Amphenol ICC (FCI) SLW14S-5C7
Amphenol ICC (FCI) SLW14S-5C7
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Amphenol ICC (FCI) SLW14S-5C7

Manufacturer No:

SLW14S-5C7

Manufacturer:

Amphenol ICC (FCI)

Utmel No:

143-SLW14S-5C7

Package:

-

ECAD Model:

Description:

SLW-S Series CIC Tray 0.039 1.00mm Kinked Pin 14 Positions Through Hole Tin Alloy

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SLW14S-5C7 information

Specifications
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Product Details
Amphenol ICC (FCI) SLW14S-5C7 technical specifications, attributes, parameters and parts with similar specifications to Amphenol ICC (FCI) SLW14S-5C7.
  • Type
    Parameter
  • Contact Plating

    Contact plating (finish) provides corrosion protection for base metals and optimizes the mechanical and electrical properties of the contact interfaces.

    Tin
  • Mount

    In electronic components, the term "Mount" typically refers to the method or process of physically attaching or fixing a component onto a circuit board or other electronic device. This can involve soldering, adhesive bonding, or other techniques to secure the component in place. The mounting process is crucial for ensuring proper electrical connections and mechanical stability within the electronic system. Different components may have specific mounting requirements based on their size, shape, and function, and manufacturers provide guidelines for proper mounting procedures to ensure optimal performance and reliability of the electronic device.

    Through Hole
  • Mounting Type

    The "Mounting Type" in electronic components refers to the method used to attach or connect a component to a circuit board or other substrate, such as through-hole, surface-mount, or panel mount.

    Through Hole
  • Housing Material

    The parameter "Housing Material" in electronic components refers to the material used to encase or protect the internal circuitry of the component. The housing material plays a crucial role in providing physical protection, insulation, and environmental resistance to the electronic component. Common housing materials include plastics, metals, ceramics, and composites, each offering different levels of durability, heat resistance, and electrical properties. The choice of housing material is important in determining the overall performance, reliability, and longevity of the electronic component in various operating conditions.

    Polyamide (PA), Nylon, Glass Filled
  • Actuator Material

    In smart material system, actuator materials have the ability to change the shape, stiffness, position, natural frequency, damping and/or other mechanical characteristics of the smart material systems in response to changes in temperature, electric field and/or magnetic field.

    Polyamide (PA), Nylon, Glass Filled
  • ActuatorColor
    White
  • Contact Materials
    Phosphor Bronze
  • 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.

    Tray
  • 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.

    SLW-S
  • JESD-609 Code

    The "JESD-609 Code" in electronic components refers to a standardized marking code that indicates the lead-free solder composition and finish of electronic components for compliance with environmental regulations.

    e3
  • Part Status

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

    Obsolete
  • Moisture Sensitivity Level (MSL)

    Moisture Sensitivity Level (MSL) is a standardized rating that indicates the susceptibility of electronic components, particularly semiconductors, to moisture-induced damage during storage and the soldering process, defining the allowable exposure time to ambient conditions before they require special handling or baking to prevent failures

    1 (Unlimited)
  • 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.

    Kinked Pin
  • ECCN Code

    An ECCN (Export Control Classification Number) is an alphanumeric code used by the U.S. Bureau of Industry and Security to identify and categorize electronic components and other dual-use items that may require an export license based on their technical characteristics and potential for military use.

    EAR99
  • 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.

    FFC/FPC CONNECTOR
  • Number of Positions
    14
  • Max Operating Temperature

    The Maximum Operating Temperature is the maximum body temperature at which the thermistor is designed to operate for extended periods of time with acceptable stability of its electrical characteristics.

    85°C
  • Min Operating Temperature

    The "Min Operating Temperature" parameter in electronic components refers to the lowest temperature at which the component is designed to operate effectively and reliably. This parameter is crucial for ensuring the proper functioning and longevity of the component, as operating below this temperature may lead to performance issues or even damage. Manufacturers specify the minimum operating temperature to provide guidance to users on the environmental conditions in which the component can safely operate. It is important to adhere to this parameter to prevent malfunctions and ensure the overall reliability of the electronic system.

