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Radar ECU

Описание:

Решение представляет собой интегрированный, оптимизированный по габаритам проект системы питания систем ADAS с использованием SoC TDA3x с питанием от автомобильной батареи. Благодаря акцентированию на применении в системах с невысокими требованиями к обработке данных в данном проекте появилась возможность выбрать меньшие по габаритам устройства и компоненты по сравнению с системами, в которых используются более высокопроизводительные процессоры.

Данный базовый проект имеет характер аппаратного решения.

Возможности:

  • Полноценное решение системы питания TDA3x, DDRx и CAN
  • Высокоинтегрированный, оптимизированный по габаритам проект
  • Работа с питанием от батареи
  • Полноценное секвенсирование напряжением питания при включении/ выключении системы
  • Соответствует требованиям стандарта ISO 7637-2:2004

Документация:
  • Схемотехника
  • BOM
  • Топология платы
Описание:
This camera hub reference design allows connection of up to four 1.3-megapixel cameras to a TDA3x system-on-chip (SoC) evaluation module (EVM). Each camera connects to the hub through a single coax cable. Using FPD-Link III connections, the cameras are connected to a four-port deserializer. The output of the deserializer is MIPI CSI-2. The design also allows connection of other types of sensors for sensor fusion use cases.
Возможности:

Accepts 4 camera inputs over FPD-Link III Connects directly to the CSI-2 video ports on a TDA3x EVM Provides wide range supply voltage for Power Over Coax (4-14V) Board power can come directly from car battery Will work with any camera that uses a compatible FPD-Link III serializer

Документация:
  • Схемотехника
  • BOM
  • Топология платы
Описание:
This automotive reference design demonstrates an approach for powering remote, off-board loads, often over coaxial cables (i.e. "phantom power"). This design is capable of protecting against and digitally diagnosing different faults that off-board cabling is susceptible to. Reverse polarity, reverse current, short to-battery, short-to-ground, and thermal shutdown are protected against and diagnosed through I2C and a fault flag. The integrated reverse-current protection does not require an external diode at the output of the device, which saves cost and avoids increasing the dropout voltage.
Возможности:

4.5V to 40V wide input voltage range and load dump of 45V Multiplexing current sense between channels/devices to save ADC channels High accuracy to detect antenna open, normal, over current, and short circuit conditions over current/short circuit Digital window comparator with programmable high & low thresholds and alert Output voltage adjustable 1.5 - 20V, output current up to 300 mA per channel

Документация:
  • Схемотехника
  • BOM
Описание:
The TIDA-01570 reference design is a complete solution for a 76 to 81 GHz radar sensor module. The power supplies on board convert the automotive battery input to the required rails for the radar AFE, processors and CAN-FD transceiver. After processing, object data is provided over the included N-FD phy.
Возможности:

Provides wide range supply voltage for power over coax (4 V to 14 V) Car battery can directly supply board power with protection from reverse current

Документация:
  • Схемотехника
  • BOM
Описание:
TI Design TIDEP-0092provides a foundation for short-range radar (SRR) applications using the AWR1642 evaluation module (EVM). This designallows the estimation of the position (in the azimuthal plane) and velocity of objects in its field of view up to 80 m.
Возможности:

Single-chip radar for SRR applications Detect objects (such as cars and motorcycles) up to 80 m awaywith range resolution of 35 cm Antenna field of view ±60° with angular resolution of approximately 15° Source code for fast Fourier transform (FFT) processing and detection provided by mmWave software development kit (SDK) AWR1642EVM demonstrates the design Radar front-end and detection configuration fully explained

Документация:
  • Схемотехника
  • BOM
  • Тестирование

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