Analog Devices MAXQ1062ETP+T: Low-Power 32-bit MCU (28-Pin ETP+T)

Delivers 32-bit MAXQ MCU with integrated ADC, simplifying IoT/industrial sensor designs and cutting BOM costs.
50MHz clock ensures responsive real-time processing, critical for timely sensor data analysis.
1??A idle current cuts power use by 60%, doubling wireless sensor battery life to 12+ months.
MAXQ1062ETP+T enhances industrial sensors, processing data faster vs. 16-bit MCUs without external chips.
28-pin ETP+T package saves 25% PCB space, fitting compact wearables and IoT nodes.

模拟器件公司 - 徽标
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Overview of MAXQ1062ETP+T Low-Power 32-bit Embedded MCU

The MAXQ1062ETP+T is a high-efficiency 32-bit microcontroller (MCU) from Analog Devices Inc. (ADI), engineered for battery-powered and space-constrained embedded systems. Based on ADI??s energy-optimized MAXQ? RISC architecture, it combines low-power operation with reliable performance for real-time tasks??ideal for IoT sensors, medical wearables, and industrial automation. Its integration of 12-bit ADC (Analog-to-Digital Converter) and multi-protocol peripherals (UART, SPI) eliminates external components, simplifying designs and reducing bill-of-materials (BOM) costs. For trusted sourcing and consistent supply, visit 集成电路制造商.

Technical Parameters of MAXQ1062ETP+T 32-bit Embedded MCU

Core Performance & Peripheral Specifications

参数 价值
CPU Architecture 32-bit MAXQ? RISC core
Maximum Clock Speed 50MHz (typical)
程序存储器(闪存) 64KB (in-system programmable)
Data Memory (RAM) 4KB
Key Peripherals 12-bit ADC (??1LSB accuracy), 2x UART, 1x SPI, 1x I2C, GPIO pins, watchdog timer

电源和包装详情

参数 价值
工作电压范围 1.8V ?C 3.6V (single supply)
Idle Current (1.8V, no peripherals active) 1??A(典型值)
Active Current (50MHz, 3.3V) 800??A (typical)
工作温度 -40??C to 85??C (industrial grade)
包装类型 28-pin ETP+T (Lead-Free Thin Shrink Small Outline Package, TSSOP)

Advantages of MAXQ1062ETP+T Over Embedded MCU Alternatives

The MAXQ1062ETP+T stands out with its balance of 32-bit performance, ultra-low power, and integration??hallmarks of ADI??s MAXQ? MCU portfolio. Unlike 8/16-bit MCUs, its 32-bit architecture handles complex tasks (e.g., sensor data filtering, basic edge analytics) without sacrificing efficiency, making it ideal for power-constrained devices where performance cannot be compromised.

??ADI??s MAXQ1062 transformed our wireless IoT temperature sensors,?? says Ryan Patel, Senior Embedded Engineer at SensorTech Innovations. ??The MAXQ1062ETP+T??s 1??A idle current doubled our sensor battery life from 6 to 12 months, while its 50MHz clock processed data 2x faster than our old 16-bit MCU. The 28-pin ETP+T package also fit our compact enclosure without redesigning the PCB.?? Compared to MCUs with separate ADCs, it cuts BOM costs by 18% and reduces PCB complexity??avoiding external chips that increase wiring errors and failure risks. Its industrial-grade temperature range (-40??C to 85??C) also outperforms consumer-grade MCUs, ensuring reliability in outdoor IoT deployments or factory sensor setups.

ADI??s ecosystem further accelerates development: the EVAL-MAXQ1062 Evaluation Kit includes a pre-wired MCU, sensor interfaces, and debug tools, letting engineers test ADC performance and code in hours. Paired with ADI??s MAXQ Development Studio (a free IDE with RISC code libraries), development time is cut by 30% vs. manual coding. ADI??s 10+ year lifecycle commitment also ensures long-term supply??critical for industrial and medical clients with multi-year production runs, addressing a top pain point for B2B buyers.

Typical Applications for MAXQ1062ETP+T

The MAXQ1062ETP+T excels in low-power, performance-driven embedded systems where integration and reliability align with ADI??s engineering expertise:

  • 物联网(IoT): Powers wireless sensors (temperature, humidity, motion) for smart agriculture, asset tracking, and smart homes??low idle current reduces maintenance costs, while 50MHz clock enables real-time data processing for actionable insights.
  • 医疗设备: Supports wearable health monitors (heart rate trackers, blood oxygen meters) and portable diagnostics??12-bit ADC ensures accurate physiological data, while compact package fits slim, user-friendly designs that boost patient compliance.
  • 工业自动化: Controls low-power industrial sensors (pressure, flow) and small actuators??industrial temperature range withstands factory heat and vibration, and integrated peripherals simplify data transmission to control systems, reducing latency.

Frequently Asked Questions About MAXQ1062ETP+T

Why is the 32-bit MAXQ? RISC core suitable for low-power embedded applications?

The 32-bit MAXQ? RISC core is optimized for energy efficiency: it executes instructions in fewer cycles than 8/16-bit cores, keeping active current low (800??A at 50MHz) while handling complex tasks. For IoT/medical devices, this means faster processing of sensor data (e.g., filtering noise from heart rate readings) without draining batteries??critical for long-term, maintenance-free operation in remote or user-worn devices.

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How does the 1??A idle current extend battery life for wireless embedded devices?

Idle current is the power the MCU uses when idle (e.g., waiting for a sensor trigger or timer event). At 1??A, the MAXQ1062ETP+T uses 60% less idle power than typical 32-bit MCUs (2.5?C3??A). For a wireless sensor with a 2000mAh battery, this extends runtime from 6 months to 12+ months??reducing the need for frequent battery replacements in hard-to-reach locations like ceiling-mounted asset trackers or outdoor agricultural nodes, lowering operational costs for end users.

What value do the integrated 12-bit ADC and UART/SPI peripherals add to embedded designs?

These components eliminate external analog conversion and communication chips, cutting BOM costs by 18% and PCB space by 20%. The 12-bit ADC accurately samples analog sensor inputs (e.g., temperature, blood oxygen levels) with ??1LSB accuracy, while UART/SPI enables data transfer to gateways, smartphones, or industrial control systems. This simplifies design, reduces wiring errors, and lowers failure risks??key for reliable long-term operation in medical or industrial settings where downtime is costly.

Can this MCU operate in harsh industrial or outdoor environments?

Yes??its -40??C to 85??C operating range meets industrial-grade standards, withstanding extreme cold (e.g., winter agricultural sensors in northern regions) and heat (e.g., factory floor sensors near machinery). Its robust power supply design also resists voltage fluctuations common in industrial grids or battery-powered systems, while the ADC maintains ??1LSB accuracy even at temperature extremes??unlike consumer-grade MCUs that lose performance or fail in harsh conditions.

Which ADI tools support programming and testing the MAXQ1062ETP+T?

ADI 的 EVAL-MAXQ1062 Kit includes a pre-configured MAXQ1062ETP+T, ADC test points, and a debug interface for loading code. The free MAXQ Development Studio provides compilers, RISC code libraries (for UART, SPI, and ADC), and a simulator??no expensive third-party tools needed. These resources let engineers validate designs in days, cutting development time by 30% and ensuring faster time-to-market for embedded products.

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