S9S12XS256J0CAE Allicdata Electronics
Allicdata Part #:

S9S12XS256J0CAE-ND

Manufacturer Part#:

S9S12XS256J0CAE

Price: $ 4.21
Product Category:

Integrated Circuits (ICs)

Manufacturer: NXP USA Inc
Short Description: IC MCU 16BIT 256KB FLASH 64LQFP
More Detail: HCS12X HCS12X Microcontroller IC 16-Bit 40MHz 256K...
DataSheet: S9S12XS256J0CAE datasheetS9S12XS256J0CAE Datasheet/PDF
Quantity: 1000
800 +: $ 3.82788
Stock 1000Can Ship Immediately
$ 4.21
Specifications
Program Memory Type: FLASH
Base Part Number: S9S12XS256
Supplier Device Package: 64-LQFP (10x10)
Package / Case: 64-LQFP
Operating Temperature: -40°C ~ 85°C (TA)
Oscillator Type: External
Data Converters: A/D 8x12b
Voltage - Supply (Vcc/Vdd): 1.72 V ~ 5.5 V
RAM Size: 12K x 8
EEPROM Size: --
Series: HCS12X
Program Memory Size: 256KB (256K x 8)
Number of I/O: 44
Peripherals: LVD, POR, PWM, WDT
Connectivity: CANbus, SCI, SPI
Speed: 40MHz
Core Size: 16-Bit
Core Processor: HCS12X
Part Status: Active
Packaging: Tray 
Description

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S9S12XS256J0CAE is an 8-bit scratchpad system microcontroller in the S12X microcontroller family from NXP Semiconductors. This microcontroller is an ideal choice for precision timing and control applications that demand low power consumption. It has a low power consumption design, and offers a wide range of features that enable developers to use it in a variety of applications.

The S9S12XS256J0CAE has a wide range of features that makes it the ideal choice for embedded applications. Its 8-bit CPU core can accommodate up to 32 bytes of RAM and has variable clock speed control that ranges from internal clock speeds of up to 16 MHz. It also has a number of interrupt capabilities that enable it to handle a variety of tasks.

The S9S12XS256J0CAE supports enhanced I/O capabilities that include serial peripheral interface (SPI), serial communications interface (SCI), and a variety of peripheral module functions. It supports a wide range of timers and a real-time clock module, which allows it to handle applications that require precise timing. It also has the ability to store up to 256 bytes of flash memory.

The S9S12XS256J0CAE has a range of application fields, such as automotive, industrial control, medical and audio/video applications. It provides precision timing and control capabilities for these applications. Some of its applications include motion control, frequency counting, pulse width modulation, stepper motor control and motor speed control. In addition, it supports various interfaces such as CAN, Ethernet, and USB.

The working principle of the S9S12XS256J0CAE microcontroller is based on an 8051 architecture. This architecture is based on a central processing unit (CPU) that performs all the control and data manipulation functions of the microcontroller. It is also composed of a memory module and various peripheral modules.

The CPU module of the S9S12XS256J0CAE contains the clock generator and timers that drive the system operations. It also contains special instructions like CALL or LCALL which can be used for executing subroutines. The UART, SCI, SPI, and Timers modules allow data acquisition from external devices and monitor their status. The Timers module contains different types of timer configurations like timer/counter with reload or capture, watchdog timers, and prescalers.

The memory module of the S9S12XS256J0CAE consists of an EEPROM and program memory ranging from 256 bytes to 2MB of space. This module can be used to store data and instructions, and can be accessed by the CPU. The Battery Backup is used to maintain the program memory in case of power failure and protect data stored in EEPROM.

The peripheral modules of the S9S12XS256J0CAE microcontroller include SCI, SPI, I2C and PWM modules that allow communication and control external devices like sensors and actuators. These modules provide low-power operation and fast communication between external components and the microcontroller. They are useful for data acquisition, control and monitoring of various external devices.

The S9S12XS256J0CAE microcontroller is an ideal choice for embedded applications and is widely used for various industrial and medical applications. Its low power consumption design, wide range of features and its reliable performance make it the best choice for applications that require precision timing and control.

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

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