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TPS92682QRHMRQ1 - Texas Instruments

Description: Dual channel constant voltage and constant current controller with SPI

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PCB Footprints
TPS92682QRHMRQ1 - Texas Instruments PCB footprint - Other - Other - RHM0032C_2020
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3D Models
TPS92682QRHMRQ1 - Texas Instruments  - 3D model - Other - RHM0032C_2020
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TPS92682QRHMRQ1 Details

  • Manufacturer Part Number:

    TPS92682QRHMRQ1

  • Brand Name:

    Texas Instruments

  • Pbfree Code:

    Yes

  • Rohs Code:

    Yes

  • Part Life Cycle Code:

    Active

  • ECCN Code:

    EAR99

  • HTS Code:

    8542.39.00.90

  • Date Of Intro:

    2019-08-06

  • Manufacturer:

    Texas Instruments

  • YTEOL:

    15

  • Analog IC - Other Type:

    DUAL SWITCHING CONTROLLER

  • Control Mode:

    CURRENT-MODE

  • Control Technique:

    PULSE WIDTH MODULATION

  • Input Voltage-Max:

    65 V

  • Input Voltage-Min:

    4.5 V

  • Input Voltage-Nom:

    14 V

  • JESD-30 Code:

    S-PQCC-N32

  • JESD-609 Code:

    e4

  • Length:

    5 mm

  • Moisture Sensitivity Level:

    3

  • Number of Channels:

    2

  • Number of Functions:

    1

  • Number of Terminals:

    32

  • Operating Temperature-Max:

    125 °C

  • Operating Temperature-Min:

    -40 °C

  • Output Current-Max:

    5 A

  • Output Voltage-Max:

    65 V

  • Output Voltage-Min:

    4.5 V

  • Package Body Material:

    PLASTIC/EPOXY

  • Package Code:

    HVQCCN

  • Package Shape:

    SQUARE

  • Package Style:

    CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE

  • Peak Reflow Temperature (Cel):

    260

  • Screening Level:

    AEC-Q100

  • Seated Height-Max:

    0.9 mm

  • Surface Mount:

    YES

  • Switcher Configuration:

    BUCK-BOOST

  • Switching Frequency-Max:

    1000 kHz

  • Technology:

    BICMOS

  • Temperature Grade:

    AUTOMOTIVE

  • Terminal Finish:

    Nickel/Palladium/Gold/Silver (Ni/Pd/Au/Ag)

  • Terminal Form:

    NO LEAD

  • Terminal Pitch:

    0.5 mm

  • Terminal Position:

    QUAD

  • Time@Peak Reflow Temperature-Max (s):

    30

  • Width:

    5 mm

TPS92682QRHMRQ1 Frequently Asked Questions (FAQs)

  • A good PCB layout for the TPS92682QRHMRQ1 should prioritize thermal dissipation. Place the device near a thermal pad or a heat sink, and ensure that the thermal pad is connected to a solid ground plane. Use a 2-layer or 4-layer PCB with a thermal relief pattern to improve heat dissipation. Avoid routing high-current traces near the device to minimize thermal resistance.
  • When selecting an inductor for the TPS92682QRHMRQ1, consider the following factors: inductance value, DC resistance, and saturation current. Choose an inductor with a high inductance value (e.g., 1-10 μH) to minimize core losses. Ensure the inductor's DC resistance is low (e.g., < 100 mΩ) to reduce power losses. Select an inductor with a saturation current rating higher than the peak current of the converter.
  • For the TPS92682QRHMRQ1, use a low-ESR ceramic capacitor (e.g., X5R or X7R) with a value between 4.7 μF and 10 μF. This will help filter the input voltage and reduce noise. Ensure the capacitor's voltage rating is higher than the maximum input voltage.
  • To optimize the compensation network for the TPS92682QRHMRQ1, follow these steps: 1) Choose a compensation capacitor (CC) value between 10 nF and 100 nF. 2) Select a compensation resistor (RC) value based on the desired bandwidth and phase margin. 3) Use a zero-pole analysis tool or simulation software to optimize the compensation network for stability and transient response.
  • When designing a thermal solution for the TPS92682QRHMRQ1, consider the following: 1) Use a heat sink with a high thermal conductivity (e.g., copper or aluminum). 2) Apply a thermal interface material (TIM) to minimize thermal resistance. 3) Ensure good airflow around the heat sink. 4) Consider using a fan or heat pipe for high-power applications.

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About Texas Instruments

Texas Instruments (TI) designs and manufactures semiconductors and integrated circuits for a wide range of applications. The company's product portfolio includes analog chips, which are essential for managing power and signal functions in electronic devices, and embedded processors, which serve as the brains in various systems, enabling functionality in everything from industrial equipment to consumer electronics. TI's innovations in semiconductor technology have made it a leader in the industry.

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