사양
| 속성 | 가치 |
| Supplier | Rochester Electronics, LLC,Analog Devices Inc. |
| Package / Case | Bulk,Tray |
| Series | SHARC® |
| Part Status | Obsolete |
| Type | Floating Point |
| Interface | Host Interface, Link Port, Serial Port |
| Clock Rate | 40MHz |
| Non - Volatile Memory | External |
| On - Chip RAM | 256kB |
| Voltage - I / O | 3.30V |
| Voltage - Core | 3.30V |
| Operating Temperature | -40°C ~ 85°C (TC) |
| Mounting Type | Surface Mount |
개요
Description
ADSP-21062 is a 32‑bit fixed‑point DSP core from Analog Devices (early SHARC/2106x family) featuring a multi‑stage pipeline, a 40‑bit accumulator, and a high‑throughput MAC for real‑time DSP tasks.
ADSP-21062 LABZ-160 is a teaching/learning lab package built around this core. It usually includes a hardware board with the 21062, memory and I/O peripherals, and a software toolchain (assembler, C compiler, debugger/emulator).
Labs typically guide you through:
- programming in C/assembly and configuring the processor
- interrupt‑driven I/O and DMA
- real‑time DSP tasks and timing/ profiling
- implementing DSP algorithms (FIR/IIR filters, basic convolution, basic FFT concepts)
- memory addressing, data buffering, and pipeline behavior
Outcomes:
- understanding core architecture, instruction set, and fixed‑point arithmetic
- experience with the development workflow and performance optimization on the 21062
Note: exact tools and board layout depend on the LABZ revision.
ADSP-21062 LABZ-160 is a teaching/learning lab package built around this core. It usually includes a hardware board with the 21062, memory and I/O peripherals, and a software toolchain (assembler, C compiler, debugger/emulator).
Labs typically guide you through:
- programming in C/assembly and configuring the processor
- interrupt‑driven I/O and DMA
- real‑time DSP tasks and timing/ profiling
- implementing DSP algorithms (FIR/IIR filters, basic convolution, basic FFT concepts)
- memory addressing, data buffering, and pipeline behavior
Outcomes:
- understanding core architecture, instruction set, and fixed‑point arithmetic
- experience with the development workflow and performance optimization on the 21062
Note: exact tools and board layout depend on the LABZ revision.
Pinout
Pin count: 160 pins.
Function: ADSP-21062LABZ-160 is a SHARC-family 32-bit digital signal processor (DSP) with a Harvard architecture, packaged in a 160-pin (LABZ-160) LQFP. It’s a high-performance DSP core for signal-processing applications.
Function: ADSP-21062LABZ-160 is a SHARC-family 32-bit digital signal processor (DSP) with a Harvard architecture, packaged in a 160-pin (LABZ-160) LQFP. It’s a high-performance DSP core for signal-processing applications.
Manufacturer
- Manufacturer: Analog Devices, Inc. (ADI).
- What kind of company: An American multinational semiconductor company that designs and manufactures analog, mixed-signal, and digital signal processing integrated circuits (DSPs, ADCs/DACs, op-amps, etc.).
- What kind of company: An American multinational semiconductor company that designs and manufactures analog, mixed-signal, and digital signal processing integrated circuits (DSPs, ADCs/DACs, op-amps, etc.).
Application
Typical application areas for the ADSP-21062 LABZ-160:
- Real-time audio/speech processing (filters, noise reduction, echo cancellation, codecs)
- Digital communications (mod/demod, filtering, encoding/decoding)
- Radar/sonar and sensor signal processing (FFT, spectral analysis, beamforming)
- Instrumentation and data acquisition (vibration, biomedical signals)
- Image/video processing (filters, edge/feature extraction)
- Industrial/automotive DSP (motor control, real-time control loops)
- Prototyping and teaching labs (DSP algorithm development and benchmarking)
- Real-time audio/speech processing (filters, noise reduction, echo cancellation, codecs)
- Digital communications (mod/demod, filtering, encoding/decoding)
- Radar/sonar and sensor signal processing (FFT, spectral analysis, beamforming)
- Instrumentation and data acquisition (vibration, biomedical signals)
- Image/video processing (filters, edge/feature extraction)
- Industrial/automotive DSP (motor control, real-time control loops)
- Prototyping and teaching labs (DSP algorithm development and benchmarking)
Package
It uses a 160-pin quad flat package — specifically an LQFP-160 package.