|Category||Semiconductors => Processors => Other Processors|
|Part family||TMS320BC57S Digital Signal Processors|
|Title||TMS320 Family->TMS320C5X Fixed Point DSP|
|Description||Digital Signal Processors 144-LQFP|
|Company||Texas Instruments, Inc.|
|Datasheet||Download TMS320BC57SPGE57 datasheet
|Pin nb||Package type||Ind std||JEDEC code||Package qty||Carrier||Device mark||Width (mm)||Length (mm)||Thick (mm)||Pitch (mm)|
|• A PCMCIA TMS320 DSP MediaCard for Sound and Fax/Modem Applications
This document describes the system architecture of the TMS320 digital signal processor (DSP) PCMCIA media card and its operation. Operational examples are provided for setting up the DSP, for loading and executing single and multiple algorithms, and for re | Doc
|• Calculation Of TMS320C5x Power Dissipation
The power supply current requirements for the 16-bit fixed-point TMS320C5x digital signal processor (DSP) depend not only on the device functionality, but also on the system parameters. This document describes the techniques for analyzing the system and de | Doc
|• Telecommunications Applications With the TMS320C5x
This book provides an overview of the TMS320C5x 16-bit fixed-point digital signal processor (DSP) family and its use in telecommunication applications. Each section provides application specific information about the following topics: digital cell systems, | Doc
|• Setting Up TMS320 DSP Interrupts in 'C'
Four steps are required to set the TMS320 DSP interrupts: create a interrupt service routine, initialize the vector table and set the memory map, enable the interrupts in the CPU, and enable the interrupt sources. This document shows how to set the interru | Doc
|• Improving 32-Channel DTMF Decoders in PBX Systems Using the TMS320C5x DSP
Using a DSP to perform multi-channel DTMF decoding can decrease PBX system cost while increasing system performance and flexibility. This document presents an improved technique for 32-channel DTMF decoding using the TMS320C5x 16-bit fixed-point DSP. The a | Doc
|• Use of the TMS320C5x Internal Oscillator With External Crystals or Resonators
The TMS320C5x high-speed 16-bit fixed-point DSP allows considerable flexibility to meet a wide range of clock requirements. This document provides information on crystal and ceramic resonators, their frequency characteristic, a background on oscillators, a | Doc
|• Minimizing Quantization Effects Using the TMS320 DSP Family
Due to its discrete nature, DSPs represent variables and performs arithmetic functions with a finite word length. This produces three effects: the selection of filter transfer functions is quantized with filter poles and zeros existing only at specific loc | Doc
Powerful 16-Bit TMS320C5x CPU 25-, 35-, and 50-ns Single-Cycle Instruction Execution Time for 5-V Operation 25-, 40-, and 50-ns Single-Cycle Instruction Execution Time for 3-V Operation Single-Cycle × 16-Bit Multiply/Add × 16-Bit Maximum Addressable External Memory Space (64K Program, 64K Data, 64K I/O, and 32K Global) × 16-Bit Single-Access On-Chip Program ROM × 16-Bit Single-Access On-Chip Program / Data RAM (SARAM) 1K Dual-Access On-Chip Program / Data RAM (DARAM) Full-Duplex Synchronous Serial Port for Coder/Decoder Interface Time-Division-Multiplexed (TDM) Serial Port Hardware or Software Wait-State Generation Capability On-Chip Timer for Control Operations Repeat Instructions for Efficient Use of Program Space Buffered Serial Port Host Port Interface
Multiple Phase-Locked Loop (PLL) Clocking Options Depending on Device) Block Moves for Data/Program Management On-Chip Scan-Based Emulation Logic Boundary Scan Five Packaging Options 100-Pin Quad Flat Package (PJ Suffix) 100-Pin Thin Quad Flat Package (PZ Suffix) 128-Pin Thin Quad Flat Package (PBK Suffix) 132-Pin Quad Flat Package (PQ Suffix) 144-Pin Thin Quad Flat Package (PGE Suffix) Low Power Dissipation and Power-Down Modes: mA / MIP) V, 40-MHz Clock (Average) mA / MIP) V, 40-MHz Clock (Average) V, 40-MHz Clock (IDLE1 Mode) V, 40-MHz Clock (IDLE2 Mode) 5 V, Clocks Off (IDLE2 Mode) High-Performance Static CMOS Technology IEEE Standard 1149.1 Test-Access Port (JTAG)description
