ATMEGA1284P-MU Microcontrollers: Datasheet, Distinction


 ATMEGA1284P-MU-main picture

 (128KB 64K x 16 FLASH AVR 8-Bit Microcontroller AVR® ATmega Series ATMEGA1284P 44 Pin 20MHz 44-VFQFN Exposed Pad)

Today we're bringing you the datasheet pinout, features, datasheet, the difference between ATMEGA1284P-MU and ATMEGA1284P-MUR and more detailed information.

 

Catalog

ATMEGA1284P-MU Pinout

ATMEGA1284P-MU CAD Model

ATMEGA1284P-MU Overview

ATMEGA1284P-MU Features

ATMEGA1284P-MU Applications

ATMEGA1284P-MU Alternatives

ATMEGA1284P-MU vs ATMEGA1284P-MUR

ATMEGA1284P-MU Block Diagram

ATMEGA1284P-MU Package

Datasheet PDF

Specifications

Product comparison

 

 

 

ATMEGA1284P-MU Pinout

R3}5()F{T@HH%SDDEFR{D]9 

ATMEGA1284P-MU CAD Model

Symbol

 

ATMEGA1284P-MU-symbol 

 

Footprint

 

 ATMEGA1284P-MU-footprint

 

3D-model

 

 ATMEGA1284P-MU-3d model

 

 

ATMEGA1284P-MU Overview

This Microcontroller comes in a 44-VFQFN Exposed Pad package. This Microcontroller has 32 I/Os. This Microcontroller is mounted using the Surface Mount mounting type. The 8-Bit core is the core of the MCU. There is a type of program memory called FLASH in the Microcontroller. The temperature range of this Microcontroller is within the range of -40°C~85°C TA. It is part of the ATmega series of electrical components. Microcontroller has abundant program memory size of 128KB 64K x 16. The AVR Core Processor powers the device and is one of its key features.

 

The device is RISC uPs/uCs/Peripheral ICs Type. During the manufacture of the IC chip, there is a number 44 of terminations. A 8-bit operation is performed by this part. MCU chip has NO DMA channels. 128kB is the memory size of the part. There are a number of alternatives to the base part number ATMEGA1284P that you can find. An effective performance can be achieved at a frequency of 20MHz. On the chip, there are 44 pins that are accessible. In total, there are 3 timers/counters on the device. It has a total of 8 ADC channels. This device uses 6 PWM channels to generate the voltage. There are 1 I2C channels included in the part, which has been designed for the purpose. As part of the part, 2 serial I/Os have been incorporated. 3 external interrupts are included in the eletrical part.


ATMEGA1284P-MU Features

44-VFQFN Exposed Pad package
Mounting type of Surface Mount
Microcontrollers subcategory

ATMEGA1284P-MU Applications

There are a lot of ATMEGA1284P-MU Microcontroller applications.

Removable disks

Robots

Routers

DVD\DV\MP3 players

Guidance-GPS

Sonography (Ultrasound imaging)

Glucose monitoring systems

Calculator

Televisions

Tape drives

 

 

 

ATMEGA1284P-MU Alternatives

ATmega164A/164PA/324A/324PA/644A/644PA/1284/1284P share the same features:

ATMEGA1284P-MU vs ATMEGA1284P-MUR

 

ATMEGA1284P-MU Block Diagram

 ATMEGA1284P-MU-block diagram

The AVR core combines a rich instruction set with 32 general purpose working registers. All the 32 registers are directly connected to the Arithmetic Logic Unit (ALU), allowing two independent registers to be accessed in one single instruction executed in one clock cycle. The resulting architecture is more code efficient while achieving throughputs up to ten times faster than conventional CISC microcontrollers.


The AVR core integrates a comprehensive set of instructions with 32 versatile working registers. Each of these registers is directly linked to the Arithmetic Logic Unit (ALU), enabling the simultaneous access of two independent registers in a single instruction, executed within one clock cycle. This unique architecture not only enhances code efficiency but also achieves throughputs up to ten times higher compared to traditional CISC microcontrollers.

 

 

ATMEGA1284P-MU Package

ATMEGA1284P-MU-packaging 

Datasheet PDF

Please DOWNLOAD the datasheets and manufacturer documentation for the ATMEGA1284P-MU microcontroller.

 

Specifications

 


Product comparison

Differences between ATmega164A, ATmega164PA, ATmega324A, ATmega324PA, ATmega644A, ATmega644PA, ATmega1284 and 

ATmega1284P,the ATmega164A/164PA/324A/324PA/644A/644PA/1284/1284P share the same features:

ATMEGA1284P-MU-features

The ATmega164A/164PA/324A/324PA/644A/644PA/1284/1284P provide the following features:

16/32/64/128Kbytes of In-System Programmable Flash with Read-While-Write capabilities, 512/1K/2K/4Kbytes EEPROM, 1/2/4/16Kbytes SRAM, 32 general purpose /O lines, 32 general purpose working registers, Real Time Counter (RTC), three (four for ATmega1284/1284P) flexible Timer/Counters with compare modes and PWM, 2 USARTs, a byte oriented two-wire Serial Interface, a 8-channel, 10-bit ADC with optional differential input stage with programmable gain, programmable Watchdog Timer with Internal Oscillator, an SPI serial port, IEEE std. 1149.1 compliant JTAG test interface, also used for accessing the On-chip Debug system and programming and six software selectable power saving modes. The idle mode stops the CPU while allowing the SRAM, Timer/Counters, SPI port, and interrupt system to continue functioning. The Power-down mode saves the register contents but freezes the Oscillator, disabling all other chip functions until the next interrupt or Hardware Reset. In Power-save mode, the asynchronous timer continues to run, allowing the user to maintain a timer base while the rest of the device is sleeping. The ADC Noise Reduction mode stops the CPU and all I/O modules except Asynchronous Timer and ADC, to minimize switching noise during ADC conversions. In Standby mode, the Crystal/Resonator Oscillator is running while the rest of the device is sleeping. This allows very fast start-up combined with low power consumption. In Extended Standby mode, both the main Oscillatorand the Asynchronous Timer continue to run.

