MC912D60ACPV8

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Microcontroller

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MC912D60ACPV8 DataSheet

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MC912D60ACPV8 Details

The MC912D60ACPV8 is a microcontroller from NXP Semiconductors, offering versatile performance and features for embedded applications. This microcontroller is based on the 16-bit HC12 core architecture, providing enhanced processing power and peripheral capabilities. It is suitable for a wide range of applications including automotive electronics, industrial control systems, and consumer devices.

Pinout

  • 1 (VDD): Positive Power Supply
  • 2 (VSS): Ground
  • 3 (PTA0): Port A, Bit 0
  • 4 (PTA1): Port A, Bit 1
  • 5 (PTA2): Port A, Bit 2
  • 6 (PTA3): Port A, Bit 3
  • 7 (PTA4): Port A, Bit 4
  • 8 (PTA5): Port A, Bit 5

(Tip: For detailed pinout information, please refer to the corresponding datasheet.)

Key Features

  • High Performance: Offers enhanced processing power and performance with the HC12 core architecture.
  • Peripheral Capabilities: Includes a wide range of peripherals for versatile connectivity and control.
  • Embedded Flash Memory: Integrated flash memory for program storage and flexibility.
  • Analog-to-Digital Converter: Built-in ADC for analog sensor interfacing and data conversion.
  • Timers and PWM Channels: Supports multiple timers and PWM channels for precise timing and control.

Application

  • Automotive Electronics: Suitable for automotive control systems, engine management, and vehicle networking.
  • Industrial Automation: Used in industrial control applications for monitoring and controlling processes.
  • Consumer Electronics: Ideal for consumer devices requiring embedded control and connectivity.

Where to Use

The MC912D60ACPV8 is ideal for a wide range of applications in automotive, industrial, and consumer electronics. It provides efficient processing and peripheral capabilities for embedded control and connectivity.

How to Use

Integrate the MC912D60ACPV8 into your system by connecting the power supply and ground pins appropriately. Utilize the GPIO pins for digital I/O operations and interface with external devices through the ADC and PWM channels. Ensure proper clock configuration and memory allocation for optimal performance. Refer to the datasheet for detailed usage instructions.

Equivalents

  • MC9S12DG256: A similar microcontroller with comparable features and performance.
  • MC9S12XEP100: An alternative microcontroller offering extended capabilities for advanced applications.

Complementary

The MC912D60ACPV8 can be complemented by the MC33772 battery management IC, providing comprehensive power management solutions for battery-operated devices.

When selecting complementary components, ensure compatibility and optimized performance for your application requirements.

Frequently Asked Questions

Q: What is the clock speed of the MC912D60ACPV8?

A: The MC912D60ACPV8 operates at a maximum clock speed of XX MHz. Refer to the datasheet for detailed timing specifications and configurations.

Q: Is the MC912D60ACPV8 suitable for real-time control applications?

A: Yes, the MC912D60ACPV8 is designed for real-time control applications due to its fast processing capabilities and peripheral features.

Specifications

The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.

ECCN (US) EAR99 Part Status ! Obsolete
SVHC Yes SVHC Exceeds Threshold Yes
Automotive No PPAP No
Family Name HC12 Instruction Set Architecture CISC
Device Core CPU12 Core Architecture HC12
Maximum CPU Frequency (MHz) 8 Maximum Clock Rate (MHz) 8
Data Bus Width (bit) 16 Program Memory Type ! Flash
Program Memory Size 60KB RAM Size 2KB
Maximum Expanded Memory Size 64KB Programmability Yes
Number of I/Os 68 No. of Timers 8
PWM 1 Number of ADCs Single
ADC Channels 8 ADC Resolution (bit) 10
USART 0 UART 0
USB 0 SPI 1
I2C 0 I2S 0
CAN 1 Ethernet 0
Watchdog 1 Special Features CAN Controller
Minimum Operating Supply Voltage (V) 4.5 Typical Operating Supply Voltage (V) 5
Maximum Operating Supply Voltage (V) 5.5 Minimum Operating Temperature (°C) -40
Maximum Operating Temperature (°C) 85 Mounting Surface Mount
Package Height 1.45(Max) Package Width 20
Package Length 20 PCB changed 112
Standard Package Name QFP Supplier Package LQFP
Pin Count ! 112 Lead Shape Gull-wing

Datasheet PDF

Datasheets record the features, absolute maximum ratings, applications and more of the device, which benefit a lot as an overall guide to the specific application of the part.

Preliminary Specification MC912D60ACPV8 PDF Download

FAQs

What is MC912D60ACPV8?

The MC912D60ACPV8 is a member of the 16-bit MC9S12D-Family microcontroller series manufactured by NXP Semiconductors. It is designed for automotive and industrial applications that require high performance, robust communication interfaces, and real-time control capabilities.

How Does MC912D60ACPV8 Work?

The MC912D60ACPV8 operates as a 16-bit microcontroller, executing tasks through its CPU core, integrated peripherals, and memory components. It features a sophisticated set of on-chip modules for controlling various functions such as timers, PWM outputs, ADC, and communication interfaces like CAN and SPI.

How Many Pins does MC912D60ACPV8 have and What are the Functions of the Pinout Configuration?

The MC912D60ACPV8 is available in a 112-pin LQFP package. Some of the key pin functions include:

  • VDD: Power supply pin.
  • VSS: Ground pin.
  • IRQ: Interrupt request pin.
  • RESET: Reset pin.
  • PTA0-PTA7: Port A pins for general-purpose I/O.
  • PTB0-PTB7: Port B pins for general-purpose I/O.
  • SCI1_TX, SCI1_RX: Serial Communication Interface pins.
  • AD1-AD8: Analog input pins for the ADC module.

What are the Pros and Cons of MC912D60ACPV8?

Pros:

  • Robust features: Offers a wide range of integrated peripherals and communication interfaces suitable for diverse applications.
  • High performance: Provides efficient real-time processing capabilities for demanding tasks.
  • Automotive grade: Meets automotive industry standards for reliability and quality.
  • Enhanced security: Includes security features to protect embedded systems from unauthorized access.
  • Scalability: Can be easily integrated into various system architectures due to its flexibility.

Cons:

  • Complexity: Might have a steeper learning curve for beginners due to its advanced features and capabilities.
  • Cost: Higher cost compared to simpler microcontrollers for less demanding applications.
  • Power consumption: May consume more power depending on the application, impacting battery life in portable devices.

Are There Any Equivalents/Alternatives to MC912D60ACPV8 for Recommendation?

  • Alternative microcontrollers to the MC912D60ACPV8 include the STM32 series from STMicroelectronics and the PIC24 series from Microchip.
  • Equivalents to consider are the MPC5604 from NXP Semiconductors and the TMS320F28027 from Texas Instruments.

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