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P87C52X2BA
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ManufacturerNXP Semiconductors
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Mfr. Part #P87C52X2BA
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In Stock7176
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Specifications
| Attribute | Value |
| Core | 80C51 |
| Program Memory Size | 8 kB |
| Data RAM Size | 256 B |
| Maximum Clock Frequency | 33 MHz |
| Number of I/Os | 32 I/O |
| Supply Voltage - Min | 4.5 V |
| Supply Voltage - Max | 5.5 V |
| Mounting Style | SMD/SMT |
| Data Bus Width | 8 bit |
| Minimum Operating Temperature | 0 C |
| Maximum Operating Temperature | + 70 C |
| Series | 87C |
| Packaging | Tube |
| Brand | NXP Semiconductors |
| Height | 3.68 mm |
| Length | 16.66 mm |
| Number of Timers/Counters | 3 Timer |
| Product Type | 8-bit Microcontrollers - MCU |
| Program Memory Type | OTP |
| Factory Pack Quantity:Factory Pack Quantity | 26 |
| Subcategory | Microcontrollers - MCU |
| Width | 16.66 mm |
| Part # Aliases | P87C52X2BA,512 |
| Unit Weight | 0.084185 oz |
| Package / Case | PLCC-44 |
| Interface Type | UART |
Overview
Description
This microcontroller also offers enhanced features such as an increased number of I/O ports, a built-in watchdog timer, and multiple interrupt sources, making it suitable for a variety of applications in embedded systems. It operates at a voltage range of 4.0 to 5.5V and can function at clock speeds up to 40MHz.
The P87C52X2BA is particularly useful in applications requiring real-time processing and control, such as industrial automation, consumer electronics, and automotive systems. Its compatibility with existing 8051 software and development tools makes it easier for developers to transition or upgrade their projects.
Equivalent
Features
1. Architecture: It is built on the 8051 architecture, facilitating easy integration and compatibility with existing systems.
2. Memory: It includes 8KB of programmable Flash memory for code storage and 256 bytes of RAM for data manipulation.
3. I/O Ports: The microcontroller has 32 I/O pins that can be configured for various digital functions, providing flexibility for interfacing with peripherals.
4. Timers/Counters: It includes multiple 16-bit timers/counters for time-related operations and event counting.
5. Serial Communication: Supports UART for serial communication, enabling easy data transfer with other devices.
6. Interrupts: Up to five interrupt sources are available, allowing for responsive multitasking capabilities.
7. Low Power Consumption: Designed for low power operation, making it suitable for battery-operated devices.
8. Operating Voltage: Typically operates in the range of 4.0V to 5.5V.
These features make the P87C52X2BA suitable for various applications, including embedded systems and automation.
Pinout
- Power Supply: VCC (Pin 40) and GND (Pin 20)
- I/O Ports: Four 8-bit ports (Port 0, Port 1, Port 2, and Port 3) for input/output functions.
- Oscillator and Clock: Pins for external oscillator (XTAL1 and XTAL2).
- Reset: A reset pin (RST) for initializing the microcontroller.
- Serial Communication: Pins for UART (RXD and TXD) for serial communication.
- Interrupts: External interrupt pins (INT0 and INT1) and timer overflow interrupts.
- Timers: Timer 0 and Timer 1 control pins for timing applications.
This microcontroller is widely used in embedded systems for various applications due to its flexibility, integrated peripherals, and extensive I/O capability.
Manufacturer
NXP was formed in 2006 as a spin-off from Philips and has since grown to be a significant player in the semiconductor industry, providing innovative technologies for a wide range of applications. The P87C52X2BA is an 8-bit microcontroller based on the MCS-51 architecture, commonly used in embedded systems for its versatility and efficiency in handling various tasks.
NXP Semiconductors is recognized for its commitment to quality, reliability, and technological advancement, catering to a diverse range of markets.
Application
1. Industrial Automation: Control systems and process automation.
2. Consumer Electronics: Home appliances, remote controls, and smart devices.
3. Automotive Electronics: Engine control units, dashboard displays, and sensor interfaces.
4. Telecommunications: Interfaces for communication devices and signal processing.
5. Medical Devices: Patient monitoring systems and diagnostic equipment.
6. Robotics: Control of motors and sensors in robotic applications.
Its versatility, programmability, and integration capabilities make it suitable for various applications requiring reliable performance.