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  1. Packs
  2. PIC32CM-GV_DFP

Overview

The Microchip PIC32CM-GV Series Device Family Pack (DFP) is a CMSIS-Pack that:

Related packs

    - pack: ARM::CMSIS

Devices

PIC32CM1602GV00032

A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the PIC32CM1602GV series is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features:16KB of flash and 2KB of SRAMUp to 48MHz operating frequencyFour serial communication modules (SERCOM) configurable as UART/USART, SPI or I2C, six 16-bit timer/counters, 32-bit Real Time clock and calendar, 10 PWM channels, one 10-channel 12-bit ADC, one 10-bit DACSupport for up to 60 touch channels1.62V to 3.63V power supplySupported by MPLAB X IDE and MPLAB Harmony.

Documentation:

Application Notes:

Additional Documents:

PIC32CM1602GV00048

A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the PIC32CM1602GV is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features:16KB of flash and 2KB of SRAMUp to 48MHz operating frequencySix serial communication modules (SERCOM) configurable as UART/USART, SPI or I2C, eight 16-bit timer/counters, 32-bit Real Time clock and calendar, 16 PWM channels, one 14-channel 12-bit ADC, one 10-bit DACSupport for up to 120 touch channels1.62V to 3.63V power supplySupported by MPLAB X IDE and MPLAB Harmony.

Documentation:

Application Notes:

Additional Documents:

PIC32CM1602GV00064

A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the PIC32CM1602GV is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features:16KB of flash and 2KB of SRAMUp to 48MHz operating frequencySix serial communication modules (SERCOM) configurable as UART/USART, SPI or I2C, eight 16-bit timer/counters, 32-bit Real Time clock and calendar, 16 PWM channels, one 20-channel 12-bit ADC, one 10-bit DACSupport for up to 256 touch channels1.62V to 3.63V power supplySupported by MPLAB X IDE and MPLAB Harmony.

Documentation:

Application Notes:

Additional Documents:

PIC32CM3204GV00032

A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the PIC32CM3204GV is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features:32KB of Flash and 4KB of SRAM48MHz operating frequencyFour serial communication modules (SERCOM) configurable as UART/USART, SPI or I2C, six 16-bit timer/counters, 32-bit Real Time clock and calendar, 10 PWM channels, one 10-channel 12-bit ADC, one 10-bit DACSupport for up to 256 touch channels1.62V to 3.63V power supplySupported by MPLAB X IDE and MPLAB Harmony.

Documentation:

Application Notes:

Additional Documents:

PIC32CM3204GV00048

A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the PIC32CM3204GV is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features:32KB of flash and 4KB of SRAMUp to 48MHz operating frequencySix serial communication modules (SERCOM) configurable as UART/USART, SPI or I2C, eight 16-bit timer/counters, 32-bit Real Time clock and calendar, 16 PWM channels, one 14-channel 12-bit ADC, one 10-bit DACSupport for up to 120 touch channels1.62V to 3.63V power supplySupported by MPLAB X IDE and MPLAB Harmony.

Documentation:

Application Notes:

Additional Documents:

PIC32CM3204GV00064

A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the PIC32CM3204GV is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features:32KB of flash and 4KB of SRAMUp to 48MHz operating frequencySix serial communication modules (SERCOM) configurable as UART/USART, SPI or I2C, eight 16-bit timer/counters, 32-bit Real Time clock and calendar, 16 PWM channels, one 20-channel 12-bit ADC, one 10-bit DACSupport for up to 256 touch channels1.62V to 3.63V power supplySupported by MPLAB X IDE and MPLAB Harmony.

Documentation:

Application Notes:

Additional Documents:

MISRA-C:2023 Compliance Deviations List

Deviation ID: MFWCG-40

  • Rule 5.5: Identifiers shall be distinct from macro names.
  • Use case: Identifiers corresponding to register names.

Example:

```C typedef union { struct { uint32_t GPIO:29; uint32_t :3; } vec; uint32_t reg; } ECIA_SRC8_Type;

#define GPIO (0x40081000) ```

  • Reason: Access to hardware.

The macros expand into the same identifiers, which allow users to detect for the presence of specific registers during preprocessing.

  • Scope: Device headers for the DEC15xx and MEC15xx family (<device-name>.h).

Deviation ID: MFWCG-42

  • Rule 20.9: All identifiers used in the controlling expression of #if or #elif preprocessing directives shall be #define'd before evaluation.
  • Use case: Use of compiler builtin macros.

Example:

C #ifdef (__ARM_FP == 14) || (__ARM_FP == 4) fpu_enable(); #endif

  • Reason: Access to hardware.

Headers may rely on builtin macros from the compiler and are written under the assumption that if the macro is not defined, its value is zero.

  • Scope: All device headers (<device-name>.h).

Deviation ID: MFWCG-43

  • Rule 21.1: #define and #undef shall not be used on a reserved identifier or reserved macro name.
  • Use case: Reserved names, beginning with _ followed by a capital letter or __ followed by a lower-case are within the compiler's namespace.

Example:

C #define __IO volatile

  • Reason: Access to hardware; Code Quality (Usability: Accessibility).

Within these headers originate many reserved names that are within the compiler's namespace.

  • Scope: All device headers (<device-name>.h).

Deviation ID: MFWCG-44

  • Rule 21.2: A reserved identifier or reserved macro name shall not be declared.
  • Use case: Reserved names, beginning with _ followed by a capital letter or __ followed by a lower-case are within the compiler's namespace.

Example:

C extern const VECTOR_TABLE_Type __VECTOR_TABLE;

  • Reason: Access to hardware; Code Quality (Usability: Accessibility).

Within these headers originate many reserved names that are within the compiler's namespace.

  • Scope: All device headers (<device-name>.h).

Support

For support questions, contact Microchip Support through https://www.microchip.com/en-us/support.