The TMS320C5x generation of the Texas Instruments (TITM ) TMS320 digital signal processors (DSPs) is fabricated with static CMOS integrated circuit technology; the architectural design is based upon that of an earlier TI DSP, the TMS320C25. The combination of advanced Harvard architecture, on-chip peripherals, on-chip memory, and a highly specialized instruction set is the basis of the operational flexibility and speed of the 'C5x devices. They execute to 50 million instructions per second (MIPS). The 'C5x devices offer these advantages:
Enhanced TMS320 architectural design for increased performance and versatility Modular architectural design for fast development of spin-off devices Advanced integrated-circuit processing technology for increased performance Upward-compatible source code (source code for 'C1x and 'C2x DSPs is upward compatible with 'C5x DSPs.) Enhanced TMS320 instruction set for faster algorithms and for optimized high-level language operation New static-design techniques for minimizing power consumption and maximizing radiation tolerance
Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet. is a trademark of Texas Instruments Incorporated. IEEE Standard 1149.11990, IEEE Standard Test-Access Port and Boundary-Scan Architecture References 'C5x in this document include both TMS320C5x and TMS320LC5x devices unless specified otherwise.
PRODUCTION DATA information is current as of publication date. Products conform to specifications per the terms of Texas Instruments standard warranty. Production processing does not necessarily include testing of all parameters.
Table 1 provides a comparison of the devices in the 'C5x generation. It shows the capacity of on-chip RAM and ROM memories, number of serial and parallel I/O ports, execution time of one machine cycle, and type of package with total pin count. Table 1. Characteristics of the 'C5x Processors
ON-CHIP MEMORY (16-BIT WORDS) TMS320 DEVICES DARAM DATA TMS320LC57 TMS320C57S DATA + PROG SARAM DATA + PROG 3K 6K ROM PROG 32K 2K§ I/O PORTS SERIAL PARALLEL 64K + HPI 64K + HPI 64K + HPI POWER SUPPLY (V) CYCLE TIME (ns) PACKAGE TYPE QFP 132 pin 132 pin 100/132 pin 100/132 pin 100 pin 100 pin 132 pin 132 pin 100 pin 100 pin 100 pin 128 pin 144 pin 144 pin
6K 2K§ Sixteen of the 64K parallel I/O ports are memory mapped. QFP = Quad flatpack § ROM boot loader available ¶ TDM serial port not available # Includes auto-buffered serial port (BSP) but TDM serial port not available HPI = Host port interface
TCLKR TFSR / TADD CLKX TCLKX TOUT VSSC EMU1/ OFF NC VDDD D14 D15 MP/ MC VSSI TRST IAQ VDDC BIO HOLD READY RS
NC VDDI IACK CLKOUT1 XF HOLDA TDX DX TFSX / TFRM FSX CLKMD2 VSSI TDO VDDC X2 / CLKIN CLKIN2 BR STRB DS NC VSSC NC
|Related products with the same datasheet|
|Some Part number from the same manufacture Texas Instruments, Inc.|
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5962-9553701Q2A : D-Type Flip-Flops ti SN54AS175B, Hex/quadruple D-type Flip-flops With Clear
8509601FA : Multiplexers ti SN54ALS253, Dual 1-Of-4 Data Selectors/multiplexers With 3-State Outputs
SN74HC273DBR : D-Type Flip-Flops ti SN74HC273, Octal D-type Flip-flops With Clear
TMP320LC2407AVFA : DSP Controllers
SN74HC368DE4 : DUAL 4-bit Binary Counters
TS5A63157 : 12-ohm SPDT Analog Switch
74AUCH16244DGVRG4 : 16-bit Buffer/driver WITH 3-state Outputs
TPD1E04U04DPYT : TVS DIODE 3.6VWM 8.9VC 2X1SON Texas Instruments' TPD1E04U04 is a unidirectional, TVS, ESD protection diode for HDMI 2.0 and USB 3.0 circuit protection. The TPD1E04U04 is rated to dissipate ESD strikes above the maximum level specified in the IEC 61000-4-2 international standard (level 4). This device features a 0.5 pF IO capa
CC1120RHBR : IC RF TXRX+MCU ISM<1GHZ 32-VFQFN The MIKROE-2389 ccRF 3 click from MikroElektronika features the CC1120 high-performance RF transceiver for narrowband systems from Texas Instruments. This click will enable customers to add a low-power consumption radio transceiver at 433 MHz frequency. The ccRF 3 click is designed to run on a 3.
