AWR1642ABIGABLRQ1

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AWR1642ABIGABLRQ1

IC RF DETECT 76-81GHZ 161FC/CSP

  • Nhà sản xuất
  • Ông. Phần #AWR1642ABIGABLRQ1
  • Gói FCCSP (ABL)-161
  • Bảng dữ liệu
  • Có sẵn6359

100% gốc & amp; Mới

24 giờ sẵn sàng để vận chuyển

Bảo hành 365 ngày

RFQ & amp; Nhận thêm Giảm giá

Thông số kỹ thuật

Package Tape & Reel (TR),Cut Tape (CT)
Series Automotive, AEC-Q100, mmWave, Functional Safety (FuSa)
ProductStatus Active
Type TxRx + MCU
RFFamily/Standard RADAR
Frequency 76GHz ~ 81GHz
Power-Output 12.5dBm
SerialInterfaces I²C, JTAG, SPI, UART
Voltage-Supply 1.71V ~ 1.89V, 3.15V ~ 3.45V
OperatingTemperature -40°C ~ 125°C (TJ)
MountingType Surface Mount
Package/Case 161-TFBGA, FCCSP

Tổng quan

Description

The AWR1642ABIGABLRQ1 is an automotive radar sensor from Texas Instruments, designed for advanced driver-assistance systems (ADAS). This device operates in the 76 to 81 GHz frequency range, providing robust performance for applications such as collision avoidance, adaptive cruise control, and parking assistance.
Key features of the AWR1642 include an integrated DSP (Digital Signal Processor) and an MCU (Microcontroller Unit), allowing for efficient on-chip signal processing and reduced system complexity. It supports multiple modulation schemes and configurations, offering flexibility for different radar applications.
The sensor is also equipped with MIMO (Multiple-Input Multiple-Output) technology, enhancing spatial resolution and accuracy. It is designed to meet automotive industry standards, ensuring reliability and safety in harsh environments.
Additionally, the AWR1642ABIGABLRQ1 features low power consumption, compact design, and built-in safety mechanisms, making it a cost-effective solution for modern automotive radar systems. Its programmability and scalability facilitate easy integration into various vehicle platforms, supporting the development of custom radar solutions.

Features

The AWR1642ABIGABLRQ1 is a radar sensor from Texas Instruments, part of their AWR1642 series designed for automotive applications. Key features include:
1. Single-Chip Solution: It integrates a 76- to 81-GHz radar front-end with digital signal processing capabilities on a single chip, reducing system complexity and space requirements.
2. CMOS Technology: Built on a 45-nm RFCMOS process, offering improved performance and cost efficiency.
3. High Accuracy: Provides high-resolution range, velocity, and angle data, essential for automotive applications such as adaptive cruise control and collision avoidance.
4. Embedded Processing: Includes a Texas Instruments C674x DSP and an ARM Cortex-R4F processor, enabling real-time signal processing and algorithm execution.
5. Flexible Configurations: Supports multiple sensor configurations and field of view options, allowing customization for different vehicle platforms.
6. Automotive Grade: Meets automotive standards for temperature and quality, making it suitable for use in various environmental conditions.
7. Low Power Consumption: Designed to operate efficiently, minimizing power use while maintaining high performance.
These features make it a versatile and efficient choice for automotive radar applications, enhancing vehicle safety and autonomous driving capabilities.

Package

The AWR1642ABIGABLRQ1 is a radar sensor from Texas Instruments and comes in a VQFN (Very Thin Quad Flat No-Lead) package type. This package is compact and suitable for automotive applications, providing high performance in a small form factor for various radar-based sensing and detection tasks.

Pinout

The AWR1642ABIGABLRQ1 is a single-chip 77GHz to 81GHz radar sensor from Texas Instruments, primarily designed for automotive applications. It is part of the AWR1642 series, which integrates a radar front-end with a digital signal processor (DSP) and an ARM Cortex-R4F processor.
The chip comes in a 161-pin ball grid array (BGA) package. The pins are used for various functions, including:
1. Power Supply Pins: These provide power to the different sections of the chip, such as the RF front-end, processors, and peripherals.
2. RF and Analog Pins: Used for transmitting and receiving radar signals and interfacing with external antennas.
3. Digital Interface Pins: Include interfaces like SPI, I2C, UART, and CAN for communication with other electronic control units (ECUs) in the vehicle.
4. Clock and Reset Pins: Manage the chip's clock signals and reset functionality.
5. Debug and Test Pins: Used for development, debugging, and testing purposes.
The specific pin configuration and their detailed functions can be found in the device's datasheet provided by Texas Instruments.

Manufacturer

The AWR1642ABIGABLRQ1 is manufactured by Texas Instruments Incorporated (TI). Texas Instruments is a technology company that designs and manufactures semiconductors and various integrated circuits, which are used in a wide array of electronic devices. The company is well-known for its analog and embedded processing products and operates in sectors such as industrial, automotive, personal electronics, communications equipment, and enterprise systems. With a strong focus on innovation and quality, Texas Instruments is a leader in the semiconductor industry, delivering solutions that help improve performance and efficiency in electronics worldwide.

Application

The AWR1642ABIGABLRQ1 is a radar sensor designed for automotive applications. It is primarily used in advanced driver-assistance systems (ADAS) for functions such as collision avoidance, adaptive cruise control, blind-spot detection, and parking assistance. The sensor offers high accuracy in range, velocity, and angle measurements, making it ideal for detecting and tracking vehicles, pedestrians, and other obstacles. Its robust performance in various environmental conditions enhances vehicle safety and automation.

Equivalent

The AWR1642ABIGABLRQ1 is a radar sensor chip from Texas Instruments. Equivalent products with similar functionalities are generally found in the automotive radar space, such as:
1. NXP Semiconductors' TEF810X series.
2. Infineon's RXS8160.
3. STMicroelectronics' Radar sensor solutions.
4. Analog Devices' ADF5904/ADF5901.
These chips serve similar purposes in advanced driver-assistance systems (ADAS) and autonomous vehicle applications. For exact feature matches, reviewing each product's datasheet is recommended.

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