    -55°C
  • Number of Rows
    1
  • Additional Feature

    Any Feature, including a modified Existing Feature, that is not an Existing Feature.

    STAGGERED CONFIGURATION
  • 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.

    NO
  • DIN Conformance

    DIN Conformance refers to the compliance of an electronic component with the standards set by the Deutsches Institut für Normung (DIN), which is the German Institute for Standardization. DIN standards cover a wide range of technical specifications and requirements for various products, including electronic components. When a component is labeled as DIN-conformant, it means that it meets the specific criteria outlined by DIN for factors such as dimensions, materials, performance, and safety. Ensuring DIN conformance helps to guarantee interoperability, quality, and reliability of electronic components in various applications and industries. Manufacturers often adhere to DIN standards to demonstrate the quality and reliability of their products to customers and to ensure compatibility with other DIN-compliant devices.

    NO
  • IEC Conformance

    IEC Conformance refers to the compliance of electronic components with standards set by the International Electrotechnical Commission (IEC). These standards ensure that the components meet specific safety, performance, and interoperability criteria. Adhering to IEC conformance helps manufacturers produce reliable and compatible products, facilitating international trade and promoting consumer safety. Components that conform to IEC standards are often preferred in global markets due to their quality assurance and regulatory acceptance.

    NO
  • Filter Feature

    In electronic components, the "Filter Feature" parameter refers to the capability of a component to filter or block certain frequencies of signals while allowing others to pass through. Filters are used to remove unwanted noise or interference from a signal, ensuring that only the desired frequencies are transmitted or received. The filter feature can be implemented using various techniques such as capacitors, inductors, resistors, or active components like operational amplifiers. Different types of filters, such as low-pass, high-pass, band-pass, and band-stop filters, are designed to cater to specific frequency ranges and applications. Overall, the filter feature plays a crucial role in maintaining signal integrity and improving the performance of electronic circuits.

    NO
  • Mixed Contacts

    In electronic components, "Mixed Contacts" refers to a type of contact arrangement where different types of contacts are used within the same component. This can include a combination of different contact materials, such as gold-plated contacts for signal transmission and silver-plated contacts for power connections. Mixed contacts can also refer to a combination of different contact styles, such as pin contacts and socket contacts within the same component.The use of mixed contacts allows for optimized performance and reliability in electronic components by leveraging the specific advantages of each contact type. For example, gold-plated contacts offer excellent conductivity and corrosion resistance, while silver-plated contacts provide high current-carrying capacity. By incorporating mixed contacts, manufacturers can tailor the component to meet the specific requirements of the application, ensuring efficient and reliable operation.

    NO
  • Option
    GENERAL PURPOSE
  • Pitch

    In electronic components, "Pitch" refers to the distance between the center of one pin or lead to the center of the adjacent pin or lead on a component, such as an integrated circuit (IC) or a connector. It is a crucial parameter as it determines the spacing and alignment of the pins or leads on a component, which in turn affects how the component can be mounted on a circuit board or connected to other components.The pitch measurement is typically expressed in millimeters (mm) or inches (in) and plays a significant role in determining the overall size and layout of a circuit board. Components with different pitches may require specific types of circuit boards or connectors to ensure proper alignment and connection. Designers must carefully consider the pitch of components when designing circuit layouts to ensure compatibility and proper functionality of the electronic system.

    0.039 1.00mm
  • Total Number of Contacts
    14
  • Orientation

    In electronic components, the parameter "Orientation" refers to the specific alignment or positioning of the component with respect to its intended installation or operation. This parameter is crucial for ensuring proper functionality and performance of the component within a circuit or system. Orientation may include factors such as the physical orientation of the component on a circuit board, the direction of current flow through the component, or the alignment of specific features or terminals for correct connection. Manufacturers often provide orientation guidelines in datasheets or technical specifications to help users correctly install and use the component. Paying attention to the orientation of electronic components is essential to prevent errors, ensure reliability, and optimize the overall performance of electronic devices.

