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ADSP-BF707BBCZ-4

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ADSP-BF707BBCZ-4

Part NumberADSP-BF707BBCZ-4
ManufacturerAnalog Devices Inc. (ADI)
CategoryIntegrated Circuits (ICs) > Embedded – DSP (Digital Signal Processors)
DescriptionLow‑Power 16/32‑Bit 400 MHz Blackfin+ Embedded Processor, 1 MB L2 SRAM, USB 2.0, CAN, LP‑BGA‑184 Package.
Stock StatusIn Stock
OriginOriginal Factory

Product Overview

The ADSP‑BF707BBCZ‑4 is ADI Blackfin+ 16/32‑bit embedded DSP running at 400 MHz. It integrates 1 MB ECC‑protected L2 SRAM and 512 KB ROM, dual CAN 2.0B, USB2.0 OTG, SD/eMMC and crypto security engine. Housed in 184‑LFBGA(12×12 mm), it targets industrial, automotive and portable low‑power embedded applications.

Core Advantages

Blackfin+ High‑Performance Core

400 MHz clock, up to 800 MMACS computation, mixes DSP signal‑processing and RISC MCU functions.

On‑Chip Memory with ECC

1 MB L2 SRAM with ECC plus 512 KB ROM, reduces external RAM dependency and improves system reliability.

Built‑in Hardware Security

Crypto acceleration for AES/DES/SHA and secure boot, protecting firmware and intellectual property.

Rich Industrial‑Grade Peripherals

Dual‑channel CAN 2.0B, USB 2.0 OTG, memory controllers and low‑power modes for energy‑sensitive embedded designs.

Key Specifications

BrandAnalog Devices (ADI)
RoHS StatusRoHS Compliant / Lead‑Free
EDA / CADPCB Footprint & 3D Model Available upon Request
Warranty1‑Year Standard Quality Warranty
Package / Case184‑LFBGA(12×12 mm)
Mounting TypeSurface Mount (SMD / SMT)
Surface Marking / SilkscreenADSP‑BF707BBCZ‑4 / ADI Logo
Core ArchitectureBlackfin+ 16/32‑Bit Core
Clock Frequency400 MHz
On‑Chip Memory1 MB L2 SRAM with ECC, 512 KB ROM
External Memory InterfaceLPDDR / DDR2 / QSPI / Asynchronous SRAM / Flash
Core Supply Voltage1.045 V to 1.1 V
I/O Supply Voltage1.8 V / 3.3 V
Interfaces & PeripheralsUSB 2.0 OTG, Dual CAN 2.0B, SPORT, SPI, I2C, UART, SD/eMMC, Crypto Engine
Operating Temperature-40°C to +85°C (Industrial Grade)
MMACS Performance800 MMACS
Memory TypeSRAM, ROM

Typical Applications

  • Industrial Automation, Motor Control, and Smart Energy Gateways
  • Automotive Infotainment, Active Noise Control, and Driver Assistance
  • Portable Medical Diagnostics and Patient Monitoring Devices
  • Embedded Audio Processing, Voice Recognition, and Acoustic Analytics
  • Secure Internet of Things (IoT) Edge Devices and Smart Sensing Systems

Order & Shipping Info

Minimum Order Quantity (MOQ)1 Piece
Shipping TimeShipped within 1‑2 business days
Delivery Time3‑7 working days worldwide
Shipping MethodsDHL, UPS, FedEx, EMS
Payment MethodsT/T (Bank Transfer), PayPal, Credit Card, Western Union

Technical Support

For datasheet, sample requests, stock check, or bulk pricing, please use the Quick Inquiry form. We will reply within 24 hours.

Frequently Asked Questions

Q1: What improvements does the Blackfin+ core bring?

A: Blackfin+ adds 32‑bit math unit, expanded accumulators and memory ECC, combining DSP signal‑processing and RISC MCU capabilities.

Q2: What is the on‑chip memory size of ADSP‑BF707BBCZ‑4?

A: 1 MB L2 SRAM (with ECC) + 512 KB ROM, supports large algorithm running on‑chip.

Q3: Does this DSP support hardware encryption & secure boot?

A: Yes. Integrated crypto engine supports AES, DES, 3DES, SHA, with secure boot for firmware protection.

Q4: How to get datasheet, CAD files or volume quotation?

A: Submit quick inquiry form for datasheet, CAD model, stock and bulk price.

Q5: What do suffix ‑4 and ‑2 mean? Are they pin‑compatible?

A: ‑4 = 400 MHz; ‑2 = 200 MHz. Pin‑to‑pin compatible (184‑LFBGA). Not direct drop‑in replacement, clock firmware modification required.

Q6: What are compatible alternative parts?

A: ADSP‑BF706BBCZ series is pin‑compatible downgrade alternative, less on‑chip SRAM. Full function equivalence is not guaranteed, resource re‑validation is needed.

Q7: What is the core voltage requirement?

A: Core voltage range: 1.045 V ~ 1.1 V. Do NOT use 1.0 V supply, will cause unstable operation or crash.

Q8: How many CAN channels are available?

A: Dual‑channel CAN 2.0B, for automotive and industrial field‑bus applications.

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