TE Connectivity 2-1618241-0
TE Connectivity 2-1618241-0
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TE Connectivity 2-1618241-0

Manufacturer No:

2-1618241-0

Manufacturer:

TE Connectivity

Utmel No:

2460-2-1618241-0

Package:

-

ECAD Model:

Description:

High Voltage Relays

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FedEx International, 5-7 business days.

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2-1618241-0 information

Specifications
TE Connectivity 2-1618241-0 technical specifications, attributes, parameters and parts with similar specifications to TE Connectivity 2-1618241-0.
  • Type
    Parameter
  • Surface Mount

    having leads that are designed to be soldered on the side of a circuit board that the body of the component is mounted on.

    NO
  • Mounting Feature

    a process by which the operating system makes files and directories on a storage device (such as hard drive, CD-ROM, or network share) available for users to access via the computer's file system.

    PANEL MOUNT
  • Relay Construction
    Non-Latching
  • Pick-up Voltage (Max)
    16VDC
  • LED Indicator
    No
  • Operating Temp Range
    -55C to 85C
  • Mounting Styles
    Flange
  • Voltage Rating (VDC)
    10(V)
  • Dropout Volt
    1VDC
  • Seal
    Unsealed
  • Rad Hardened
    No
  • CoilResistance
    290(ohm)
  • Operating Temperature-Min
    -55 °C
  • Operating Temperature-Max
    85 °C
  • Rohs Code
    Yes
  • Manufacturer Part Number
    2-1618241-0
  • Manufacturer
    TE Connectivity
  • Part Life Cycle Code
    Active
  • Ihs Manufacturer
    TE CONNECTIVITY LTD
  • Risk Rank
    2.21
  • Manufacturer Series
    1618241
  • Pbfree Code

    The "Pbfree Code" parameter in electronic components refers to the code or marking used to indicate that the component is lead-free. Lead (Pb) is a toxic substance that has been widely used in electronic components for many years, but due to environmental concerns, there has been a shift towards lead-free alternatives. The Pbfree Code helps manufacturers and users easily identify components that do not contain lead, ensuring compliance with regulations and promoting environmentally friendly practices. It is important to pay attention to the Pbfree Code when selecting electronic components to ensure they meet the necessary requirements for lead-free applications.

    No
  • 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
  • Type
    VOLTAGE RELAY
  • HTS Code

    HTS (Harmonized Tariff Schedule) codes are product classification codes between 8-1 digits. The first six digits are an HS code, and the countries of import assign the subsequent digits to provide additional classification. U.S. HTS codes are 1 digits and are administered by the U.S. International Trade Commission.

    8536.41.00.20
  • Reach Compliance Code

    Reach Compliance Code refers to a designation indicating that electronic components meet the requirements set by the Registration, Evaluation, Authorization, and Restriction of Chemicals (REACH) regulation in the European Union. It signifies that the manufacturer has assessed and managed the chemical substances within the components to ensure safety and environmental protection. This code is vital for compliance with regulations aimed at minimizing risks associated with hazardous substances in electronic products.

    compliant
  • 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.

    MIL-R-83725
  • Termination Style

    "Termination style" in electronic components refers to the method used to connect the component to a circuit board or other electronic devices. It determines how the component's leads or terminals are designed for soldering or mounting onto the circuit board. Common termination styles include through-hole, surface mount, and wire lead terminations.Through-hole components have leads that are inserted through holes in the circuit board and soldered on the other side. Surface mount components have flat terminals that are soldered directly onto the surface of the circuit board. Wire lead terminations involve attaching wires to the component for connection.The choice of termination style depends on factors such as the type of component, the manufacturing process, and the space available on the circuit board. Different termination styles offer various advantages in terms of ease of assembly, reliability, and space efficiency in electronic designs.

