Panasonic HE2AN12
Panasonic HE2AN12
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Panasonic HE2AN12

Manufacturer No:

HE2AN12

Manufacturer:

Panasonic

Utmel No:

1850-HE2AN12

Package:

-

ECAD Model:

Description:

HE2AN12 datasheet pdf and Power Relays, Over 2 Amps product details from Panasonic stock available at Utmel

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In Stock : 35

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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
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HE2AN12 information

Specifications
Panasonic HE2AN12 technical specifications, attributes, parameters and parts with similar specifications to Panasonic HE2AN12.
  • Type
    Parameter
  • 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.

    PCB
  • Weight
    100 g
  • Dim
    (L x W x H) 50 x 33 x 35 mm
  • Coil nominal voltage
    12V DC
  • Connections
    Solder pins
  • Resistance (coil)
    75Ω
  • Switching current (max.)
    25A
  • Ambient temperature
    -40 to +55°C
  • Switching voltage (max.)
    25V DC,277V AC
  • Max. pick-up voltage
    13.2V DC
  • Min. temperature
    -40°C
  • Nominal voltage (details)
    12V
  • Content
    1pc(s)
  • Min. pick-up voltage
    8.4V DC
  • Max. temperature
    +55°C
  • Max. switching capacity
    6925VA
  • Contact Materials
    Silver Tin Oxide
  • CoilResistance
    75ohm
  • Contact Current
    25A
  • RoHS
    Compliant
  • 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.

    Through Hole
  • Type
    HE2AN12
  • 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.

    55 °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.

    -50 °C
  • 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.

    33 mm
  • 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.

    5 mΩ
  • 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.

    1 x 10<sup>7</sup>
  • Throw Configuration

    "Throw Configuration" is a term commonly used in the context of switches and relays in electronic components. It refers to the number of positions or states that the switch or relay can be set to. For example, a single-throw (ST) configuration means the switch has only one position, while a double-throw (DT) configuration means the switch has two positions.The throw configuration is important because it determines the versatility and functionality of the switch or relay. Different applications may require different throw configurations to control the flow of current or signals effectively. Understanding the throw configuration of a component is crucial for proper installation and operation within an electronic circuit.

    DPST
  • 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.

    25 A
  • 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.

    12VDC
  • Coil Type

    There are 2 different types of 'coil'; one has copper on it (IUD) and the other contains hormone (Mirena IUS). Both are over 99% effective at protecting against pregnancy.

    Non Latching
  • 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.

    30 V
  • Coil Current

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

    160 mA
  • Power Consumption

    Power consumption is the amount of input energy (measured in watts) required for an electrical appliance to function. This is opposed to power output which is a measure of the level of performance, of a heat pump for example.

    1.92 W
  • 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.

    1.92 W
  • 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.

    12 V
  • Switching Current

    Switching current refers to the maximum current that an electronic component, such as a transistor or relay, can handle when transitioning between its on and off states. It is a critical parameter that affects the performance and reliability of the component during switching operations. Exceeding the specified switching current can lead to overheating, damage, or failure of the device. Understanding switching current is essential for designing circuits that operate safely and efficiently.

    25 A
  • Contact Configuration

    Contact configuration in electronic components refers to the arrangement and design of the electrical contacts within the component. This parameter specifies how the electrical connections are made and how the component interfaces with other devices or circuits. The contact configuration can vary depending on the type of component and its intended application, such as switches, relays, connectors, or integrated circuits. It is crucial to consider the contact configuration when designing or selecting electronic components to ensure proper functionality and compatibility within the overall system.

    DPST-NO
  • Switching Capacity

    Switching capacity in electronic components refers to the maximum amount of data or signals that can be processed or switched within a given time frame. It is a crucial parameter that determines the speed and efficiency of the component in handling data transfer or signal switching tasks. A higher switching capacity indicates that the component can handle larger volumes of data or signals more quickly, resulting in faster and more reliable performance. It is commonly measured in bits per second (bps) or in terms of the maximum number of operations per second that the component can perform. Understanding the switching capacity of electronic components is essential for designing and optimizing electronic systems for various applications.

    6.925 kW
  • Width
    33mm
  • Height
    35mm
  • Length
    50mm
  • REACH SVHC

    The parameter "REACH SVHC" in electronic components refers to the compliance with the Registration, Evaluation, Authorization, and Restriction of Chemicals (REACH) regulation regarding Substances of Very High Concern (SVHC). SVHCs are substances that may have serious effects on human health or the environment, and their use is regulated under REACH to ensure their safe handling and minimize their impact.Manufacturers of electronic components need to declare if their products contain any SVHCs above a certain threshold concentration and provide information on the safe use of these substances. This information allows customers to make informed decisions about the potential risks associated with using the components and take appropriate measures to mitigate any hazards.Ensuring compliance with REACH SVHC requirements is essential for electronics manufacturers to meet regulatory standards, protect human health and the environment, and maintain transparency in their supply chain. It also demonstrates a commitment to sustainability and responsible manufacturing practices in the electronics industry.

    No SVHC
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