Allicdata Part #: | S9S12G240F0CLH-ND |
Manufacturer Part#: |
S9S12G240F0CLH |
Price: | $ 3.40 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | NXP USA Inc |
Short Description: | 16-BIT MCU S12 CORE 240KB FLAS |
More Detail: | 12V1 HCS12 Microcontroller IC 16-Bit 25MHz 240KB (... |
DataSheet: | S9S12G240F0CLH Datasheet/PDF |
Quantity: | 1000 |
800 +: | $ 3.09550 |
Program Memory Size: | 240KB (240K x 8) |
Supplier Device Package: | 64-LQFP (10x10) |
Package / Case: | 64-LQFP |
Operating Temperature: | -40°C ~ 85°C (TA) |
Oscillator Type: | Internal |
Data Converters: | A/D 16x10b |
Voltage - Supply (Vcc/Vdd): | 3.13 V ~ 5.5 V |
RAM Size: | 11K x 8 |
EEPROM Size: | 4K x 8 |
Program Memory Type: | FLASH |
Series: | HCS12 |
Number of I/O: | 54 |
Peripherals: | LVD, POR, PWM, WDT |
Connectivity: | CANbus, IrDA, LINbus, SCI, SPI |
Speed: | 25MHz |
Core Size: | 16-Bit |
Core Processor: | 12V1 |
Part Status: | Active |
Packaging: | Tray |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
S9S12G240F0CLH belongs to the family of embedded microcontrollers, the examples of which are mainly found in electronic devices, such as automobile ECUs, industrial equipment, and so on. S9S12G240F0CLH is specifically designed to meet the needs of embedded systems with high requirements and is able to face a wide range of application fields.
In terms of applications, S9S12G240F0CLH is commonly employed in sensor networks, embedded system and automation solutions. These systems can be found in buildings, such as heating, ventilation and air conditioning systems, and also in areas such as assisted living system for elderly, embedded automotive systems for controlling acceleration and braking, and mechatronic applications. Additionally, S9S12G240F0CLH embedded microcontrollers have also been useful in medical instrumentation and robotic systems. These microcontrollers are particularly useful in the area of robotics, as they can provide an adequate computing power, memory capacity and IO peripherals for the accurate operation of motor control.
The S9S12G240F0CLH is implemented in state-of-the-art 0.18-micrometer CMOS technology and is equipped with a powerful 32-bit embedded RISC CPU. It has two sets of independent clock domains within the same chip, with two bus clock domains. In addition, the S9S12G240F0CLH microcontroller comes with eight (8) 10-bit resolution A-D inputs. Moreover, this microcontroller also provides a power fail detector, a voltage regulator, two 16-bit timers, two 8-bit counters, two 16-bit capture/compare modules, a Vref module, a watchdog timer, a real time clock, and an on-chip oscillator.
Regarding the operation of the S9S12G240F0CLH, this microcontroller implements a von Neumann architecture. This means that the same data and program buses are used for both instruction and data transfers. Every instruction is loaded from memory and is then executed by the CPU. Additionally, the CPU follows the instructions provided by the program and fetches the operands from memory in order to execute the instructions. In other words, the instructions are fetched from memory and then the data to be processed is fetched from memory.
The S9S12G240F0CLH also implements an internal bus concept. This means that the CPU has direct access to internal registers and RAM, which can be accessed at any time. The S9S12G240F0CLH microcontroller is also equipped with a direct memory access (DMA) unit for transferring data from one register to another without CPU involvement. This DMA unit allows data to be transferred quickly and reliably from one memory location to another.
In summary, the S9S12G240F0CLH embedded microcontroller is a versatile device that can be used in a variety of applications. Its powerful 32-bit RISC CPU, two sets of independent clock domains, and eight 10-bit resolution A-D inputs allow it to be used in a variety of embedded system applications. Additionally, its on-chip oscillator and internal bus concept make it an effective solution for applications requiring low-power consumption without sacrificing performance.
The specific data is subject to PDF, and the above content is for reference
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