    Straight
  • Depth

    In electronic components, "Depth" typically refers to the measurement of the distance from the front to the back of the component. It is an important parameter to consider when designing or selecting components for a project, as it determines how much space the component will occupy within a circuit or device. The depth of a component can impact the overall size and layout of the circuit board or enclosure in which it will be installed. It is usually specified in millimeters or inches and is crucial for ensuring proper fit and functionality within the intended application.

    4mm
  • Current Rating

    Current rating is the maximum current that a fuse will carry for an indefinite period without too much deterioration of the fuse element.

    1A
  • Reference Standard

    In the context of electronic components, the term "Reference Standard" typically refers to a specific set of guidelines, specifications, or requirements that serve as a benchmark for evaluating the quality, performance, and characteristics of the component. These standards are established by organizations such as the International Electrotechnical Commission (IEC), the Institute of Electrical and Electronics Engineers (IEEE), or specific industry bodies.Reference standards help ensure consistency and interoperability among different components, as they provide a common framework for manufacturers, designers, and users to adhere to. They outline parameters such as electrical properties, mechanical dimensions, environmental conditions, and safety considerations that the component must meet to be considered compliant.By referencing these standards, manufacturers can design and produce components that meet industry-recognized criteria, which in turn helps users select the right components for their applications with confidence. Adhering to reference standards also facilitates regulatory compliance and promotes overall quality and reliability in electronic systems.

    UL
  • 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.

    Tin Alloy
  • Voltage - Rated AC

    Voltage - Rated AC is a parameter that specifies the maximum alternating current (AC) voltage that an electronic component can safely handle without being damaged. This rating is crucial for ensuring the proper functioning and longevity of the component within an electrical circuit. It is typically expressed in volts (V) and helps users determine the compatibility of the component with the voltage levels present in the circuit. Exceeding the rated AC voltage can lead to overheating, malfunction, or permanent damage to the component, so it is important to adhere to this specification when designing or using electronic systems.

    100V
  • 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.

    COMMERCIAL
  • Number Of PCB Rows
    2
  • PCB Contact Pattern

    The "PCB Contact Pattern" refers to the layout or arrangement of contact points on a printed circuit board (PCB) where electronic components are mounted or connected. This pattern determines how components will be physically and electrically connected to the PCB. The contact pattern typically includes pads, vias, traces, and other features that facilitate the soldering or mounting of components onto the board. It is crucial for ensuring proper electrical connections and reliable performance of the electronic device. Designing an appropriate PCB contact pattern is essential for the functionality, efficiency, and durability of the electronic components and the overall circuitry.

    STAGGERED
  • Contact Gender

    Contact Gender in electronic components refers to the physical characteristics of the electrical contacts within a connector or terminal block. It indicates whether the contact is male or female, which determines how the connectors can be mated together. Male contacts typically have protruding pins or plugs, while female contacts have receptacles or sockets to receive the male contacts. Matching the correct contact genders is crucial for ensuring proper electrical connections and preventing damage to the components. Manufacturers often specify the contact gender of their components to facilitate compatibility and ease of use in electronic systems.

    FEMALE
  • UL Flammability Code

    The UL Flammability Code is a parameter used to indicate the flammability rating of electronic components. It is assigned by Underwriters Laboratories (UL) based on the component's performance in flammability tests. The code consists of a two-letter designation, with the first letter indicating the component's flammability rating and the second letter indicating the component's resistance to ignition. Components with a higher UL Flammability Code are less likely to catch fire or sustain combustion, making them safer for use in electronic devices. It is important to consider the UL Flammability Code when selecting components to ensure compliance with safety standards and regulations.

    94V-0
  • Housing Color

    Housing color in electronic components refers to the color of the protective casing or enclosure that surrounds the component. It can play a role in visual identification, aiding in easy recognition during assembly or maintenance. Additionally, the housing color may also have implications for heat dissipation, aesthetic considerations, or regulatory compliance depending on the application or industry standards.

