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ADSP-CM409CBCZ-AF ADI Mixed-Signal Control Processor ARM Cortex-M4F 240MHz Dual 16-Bit ADC BGA-212

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ADSP-CM409CBCZ-AF Product Overview

The ADSP-CM409CBCZ-AF from Analog Devices is a highly integrated mixed-signal control processor that combines an ARM Cortex-M4F core with industry-leading precision analog front ends. The ADSP-CM409CBCZ-AF features a 240MHz Cortex-M4F processor with a single-precision floating-point unit, 2MB of on-chip Flash, and 384KB of SRAM, delivering a powerful platform for complex real-time control algorithms. A key highlight of the ADSP-CM409CBCZ-AF is the integration of two independent 16-bit SAR ADCs supporting up to 8 channels with a maximum sampling rate of 2.8 MSPS, along with on-chip SINC filters for direct shunt resistor or sensor connections, enabling high-accuracy voltage and current measurements. The ADSP-CM409CBCZ-AF also integrates CAN 2.0B, UART, SPI, I2C, high-resolution PWM, and rich timer/encoder interfaces. Packaged in a 212-ball CSPBGA automotive-grade package with an operating temperature range of -40°C to +125°C, the ADSP-CM409CBCZ-AF is purpose-built for harsh environments such as industrial motor drives, solar inverters, power conversion, and new energy vehicles requiring precise sampling and real-time control.


ADSP-CM409CBCZ-AF Core Features

Processor Core: The ADSP-CM409CBCZ-AF features an ARM Cortex-M4F core running at 240MHz, with a single-precision FPU and DSP instruction set

On-Chip Memory: The ADSP-CM409CBCZ-AF provides 2MB Flash and 384KB SRAM (flexible program/data partitioning)

High-Precision ADC: The ADSP-CM409CBCZ-AF integrates dual 16-bit SAR ADCs with 8 channels total, up to 2.8 MSPS, and on-chip SINC filters

Motor Control PWM: The ADSP-CM409CBCZ-AF offers 16-channel high-resolution PWM with dead-time insertion and fault protection

Industrial Communication: The ADSP-CM409CBCZ-AF supports CAN 2.0B, 3× UART, 2× SPI, 2× I2C, and 4× quadrature encoder interfaces

Timers & Accelerators: The ADSP-CM409CBCZ-AF includes general-purpose timers, watchdog, RTC, CRC engine, and FIR/IIR hardware accelerators

Analog Modules: The ADSP-CM409CBCZ-AF features an on-chip voltage reference, temperature sensor, and comparators

Power Supply: The ADSP-CM409CBCZ-AF operates from a single 3.3V supply with integrated LDO and power management

Package: The ADSP-CM409CBCZ-AF comes in a 212-ball CSPBGA (15mm×15mm), automotive temperature range -40°C to +125°C


ADSP-CM409CBCZ-AF Applications

Industrial Motor Drives: The ADSP-CM409CBCZ-AF excels in servo drives, stepper motors, variable frequency drives, and power tools

Solar & Energy Storage Inverters: The ADSP-CM409CBCZ-AF is ideal for solar inverters, energy storage converters, and MPPT controllers

Power Conversion Systems: The ADSP-CM409CBCZ-AF suits digital power supplies, UPS, and OBC (On-Board Chargers)

New Energy Vehicles: The ADSP-CM409CBCZ-AF supports DC/DC converters, on-board chargers, and BMS battery management

Industrial Automation: The ADSP-CM409CBCZ-AF is used in sensor signal conditioning, process control, and robot joint drives

Medical & Precision Instruments: The ADSP-CM409CBCZ-AF is applied in precision fluid control and laboratory analytical equipment


ADSP-CM409CBCZ-AF Key Advantages

Highly Integrated Mixed-Signal System: The ADSP-CM409CBCZ-AF combines Cortex-M4F, precision ADCs, and motor control PWM on a single chip, simplifying PCB layout and lowering system cost

Industry-Leading Analog Performance: The ADSP-CM409CBCZ-AF's dual 16-bit SAR ADCs offer excellent linearity and SNR, and with on-chip SINC filters allow direct shunt resistor sampling without external conditioning

Powerful Real-Time Control: The ADSP-CM409CBCZ-AF's 240MHz floating-point core combined with high-resolution PWM and QEI interfaces effortlessly executes FOC, PFC, and grid-tied algorithms

Automotive-Grade Reliability: The ADSP-CM409CBCZ-AF operates from -40°C to +125°C and is AEC-Q100 qualified, suitable for harsh automotive and industrial environments

Rich Peripherals: The ADSP-CM409CBCZ-AF's CAN, SPI, I2C, UART, and QEI provide flexible connectivity to external devices and host systems

Mature Development Ecosystem: The ADSP-CM409CBCZ-AF supports CrossCore Embedded Studio, open-source ARM mbed, and Keil MDK, with motor control libraries, algorithm examples, and hardware reference designs

Safety & Protection: The ADSP-CM409CBCZ-AF includes hardware CRC, watchdog, and fault-protected PWM to ensure safe operation under abnormal conditions