 

The device is manufactured using the high-density nonvolatile memory technology. The On-chip ISP Flash allows the program memory to be reprogrammed in-system through an SPI serial interface, by a conventional nonvolatile memory programmer, or by an On-chip Boot program running on the AVR core. The boot program can use any interface to download the application program in the application Flash memory. Software in the boot Flash section will continue to run while the Application Flash section is updated, providing true Reading-While-Writing operation. By combining an 8-bit RISC CPU with In-System Self-Programmable Flash on a monolithic chip, the ATmega164A/164PA/324A/324PA/644A/644PA/1284/1284P is a powerful microcontroller that provides a highly flexible and cost effective solution to many embedded control applications.

 

The ATmega164A/164PA/324A/324PA/644A/644PA/1284/1284P is supported with a full suite of program and system development tools including: C compilers, macro assemblers, program debugger/simulators, in-circuit emulators, and evaluation kits.

 

Related Articles

2N5551 vs BC547 BJTs Comparison

Release time:2024-05-05       Page View:2149
The 2N5551 and BC547 are both NPN bipolar junction transistors (BJTs) commonly used in various electronic circuits. While they share some similarities, there are also key differences between them, making them suitable for different applications. This article provides a comprehensive comparison of these two transistors, focusing on their specifica...

LM3914 vs LM3915 vs LM3916 vs LM3917 How They Work?

Release time:2024-05-04       Page View:1695
This post is about LM3914 vs LM3915 vs LM3916 vs LM3917 detailed comparison.

Top 12 electronic component distributors 2024

Release time:2024-04-25       Page View:6216
Explore the leading electronic component distributors of 2023. From Arrow Electronics to WPG Holdings, discover how top distributors are shaping the global market.

TPS5450DDAR Datasheet, Pinout, Specification

Release time:2024-04-22       Page View:551
Understanding the : A Comprehensive GuideThe TPS5450DDAR is a highly integrated, step-down converter with an integrated MOSFET, designed to deliver up to 3A of continuous output current.

C945 Transistor Datasheet:C1815 VS C945 Comparison

Release time:2024-04-18       Page View:3138
C945 Transistor Datasheet: Features, Applications, and Comparison with C1815. Learn about the C945's pinout, circuits,operation, and how to use it. C945 VS C1815

Lithium Battery Charger TP4056: Datasheet, Schematic, Price

Release time:2024-04-15       Page View:12752
TP4056 charging module: Single-cell Li-ion charger. Find TP4056 datasheet & TP4056 pinout & TP4056 power path circuit here

TDA7265 Audio Amplifier:How To Connect And Test?

Release time:2024-04-02       Page View:3064
TDA7265 DatasheetTDA7265 PinoutTDA7265 Circuit DiagramTDA7265 EquivalentTDA7265 ICPriceTDA7265 FeaturesTDA7265 PackageTDA7265 ApplicationsTDA7265 Applications CircuitHow to Connect and TestTDA7265 Audio Amplifier?TDA7265 VS TDA7269VS TDA2050VS TDA7294What isTDA7265?The TDA7265 is a pop...

1n4007 vs 1n5399 Rectifier Diode: Pinout, Datasheet, Specifications

Release time:2024-03-30       Page View:5127
**1N4007 vs 1N5399 Rectifier Diode: Pinout, Datasheet, Specifications****Introduction**Rectifier diodes are essential components in electronic circuits, responsible for converting alternating current (AC) to direct current (DC). Among the commonly used rectifier diodes are the 1N4007 and 1N5399.

SN74HC595N vs SN74HC574N Shift Register Datasheet,Specs

Release time:2024-03-20       Page View:728
Dear friends,this post will help you make a better choice betweenSN74HC595N vs SN74HC574N for you, and revealShift Register Datasheet,Specs.SN74HC595N:Shift Register 2/6V -40°C~85°C Shift Register 74HC Series 74HC595 16 Pin 5V 16-DIP (0.300, 7.62mm)SN74HC574N:2V~6V 36MHz 8 Bit D-Type Flip Flop DUAL 74...

H6 vs H7 vs H8 vs H9 Battery Difference and Choosing Guide

Release time:2024-03-14       Page View:11149
This post is about H6 vs H7 vs H8 vs H9 Battery Difference and Choosing Guide: Understanding the Variances and Making Informed Decisions

ADRV9009BBCZ RF Description, Datasheet, Specification

Release time:2024-03-14       Page View:360
This post will help you go through the infomation about ADRV9009BBCZ,including Datasheet,Pinout, block diagram, Specification ,etc.ADRV9009BBCZOverviewADRV9009BBCZGeneral DescriptionTheADRV9009is a highly integrated, radio frequency (RF), agiletransceiver offering dual transmitters and receivers, integratedsynthesizers, ...

A3141, A3142, A3143, and A3144 Hall Effect Sensor Differences

Release time:2024-03-11       Page View:1589
Introduction:Hall effect sensors are widely used for various sensing applications, ranging from position sensing to current measurement. The A3141, A3142, A3143, and A3144 are popular Hall effect sensor models manufactured by Allegro Microsystems. While they may appear similar at first glance, each sensor in this series offers unique features and ...
RFQ