WMSIC Electronic Components

MMA8452QR1

ModelMMA8452QR1
PackageQFN-16(3x3)
BrandNXP
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 21+

Available for RFQ

Technical data

Product details

20 specifications

Core information

Product name
NXP MMA8452QR1
Type
NXP
Unit
Electronic Component
Minimum package
1000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
Electronic Component
Electronic Component
NXP
Electronic Component
MMA8452QR1
Electronic Component
1
Package
QFN-16(3x3)
Electronic Component
IMU Sensor / Gyroscope
Electronic Component
0.125g
Electronic Component
1
Features
Electronic Component
Electronic Component
BM0230595809
Operating Temperature
40℃~+85℃
Operating Voltage
1.95V~3.6V
Current
1.8uA
Interface Type
I2C
Output
12bit

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

MMA8452QR1 产品概述

一、产品简介

MMA8452QR1 是恩智浦(NXP)系列三轴加速度计,支持 ±2g/±4g/±8g 三档可选量程,器件以 QFN-16 (3×3 mm) 小型封装提供,典型工作电压为 2.5V(器件工作电压范围 1.95V~3.6V)。该器件采用 12-bit 输出精度并通过 I2C 接口进行数据传输,适合对尺寸、功耗和分辨率有较高要求的便携与嵌入式应用。

二、主要参数要点

  • 加速度轴向:三轴(X、Y、Z),实时测量三方向加速度分量。
  • 量程:可配置 ±2g、±4g、±8g,开发设计时可根据应用选择更高灵敏度或更大量程。
  • 分辨率:12-bit 模数输出,能提供细腻的加速度分辨率。
  • 接口类型:I2C(标准串行总线),方便与 MCU/SoC 集成。
  • 工作电压:1.95V 至 3.6V,典型值 2.5V;宽电压范围便于与多种系统供电兼容。
  • 功耗:待机电流典型为 1.8 µA,可在省电模式下延长电池寿命(活动模式电流视 ODR 与过滤设置而定)。
  • 工作温度:-40 ℃ 至 +85 ℃,适用于工业级与消费电子多数场景。
  • 封装:QFN-16 (3×3 mm),利于小尺寸 PCB 设计与量产贴装。

三、典型功能与优势

  • 小尺寸、低功耗:QFN 小型封装和低待机电流适合电池供电设备、可穿戴与物联网节点。
  • 多量程选择:灵活配置测量范围,可在高灵敏度与大冲击测量间切换。
  • 数字接口简便:I2C 接口简化主控线路,支持多器件共享总线。
  • 宽温度与电压兼容:适应多种环境与系统电源设计,便于产品稳定性设计。

四、典型应用场景

  • 移动设备:屏幕翻转、计步、运动检测等。
  • 可穿戴设备与健康监测:低功耗、高灵敏度的运动识别。
  • 家居与安防:震动/入侵检测、状态监控。
  • 工业传感:姿态与倾角检测、振动监测(在量程允许范围内)。
  • 物联网节点:远程状态感知与事件触发,结合低功耗休眠机制实现长期运行。

五、设计注意与建议

  • 电源与去耦:在 VDD 与地之间放置 0.1 µF 陶瓷去耦电容,靠近器件电源引脚,以抑制电源噪声。
  • I2C 布线:使用合适的上拉电阻(典型 2.2k–10k,视总线速度与电容而定),保持 SDA/SCL 的良好线性;若总线与主控电压不同,注意电平兼容或采用电平移位。
  • PCB 布局:尽量将器件置于稳定、远离高噪声信号源的位置,保持芯片周围无大量铜铺或对称布局以减少机械应力对零偏的影响。
  • 机械安装:封装为 QFN,采用推荐的焊盘设计与回流工艺;避免在器件底部施加过大粘接应力。
  • 电磁与振动校正:若用于高精度测量,建议在系统上电后进行零偏和灵敏度校准,并在固件中应用滤波或低通/均值算法以抑制高频振动噪声。
  • 配置策略:合理设置输出数据速率(ODR)、滤波与功耗模式以在分辨率、带宽与功耗间取得平衡。

六、选型与实施小结

MMA8452QR1 以其 12-bit 分辨率、三档量程选择、低待机电流和宽工作电压范围,为空间受限且对低功耗和可靠性有要求的便携与工业应用提供了平衡的加速度测量方案。在设计投入生产前,建议评估系统所需带宽与动态范围、完成 PCB 布局验证与机械应力测试,并在固件中实现合适的滤波与校准流程,以确保稳定与准确的测量性能。

如需进一步的寄存器配置、样例固件或参考电路图,可在设计阶段查阅恩智浦官方数据手册与评估板资料以获得详细实现指导。

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