    STUD TERMINAL
  • Contact Current(DC)-Max

    Contact Current (DC) - Max is a parameter in electronic components that specifies the maximum amount of direct current (DC) that can safely flow through the contact or connection point without causing damage or failure. This parameter is crucial for ensuring the reliability and longevity of the component, as exceeding the maximum contact current rating can lead to overheating, arcing, or even permanent damage. Designers and engineers must carefully consider this specification when selecting components for a circuit to prevent potential issues and ensure proper functionality. It is important to adhere to the manufacturer's guidelines and specifications to avoid any potential risks associated with exceeding the maximum contact current rating.

    10 A
  • Contact Voltage(DC)-Max

    Contact Voltage(DC)-Max refers to the maximum allowable direct current voltage that can be applied across the contacts of an electronic component without causing permanent damage or failure. It indicates the threshold above which electrical breakdown may occur, potentially harming the component's functionality. This parameter is crucial for ensuring the reliability and safety of components in various applications, as exceeding this value can lead to insulation breakdown or overheating.

    10 V
  • Termination Type

    Termination Type in electronic components refers to the method used to connect the component to a circuit board or other electronic devices. It specifies how the component's leads or terminals are designed for soldering or mounting onto a PCB. Common termination types include through-hole, surface mount, and wire lead terminations. The termination type is an important consideration when selecting components for a circuit design, as it determines how the component will be physically connected within the circuit. Different termination types offer varying levels of durability, ease of assembly, and suitability for specific applications.

    WIRE
  • Contact Current Rating

    The current rating of a contact is defined as the current level that creates a certain temperature rise of the contact spring — usually 20°C or 30°C. Both electrical and thermal factors govern the heat created by the current.

    10(A)
  • Contact Termination

    Contact termination in electronic components refers to the method used to connect the component to a circuit or system. It is the point where the component's electrical connection is terminated or connected to the external circuit. Common contact termination methods include soldering, wire bonding, press-fit connectors, and surface mount technology (SMT). The choice of contact termination method depends on factors such as the type of component, the application requirements, and the manufacturing process. Proper contact termination is crucial for ensuring reliable electrical connections and overall performance of the electronic component.

    Stud
  • Contact Form

    A page on a website that allows users to communicate with the site owner. The page has fields for filling in name, address and type of comment. On most company websites, email and mailing addresses are also included; however, the contact form provides an immediate, convenient way for users to ask the company questions.

    1 Form A
  • Relay Type

    In electronic components, the parameter "Relay Type" refers to the specific classification or categorization of a relay based on its design, functionality, and application. Relays are electromechanical devices that are used to control the switching of circuits by opening or closing contacts in response to an electrical signal. The relay type typically indicates the specific characteristics of the relay, such as its switching mechanism (e.g., electromagnetic, solid-state), contact configuration (e.g., SPST, DPDT), operating voltage, current rating, and intended use (e.g., power relays, signal relays, automotive relays). Understanding the relay type is important for selecting the right relay for a particular application to ensure proper functionality and reliability.

    POWER/SIGNAL RELAY
  • Contact Current(AC)-Max

    Contact Current (AC) - Max is a parameter used to specify the maximum alternating current that can safely flow through the contacts of an electronic component, such as a relay or a switch. This parameter is crucial for ensuring the proper functioning and longevity of the component, as exceeding the maximum contact current can lead to overheating, arcing, and potential damage to the contacts. Manufacturers provide this specification to help users determine the compatibility of the component with their specific application requirements. It is important to adhere to the specified maximum contact current to prevent malfunctions and ensure the reliability of the electronic system.

    10 A
  • Operate Time

    The time interval between the instant of the occurrence of a specified input condition to a system and the instant of completion of a specified operation.

    10(ms)
  • Coil Voltage

    Coil voltage refers to the electrical potential difference that is applied across the coil of an electromechanical device, such as a relay or a solenoid. This voltage is essential for energizing the coil, creating a magnetic field that enables the device to perform its intended function, such as opening or closing contacts. The coil voltage is specified by the manufacturer and varies depending on the design and application of the component, commonly available in standard values like 5V, 12V, 24V, and others. Proper selection of coil voltage is crucial for optimal performance and longevity of the device.