    Black
  • 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.

    1A
  • 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.

    SINGLE PRONG
  • 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.

    30mOhm
  • 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.

    500MOhm
  • Max Voltage Rating (AC)

    The parameter "Max Voltage Rating (AC)" in electronic components refers to the maximum alternating current (AC) voltage that the component can safely handle without being damaged. This rating is important for ensuring the component's longevity and reliability in a circuit. Exceeding the maximum voltage rating can lead to overheating, breakdown, or even permanent damage to the component. It is crucial to select components with voltage ratings that are suitable for the intended application to prevent malfunctions or safety hazards in the circuit.

    100V
  • PCB Contact Row Spacing

    PCB Contact Row Spacing refers to the distance between the centers of adjacent contact rows in a printed circuit board (PCB). It is an important parameter in the design and layout of electronic components, particularly for connectors and sockets. Proper row spacing ensures compatibility with corresponding component leads and facilitates efficient circuit assembly and operation. The spacing can affect the overall footprint of the component and influences layout considerations for routing traces on the PCB.

    2.0066 mm
  • Durability

    Durability in electronic components refers to the ability of a component to withstand various environmental conditions, mechanical stress, and operational factors over an extended period of time without degradation in performance. It is a measure of the component's reliability and longevity in different operating conditions. Factors that can affect the durability of electronic components include temperature fluctuations, humidity, vibration, shock, and electrical stress. Manufacturers often provide durability ratings or specifications to indicate the expected lifespan or performance under specific conditions, helping users select components that meet their durability requirements for a given application. Ensuring the durability of electronic components is crucial for maintaining the overall reliability and functionality of electronic devices.

    20 Cycles
  • 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.

    RECTANGULAR
  • 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.

    ZIF N
  • Withdrawl Force-Min
    ZIF N
  • Flat Flex Type

    Flat Flex Type refers to a specific configuration of flat flexible cables (FFC) used in electronic components. These cables are designed to provide a compact and flexible interconnection between different parts of electronic devices. The Flat Flex Type is characterized by its thin, flat shape, allowing for space-efficient routing and ease of integration in tight spaces. It is commonly utilized in applications such as LCD displays, medical devices, and automotive electronics, where flexibility and reliability are critical.

    CIC
  • Cable End Type

    Cable End Type refers to the specific design or configuration of the end of a cable or wire that is used to connect to a device or component. This parameter describes the physical characteristics of the cable end, such as the shape, size, and connector type. Common cable end types include connectors like USB, HDMI, RJ45, and various types of audio connectors. Understanding the cable end type is important for ensuring compatibility and proper connection between devices in electronic systems. It helps in selecting the right cables and connectors to establish secure and reliable connections for data or power transmission.

    Tapered
  • Locking Feature

    The "Locking Feature" in electronic components refers to a mechanism or design element that helps secure the component in place once it is installed. This feature is commonly found in connectors, switches, and other components that need to remain stable and secure during operation. The locking feature can come in various forms, such as locking tabs, screws, latches, or other mechanisms that prevent the component from becoming loose or dislodged. By incorporating a locking feature, electronic components can ensure reliable connections, prevent accidental disconnection, and enhance overall system stability and performance.

    Slide Lock
  • Contact Location

    Contact Location in electronic components refers to the specific physical location where electrical contacts are made within the component. This parameter is crucial for ensuring proper connectivity and functionality of the component within a circuit. The contact location determines how the component will interact with other components or devices in the circuit, and it is typically specified in technical datasheets to aid in proper installation and usage. Understanding the contact location is important for engineers and technicians to design and troubleshoot electronic circuits effectively.

