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| Part Number: | ADUCM410BBCZ |
|---|---|
| Manufacturer/Brand: | Analog Devices Inc. |
| Part of Description: | IC MCU 32BIT 1MB FLASH 81CSPBGA |
| Datasheets: |
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| RoHs Status: | ROHS3 Compliant |
| Payment: | PayPal / Credit Card / T/T |
| Shipment Way: | DHL / Fedex / TNT / UPS / EMS |
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Ship From: Hong Kong
| Quantity | Unit Price |
|---|---|
| 1+ | $20.061 |
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| Product Attribute | Attribute Value |
|---|---|
| Voltage - Supply (Vcc/Vdd) | 2.85V ~ 3.6V |
| Supplier Device Package | 81-CSPBGA (5x5) |
| Speed | 160MHz |
| Series | ADuCM |
| RAM Size | 128K x 8 |
| Program Memory Type | FLASH |
| Program Memory Size | 1MB (1M x 8) |
| Peripherals | DMA, POR, PWM, WDT |
| Package / Case | 81-VFBGA, CSPBGA |
| Package | Tray |
| Product Attribute | Attribute Value |
|---|---|
| Oscillator Type | Internal |
| Operating Temperature | -40°C ~ 105°C |
| Mounting Type | Surface Mount |
| EEPROM Size | - |
| Data Converters | A/D 16x16b SAR; D/A 12x12b |
| Core Size | 32-Bit Single-Core |
| Core Processor | ARM® Cortex®-M33 |
| Connectivity | I²C, SPI, UART/USART |
| Base Product Number | ADUCM410 |




The ADUCM410BBCZ from Analog Devices is a high performance, integrated precision analog microcontroller designed to meet the demands of complex embedded systems in networking, control, and instrumentation environments. Built around the powerful 32-bit Arm Cortex-M33 core running at up to 160 MHz, the device combines extensive analog front-end capabilities with robust computational and memory resources, all within a compact chip-scale package. This microcontroller is ideally suited for applications requiring high-speed data acquisition, precise analog measurements, and advanced connectivity.
At its core, the ADUCM410BBCZ employs a single-chip architecture that hosts the Arm Cortex-M33 32-bit RISC processor with floating point support, capable of up to 240 MIPS peak performance. It is equipped with 1 MB of on-chip flash memory, divided into two independent 512 kB blocks, and 128 kB of SRAM with error correction capabilities. The device supports comprehensive analog functions, featuring a high-speed, 16-bit ADC with up to 2 MSPS, up to 16 external input channels, and programmable gain or transimpedance amplifiers for versatile voltage and current measurement capability.
On the output side, engineers benefit from up to 12 channels of 12-bit voltage DACs, flexible power supply options for analog and digital domains, and advanced clocking resources including an integrated PLL and multiple oscillator options. The ADUCM410BBCZ also includes a low drift voltage reference, multiple voltage comparators, and an integrated temperature sensor, supporting demanding measurement and control tasks.
The ADUCM410BBCZ architecture strikes a balance between computational efficiency and analog precision. Central to the system is the Arm Cortex-M33 core, surrounded by analog front-end circuits (ADC, PGA/TIA, DACs), digital peripherals, and a robust memory subsystem. The device’s dual flash and ECC-protected SRAM layout provides enhanced reliability, supporting simultaneous operation such as executing code from one memory block while updating another.
A system management data input/output (MDIO) interface, along with integrated GPIO voltage level shifting (1.2 V, 1.8 V, or 3.3 V options), ensures flexible interfacing with other system components. The microcontroller’s design allows for low power operation modes, which can be controlled programmatically to optimize system energy use.
For engineers developing modern embedded systems, the ADUCM410BBCZ offers a rich set of on-chip communication and control peripherals. Serial interfaces include two UARTs, three SPI, and three I²C controllers, each capable of driving multiple serial data streams. The MDIO interface enables rapid integration with networking modules, supporting operation up to 10 MHz with hardware address comparators for efficient management.
Other peripherals include five programmable timers (including a wake-up timer and watchdog), a 32-element programmable logic array (PLA), a 16-bit PWM generator with eight output channels, and support for up to 10 external interrupt sources. Flexible GPIO configurations allow for selectable drive strengths and programmable functionality, critical for robust board-level integration.
