MKE04Z128VLH 64LQFP

MKE04Z128VLH 64LQFP

Category: Available (Qty:9999999)
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Description

BUY MKE04Z128VLH 64LQFP https://www.utsource.net/itm/p/12607997.html

Parameter Description Value
Package Type The type of package 64LQFP
Microcontroller Family Family of the microcontroller MKE04Z128VLH
Flash Memory Size Size of non-volatile memory for storing code and data 128 KB
RAM Size Size of volatile memory for temporary data storage 16 KB
CPU Core Central Processing Unit ARM Cortex-M0+
Clock Speed Maximum operating frequency of the CPU 48 MHz
Operating Voltage Range Voltage range at which the device can operate 1.71 V to 3.6 V
Temperature Range Operating temperature range -40°C to +85°C
I/O Pins Number of input/output pins available 64
ADC Channels Number of Analog-to-Digital Converter channels 12-bit, up to 16 channels
UART/SPI/I2C Interfaces Communication interfaces available UART: 2, SPI: 2, I2C: 2
Timer Modules Types of timer modules available 2 x 16-bit
Low Power Modes Available low-power modes Sleep, Stop, VLPR
Watchdog Timer Presence of a watchdog timer Yes
DMA Channels Number of Direct Memory Access channels 4

Instructions:

  1. Power Supply: Ensure the operating voltage is within the specified range (1.71 V to 3.6 V) to prevent damage.
  2. Clock Configuration: Configure the clock settings according to your application needs, ensuring not to exceed the maximum clock speed of 48 MHz.
  3. Pin Configuration: Refer to the datasheet for detailed pin configurations and ensure correct connections for all I/O pins.
  4. Low Power Modes: Utilize sleep, stop, or very low power run (VLPR) modes to extend battery life in portable applications.
  5. Peripheral Setup: Initialize ADC, UART, SPI, and I2C peripherals as required by your application.
  6. Watchdog Timer: Enable and configure the watchdog timer to ensure system stability.
  7. DMA Usage: Use DMA channels to offload the CPU from handling data transfers, improving efficiency.
  8. Programming Environment: Use a compatible IDE or programming toolchain that supports ARM Cortex-M0+ development.
  9. Flash Programming: Follow the manufacturer’s guidelines for programming the flash memory with your application code.
  10. Testing: After setup, thoroughly test the microcontroller in various conditions to ensure reliability and performance.
(For reference only)

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