    Bottom
  • Features

    In the context of electronic components, the term "Features" typically refers to the specific characteristics or functionalities that a particular component offers. These features can vary depending on the type of component and its intended use. For example, a microcontroller may have features such as built-in memory, analog-to-digital converters, and communication interfaces like UART or SPI.When evaluating electronic components, understanding their features is crucial in determining whether they meet the requirements of a particular project or application. Engineers and designers often look at features such as operating voltage, speed, power consumption, and communication protocols to ensure compatibility and optimal performance.In summary, the "Features" parameter in electronic components describes the unique attributes and capabilities that differentiate one component from another, helping users make informed decisions when selecting components for their electronic designs.

    Zero Insertion Force (ZIF)
  • Length
    20.2mm
  • Height Above Board

    Height Above Board is a parameter that refers to the distance between the bottom surface of an electronic component and the surface of the circuit board on which it is mounted. This measurement is important for determining the clearance and spacing requirements for the component to ensure proper assembly and functionality of the circuit board. It is typically specified in millimeters or inches and is crucial for ensuring that the component fits correctly on the board without interfering with other components or the overall design of the electronic system. Manufacturers provide this information in datasheets to help designers and engineers select the appropriate components for their applications.

    0.217 5.50mm
  • FFC, FCB Thickness

    The parameter "FFC, FCB Thickness" in electronic components refers to the thickness of the Flexible Flat Cable (FFC) or Flexible Circuit Board (FCB) used in electronic devices. FFC and FCB are thin, flat cables or boards that are used to connect various components within electronic devices, providing flexibility and space-saving advantages. The thickness of the FFC or FCB is an important specification as it can impact the overall design, flexibility, and performance of the electronic device. Manufacturers provide this parameter to ensure compatibility and proper functioning of the components within the device.

    0.30mm
  • Material Flammability Rating

    The Material Flammability Rating is a parameter used to indicate the flammability characteristics of materials used in electronic components. It is typically measured according to standards such as UL94, which classifies materials into different categories based on their flammability properties. The rating helps in assessing the fire safety of electronic devices and components, as materials with higher flammability ratings are more resistant to ignition and combustion. Manufacturers often specify the Material Flammability Rating of their components to ensure compliance with safety regulations and standards. It is important to consider this parameter when designing and selecting electronic components to minimize fire hazards and ensure the overall safety of the end product.

    UL94 V-0
  • Radiation Hardening

    Radiation hardening is the process of making electronic components and circuits resistant to damage or malfunction caused by high levels of ionizing radiation, especially for environments in outer space (especially beyond the low Earth orbit), around nuclear reactors and particle accelerators, or during nuclear accidents or nuclear warfare.

    No
  • RoHS Status

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

    Non-RoHS Compliant
  • Flammability Rating

    The Flammability Rating of electronic components refers to the material's ability to resist catching fire or burning when exposed to heat or flames. It is an important safety consideration in electronic design and manufacturing, especially for components that may be used in environments where fire hazards are a concern. The rating is typically expressed using a standardized scale, such as UL94, which classifies materials based on their flammability characteristics. Components with higher flammability ratings are more resistant to ignition and contribute to overall fire safety in electronic devices. It is crucial to select components with appropriate flammability ratings to ensure the reliability and safety of electronic products.

    UL94 V-0
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Download datasheets and manufacturer documentation for Amphenol ICC (FCI) SLW14S-5C7.

SLW14S-5C7 Overview

The product comes in a package of FFC/FPC CONNECTOR.Its mounting type is Through Hole.Packaging is performed using a Tray case.It is part of the SLW-S Series of products.Additionally, there are other features, such as STAGGERED CONFIGURATION.Whenever it's below 85°C, it's best to use it.The device must operate at a temperature of -55°C at all times.Through Hole mounts the part.

SLW14S-5C7 Features

SLW-S series

SLW14S-5C7 Applications

There are a lot of Amphenol ICC (FCI)
SLW14S-5C7 FFC, FPC (Flat Flexible) Connectors applications.


  • Datacom
  • Communication
  • Medical technology
  • Military Technology
  • Measuring & Control Technology
  • Instrumentation
  • Automotive Electronics
  • Telecommunications
  • Data Technology
  • Blowers