Compact BGA Package: The ADSP-CM409CBCZ-AF's 15mm×15mm 212-ball package balances rich I/O with manageable PCB area


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FAQ

  1. What is the ADSP-CM409CBCZ-AF?
    The ADSP-CM409CBCZ-AF is a highly integrated mixed-signal control processor from Analog Devices, featuring a 240MHz ARM Cortex-M4F core, 2MB Flash, 384KB SRAM, and dual 16-bit precision SAR ADCs, designed for motor drives, solar inverters, and automotive applications requiring accurate analog sensing and real-time control.
  2. What are the key specifications of the ADSP-CM409CBCZ-AF?
    The ADSP-CM409CBCZ-AF features an ARM Cortex-M4F core at 240MHz with FPU; memory: 2MB Flash, 384KB SRAM; ADC: 2×16-bit SAR ADCs, 8 channels, up to 2.8 MSPS, with SINC filters; PWM: 16-channel high-resolution; communication: CAN 2.0B, 3×UART, 2×SPI, 2×I2C; package: 212-ball CSPBGA (15mm×15mm); temperature: -40°C to +125°C (automotive).
  3. How good is the ADC performance of the ADSP-CM409CBCZ-AF? What signals can it measure directly?
    The ADSP-CM409CBCZ-AF has two independent 16-bit SAR ADCs with excellent linearity and SNR (typically >90dB). With on-chip SINC filters, the ADSP-CM409CBCZ-AF can directly sample small voltage drops across shunt resistors without external amplifiers, ideal for high-accuracy motor phase current and DC bus voltage measurements.
  4. Is the ADSP-CM409CBCZ-AF suitable for motor control?
    Absolutely. The ADSP-CM409CBCZ-AF's 240MHz Cortex-M4F efficiently executes FOC and other advanced algorithms, the dual ADCs simultaneously sample three-phase currents and voltages, the 16-channel HRPWM drives power MOSFETs/IGBTs directly, and the integrated QEI interfaces connect to position sensors.
  5. Is the ADSP-CM409CBCZ-AF a DSP or a microcontroller?
    The ADSP-CM409CBCZ-AF is essentially an ARM Cortex-M4F-based microcontroller, but due to its DSP instruction set, floating-point unit, and high-performance ADCs, it possesses strong digital signal processing capability and is often referred to as a mixed-signal control processor or a DSP-grade MCU.
  6. What development tools and environments are supported for the ADSP-CM409CBCZ-AF?
    Development for the ADSP-CM409CBCZ-AF is highly flexible, supporting ADI’s CrossCore Embedded Studio (CCES), as well as mainstream tools like Keil MDK, IAR EWARM, and the ARM mbed ecosystem. ADI also provides mature motor control reference code and hardware design packages.
  7. What is the operating temperature range of the ADSP-CM409CBCZ-AF? Is it automotive qualified?
    The ADSP-CM409CBCZ-AF with the “AF” suffix is automotive grade, with an operating range of -40°C to +125°C, meeting AEC-Q100 standards and suitable for on-board chargers, DC/DC converters, and e-compressors.
  8. What is the role of the on-chip SINC filter on the ADSP-CM409CBCZ-AF?
    The SINC filter on the ADSP-CM409CBCZ-AF is typically used with Σ-Δ modulators, but on the CM409 it works with the SAR ADC to digitally filter out noise, further improving measurement accuracy, especially in motor drives where it suppresses PWM switching noise.
  9. What is the difference between CM409 and CM408 in the context of the ADSP-CM409CBCZ-AF?
    The primary difference is that the ADSP-CM409CBCZ-AF features two 16-bit ADCs and more analog channels, while the CM408 typically has a single ADC and possibly smaller Flash. The ADSP-CM409CBCZ-AF targets applications with extreme accuracy and sampling rate demands, such as high-performance servo drives and solar inverters.
  10. Can the ADSP-CM409CBCZ-AF be used in solar inverters?
    Yes. The ADSP-CM409CBCZ-AF's precision ADCs are ideal for sampling PV panel voltage and grid current, the 240MHz FPU runs MPPT and grid-tied algorithms, HRPWM controls the inverter bridge, and CAN/UART handles communication—making the ADSP-CM409CBCZ-AF perfect for single- or three-phase solar inverter designs.
Property:
Specification
Product Type:
Mixed-Signal Control Processor (ARM Cortex-M4F)
Brand:
ADI (Analog Devices)
Core Architecture:
ARM Cortex-M4F with single-precision FPU
Max Core Frequency:
240MHz
On-Chip Flash:
2MB
On-Chip SRAM:
384KB
High-Precision ADC:
Dual 16-bit SAR ADCs, 8 channels, up to 2.8 MSPS
Motor Control PWM:
16-channel high-resolution PWM
Communication Interfaces:
CAN 2.0B, 3×UART, 2×SPI, 2×I2C
Analog Peripherals:
SINC filters, voltage reference, temperature sensor, comparators
Package:
212-ball CSPBGA (15mm×15mm)
Temperature Range:
-40°C to +125°C (automotive)
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