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  • Thermal Management(59)
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    LM96194CISQ

    IC TRUTHERM HDWR MONITOR 48WQFN

    Texas Instruments(TI)

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    LM63CIMAX

    IC TEMP SENSOR REMOTE 8-SOIC

    Texas Instruments(TI)

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    LM63DIMAX

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    Texas Instruments(TI)

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    LM96194CISQX

    IC TRUTHERM HDWR MONITOR 48WQFN

    Texas Instruments(TI)

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    LM96000CIMTX

    IC HDWR MON W/FAN CTRL 24-TSSOP

    Texas Instruments(TI)

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    LM94CIMTX

    IC HARDWARE MONITOR 56-TSSOP

    Texas Instruments(TI)

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    LM81CIMTX-3

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    Texas Instruments(TI)

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    LM81BIMTX-3

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    Texas Instruments(TI)

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    LM64CILQ-F

    IC TEMP SENSOR REMOTE 24WQFN

    Texas Instruments(TI)

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    AMC6821SDBQRG4

    IC TEMP MONTR/PWM FANCTRL 16SSOP

    Texas Instruments(TI)

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    AMC6821SDBQG4

    IC TEMP MONTR/PWM FANCTRL 16SSOP

    Texas Instruments(TI)

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    LM80CIMTX-5/NOPB

    IC MPU SYSTEM HDWR MON 24-TSSOP

    Texas Instruments(TI)

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    LM64CILQX-F

    IC TEMP SENSOR REMOTE 24WQFN

    Texas Instruments(TI)

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    LM96194CISQ/NOPB

    IC TRUTHERM HDWR MONITOR 48WQFN

    Texas Instruments(TI)

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    LM94CIMT/NOPB

    IC HARDWARE MONITOR 56-TSSOP

    Texas Instruments(TI)

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    LM88CIMM-A

    IC THRMOSTAT DUAL REMDIODE 8MSOP

    Texas Instruments(TI)

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    LM87CIMT/NOPB

    IC MONITOR SYS HARDWARE 24TSSOP

    Texas Instruments(TI)

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    LM80CIMT-5/NOPB

    IC MONITOR SYS HARDWAR 24-TSSOP

    Texas Instruments(TI)

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    LM80CIMT-3/NOPB

    IC MONITOR SYS HARDWAR 24-TSSOP

    Texas Instruments(TI)

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    LM80CIMTX-3/NOPB

    IC MPU SYSTEM HDWR MON 24-TSSOP

    Texas Instruments(TI)

  • Total 59
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    Description of Thermal Management

    Thermal Management ICs are semiconductor devices that control power in a circuit based on temperature. They handle tasks like:

    • Fan Control
    • Hardware Monitoring
    • Temperature Monitoring Systems
    • Thermal Monitoring
    • Thermocouple Amplification
    • Thermocouple Conditioning
    • Thermometer-Thermostat

    These ICs can sense temperatures ranging from -260°C to +1800°C, and they offer various output types, including:

    • I2C
    • SMBus
    • Active Low/Active High
    • Analog Voltage
    • Open Drain
    • PWM
    • SPI
    • 2-Wire Serial
    • Parallel-Serial

     Thermal Management

    Frequently Asked Questions

    Why is thermal management important?

    When power electronic circuits are in use, they generate heat. Good thermal management is crucial to get rid of this heat and keep the circuit and associated systems running properly.

    What are the principles of thermal management?

    At a basic level, there are three ways to transfer heat: conduction, convection, and radiation. All three methods are used to cool electronics, but how they’re used and how well they work can be quite different.

    What is the concept of thermal energy management?

    Thermal management systems control temperature using technology based on thermodynamics and heat transfer. This term covers various ways to transfer heat, like conduction, convection, and radiation, and involves different processes.

    What is thermal management of electrical systems?

    A thermal management system controls temperature with technology that relies on heat transfer and thermodynamics. It involves different types of heat transfer, such as convection and radiation, and includes various processes.

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    Attribute column