Precision analog performance defines the ADUCM410BBCZ’s core value. The 16-bit ADC achieves up to 2 MSPS, with up to 16 inputs configurable for single-ended or differential mode measurements. Integrated PGAs and TIAs provide tailored gain selection for voltage or current measurement, supporting applications from sensor reading to power monitoring. A robust input mux and sequencer facilitate high-speed, multichannel sampling, while an internal reference (selectable 1.25 V or 2.5 V, with buffered outputs) and four on-chip voltage comparators enhance signal reliability.
On the DAC side, the device supplies up to 12 channels with 12-bit resolution, supporting a variety of load conditions (e.g., 1 kΩ or 2.5 kΩ) with output ranges from 0 V to 2.5 V. These outputs maintain voltage levels through core or software resets, improving system safety and uptime in critical applications. The device supports advanced diagnostics, including on-chip die temperature and supply voltage monitoring.
Reliable system design depends on carefully managed power supplies, and the ADUCM410BBCZ accommodates flexible configurations between its analog and digital domains. Analog supply (AVDD) operates from 2.85 V to 3.6 V, while IOVDD1 supports 1.2 V, 1.8 V, or 3.3 V logic levels, and DVDD covers 1.8 V to 3.6 V. This allows for split- or single-supply operation, with recommended decoupling strategies using both 0.1 µF and 10 µF capacitors at each supply and ground pin to minimize noise and ensure robust performance.
Users are advised to provide effective local decoupling, reference all ground pins to a common point, and follow strict PCB layout guidelines to safeguard analog integrity. The ADC reference requires a dedicated 4.7 µF capacitor, and both the internal regulators (DVDD_REG, AVDD_REG) need 0.47 µF bypass capacitors for optimal function.
The ADUCM410BBCZ is offered in compact, high-density package options, including an 81-ball chip-scale BGA (5 mm x 5 mm) and an alternative 64-ball wafer-level CSP (3.46 mm x 3.46 mm), both meeting JEDEC compliance. Each package provides an optimized pinout for extensive peripherals and supply connections; pin descriptions and recommendations are well-documented to guide accurate PCB footprint creation and integration.
Thermal management and ESD robustness are supported by the device’s package design and recommended handling procedures. Thermal resistance ratings are specified for accurate system heat modeling, and ESD specifications ensure reliability in industrial and high-density environments.
Designed for long-term reliability, the ADUCM410BBCZ delivers 10,000-cycle program/erase endurance on its flash memory with a retention period extending to 20 years. ECC mechanisms protect both Flash and SRAM against single and double-bit errors, maintaining safe system operation in the field. The device is specified for ambient operation from –40°C to +105°C, ensuring suitability for industrial, networking, and instrumentation environments.
The microcontroller meets strict ESD ratings and incorporates application-level hardware features to safeguard against external disturbances and soft functional resets. Current silicon revision notes and documented errata ensure engineering transparency and support proper software or hardware workarounds where necessary.
The ADUCM410BBCZ is especially geared toward advanced optical networking (100 Gbps, 200 Gbps, 400 Gbps, and beyond), high-speed data modules, industrial automation, and precision instrumentation platforms. Its high-speed ADC, flexible DAC options, and field programmable peripherals support precision control, signal monitoring, and process automation.
For example, in a high-volume fiber transceiver or optical line card, the ADUCM410BBCZ can directly interface with analog front ends to measure channels, control bias and modulation, and manage module networking via MDIO. In factory automation, its low power modes and wide analog range empower smart sensor gateways or distributed control nodes that must combine precise measurement and robust processing.
When evaluating migration paths or cross-references, engineers may consider other members of the Analog Devices ADuCM microcontroller family, especially those with similar Arm Cortex-M33 architectures for software portability. Depending on application requirements, alternatives offering a similar blend of high-speed ADCs, DACs, multichannel analog front ends, and flexible communications might include the ADUCM360, ADUCM4050, or competitive microcontrollers combining precision mixed-signal integration with Arm Cortex cores.
Careful matching of the core specifications—ADC speed/resolution, available memory, package type, and industrial temperature range—is key to ensure that replacements meet both interfacing and performance requirements. Notably, no direct substitute for the ADUCM410BBCZ offers this exact configuration of analog and digital resources, but several devices may provide functionally similar blocks for compatible applications.
The ADUCM410BBCZ from Analog Devices stands out as a highly integrated, feature-rich precision analog microcontroller, uniquely positioned to address complex embedded and mixed-signal system requirements. Its robust analog capabilities, advanced processing resources, and flexible connectivity options enable rapid development of high performance, reliable industrial and networking solutions. For engineers and procurement professionals seeking a flexible, long-lifecycle MCU with comprehensive analog-digital integration, the ADUCM410BBCZ delivers a compelling platform for both current and future design needs.
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