EEWORLDEEWORLDEEWORLD

Part Number

Search

PIC18F26K80-E-SP

Description
8-bit Microcontrollers - MCU 64KB FL 4KBRM 16MIPS 12bit ADC CTMU
Categorysemiconductor    The embedded processor and controller   
File Size143KB,15 Pages
ManufacturerMicrochip
Websitehttps://www.microchip.com
Download Datasheet Parametric View All

PIC18F26K80-E-SP Online Shopping

Suppliers Part Number Price MOQ In stock  
PIC18F26K80-E-SP - - View Buy Now

PIC18F26K80-E-SP Overview

8-bit Microcontrollers - MCU 64KB FL 4KBRM 16MIPS 12bit ADC CTMU

PIC18F26K80-E-SP Parametric

Parameter NameAttribute value
Product AttributeAttribute Value
ManufacturerMicrochip
Product Category8-bit Microcontrollers - MCU
RoHSDetails
Mounting StyleThrough Hole
Package / CaseSPDIP-28
CorePIC18
Data Bus Width8 bit
Maximum Clock Frequency64 MHz
Program Memory Size64 kB
Data RAM Size3.6 kB
ADC Resolution12 bit
Number of I/Os24 I/O
Operating Supply Voltage1.8 V to 5.5 V
Minimum Operating Temperature- 40 C
Maximum Operating Temperature+ 125 C
Interface TypeI2C, SPI, USART
PackagingTube
ProductMCU
Program Memory TypeFlash
Data RAM TypeEEPROM
Number of Timers/Counters5 Timer
NumOfPackaging1
Processor SeriesPIC18
Factory Pack Quantity15
Unit Weight0.077603 oz
PIC18F66K80
PIC18F66K80 Family
Silicon Errata and Data Sheet Clarification
The PIC18F66K80 family devices that you have
received conform functionally to the current Device
Data Sheet (DS30009977G), except for the anomalies
described in this document.
The silicon issues discussed in the following pages are
for silicon revisions with the Device and Revision IDs
listed in
Table 1.
The silicon issues are summarized in
Table 2.
The errata described in this document will be addressed
in future revisions of the PIC18F66K80 silicon.
Note:
This document summarizes all silicon
errata issues from all revisions of silicon,
previous as well as current. Only the
issues indicated in the last column of
Table 2
apply to the current silicon
revision (A6).
For example, to identify the silicon revision level
using MPLAB IDE in conjunction with a hardware
debugger:
1.
2.
3.
4.
Using the appropriate interface, connect the
device to the hardware debugger.
Open an MPLAB IDE project.
Configure the MPLAB IDE project for the
appropriate device and hardware debugger.
Based on the version of MPLAB IDE you are
using, do one of the following:
a) For MPLAB IDE 8, select
Programmer >
Reconnect.
b) For MPLAB X IDE, select
Window >
Dashboard
and click the Refresh Debug
Tool Status icon (
).
Depending on the development tool used, the
part number and Device Revision ID value
appear in the Output window.
Note:
If you are unable to extract the silicon
revision level, please contact your local
Microchip sales office for assistance.
5.
Data Sheet clarifications and corrections start on
page 10,
following the discussion of silicon issues.
The silicon revision level can be identified using the
current version of MPLAB
®
IDE and Microchip’s
programmers, debuggers and emulation tools, which
are available at the Microchip corporate web site
(www.microchip.com).
The DEVREV values for the various PIC18F66K80
silicon revisions are shown in
Table 1.
Revision ID for Silicon Revision
(2)
A2
A3
A4
A6
TABLE 1:
SILICON DEVREV VALUES
Device ID
(1)
Part Number
PIC18F66K80
60E0
PIC18F65K80
6140
PIC18F46K80
6100
PIC18F45K80
6160
PIC18F26K80
6120
PIC18F25K80
6180
2h
3h
4h
6h
PIC18LF66K80
61C0
PIC18LF65K80
6220
PIC18LF46K80
61E0
PIC18LF45K80
6240
PIC18LF26K80
6200
PIC18LF25K80
6260
Note 1:
The Device IDs (DEVID and DEVREV) are located at the last two implemented addresses of Configuration
memory space. They are shown in hexadecimal in the format, “DEVID DEVREV”.
2:
Refer to the
“PIC18FXXK80 Family Flash Microcontroller Programming Specification”
(DS39972) for
detailed information on Device and Revision IDs for your specific device.
2011-2017 Microchip Technology Inc.
DS80000519N-page 1
Intelligent high-frequency switching rectifier charging power supply for electric power
The promotion and application of microcomputer products in power systems has led to higher requirements for power supply. The DC power supply in the power systems of Western developed countries such a...
xieking Power technology
Design and implementation of a multi-port SDRAM controller
Abstract: A multi-port SDRAM controller based on FPGA is designed and implemented, which can be used for multiple data caches and can efficiently utilize bandwidth. This paper adopts the design concep...
bkkman DIY/Open Source Hardware
stm32hardfaultexception problem thanks
I made a small board with ucos+stm32 for analog acquisition of modbus. After a while, it can run normally when nothing is connected to the acquisition end and the acquisition result is zero. However, ...
zry113 stm32/stm8
Can the STM32 with FSMC support multiple SRAMs?
I want to connect 4 8Mbit SRAMs,is that ok?...
fs3328787 stm32/stm8
Windows mobile c++ group: 14753690.
Welcome to join the group. Windows mobile c++ group: 14753690....
czl1983 Embedded System
MSC driver optimization of VSF's USB slave protocol stack
[i=s]This post was last edited by versaloon on 2015-12-14 19:45[/i] The MSC part of the USB slave protocol stack in VSF was previously implemented using a round-robin architecture. Now that VSF has ad...
versaloon Embedded System

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2692  1043  2435  2104  1698  55  21  50  43  35 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号