Allicdata Part #: | TLE9832QX-ND |
Manufacturer Part#: |
TLE9832QX |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Infineon Technologies |
Short Description: | IC MOTOR DRIVER 48VQFN |
More Detail: | N/A |
DataSheet: | TLE9832QX Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | -- |
Packaging: | Tape & Reel (TR) |
Part Status: | Obsolete |
Applications: | Automotive |
Core Processor: | XC800 |
Program Memory Type: | FLASH (36 kB) |
Controller Series: | -- |
RAM Size: | 3.25K x 8 |
Interface: | LIN, SSI, UART |
Number of I/O: | 11 |
Voltage - Supply: | 3 V ~ 27 V |
Operating Temperature: | -40°C ~ 150°C (TJ) |
Mounting Type: | Surface Mount |
Package / Case: | 48-VFQFN Exposed Pad |
Supplier Device Package: | PG-VQFN-48-31 |
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Embedded - Microcontrollers - Application Specific
TLE9832QX is a 32-bit microcontroller designed and manufactured by Infineon Technologies AG. This device is intended to target applications with tight requirements on clock speed, power consumption and reliability, such as industrial automation, medical and automotive infotainment. This device is based on the ARM Cortex-M0+ core, thus offering a high level of performance while requiring less power and cost. The device contains a variety of peripherals such as high-speed USART, I2C, SPI, GPIO and 10/100 Ethernet for embedding a wide range of applications. It also supports a variety of development environments and operating systems, making it an ideal choice for embedded applications.
Application field
TLE9832QX is suitable for applications with high demands for operation speed, power consumption and reliability. The device has a balanced combination of ARM Cortex-M0+ core and analog peripherals, making it more capable in processing data, especially for industrial applications. With the support of development environment, users can concentrate their time and effort into the I/O application development instead of the details of cross-platform porting.
The device’s stackable design architecture allows users to extend the device capability by adding more peripherals. Furthermore, the device’s low power consumption makes it suitable for battery powered systems. Additionally, it provides comprehensive debugging functions, such as breakpoints and real-time trace via the ARM DWT. This makes it efficient to debug even in low-end systems. The TLE9832QX device is also certified to EN 301 489-1 (EMC) and CISPR 22 (EMI) safety standards, making it suitable for safety-critical applications.
Working Principle
The TLE9832QX device is powered by a Cortex-M0+ processor operating at up to 72 MHz. The device integrates an ARMv6-M core, which includes a memory management unit (MMU) for addressing and protection. The device has 8 KB of on-chip SRAM and 4 KB of on-chip Flash memory. Furthermore, it can be extended up to 512 KB of non-volatile Flash memory. The SRAM also allows the CPU to fetch instructions directly from RAM which can improve clock speed up to five times compared with the traditional fetch method.
The device has a wide range of peripherals, including analog-to-digital converters (ADCs) and digital-to-analog converters (DACs). It also contains two CAN FD (flexible data-rate) ports, two UARTs, two USARTs, two I 2 C ports and two SPI ports with four chip select options. All of these allow users to easily port legacy code without any coding effort while preserving the existing I/O configurations. They also provide layer 2 MAC filtering, which helps to reduce the load of upper layer protocols.
The TLE9832QX includes an integrated Vref generator for analog and digital voltage reference. This helps to reduce the overall system power consumption and improves the accuracy of the data acquisition. Furthermore, the device contains a number of software interrupts that allow users to quickly handle different IO operations. This reduces the user’s development effort for interrupt handling in the application.
The TLE9832QX contains multiple power down modes, including low power RAM retention and standby modes, to save system power consumption. The device also has Wake-up pins allowing the system to be woken up via interrupts. The device can be programmed using various development tools and supports a wide range of operating systems, such as FreeRTOS, OpenRTOS, µC/OS-II and µC/OS-III.
The specific data is subject to PDF, and the above content is for reference
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