S9S12VR32F0VLCR Allicdata Electronics
Allicdata Part #:

568-13965-2-ND

Manufacturer Part#:

S9S12VR32F0VLCR

Price: $ 1.53
Product Category:

Integrated Circuits (ICs)

Manufacturer: NXP USA Inc
Short Description: MAGNIV 16-BIT MCU S12 CORE 32K
More Detail: 12V1 S12 MagniV Microcontroller IC 16-Bit 25MHz 32...
DataSheet: S9S12VR32F0VLCR datasheetS9S12VR32F0VLCR Datasheet/PDF
Quantity: 2000
2000 +: $ 1.39091
Stock 2000Can Ship Immediately
$ 1.53
Specifications
Program Memory Size: 32KB (32K x 8)
Supplier Device Package: 32-LQFP (7x7)
Package / Case: 32-LQFP
Operating Temperature: -40°C ~ 105°C (TA)
Oscillator Type: Internal
Data Converters: A/D 2x10b
Voltage - Supply (Vcc/Vdd): 3.13 V ~ 5.5 V
RAM Size: 2K x 8
EEPROM Size: 128 x 8
Program Memory Type: FLASH
Series: S12 MagniV
Number of I/O: 16
Peripherals: LVD, POR, PWM, WDT
Connectivity: IrDA, LINbus, SCI, SPI
Speed: 25MHz
Core Size: 16-Bit
Core Processor: 12V1
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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S9S12VR32F0VLCR microcontroller is a single-chip robust solution designed for high-performance embedded and industrial control applications. It combines the power of an MCU and the company\'s powerful DSP core technology in a single package. It can be used in a variety of embedded and industrial applications such as factory and industrial automation, heavy-duty motors, mobile equipment, home and office automation, medical, automotive and aircraft applications.

The S9S12VR32F0VLCR microcontroller features the proven T-CAP processor core, one of the most powerful and highly-integrated mixed-signal microcontroller cores available. It is a 32-bit, 24-bit wide, low-power RISC processor architecture that boosts performance and scalability while consuming as little as 1.5 mA/MHz. The device can also be configured with up to 256KB of high-speed, dual-ported SRAM, 4KB of on-chip RAM, a DMA controller, high-speed serial communications, and up to eight 10-bit A/D converters.

The S9S12VR32F0VLCR microcontroller is designed for a wide range of embedded and industrial applications and provides a high-performance, robust and cost-effective embedded solution for a variety of applications. It is also one of the few products currently available on the market to offer integrated CAN-bus connectivity. This enables the microcontroller to be used in a number of systems that require communication between multiple smart devices, including embedded mobile applications, factory automation and industrial robots.

The S9S12VR32F0VLCR microcontroller features a range of functional features and peripheral interfaces to support the development of a wide range of applications. On-chip peripherals include two 16-bit timers/counter, two 8-bit timers, two 8-bit pulse-width-modulation (PWM) outputs, four interrupt sources, two UARTs, programmable watchdog timer, on-chip analog comparator, and software breakpoints. It also offers a range of intelligent peripherals such as DAC, ADC and digital signal processor (DSP) cores.

The working principle of the S9S12VR32F0VLCR microcontroller is simple. When the microcontroller is powered up, it begins executing instructions from its memory. All instructions are 32 bit wide and are programmed in assembly language. The instructions control what the microcontroller does, such as reading and writing data from its memory and from peripherals, controlling digital outputs, and executing specialized instructions. All instructions are executed in a single- or multi-cycle manner, allowing the microcontroller to execute complex instructions in a very short period of time. The microcontroller can also be used to interact with other devices such as sensors and actuators, through its serial communication interface.

In conclusion, the S9S12VR32F0VLCR microcontroller provides the power, speed and cost-efficiency needed for the development of high-performance embedded and industrial applications. Its extensive range of integrated peripherals, high clock rate, low-power design and its robust instruction set make it an ideal choice for embedded applications. Furthermore, its CAN-bus connectivity and ease of programming in assembly language make it suitable for use in a range of industrial applications.

The specific data is subject to PDF, and the above content is for reference

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