ADSP-BF701BBCZ-2 Allicdata Electronics
Allicdata Part #:

ADSP-BF701BBCZ-2-ND

Manufacturer Part#:

ADSP-BF701BBCZ-2

Price: $ 8.81
Product Category:

Integrated Circuits (ICs)

Manufacturer: Analog Devices Inc.
Short Description: IC DSP LP 128KB L2SR 184BGA
More Detail: N/A
DataSheet: ADSP-BF701BBCZ-2 datasheetADSP-BF701BBCZ-2 Datasheet/PDF
Quantity: 1000
72 +: $ 8.00695
Stock 1000Can Ship Immediately
$ 8.81
Specifications
Series: Blackfin®
Packaging: Tray 
Part Status: Active
Type: Blackfin+
Interface: CAN, DSPI, EBI/EMI, I²C, PPI, QSPI, SD/SDIO, SPI, SPORT, UART/USART, USB OTG
Clock Rate: 200MHz
Non-Volatile Memory: ROM (512 kB)
On-Chip RAM: 128kB
Voltage - I/O: 1.8V, 3.3V
Voltage - Core: 1.10V
Operating Temperature: -40°C ~ 85°C (TA)
Mounting Type: Surface Mount
Package / Case: 184-LFBGA, CSPBGA
Supplier Device Package: 184-CSPBGA (12x12)
Base Part Number: ADSP-BF701
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

The ADSP-BF701BBCZ-2 is an embedded digital signal processor (DSP) designed for a wide range of general purpose applications in the industrial and communications industries. ADSP-BF701BBCZ-2 DSPs offer an extensive set of features that make them suitable for a variety of applications, including VLIW instruction set, floating-point interfaces and advanced peripherals. With the flexibility of the DSP architecture and the on-chip peripheral features, ADSP-BF701BBCZ-2 DSPs can be used for audio and motor control, as well as communications and networking.

ADSP-BF701BBCZ-2 DSPs are designed around a VLIW (Very Long Instruction Word) core. This core design enables the processor to execute multiple, complex instructions in parallel, resulting in extremely high performance with low power consumption. The VLIW architecture is also highly scalable, which makes it suitable for a variety of applications. The standard instruction set of the core consists of both 16-bit and 32-bit instructions, which can be used to perform various functions, such as arithmetic and logic, data movement, control flow, and system and timer operations. In addition, the processor supports a variety of special purpose instructions, such as multiply-accumulate, Gray-code rotations, bit counting, and instruction execution count and looping. All of these capabilities make the processor suitable for a wide range of signal processing, data manipulation, and protocol processing tasks.

One of the main features of the ADSP-BF701BBCZ-2 DSPs is its floating-point instruction set. This feature enables the processor to perform single-instruction multiple data (SIMD) instructions, which can greatly improve execution times and reduce power consumption. Additionally, the floating-point instruction set provides excellent accuracy and stability for signal processing and data manipulation tasks. The floating-point unit also enables the processor to perform a number of complex algorithms, such as matrix multiplication and convolution, which are useful for applications such as image processing and speech recognition.

In addition to its core features, the ADSP-BF701BBCZ-2 also provides a variety of on-chip peripheral features. These include a three-channel direct memory access (DMA) controller, a single-cycle dual-port RAM, a four-channel UART, and a multiplexed I/O system. The on-chip peripherals enable the processor to handle a variety of both real-time and non-real-time applications with minimal overhead from the processor itself. Additionally, the on-chip peripheral features allow the processor to support a variety of external communication interfaces, such as SPI, I2C, and CAN.

The combination of features provided by the ADSP-BF701BBCZ-2 DSPs makes them ideal for a wide range of applications. These include audio and video processing, motor control, embedded control systems for industrial applications, and communications and networking. The processor\'s VLIW architecture enables the DSP to provide high performance with low power consumption, single-instruction multiple data (SIMD) operations, and support for a variety of external communication interfaces. The floating-point instruction set moreover provides accurate and stable results for signal processing and data manipulation tasks. Additionally, the on-chip peripheral features enable the processor to handle a variety of both real-time and non-real-time applications.

The specific data is subject to PDF, and the above content is for reference

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