WMSIC Electronic Components

MICROCHIP 25LC128T-I/SN 25LC128T

Model25LC128T-I/SN
PackageSOIC-8
BrandMICROCHIP
Price Price on request Electronic component prices change quickly with market supply and demand. Please refer to the latest WMSIC quotation for current pricing.
Configuration
1 options
Configuration 26+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
MICROCHIP 25LC128T-I / SN
Type
MICROCHIP
Minimum package
3300 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
MICROCHIP
Electronic Component
25LC128T-I/SN
Electronic Component
1
Package
SOIC-8
Electronic Component
EEPROM
Electronic Component
0.118g
Electronic Component
1
Features
Built-in Latch(WEL)
Electronic Component
BM0257688521
Electronic Component
128Kbit
Operating Temperature
40℃~+85℃
Operating Voltage
2.5V~5.5V
Interface Type
SPI
Electronic Component
100
Clock Frequency(fc)
10MHz

For datasheets, package documents, compatible-part guidance, or other technical resources, contact WMSIC customer service. Availability is confirmed case by case.

25LC128T-I/SN 产品概述

一、产品简介

25LC128T-I/SN 是 MICROCHIP(美国微芯)推出的一款工业级 SPI 串行 EEPROM,存储容量为 128Kbit(16KB)。器件工作电压范围宽(2.5V 至 5.5V),支持最高 10MHz 的 SPI 时钟,工作温度范围 -40℃ 至 +85℃,封装为 SOIC-8。该器件以低功耗、小封装、长数据保持和高写入寿命为特点,适用于需要可靠非易失性存储的各种嵌入式与工业控制场景。

二、主要技术参数

  • 接口类型:SPI(串行外设接口)
  • 存储容量:128Kbit(16K 字节)
  • 最高时钟频率(fc):10 MHz
  • 工作电压:2.5 V ~ 5.5 V(兼容 3.3V 与 5V 系统)
  • 写周期时间(Tw):典型 5 ms(单次写入完成所需时间)
  • 数据保留(TDR):200 年(典型数据保持期)
  • 写周期寿命:1,000,000 次
  • 工作温度:-40℃ ~ +85℃
  • 封装:SOIC-8
  • 品牌:MICROCHIP(美国微芯)

三、关键特性与优势

  • 宽电源范围:2.5V–5.5V 使器件能够方便地与多种微控制器和逻辑电平系统直接接口,减少电平转换需求。
  • 标准 SPI 接口:采用标准 SPI 总线协议(片选/时钟/数据输入/数据输出),便于在现有系统中集成,支持米字形布线与多器件总线共享。
  • 高可靠性:数据保持 200 年与 1,000,000 次的写入寿命,适合对数据完整性与长期保存有严格要求的应用。
  • 低功耗与小封装:适合空间受限的嵌入式设备和便携式产品,待机/工作状态下功耗低。
  • 工业级温度范围:-40℃ 至 +85℃,适用于工业控制、汽车电子(非高温车规)等环境。

四、典型应用场景

  • 工业控制器:参数、校准数据、日志的持久化存储。
  • 消费电子:设备配置、序列号、固件辅助数据存储。
  • 物联网终端:配网信息、设备状态、校准参数保存。
  • 医疗与测试设备:配置与历史记录的非易失性备份。
  • 通讯设备与网络设备:MAC 地址、配置文件与启动参数存储。

五、设计与使用建议

  • 电源滤波与去耦:建议在 VCC 与 GND 之间放置 0.1µF 陶瓷旁路电容,靠近器件供电脚,以抑制电源噪声并提高稳定性。
  • SPI 时序与模式:器件兼容标准 SPI 时序;在具体应用中请参照数据手册确认支持的 SPI 模式与时钟极性/相位(CPOL/CPHA),并确保在最高 10MHz 下信号完整性良好。
  • 写保护与保持引脚:如果设计中不使用 WP/HOLD 功能,建议按照器件数据手册通过上拉处理以避免误动作;若需要保护关键数据,可在系统中利用 WP 引脚实现硬件写保护。
  • 写入管理:为延长器件寿命并优化性能,建议采用扇区管理或缓存策略,尽量减少对同一字节/扇区的频繁写入;使用页面写入(如器件支持)可显著提高写入效率。
  • 上电/复位顺序:在系统设计时关注器件电源与主控器件的上电/掉电顺序,避免在电源不稳定时进行写操作,防止数据损坏。
  • EMI 与 PCB 布线:高速 SPI 信号建议短线并走,必要时添加阻尼电阻或差分布局以改善信号完整性;CS 信号应避免在总线上产生毛刺导致误写。

六、可靠性与测试

25LC128T-I/SN 提供工业级温度范围与长期数据保持保证,适合对可靠性有较高要求的场合。对于关键应用,建议在系统中加入数据校验(CRC 或校验和)、冗余备份策略与定期健康检查,以应对极端环境或意外电源事件。

七、封装与采购

该器件封装为 SOIC-8,适用于常规 PCB SMT 工艺。选型与量产时建议参考 MICROCHIP 官方数据手册与应用说明书,确认引脚排列、时序规范与包装信息,并从官方授权渠道采购以确保一致性与合格性。

备注:本文概要基于器件关键参数并提供通用设计建议,具体电气时序、页写大小、命令集等详细信息请以 MICROCHIP 官方数据手册为准。

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