measurement of the depth or thickness of an electronic component. It is typically measured from the bottom to the top of the component, excluding any external connectors or pins. Body Depth is an important specification as it determines how much space the component will occupy on a circuit board or within an electronic device. Manufacturers provide this measurement to help designers and engineers ensure proper fit and compatibility within their designs. Understanding the Body Depth of electronic components is crucial for efficient and effective integration into electronic systems.

    0.106 inch
  • Rated Current (Signal)

    Rated Current (Signal) refers to the maximum continuous current that an electronic component can handle while maintaining its specified performance characteristics. It indicates the level of current that the device can safely operate under normal conditions without overheating or experiencing degradation. This parameter is crucial for ensuring reliability and efficiency in electronic circuits and components, helping to prevent damage due to excessive current.

    3A
  • Contact Style

    The parameter "Contact Style" in electronic components refers to the specific design and arrangement of the contact points that enable electrical connection in various devices. It dictates how components interface with each other, affecting factors such as reliability, durability, and performance. Different contact styles can include configurations like pin, socket, blade, or surface mount, each designed to cater to specific applications and requirements in circuit assembly.

    RND PIN-SKT
  • Contact Resistance

    Contact resistance refers to the resistance encountered at the point of contact between two conductive materials or components. It is a measure of how well the two materials make electrical contact with each other. High contact resistance can lead to voltage drops, power losses, and inefficient electrical connections. It is typically measured in ohms and is an important parameter to consider in electronic components such as connectors, switches, and relays. Lower contact resistance is desirable for ensuring reliable and efficient electrical connections in electronic circuits.

    8mOhm
  • Insulation Resistance

    The measurement of insulation resistance is carried out by means of a megohmmeter – high resistance range ohmmeter. A general rule-of-thumb is 10 Megohm or more.

    5000000000Ohm
  • Mating Contact Pitch

    Mating Contact Pitch refers to the distance between the center of one contact point to the center of the adjacent contact point in electronic components such as connectors or sockets. This parameter is crucial for ensuring proper alignment and connection between mating components. It helps determine the compatibility and interchangeability of different components, as components with the same mating contact pitch can be easily connected and disconnected. Manufacturers provide specifications for mating contact pitch to help users select compatible components for their electronic systems.

    0.05 inch
  • Dielectric Withstanding Voltage

    Dielectric Withstanding Voltage (DWV) is a crucial parameter in electronic components that measures the maximum voltage a component can withstand without breaking down. It is also known as the insulation voltage or breakdown voltage. DWV is typically tested by applying a high voltage between the conductive parts of the component and the insulation material to ensure that the insulation can withstand the specified voltage without allowing current to flow through. This parameter is important for ensuring the safety and reliability of electronic components, especially in applications where high voltages are present. Components with a higher DWV rating are more suitable for use in high-voltage environments and applications.

    900VAC V
  • Cable Length

    A nautical unit of measure equal to one tenth of a nautical mile or approximately 1 fathoms.

    914mm
  • Contact Pattern

    In electronic components, the "Contact Pattern" refers to the arrangement and design of the contact points on a component, such as a connector or a switch. The contact pattern determines how electrical connections are made between the component and other devices in a circuit. It includes the number, size, spacing, and configuration of the contact points, which can vary depending on the specific application and requirements of the component. A well-designed contact pattern is crucial for ensuring reliable and efficient electrical connections, as it affects factors such as signal integrity, power transmission, and durability of the component. Manufacturers carefully engineer contact patterns to meet the desired performance specifications and standards for the component's intended use.

    STAGGERED
  • Insertion Force-Max

    Insertion Force-Max is a parameter used to specify the maximum force required to insert an electronic component into its corresponding socket or connector. It is a critical specification as it ensures that the component is securely and properly seated in the socket without causing any damage. This parameter is typically measured in units of force, such as Newtons or pounds-force, and is important for ensuring the reliability and longevity of the electronic assembly. Manufacturers provide this specification to help users understand the amount of force that can be safely applied during the insertion process to prevent any potential issues or failures.

    2.224 N
  • Withdrawl Force-Min
    .139 N
  • 1st Connector

    1st Connector is a term used in electronic components to refer to the initial connection point or terminal of a device or component. It is the first point where electrical signals or power are input or output from the component. The 1st connector is crucial for establishing the electrical connection between different components in a circuit or system. It is often labeled or identified to ensure proper installation and connection during assembly. Understanding the 1st connector of electronic components is essential for proper circuit design, troubleshooting, and maintenance of electronic devices.

    Receptacle, Female Sockets
  • 2nd Connector

    The term "2nd Connector" in electronic components typically refers to a secondary connection point on a device or component that allows for additional connectivity or functionality. This secondary connector is often used to interface with other devices, circuits, or components in a system. It can serve various purposes such as data transfer, power supply, signal input/output, or control functions. The 2nd Connector is designed to complement the primary connector and expand the capabilities of the electronic component, providing flexibility and versatility in its usage. It is important to understand the specifications and pinout of the 2nd Connector to ensure proper integration and operation within the electronic system.

    Individual Wire Leads
  • Contact Design

    Contact design in electronic components refers to the specific configuration and layout of the electrical contacts within a component. These contacts are the points where electrical connections are made between different components or circuits. The design of these contacts is crucial for ensuring reliable and efficient electrical connections, as well as for determining factors such as signal integrity, power transmission, and overall performance of the component. Contact design considerations may include the material used for the contacts, the shape and size of the contact points, the spacing between contacts, and the overall layout of the contacts within the component. A well-designed contact system can help minimize signal loss, reduce electrical resistance, and improve the overall functionality and longevity of the electronic component.

    PREASSEM CONN
  • Wire Size (Min)

    Wire Size (Min) refers to the minimum gauge of wire that can safely be used in electronic components or circuits without risking overheating or failure. It is determined by factors such as current carrying capacity, length of the wire, and insulation type. Using a wire size smaller than specified can lead to increased resistance, voltage drop, and potential fire hazards. Properly selecting the wire size ensures efficient performance and safety in electrical applications.

    32 AWG
  • Wire Size (Max)

    Wire Size (Max) refers to the largest gauge of wire that can be safely used in conjunction with an electronic component. It is a specification that indicates the maximum diameter or cross-sectional area of the wire that connects to the component terminals. Using a wire size larger than the specified maximum can lead to difficulties in connection, potential damage to the component, or undesired performance issues. Ensuring the correct wire size is essential for optimal conductivity and heat dissipation in electronic applications.

    26 AWG
  • Length
    3.00' 914.40mm
  • RoHS Status

    RoHS means “Restriction of Certain Hazardous Substances” in the “Hazardous Substances Directive” in electrical and electronic equipment.

    Non-RoHS Compliant
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