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TMS320VC33 Datasheet PDF

Part Series:
TMS320VC33 Series
Category:
Digital Signal Processors(DSPs)
Description:
DSP Floating-Point 32Bit 120MHz 60MIPS 144Pin LQFP
Updated Time: 2023/01/13 03:11:51 (UTC + 8)

TMS320VC33 Datasheet PDF Digital Signal Processors(DSPs)

58 Pages
TI
DSP Floating-Point 32Bit 120MHz 60MIPS 144Pin LQFP
58 Pages
TI
DIGITAL SIGNAL PROCESSOR

TMS320VC33PGE120 - TI Specifications

TYPE
DESCRIPTION
Mounting Style
Surface Mount
Frequency
120 MHz
Number of Pins
144 Pin
Supply Voltage (DC)
1.80 V, 3.30 V (max)
Case/Package
LQFP-144
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TMS320VC33PGE120 - TI Function Overview

description
The TMS320VC33 DSP is a 32-bit, floating-point processor manufactured in 0.18-µm four-level-metal CMOS(TImeline) technology. The TMS320VC33 is part of the TMS320C3x generation of DSPs from Texas
Instruments.
High-Performance Floating-Point Digital Signal Processor (DSP):
  − TMS320VC33-150
    − 13-ns Instruction Cycle Time
    − 150 Million Floating-Point Operations Per Second (MFLOPS)
    − 75 Million Instructions Per Second(MIPS)
  − TMS320VC33-120
    − 17-ns Instruction Cycle Time
    − 120 MFLOPS
    − 60 MIPS
34K ×32-Bit (1.1-Mbit) On-Chip Words of Dual-Access Static Random-Access Memory (SRAM) Configured in 2 ×16K Plus 2 ×1K Blocks to Improve Internal Performance
x5 Phase-Locked Loop (PLL) Clock Generator
Very Low Power: < 200 mW @ 150 MFLOPS
32-Bit High-Performance CPU
16- /32-Bit Integer and 32- /40-Bit Floating-Point Operations
Four Internally Decoded Page Strobes to Simplify Interface to I/O and Memory Devices
Boot-Program Loader
EDGEMODE Selectable External Interrupts
32-Bit Instruction Word, 24-Bit Addresses
Eight Extended-Precision Registers
On-Chip Memory-Mapped Peripherals:
  − One Serial Port
  − Two 32-Bit Timers
  − Direct Memory Access (DMA) Coprocessor for Concurrent I/O and CPU Operation
Fabricated Using the 0.18-µm (leff-Effective Gate Length) TImelineProcess Technology by Texas Instruments (TI)
144-Pin Low-Profile Quad Flatpack (LQFP) (PGE Suffix)
Two Address Generators With Eight Auxiliary Registers and Two Auxiliary Register Arithmetic Units(ARAUs)
Two Low-Power Modes
Two- and Three-Operand Instructions
Parallel Arithmetic/Logic Unit (ALU) and Multiplier Execution in a Single Cycle
Block-Repeat Capability
Zero-Overhead Loops With Single-Cycle Branches
Conditional Calls and Returns
Interlocked Instructions for Multiprocessing Support
Bus-Control Registers Configure Strobe-Control Wait-State Generation
1.8-V (Core) and 3.3-V (I/O) Supply Voltages
On-Chip Scan-Based Emulation Logic, IEEE Std 1149.1†(JTAG)
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