WMSIC Electronic Components

ALLEGRO A3988SJPTR-1-T A3988SJPTR

ModelA3988SJPTR-1-T
PackageLQFP-48-EP(7x7)
BrandALLEGRO
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 24+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
ALLEGRO A3988SJPTR-1-T
Type
ALLEGRO
Minimum package
1500 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
ALLEGRO
Electronic Component
A3988SJPTR-1-T
Electronic Component
1
Package
LQFP-48-EP(7x7)
Electronic Component
Stepper Motor Driver IC
Electronic Component
0.264g
Electronic Component
1
H
4
Features
Built-in Charge Pump;; positions
Electronic Component
BM0264533304
Resistor
1.4Ω
Operating Temperature
20℃~+85℃
Voltage
3V~5.5V
Electronic Component
4
Output Current
1.2A

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

A3988SJPTR-1-T 产品概述

一、产品简介

A3988SJPTR-1-T 是来自 ALLEGRO 的高集成度双极性电机驱动器,采用 DMOS 输出级并联设计,封装为 LQFP-48-EP(7×7 mm)。器件在 3.0V 至 5.5V 的逻辑/控制电压范围内工作,单芯片集成四路 H 桥与内部开关与驱动逻辑,支持 4 步细分(1/4 步)驱动方式,输出电流规格为 1.2A(典型/最大取决于散热条件与 PCB 设计)。该器件强调保护与可靠性,适合对尺寸、集成度与稳健性有较高要求的小型机电控制方案。

二、关键特性

  • 控制电压(逻辑电源): 3.0V ~ 5.5V。
  • 输出电流: 1.2A(受温度与散热限制)。
  • H 桥数量: 4,支持并联 DMOS 架构与集成开关。
  • 驱动类型: 双极驱动(双 H 桥用于步进电机控制)。
  • 步长细分: 4(1/4 步细分)。
  • 集成功能: 内置电荷泵,简化门驱动电压生成与驱动性能优化。
  • 导通电阻(Rds(on)): 1.4Ω(器件级典型值,与并联结构与 PCB 温度相关)。
  • 工作温度范围: −20°C ~ +85°C。

三、电气与热特性

器件采用并联 DMOS 输出以提升瞬态驱动能力与功耗分布,但输出电流能力受限于器件本身的导通电阻与系统散热。Rds(on) 为 1.4Ω,意味着在高电流工况下需重视功耗与结点温升。推荐在电路板上使用大面积焊盘与多通孔热 vias,将暴露焊盘(EP)与散热铜层连接,以保证持续工作时的温度控制。

四、保护与可靠性

A3988SJPTR-1-T 提供全面的自保护机制,提升系统可靠性并简化外围保护设计:

  • 短路保护与过流保护,限制输出过载并在故障时及时响应。
  • 死区/直通保护,防止开关直通导致的瞬态高损耗。
  • 欠压/低压保护与欠压锁定(UVLO),保证上电/欠压工况下的安全状态。
  • 上电复位(POR),确保系统初始化可预测。
  • 过压保护、过温保护与过流响应,提升长期稳定性。

五、封装与布局建议

  • 封装:LQFP-48-EP(7×7 mm),底部带暴露焊盘用于热沉与可靠焊接。
  • PCB 布局建议:在器件下方与周围放置足够的散热铜区域并配合多盏热 vias;靠近电源与电机供电端放置低 ESR 解耦电容;控制信号走线尽量短且屏蔽好噪声源。内置电荷泵通常需要旁路电容,请参考厂商建议值以保证驱动性能。

六、典型应用场景

适用于结构紧凑且要求多路或高集成度电机驱动的场合,例如:

  • 打印机与扫描仪的步进电机驱动;
  • 小型机器人与精密机构的运动控制;
  • 3D 打印头/送丝系统、CNC 微步进控制;
  • 光学或测量仪器中的位置控制子系统。

七、设计注意事项

  • 校核器件在目标工作点(电流、占空比、工作温度)下的功耗与结温,必要时采用散热片或改进 PCB 散热设计。
  • 对电源端进行充分去耦,尽量将电机电源与逻辑电源分别布线并靠近器件放置滤波/退耦电容。
  • 利用器件内建保护功能可以简化外部保护,但仍建议在系统级加入熔断器或电流监测以应对极端故障。
  • 仔细参考厂商数据手册关于布局、旁路电容与外设建议,以发挥内置电荷泵与保护电路的最佳性能。

八、总结

A3988SJPTR-1-T 以高集成度的并联 DMOS 输出、丰富的自保护功能与紧凑的 LQFP-48-EP 封装,为中小功率双极步进电机控制提供了稳健的解决方案。其 3–5.5V 的控制接口、1.2A 的输出能力和 1/4 步细分特性,适合对成本、尺寸及可靠性有平衡要求的嵌入式运动控制设计。请结合具体应用场景与散热约束,参考完整的器件手册进行最终电路实现与验证。

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