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ADI ADSP-21478KCPZ-1A

Manufacturer
MPN
ADSP-21478KCPZ-1A
LCSC Part #
C659735
Packaging
LFCSP-88
Customer #
Key Attributes
Floating-point 200MHz LFCSP-88 DSP (Digital Signal Processors) RoHS
DatasheetADI ADSP-21478KCPZ-1A
RoHS Compliance1 documents available
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QtyUnit Price(Reference Only)Total Amount
1+$ 29.6825$ 29.68
200+$ 11.4866$ 2297.32
500+$ 11.0837$ 5541.85
1,000+$ 10.8846$ 10884.60
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Products Specifications

All
TypeDescription
CategoryIntegrated Circuits (ICs)/Embedded/DSP (Digital Signal Processors)
ManufacturerADI
PackagingLFCSP-88
Operating Temperature0℃~+70℃
TypeFloating-point
FeaturesHardware MAC acceleration;Hardware FFT acceleration;Circular buffer support;Parallel data channel;DMA data transfer;High-speed peripheral interface;Integrated PWM control;RTC and timer
Clock Rate200MHz

Introduction

AI Translation

The ADSP-2147x SHARC processors belong to the SIMD SHARC family of DSPs and employ a Super Harvard architecture. They are source-code compatible with the ADSP-2126x, ADSP-2136x, ADSP-2137x, ADSP-2146x, ADSP-2116x DSPs, and the first-generation ADSP-2106x SHARC processors operating in SISD mode. These processors are 32/40-bit floating-point processors optimized for high-performance audio applications, featuring large on-chip SRAM, multiple internal buses to eliminate I/O bottlenecks, and an innovative Digital Application Interface (DAI).

Features

AI Translation
  • High-performance 32/40-bit floating-point processor optimized for high-performance audio processing
  • Single Instruction, Multiple Data (SIMD) computational architecture
  • On-chip memory: up to 5 Mb on-chip RAM, 4 Mb on-chip ROM
  • Operating frequency up to 300 MHz
  • Qualified for automotive applications
  • Code-compatible with all other products in the SHARC family
  • Audio-centric peripherals including digital application interface, serial ports, precision clock generators, S/PDIF transceiver, asynchronous sample rate converters, input data port, and more
  • Factory-programmed ROM versions include the latest Dolby and DTS audio decoders, available to IP license holders
  • Two processing elements (PEx, PEy), each comprising an ALU, multiplier, shifter, and data register file
  • Two data address generators (DAG1, DAG2)
  • One program sequencer with instruction cache
  • PM and DM buses supporting 2×64-bit data transfers per core processor cycle between memory and the core
  • One interval timer with pin
  • On-chip SRAM (up to 5 Mb)
  • One JTAG test access port for emulation and boundary scan; JTAG provides software debug via user breakpoints with flexible exception handling support
  • IOD0 (peripheral DMA) and IOD1 (external port DMA) buses for 32-bit data transfers
  • Peripheral and external port buses for core connectivity
  • External port with asynchronous memory interface (AMI) and SDRAM controller
  • Four pulse width modulation (PWM) control units
  • One memory-to-memory (MTM) unit for internal-to-internal memory transfers
  • Digital application interface comprising 4 precision clock generators (PCG), 1 input data port for serial and parallel interconnect (IDP/PDAP), 1 S/PDIF receiver/transmitter, 4 asynchronous sample rate converters, 8 serial ports, 1 shift register, and 1 flexible signal routing unit (DAI SRU)
  • Digital peripheral interface comprising 2 timers, 1 two-wire interface, 1 UART, 2 serial peripheral interfaces (SPI), 2 precision clock generators (PCG), 3 PWM units, and 1 flexible signal routing unit (DPI SRU)
  • Delivers 1.8 GFLOPS utilizing SIMD compute hardware running at 300 MHz
  • Many processor registers have shadow registers that can be activated during interrupt handling for fast context switching
  • General-purpose registers available for common tasks; USTAT (4) registers enable easy bit manipulation (set, clear, toggle, test, XOR) on all peripheral control and status registers
  • Data bus exchange register (PX) allows data transfer between the 64-bit PM data bus and 64-bit DM data bus, or between the 40-bit register file and the PM/DM data buses
  • Enhanced Harvard architecture enabling simultaneous fetch of 4 operands (2 per data bus) and 1 instruction per cycle
  • On-chip instruction cache supporting three-bus operation to fetch one instruction and four data values simultaneously
  • Data address generators with zero-overhead hardware circular buffer support; two DAGs contain sufficient registers to create up to 32 circular buffers
  • 48-bit instruction word supporting various parallel operations for compact programming
  • Variable Instruction Set Architecture (VISA) support with new 16-bit and 32-bit instructions