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LP87781-Q1

VORSCHAU

Automotive, three 3.5A low-noise buck converters and boost/LDO PMIC for radar MMICs

Produktdetails

TI functional safety category Functional Safety-Compliant Rating Automotive Operating temperature range (°C) to
TI functional safety category Functional Safety-Compliant Rating Automotive Operating temperature range (°C) to
VQFN-HR (PKI) 24 16 mm² (4 mm × 4 mm)
  • AEC-Q100 qualified with the following results:
    • Device temperature grade 1: –40°C to +125°C ambient operating temperature
  • Functional safety-compliant device
    • Developed for functional safety applications
    • Documentation that aids ISO 26262 functional safety system design up to ASIL-B
    • BUCK, BOOST or load-switch and LDO output and input supply overvoltage and undervoltage monitoring
    • Q&A Watchdog
    • Level or PWM error signal monitor (ESM)
    • ABIST and CRC
  • Input voltage: 3.3V nominal (3.0V to 4.0V range)
  • 3 high-efficiency, low noise, high frequency step-down DC/DC converters:
    • Output voltage: 0.6V to 1.9V with 10mV output voltage steps
    • Maximum output current: 3.5A (Buck1: 4.5A under certain conditions)
    • Scalable switching frequency: 3.67MHz to 17.6MHz
  • 300mA high frequency step-up DC/DC converter/400mA load switch (VOUT_BST/LSW_OUT)
    • Options with LSW or boost available for Ethernet and CAN support

    • Input voltage, boost mode: 3.0V to 4.0V
    • Output voltage, boost mode: 5.0V
    • Input/output voltage, LSW mode: 0.8V to 3.4V
  • 500mA linear regulator with bypass mode (VOUT_LDO)
    • Input voltage, LDO mode: 1.0V to 4.0V
    • Output voltage: 0.5V to 3.4V with 50mV output voltage steps
    • Input voltage, bypass mode: 0.8V to 3.4V
  • Output current limit and overload protection
  • Regulator output dynamic voltage scaling (DVS) through I2C interface
  • Input overvoltage protection (OVP) and undervoltage lockout (UVLO)
  • Overtemperature warning and protection
  • I2C interface supporting standard, fast mode, fast-mode+ and high speed mode
  • AEC-Q100 qualified with the following results:
    • Device temperature grade 1: –40°C to +125°C ambient operating temperature
  • Functional safety-compliant device
    • Developed for functional safety applications
    • Documentation that aids ISO 26262 functional safety system design up to ASIL-B
    • BUCK, BOOST or load-switch and LDO output and input supply overvoltage and undervoltage monitoring
    • Q&A Watchdog
    • Level or PWM error signal monitor (ESM)
    • ABIST and CRC
  • Input voltage: 3.3V nominal (3.0V to 4.0V range)
  • 3 high-efficiency, low noise, high frequency step-down DC/DC converters:
    • Output voltage: 0.6V to 1.9V with 10mV output voltage steps
    • Maximum output current: 3.5A (Buck1: 4.5A under certain conditions)
    • Scalable switching frequency: 3.67MHz to 17.6MHz
  • 300mA high frequency step-up DC/DC converter/400mA load switch (VOUT_BST/LSW_OUT)
    • Options with LSW or boost available for Ethernet and CAN support

    • Input voltage, boost mode: 3.0V to 4.0V
    • Output voltage, boost mode: 5.0V
    • Input/output voltage, LSW mode: 0.8V to 3.4V
  • 500mA linear regulator with bypass mode (VOUT_LDO)
    • Input voltage, LDO mode: 1.0V to 4.0V
    • Output voltage: 0.5V to 3.4V with 50mV output voltage steps
    • Input voltage, bypass mode: 0.8V to 3.4V
  • Output current limit and overload protection
  • Regulator output dynamic voltage scaling (DVS) through I2C interface
  • Input overvoltage protection (OVP) and undervoltage lockout (UVLO)
  • Overtemperature warning and protection
  • I2C interface supporting standard, fast mode, fast-mode+ and high speed mode

