ADP1032

推荐新设计使用

具有七个数字隔离器的两通道隔离式微功耗管理单元

产品模型
5
产品技术资料帮助

ADI公司所提供的资料均视为准确、可靠。但本公司不为用户在应用过程中侵犯任何专利权或第三方权利承担任何责任。技术指标的修改不再另行通知。本公司既没有含蓄的允许,也不允许借用ADI公司的专利或专利权的名义。本文出现的商标和注册商标所有权分别属于相应的公司。

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产品详情

  • 宽输入电源电压范围:4.5 V 至 60 V
  • 集成式反激电源开关
  • 生成两个充分调节的隔离式独立输出
    • VOUT1:24 V 或 6 V 至 28 V
    • VOUT2:3.3 V、5.0 V 或 5.15 V
  • 使用 1:1 比率的变压器简化变压器设计
  • 适用于反激和降压稳压器的峰值电流限制和 OVP
  • 精密启用输入和电源正常输出
  • 可通过 SYNC 输入调整开关频率
  • 每个稳压器的内部补偿和软启动控制
  • 高速低传播延迟 SPI 信号隔离通道
  • 三个 100 kbps 通用隔离式数据通道
  • 41 引脚 9 mm × 7 mm LFCSP 外形尺寸可实现小巧的解决方案总体尺寸
  • 工作结温范围为 −40°C 至 +125°C
  • 安全和监管审批(申请中)
  • CISPR11 B 级辐射发射
    • UL 认证:2500 V rms 持续 1 分钟,符合 UL 1577 标准
    • CSA 元件验收通知 5A
      • 从属器件、主器件和现场电源域之间 300 V rms 的基本绝缘(IEC 61010-1,申请中)
    • VDE 合规证书
      • DIN V VDE 0884-10 (VDE 0884-10):2006-12
      • VIORM = 565 VPEAK
ADP1032
具有七个数字隔离器的两通道隔离式微功耗管理单元
ADP1032-pc ADP1032-fbl
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评估套件

eval board
ADP1032CP-EVALZ

评估 ADP1032 两通道隔离式微功耗管理单元

特性和优点

  • 输入电压范围:4.5 V 至 60 V
  • VOUT1 的输出电压:24 V 或 6 V 至 28 V
  • VOUT2 的输出电压:3.3 V、5.0 V 或 5.15 V
  • 启用和禁用控制
  • 压摆率控制
  • 可以使用 SYNC 引脚实现振荡器同步
  • 可以使用所有七个数据通道 

产品详情

ADP1032CP-x-EVALZ(其中 x 表示 1 至 5 的套件型编号)可用于演示 ADP1032 直流/直流转换器和隔离式数据通道的功能。

可以使用该板来评估简单套件测量,例如电源电压调整率、负载调整率和效率。还可评估隔离式数字通道的性能。可以演示套件特性,包括振荡器同步、软启动、电源正常监控、时序监控和压摆率控制。

有关直流/直流转换器和隔离式数据通道的详细信息,请参阅 ADP1032 数据手册。

eval board
AD-SWIOT1L-SL

Software-configurable Analog and Digital I/O with 10BASE-T1L Evaluation and Development Platform

特性和优点

  • Allows prototyping of intelligent, secure, and connected process control devices
  • Ultimate flexibility in I/O interface configurability through software
  • Embedded processing for implementing self-capable edge devices
  • Long-range single-pair 10BASE-T1L Ethernet interface
  • Power delivery via the 10BASE-T1L interface or from a field supply enabling both low and high power applications
  • Fully isolated design for safe operation
  • Industry standard form factor compatible with DIN rail mounts

产品详情

The AD-SWIOT1L-SL provides a complete software and hardware platform for prototyping intelligent, secure, network capable field devices.

The design incorporates the AD74413R Quad-Channel, Software Configurable Input and Output and the MAX14906 Quad-Channel Industrial Digital Output/Digital Input ICs, allowing the multiplexing of several analog and digital functions on four channels which can be independently configurable through software to act as:

  • voltage output / input
  • current output / input
  • digital input / output
  • RTD measurement

A 10 Mbps single-pair Ethernet link, using the ADIN1110 10BASE-T1L MAC/PHY, enables remote data acquisition and device configuration. The 10BASE-T1L interface can also be used for powering the system via the Single-pair Power over Ethernet (SPoE) technology using the LTC9111 Powered Device (PD) controller. This way, power and data for the system is provided over the same cable to significantly simplify the cabling infrastructure and cost.

For applications requiring high current capabilities, the system can be powered from an external 24 V supply and up to 1.2 A can be output on any of the channels configured as digital outputs. The power supply solution also includes the ADP1032 high performance, isolated micropower management unit (PMU) to provide power and digital control for software configurable I/O devices in one of the most compact formats. The LT8304 Micropower No-Opto Isolated Flyback Converter completes the power tree to provide isolated power to the digital part of the design.

The on-board MAX32650 Ultralow Power ARM® Cortex®-M4 Microcontroller exposes all the necessary debug and programming features to enable a complete software development experience with the system. It is coupled with a 1 Gb (128 MB) external RAM and a 64 Mb (8 MB) external flash memory to meet the most demanding applications and provide the flexibility to implement any protocol stack. Security features are enabled by the MAXQ1065 security coprocessor.

The system is accompanied by an open-source software stack and associated collateral, enabling a complete experience from evaluation and prototyping all the way to production firmware and applications development. An external programmer such as the MAX32625PICO MAXDAP Programming Adapter, or any other similar programmer supporting the SWD interface, is required to enable firmware programming and debug. The system’s firmware is based on Analog Devices’ open-source no-OS framework which includes all the tools required for embedded code development and debugging as well as libraries enabling host-side connectivity for system configuration and data transfer over the UART or the 10BASE-T1L interfaces. A PC application with a user-friendly graphical interface is provided to enable easy system configuration and displaying the acquired data in different ways.

Specifications
I/O
Channels 4 Software Configurable IO channels
Digital input Type 1 and 3, or Type 2
Digital output High-Side (HS) Switch or Push-Pull (PP) Driver
Analog input Voltage (0 V to 10 V), Current (0 mA to 25 mA)
Analog output Voltage (0 V to 11 V), Current (0 mA to 25 mA)
RTD measurements 2-wire RTD (0 Ω to 1 MΩ)
Computing Resources
CPU MAX32650 Ultra-Low-Power Arm Cortex-M4
with FPU-Based Microcontroller (MCU) with 3 MB Flash and 1MB SRAM
Memory 1 Gb RAM
Storage 64 Mb QSPI Flash
Connectivity
Ethernet 10BASE-T1L
Power Supply
External power 24 DC @ 6A
Power over Ethernet SPoE class 12
Operating Conditions
Temperature range -25°C to 60°C

ADP1032CP-EVALZ
评估 ADP1032 两通道隔离式微功耗管理单元
ADP1032CP-x-EVALZ
AD-SWIOT1L-SL
Software-configurable Analog and Digital I/O with 10BASE-T1L Evaluation and Development Platform
AD-SWIOT1L-SL Block Diagram AD-SWIOT1L-SL AD-SWIOT1L-SL - Top View AD-SWIOT1L-SL GUI view

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