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Texas Instruments Articles
DS90UB935-Q1 FPD-Link III 3-Gbps Serializer With CSI-2 Interface
The DS90UB935-Q1 serializer is part of TI's FPD Link III device family designed to support high speed raw data sensors including cameras, satellite RADAR, LIDAR, and Time-of-Flight (ToF) sensors. The chip delivers a high-speed forward channel and an ultra-low latency, bidirectional control channel and supports power over a single coax (PoC) or STP cable.
AWR2943/44 Single-Chip 76- and 81-GHz FMCW Radar Sensor
The AWR294x is a single-chip mmWave sensor composed of a FMCW transceiver, capable of operation in the 76- to 81-GHz band, radar data processing elements, and peripherals for in-vehicle networking.
Waveguide Interface for ADAS Applications
The AWR2544 is a single-chip mmWave sensor composed of a FMCW transceiver. The device is capable of operation in the 76 to 81GHz (EHF) band, includes radar data processing elements, and a rich set of peripherals for in-vehicle networking.
How squib and contactor drivers help improve safety and efficiency in HEV/EV battery disconnect systems
Power distribution in battery management systems (BMS) for hybrid electric vehicles (HEV) and electric vehicles (EV) delivers power to core functions of the vehicle while also providing mechanisms to safely disconnect high voltage or high current events.
Enabling satellite architecture with AWR2544 radar sensors
Satellite architecture is the emerging automotive radar architecture that enables centralized data processing. TI’s AWR2544, engineered using the innovative launch-on-package technology, is the first radar-on-chip in the market designed specifically for this architecture.
Advanced battery management systems with digital twin technology
TI's technology supports the most critical BMS functions: cell monitoring, high-voltage sensing, current sensing, contactor control, high-voltage disconnection, isolation monitoring and high-voltage interlock. Digital twin technology enables intelligent and connected BMS to help extend battery range and safety.
AM263P4-Q1
Automotive quad-core Arm Cortex-R5F MCU up to 400 MHz with real-time control and expand. The AM263Px Sitara Arm Microcontrollers are built to meet the complex real-time processing needs of next generation industrial and automotive embedded products.
How squib and contactor drivers help improve safety and efficiency in HEV/EV battery disconnect systems
Power distribution in battery management systems (BMS) for hybrid electric vehicles (HEV) and electric vehicles (EV) delivers power to core functions of the vehicle while also providing mechanisms to safely disconnect high voltage or high current events.
DRV3946-Q1 evaluation module
The DRV3946-Q1EVM allows for easy control and evaluation of the DRV3946-Q1, which is a dual-channel and fully integrated solenoid and contactor driver. The DRV3946-Q1 is able to drive up to 9 A per channel for a total of 18 A if both output channels are driving at maximum capacity.
Factory automation design made simple with multiprotocol industrial Ethernet systems
Factory automation equipment – sensors, actuators, drives, and programmable logic controllers (PLCs) – supports industrial Ethernet protocols such as EtherCAT, Profinet, EtherNet Industrial Protocol (EtherNet/IP), and Sercos, each one exchangeable by loading a different software image onto the hardware platform.
DRV3901-Q1 evaluation module
The DRV3901-Q1 is a fully integrated device for driving a pyro-fuse initiator in a 12-V automotive system. The DRV3901-Q1EVM showcases two DRV3901-Q1 devices for flexibility in testing parallel or redundant systems. The device supports an input voltage up to 28 V and runs on a logic supply voltage of 5 V.
76-81GHz FMCW satellite Radar-on-Chip sensor
The AWR2544 is a single-chip mmWave sensor composed of a FMCW transceiver. The device is capable of operation in the 76 to 81GHz (EHF) band, includes radar data processing elements, and a rich set of peripherals for in-vehicle networking.
Designing smarter, safer battery management systems
TI technology is innovating in the most critical BMS functions: cell monitoring, high-voltage sensing, current sensing, contactor control, high-voltage disconnection, isolation monitoring and high-voltage interlock.
Traction Inverters – A Driving Force Behind Vehicle Electrification
The careful design of traction inverters for hybrid electric vehicles (HEVs) and electric vehicles (EVs) can help enable faster motor speeds, higher efficiency and a smaller system size while maintaining power density.
8-ch Isolated High Voltage Analog Input Module Reference Design
This reference design is a high-voltage analog input module with eight channels. Each channel can be used for both voltage and current measurement.
Simplify designs with LPDDR4 integration
TI's newest processor, the AM625 system-in-package (SIP), lets you achieve faster design times, with a smaller footprint. This general-purpose processor integrates processing and memory components on a single chip to help save time and effort on PCB layout, testing and validation.
96-Channel Bidirectional Digital Input Module Reference Design for PLC
This reference design is a compact implementation of 96 isolated digital input channels using the ISO1212, an isolated digital input receiver. This design shows the current limit feature of the ISO1212 device which has better thermal performance than traditional optocoupler solutions.
96-Channel Bidirectional Digital Input Module Reference Design for PLC
This reference design is a compact implementation of 96 isolated digital input channels using the ISO1212, an isolated digital input receiver. This design shows the current limit feature of the ISO1212 device which has better thermal performance than traditional optocoupler solutions.
Design Priorities in EV Traction Inverter With Optimum Performance
This technical white paper explores key system trends, architecture, and technology for traction inverters.
How the AM625SIP Processor Accelerates Development
TI system-in-package (SIP) processors with integrated LPDDR4 like the AM625SIP help solve common processor design challenges These processors addresses the hardware, software, robustness, power. and many more challenges that engineers face today. AM625SIP enables the ability to have a simpler and faster development flow through the integrated LPDDR4.