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ADI ADSP-2183BST-115 product image
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ADI ADSP-2183BST-115RoHS

Manufacturer
MPN
ADSP-2183BST-115
LCSC Part #
C3588183
Packaging
TQFP-128(14x20)
Customer #
Key Attributes
TQFP-128(14x20) DSP (Digital Signal Processors) RoHS
Datasheetpdf iconADI ADSP-2183BST-115
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Products Specifications

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TypeDescription
CategoryIntegrated Circuits (ICs)/Embedded/DSP (Digital Signal Processors)
ManufacturerADI
PackagingTQFP-128(14x20)
FeaturesHardware MAC acceleration;Zero-overhead loop;Circular buffer support;DMA data transfer;High-speed peripheral interface;Interrupt response;Low-power mode;RTC and timer

Additional Information

TypeDetails
Minimum1
Multiple1
Standard Packaging72
Sales UnitPiece

Introduction

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The ADSP-2183 is a single-chip microcomputer optimized for digital signal processing (DSP) and other high speed numeric processing applications. The ADSP-2183 combines the ADSP-2100 family base architecture (three computational units, data address generators and a program sequencer) with two serial ports, a 16-bit internal DMA port, a byte DMA port, a programmable timer, Flag I/O, extensive interrupt capabilities, and on-chip program and data memory. The ADSP-2183 integrates 80K bytes of on-chip memory configured as 16K words (24-bit) of program RAM, and 16K words (16-bit) of data RAM. Power-down circuitry is also provided to meet the low power needs of battery operated portable equipment. The ADSP-2183 is available in 128-lead LQFP, and 144-Ball Mini-BGA packages. In addition, the ADSP-2183 supports new instructions, which include bit manipulations—bit set, bit clear, bit toggle, bit test— new ALU constants, new multiplication instruction (x squared), biased rounding, result free ALU operations, I/O memory transfers and global interrupt masking, for increased flexibility. Fabricated in a high speed, double metal, low power, CMOS process, the ADSP-2183 operates with a 19 ns instruction cycle time. Every instruction can execute in a single processor cycle. The ADSP-2183’s flexible architecture and comprehensive instruction set allow the processor to perform multiple operations in parallel. In one processor cycle the ADSP-2183 can: • Generate the next program address • Fetch the next instruction • Perform one or two data moves • Update one or two data address pointers • Perform a computational operation

Features

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  • 19 ns Instruction Cycle Time from 26.32 MHz Crystal @ 3.3 Volts
  • 52 MIPS Sustained Performance
  • Single-Cycle Instruction Execution
  • Single-Cycle Context Switch
  • 3-Bus Architecture Allows Dual Operand Fetches in Every Instruction Cycle
  • Multifunction Instructions
  • Power-Down Mode Featuring Low CMOS Standby Power Dissipation with 300 Cycle Recovery from Power-Down Condition
  • Low Power Dissipation in Idle Mode
  • ADSP-2100 Family Code Compatible, with Instruction Set Extensions
  • 80K Bytes of On-Chip RAM, Configured as 16K Words On-Chip Program Memory RAM 16K Words On-Chip Data Memory RAM
  • Dual Purpose Program Memory for Both Instruction and Data Storage
  • Independent ALU, Multiplier/Accumulator, and Barrel Shifter Computational Units
  • Two Independent Data Address Generators
  • Powerful Program Sequencer Provides Zero Overhead Looping Conditional Instruction Execution
  • Programmable 16-Bit Interval Timer with Prescaler
  • 128-Lead LQFP, 144-Ball Mini-BGA
  • 16-Bit Internal DMA Port for High Speed Access to On-Chip Memory
  • 4 MByte Memory Interface for Storage of Data Tables and Program Overlays
  • 8-Bit DMA to Byte Memory for Transparent Program and Data Memory Transfers
  • I/O Memory Interface with 2048 Locations Supports Parallel Peripherals
  • Programmable Memory Strobe and Separate I/O Memory Space Permits “Glueless” System Design
  • Programmable Wait State Generation
  • Two Double-Buffered Serial Ports with Companding Hardware and Automatic Data Buffering
  • Automatic Booting of On-Chip Program Memory from Byte-Wide External Memory, e.g., EPROM, or Through Internal DMA Port
  • Six External Interrupts
  • 13 Programmable Flag Pins Provide Flexible System Signaling
  • ICE-Port Emulator Interface Supports Debugging in Final Systems

Applications

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