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ADUCM360BCPZ128-R7
Integrated Circuits (ICs)

ADUCM360BCPZ128-R7

Active
Analog Devices Inc./Maxim Integrated

LOW POWER PRECISION ANALOG MICROCONTROLLER, ARM CORTEX M3 WITH DUAL SIGMA-DELTA ADCS

ADUCM360BCPZ128-R7
Integrated Circuits (ICs)

ADUCM360BCPZ128-R7

Active
Analog Devices Inc./Maxim Integrated

LOW POWER PRECISION ANALOG MICROCONTROLLER, ARM CORTEX M3 WITH DUAL SIGMA-DELTA ADCS

Technical Specifications

Parameters and characteristics for this part

SpecificationADUCM360BCPZ128-R7
ConnectivityUART/USART, I2C, SPI
Core ProcessorARM® Cortex®-M3
Core Size32-Bit
Data ConvertersA/D 11x24b, D/A 1x12b
Mounting TypeSurface Mount
Number of I/O19
Operating Temperature [Max]125 °C
Operating Temperature [Min]-40 °C
Oscillator TypeInternal
Package / Case48-WFQFN Exposed Pad, CSP
PeripheralsDMA, PWM, POR, WDT
Program Memory Size128 KB
Program Memory TypeFLASH
RAM Size8 K
Speed20 MIPS
Supplier Device Package48-LFCSP (7x7)
Voltage - Supply (Vcc/Vdd) [Max]3.6 V
Voltage - Supply (Vcc/Vdd) [Min]1.8 V
PartProgram Memory SizeOscillator TypeMounting TypeCore SizeNumber of I/ORAM SizeSpeedSupplier Device PackagePackage / CaseVoltage - Supply (Vcc/Vdd) [Max]Voltage - Supply (Vcc/Vdd) [Min]Operating Temperature [Max]Operating Temperature [Min]PeripheralsConnectivityData ConvertersProgram Memory TypeCore ProcessorSuggested Programming EnvironmentContentsBoard TypeUtilized IC / PartTypePlatformInterconnect SystemInterconnect System
ADUCM360BCPZ128
Analog Devices Inc./Maxim Integrated
128 KB
Internal
Surface Mount
32-Bit
19
8 K
20 MIPS
48-LFCSP (7x7)
48-WFQFN Exposed Pad
CSP
3.6 V
1.8 V
125 °C
-40 °C
DMA
POR
PWM
WDT
I2C
SPI
UART/USART
A/D 11x24b
D/A 1x12b
FLASH
ARM® Cortex®-M3
Analog Devices-EVAL-ADUCM360QSPZ Embedded System Development Boards and Kits ADUCM361 Microcontroller Development Kit
Analog Devices Inc./Maxim Integrated
Fixed
ARM® Cortex®-M3
IAR EW
Keil MDK
Board
Board(s)
Cable
Cable(s)
J-Link OB Programmer
Evaluation Platform
ADuCM360
MCU 32-Bit
QuickStart™ PLUS
EVAL-ADICUP360
Analog Devices Inc./Maxim Integrated
Fixed
ARM® Cortex®-M3
CrossCore Embedded Studio
Board(s)
Evaluation Platform
ADuCM360
MCU 32-Bit
Pmod
Arduino R3 Shield
ADUCM360BCPZ128-R7
Analog Devices Inc./Maxim Integrated
128 KB
Internal
Surface Mount
32-Bit
19
8 K
20 MIPS
48-LFCSP (7x7)
48-WFQFN Exposed Pad
CSP
3.6 V
1.8 V
125 °C
-40 °C
DMA
POR
PWM
WDT
I2C
SPI
UART/USART
A/D 11x24b
D/A 1x12b
FLASH
ARM® Cortex®-M3

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$Updated
DigikeyCut Tape (CT) 1$ 20.71<1d
10$ 17.22
25$ 16.26
Tape & Reel (TR) 750$ 13.62<1d

Description

General part information

ADUCM360 Series

The ADuCM360 is a fully integrated, 3.9 kSPS, 24-bit data acquisition system that incorporates dual high performance, multichannel sigma-delta (Σ-Δ) analog-to-digital converters (ADCs), a 32-bit ARM Cortex™-M3 processor, and Flash/EE memory on a single chip. The ADuCM360 is designed for direct interfacing to external precision sensors in both wired and battery-powered applications. The ADuCM361 contains all the features of the ADuCM360 except that only one 24-bit Σ-Δ ADC (ADC1) is available.The ADuCM360/ADuCM361contain an on-chip 32 kHz oscillator and an internal 16 MHz high frequency oscillator. The high frequency oscillator is routed through a programmable clock divider from which the operating frequency of the processor core clock is generated. The maximum core clock speed is 16 MHz; this speed is not limited by operating voltage or temperature.The microcontroller core is a low power ARM Cortex-M3 processor, a 32-bit RISC machine that offers up to 20 MIPS peak performance. The Cortex-M3 processor incorporates a flexible, 11-channel DMA controller that supports all wired communica-tion peripherals (SPI, UART, and I2C). Also integrated on chip are 128 kB of nonvolatile Flash/EE memory and 8 kB of SRAM.The analog subsystem consists of dual ADCs, each connected to a flexible input mux. Both ADCs can operate in fully differential and single-ended modes. Other on-chip ADC features include dual programmable excitation current sources, diagnostic current sources, and a bias voltage generator of AVDD_REG/2 (900 mV) to set the common-mode voltage of an input channel. A low-side internal ground switch is provided to allow power-down of an external circuit (for example, a bridge circuit) between conversions.The ADCs contain two parallel filters: a sinc3 or sinc4 filter in parallel with a sinc2 filter. The sinc3 or sinc4 filter is used for precision measurements. The sinc2 filter is used for fast measure-ments and for the detection of step changes in the input signal.The devices contain a low noise, low drift internal band gap ref-erence, but they can be configured to accept one or two external reference sources in ratiometric measurement configurations. An option to buffer the external reference inputs is provided on chip. A single-channel buffered voltage output DAC is also provided on chip.The ADuCM360/ADuCM361 integrate a range of on-chip peripherals, which can be configured under microcontroller software control as required in the application. The peripherals include UART, I2C, and dual SPI serial I/O communication controllers; a 19-pin GPIO port; two general-purpose timers; a wake-up timer; and a system watchdog timer. A 16-bit PWM controller with six output channels is also provided.The ADuCM360/ADuCM361 are specifically designed to operate in battery-powered applications where low power operation is critical. The microcontroller core can be configured in a normal operating mode that consumes 290 μA/MHz (including flash/ SRAM IDD). An overall system current consumption of 1 mA can be achieved with both ADCs on (input buffers off), PGA gain of 4, one SPI port on, and all timers on.The ADuCM360/ADuCM361 can be configured in a number of low power operating modes under direct program control, including a hibernate mode (internal wake-up timer active) that consumes only 4 μA. In hibernate mode, peripherals such as external interrupts or the internal wake-up timer can wake up the device. This mode allows the part to operate with ultralow power and still respond to asynchronous external or periodic events.APPLICATIONSIndustrial automation and process controlIntelligent precision sensing systems4 mA to 20 mA loop-powered smart sensor systemsMedical devices, patient monitoring