    26.5 VDC
  • Switching Voltage

    The maximum switching voltage of a relay is the maximum voltage that can be across the contacts whether the relay is open or closed. Operating a relay with high voltages present can cause arcing, and this in turn erodes the contacts and eventually degrades contact performance.

    10 kVDC
  • Coil Current

    A current coil is basically a coil, such as, a wire wrapped around an electrical conductor.

    91.38(mA)
  • Release Time

    In telecommunication, release time is the time interval for a circuit to respond when an enabling signal is discontinued

    10 ms
  • Contact (DC) Max Rating R Load

    Contact (DC) Max Rating R Load refers to the maximum direct current (DC) load that an electronic component, typically a relay or switch, can handle without risk of damage or failure. This rating indicates the highest permissible current that can pass through the contacts while maintaining reliable operation. It is crucial for ensuring the safety and longevity of the component in circuit applications that involve direct current. Exceeding this rating can lead to overheating, arc formation, or contact welding.

  • Coil Power

    Coil Power in electronic components refers to the amount of power consumed by a coil or inductor when an electrical current passes through it. It is a measure of the energy dissipated as heat within the coil due to its resistance. The coil power is typically specified in watts and is important to consider when designing circuits to ensure that the coil can handle the power without overheating. Properly managing coil power is crucial for the overall performance and reliability of electronic systems.

    2411.5 mW
  • Contact/Output Supply Type

    Contact/Output Supply Type is a parameter used to describe the type of connection or output supply required for an electronic component to function properly. This parameter specifies the specific type of contact or supply needed for the component to receive power or transmit signals. It can include details such as the number of pins, voltage levels, current requirements, and communication protocols. Understanding the Contact/Output Supply Type is crucial for selecting compatible components and ensuring proper functionality within an electronic system.

    AC/DC
  • Relay Action

    Relay action refers to the type of mechanical movement performed by a relay in response to an electrical signal. It typically describes how the relay transitions between its open and closed states to either allow or interrupt the flow of current in a circuit. Relay action can be classified as normally open or normally closed, indicating the default state of the relay contacts before any current is applied. The speed and responsiveness of this action can significantly affect the performance of the overall circuit in which the relay is used.

    MOMENTARY
  • Coil Voltage (DC)

    The parameter "Coil Voltage (DC)" in electronic components refers to the voltage required to energize the coil of an electromagnetic device, such as a relay or a solenoid, when using direct current (DC) power. This voltage is necessary to create a magnetic field within the coil, which in turn activates the component to perform its intended function. The specified coil voltage must match the power supply voltage to ensure proper operation of the component. It is important to carefully select a component with the correct coil voltage rating to prevent damage and ensure reliable performance in electronic circuits.

    26.5
  • Coil/Input Supply Type

    Coil/Input Supply Type refers to the voltage and current specifications required to operate the coil in electromagnetic components such as relays and solenoids. This parameter indicates whether the component is designed to operate with AC or DC voltage sources and specifies the nominal voltage level for optimal performance. Understanding the Coil/Input Supply Type is essential for ensuring proper operation and compatibility with circuit designs.

    DC
  • Diode Configuration

    Diode configuration refers to the specific arrangement and connection of diodes within an electronic circuit. It can determine how the diode functions, whether as a rectifier, switch, or voltage regulator. Common configurations include series, parallel, and bridge configurations, each with distinct characteristics affecting the flow of current and voltage in the circuit. Proper diode configuration is essential for achieving desired circuit behaviors and performance.