The LP8778x-Q1 devices meet the power management requirements of the AWR, IWR, and other MMICs in various automotive and industrial radar applications. The device has three step-down DC/DC converters, one step-up DC/DC converter and an LDO regulator. Depending on the orderable part-number, the device further has either a step-up converter or a load switch. The LDO supports bypass mode. These options allow the use with Ethernet- or CAN-transceivers. The LDO has an independent supply pin for minimizing the drop-out and is intended for supplying Ethernet device or any other device in the system. The step-up converter is intended to supply the CAN transceiver. The load switch is intended to cut off the 3.3 VIO supply during the sensor sleep mode. The MCU controls the device by I2C communication interface and optionally by enable signal. The low noise step-down DC/DC converters support factory programmed scalable switching frequency of 3.67MHz to 17.6MHz. High switching frequency and low noise across wide frequency range, enables LDO-free power tree which helps to reduce the application cost and improve thermal performance. The device forces the switching clock to PWM mode for excellent RF performance or allows auto-PFM mode for power efficiency. The LP8778x-Q1 device supports remote voltage sensing to compensate for IR drop between the regulator output and the point-of-load (POL) which improves the accuracy of the output voltage.

The LP8778x-Q1 device supports programmable start-up and shutdown delays and sequences which are synchronized to the ENABLE signal. TI programs the default settings into nonvolatile memory (NVM) / one time programmable (OTP) memory at the factory and the user cannot change the device default NVM / OTP settings. The device controls the output slew rate to minimize output voltage overshoot and in-rush current during device start-up.

The LP8778x-Q1 devices meet the power management requirements of the AWR, IWR, and other MMICs in various automotive and industrial radar applications. The device has three step-down DC/DC converters, one step-up DC/DC converter and an LDO regulator. Depending on the orderable part-number, the device further has either a step-up converter or a load switch. The LDO supports bypass mode. These options allow the use with Ethernet- or CAN-transceivers. The LDO has an independent supply pin for minimizing the drop-out and is intended for supplying Ethernet device or any other device in the system. The step-up converter is intended to supply the CAN transceiver. The load switch is intended to cut off the 3.3 VIO supply during the sensor sleep mode. The MCU controls the device by I2C communication interface and optionally by enable signal. The low noise step-down DC/DC converters support factory programmed scalable switching frequency of 3.67MHz to 17.6MHz. High switching frequency and low noise across wide frequency range, enables LDO-free power tree which helps to reduce the application cost and improve thermal performance. The device forces the switching clock to PWM mode for excellent RF performance or allows auto-PFM mode for power efficiency. The LP8778x-Q1 device supports remote voltage sensing to compensate for IR drop between the regulator output and the point-of-load (POL) which improves the accuracy of the output voltage.

The LP8778x-Q1 device supports programmable start-up and shutdown delays and sequences which are synchronized to the ENABLE signal. TI programs the default settings into nonvolatile memory (NVM) / one time programmable (OTP) memory at the factory and the user cannot change the device default NVM / OTP settings. The device controls the output slew rate to minimize output voltage overshoot and in-rush current during device start-up.

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Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Neueste englische Version herunterladen Datum
* Datenblatt LP8778x-Q1 Three Buck Converters, One Linear Regulator and One Boost/ Load Switch for mmWave Radar Sensors datasheet PDF | HTML 11.08.2026

Design und Entwicklung

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Evaluierungsplatine

LP87781Q1EVM — LP87781-Q1 – Evaluierungsmodul

Das LP87781Q1EVM-Evaluierungsmodul (EVM) ermöglicht Benutzenden die Entwicklung von Power-Management-Systemen und die Evaluierung von Automobil- und Industrieanwendungen, die LP87781-Q1 verwenden. Das EVM unterstützt die Verbindung mit der LP8778x-Q1-Begleit-GUI für Live-Debugging und einfache (...)
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LP8778X-Q1-DESIGN — LP8778X-Q1 Design Resources

LP8778X-Q1 Design Resources
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LP8778X-Q1-FS — Serie LP8778X-Q1 – Dokumentation zur funktionalen Sicherheit

LP8778X-Q1 series functional safety documents
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