TIC12400QDCPRQ1

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TIC12400QDCPRQ1

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IC INTFACE SPECIALIZED 38HTSSOP

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  • 製造商部分 #TIC12400QDCPRQ1

  • 包裹 HTSSOP (DCP)-38

  • 有存貨5731

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正品保證

規格

屬性 價值
Package Tape & Reel (TR),Cut Tape (CT),Bulk
Series Automotive, AEC-Q100
ProductStatus Active
Applications Automotive, Switch Monitoring
Interface MSDI (Multiple Switch Detection)
Voltage-Supply 4.5V ~ 35V
Package/Case 38-TFSOP (0.173, 4.40mm Width) Exposed Pad
SupplierDevicePackage 38-HTSSOP

概述

Description

The TIC12400QDCPRQ1 is a highly integrated, multi-channel switch interface IC developed by Texas Instruments. It is designed for use in automotive and industrial applications to interface with mechanical switches, providing robust and reliable signal processing. The device can handle up to 24 switch inputs, making it suitable for applications requiring multiple switch monitoring.
Key features include low power consumption, high voltage tolerance, and built-in diagnostics to ensure system reliability and safety. It operates over a wide input voltage range, which makes it adaptable to various environmental conditions and system requirements. The TIC12400QDCPRQ1 also supports programmable wake-up and interrupt features, enhancing its functionality in power-sensitive applications.
This IC is particularly useful in automotive systems for monitoring door locks, lighting controls, and other user interface functions. It can significantly reduce the complexity and component count in switch interface designs, contributing to cost-effective and efficient system solutions.

Equivalent

The TIC12400QDCPRQ1 is an automotive multi-channel switch detection interface from Texas Instruments. Equivalent products may include similar switch interface ICs from other manufacturers such as:
1. NXP's MC33972 - Switch detection interface with multiple channels.
2. Infineon's TLE8479 - Multi-channel switch interface for automotive applications.
Ensure compatibility by checking the datasheet specifications, such as the number of input channels, communication interface, and automotive standards compliance.

Features

The TIC12400QDCPRQ1 is an automotive-qualified switch and sensor interface IC designed by Texas Instruments. It features the following:
1. Input Channels: Offers 24 high-voltage input channels suitable for monitoring switches, sensors, and other inputs.

2. Voltage Range: Supports a wide operating voltage range from 3.0V to 5.5V, making it versatile for various applications.

3. Diagnostic Capabilities: Includes advanced diagnostics, such as open load, short to ground, and short to battery detection.
4. Current Sources and Sink: Provides configurable current sources and sink for resistive and capacitive sensing.
5. Low Power Consumption: Features a low power mode to minimize power consumption in standby.
6. Integration: Contains integrated protection features such as overvoltage, undervoltage, and overcurrent protection.
7. Communication: Utilizes SPI (Serial Peripheral Interface) communication for easy integration with microcontrollers.
8. Temperature Range: Designed to operate within the automotive temperature range, enhancing its reliability under extreme conditions.
9. Package: Available in a compact package suitable for space-constrained applications.
These features make the TIC12400QDCPRQ1 ideal for automotive and industrial applications requiring robust and reliable interface solutions.

Pinout

The TIC12400QDCPRQ1 is an automotive-qualified, multi-channel switch and contact monitor IC from Texas Instruments. It is designed to handle switch monitoring tasks in automotive applications, including cars and other vehicles, where it can be used to reduce wiring complexity and enhance reliability.
This device comes in a 32-pin HTSSOP (Thermally Enhanced Thin Shrink Small Outline Package), which means it has a total of 32 pins. The key functions of the TIC12400QDCPRQ1 include monitoring multiple switch inputs, providing diagnostics, and interfacing these inputs with a microcontroller using a serial peripheral interface (SPI). It supports up to 24 high-voltage inputs for switch sensing and includes features like wetting current, open-load detection, and short-to-ground/short-to-battery detection. These functions help ensure that the system can reliably detect switch states and diagnose potential wiring faults, which is crucial for maintaining operational safety and performance in automotive environments.

Manufacturer

The TIC12400QDCPRQ1 is manufactured by Texas Instruments Incorporated (TI). Texas Instruments is an American technology company that designs and manufactures semiconductors and various integrated circuits, which it sells to electronics designers and manufacturers globally. TI is one of the top semiconductor companies in the world, known for its focus on developing analog chips and embedded processors that are widely used in various electronic applications, ranging from consumer electronics to industrial equipment and automotive systems. The company has a strong emphasis on innovation and R&D, continually expanding its product offerings to meet the evolving needs of the electronics industry. Established in 1930, Texas Instruments has a long-standing reputation for quality and reliability in its products.

Application

The TIC12400QDCPRQ1 is a configurable multiple-switch detection interface designed for automotive and industrial applications. Its primary application areas include body control modules, such as door and seat control, where it detects the status of multiple switches. It is also used in infotainment systems for user interface controls, as well as in HVAC systems for detecting control panel inputs. Additionally, the device is employed in safety systems, like brake and clutch systems, for monitoring switch positions. Its robust design and flexibility make it suitable for environments requiring high reliability and low power consumption.

Package

The TIC12400QDCPRQ1 is packaged in a VQFN (Very Thin Quad Flat No-Lead) configuration with a 32-pin layout. This package type is designed to provide a compact and efficient form factor for electronic components, offering improved thermal performance and electrical characteristics compared to traditional packages.