    Dual Series
  • Repetitive Peak Reverse Voltage

    The Repetitive Peak Reverse Voltage (VRRM) is a key parameter in electronic components, particularly in diodes and rectifiers. It refers to the maximum reverse voltage that a component can withstand in repetitive peak reverse polarity conditions without breaking down. This parameter is crucial for ensuring the reliable operation and longevity of the component in circuits where reverse voltage may be present intermittently or periodically. It is important to select a component with a VRRM rating higher than the maximum reverse voltage expected in the circuit to prevent damage or failure.

    50
  • Relay Function

    In electronic components, the term "Relay Function" refers to the capability of a relay to control the flow of electrical current between two or more circuits. Relays are electromechanical devices that use an electromagnet to mechanically switch electrical contacts, allowing them to open or close a circuit. The relay function is essential for applications where there is a need to isolate or control the flow of electrical signals, such as in automation systems, power distribution, and telecommunications. By activating or deactivating the relay, users can control the operation of connected devices or systems, making relays a versatile component in various electronic and electrical applications.

    SPST
  • Contact Arrangement

    Contact arrangement in electronic components refers to the configuration and organization of electrical contacts within a switch, relay, or connector. It defines how contacts are paired or grouped, determining their functionality in terms of opening or closing circuits, switching pathways, or making connections. Different contact arrangements, such as normally open, normally closed, or various multi-pole configurations, affect the behavior of the component in electronic circuits, influencing design choices based on the desired electrical performance.

    SPST-NO
  • Coil Voltage(DC)-Max

    Coil Voltage(DC)-Max refers to the maximum direct current voltage that can be applied to the coil of an electromagnetic component, such as a relay or solenoid. This parameter is critical to ensure the safe and reliable operation of the component, as exceeding this voltage can cause overheating, insulation breakdown, or damage to the coil. It is important for designers to consider this value when integrating such components into electronic circuits to prevent failure and ensure proper functionality. Proper adherence to the Coil Voltage(DC)-Max specification helps maintain the longevity and performance of the device.

    26.5 V
  • Coil Current(DC)-Max

    The parameter "Coil Current(DC)-Max" in electronic components refers to the maximum direct current (DC) that can safely flow through the coil of the component without causing damage. This specification is important for components such as relays, solenoids, and inductors that rely on coils to function. Exceeding the maximum coil current can lead to overheating, increased resistance, and potential failure of the component. It is crucial to adhere to this specification to ensure the reliable operation and longevity of the electronic component.

    0.091 A
  • Coil Operate Voltage(DC)

    Coil Operate Voltage (DC) refers to the direct current voltage level required to energize the coil of an electromagnetic component, such as a relay or solenoid. This voltage is essential for activating the component, allowing it to perform its intended function. If the applied voltage is below the specified coil operate voltage, the component may not engage properly or may fail to operate altogether. Conversely, applying a voltage significantly higher than the rated value may result in overheating or damage to the coil.

    16 V
  • Coil Release Voltage(DC)

    Coil Release Voltage(DC) in electronic components refers to the specific voltage level at which a relay or contactor coil will release or disengage its contacts. It is the minimum voltage required for the coil to return to its non-energized state, thereby breaking the circuit. This parameter is critical for ensuring reliable operation of the device, as it dictates the conditions under which the coil ceases to hold the load. Knowing the coil release voltage helps in designing circuits that operate effectively within the specified range.

    1 V
  • Coil Suppression Diode

    A coil spike suppression diode is a protection device across the contactor coil. Energizing the contactor coil creates a magnetic field that forces the solenoid arm to engage the contacts. When the contactor is turned off, the magnetic field collapses causing a back “voltage spike” that can damage the controller.

    No
  • Coil Termination

    Coil Termination in electronic components refers to the method used to connect the coil winding to the external circuitry. This is typically done through soldering or other means of attachment to ensure a secure and reliable electrical connection. The termination method can vary depending on the type of component and its intended application, with options such as through-hole soldering, surface mount technology, or wire bonding. Proper coil termination is crucial for maintaining the electrical integrity and performance of the component, as well as ensuring its longevity and reliability in operation.

    Stud
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