5962-8861903XA : TMS320 Family->TMS320C2X Fixed Point DSP. ti SMJ320C26B, Digital Signal Processor.
AD1555 : 24-Bit, 121 DB Typical Snr, Sigma-delta ADC With Integrated Pga. AD1555 Fourth Order - Modulator Large Dynamic Range 116 dB Min, 120 dB Typical 117 dB Typical 0.5 ms Low Input Noise: 80 nV rms 4 ms with Gain of 34,128 Low Distortion: 111 dB Max, 120 dB Typical Low Intermodulation: 122 dB Sampling Rate at 256 kSPS Very High Jitter Tolerance No External Antialias Filter Required Programmable Gain Front End Input.
AD766SD/883B : 16-bit DSP DACport. Zero-Chip Interface to Digital Signal Processors Complete DACPORT® On-Chip Voltage Reference Voltage and Current Outputs Serial, Twos-Complement Input 3 V Output Sample Rates to 390 kSPS 94 dB Minimum Signal-to-Noise Ratio 81 dB Maximum Total Harmonic Distortion 15-Bit Monotonicity 12 V Operation 16-Pin Plastic and Ceramic Packages Available in Commercial,.
ADSP-21MOD870 : DSP Block. 16-bit, First Complete Digital Modem on a Single Chip. PERFORMANCE Complete Single-Chip Internet Gateway Processor (No External Memory Required) Implements V.34/V.90 Data/FAX Modem Including Controller and Datapump 19 ns Instruction Cycle Time V, 52 MIPS Sustained Performance Open Architecture Platform Extensible to Voice Over IP and Other Applications Low Power Dissipation, 80 mW (Typical) for Digital.
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CS494003 : Audio DSPs. Multi-standard Audio Decoder.
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MAS35x5G : Audio DSPs. Midi Synthesizer / Compressed-audio And Speech Decoder. The MAS is a single-chip MIDI synthesizer with compressed audio and speech decoder , designed for implementation within portable applications. The MAS 35x5G includes a DSP engine with embedded RAM and ROM. It provides flexible digital interfaces for serial and parallel data input and serial data output. A program download option allows the support of additional.
MSP50C604 : Mixed-signal Processor. Advanced, Integrated Speech Synthesizer for High-Quality Sound Operates to 12.32 MHz (Performs to 12 MIPS) Slave Mode Enables Hours of Speech Using an External Processor and Memory Master Mode Allows 6.8 Mins of Speech Onboard Supports High-Quality Synthesis Algorithms such as MELP, CELP, LPC, ADPCM, and Polyphonic Music Simultaneous Speech Plus Music.
TMP320C40KGDC : 320 Family. Floating-point Digital Signal Processor Known Good Dies. TMP320C40KGDCT, SMJ320C40KGDCT FLOATING-POINT DIGITAL SIGNAL PROCESSOR KNOWN GOOD DIES SMJ: QML Processing to MILPRF38535 TMP: Commercial Level Processing Operating Temperature Ranges: Military (M) 125°C Commercial (C) 85°C Commercial (L) to 70°C Highest Performance Floating-Point Digital Signal Processor (DSP) 'C40-50: 40-ns Instruction Cycle.
TMS320F240PQ : TMS320 Family. ti TMS320F240, 16-bit, 5V Fixed Point DSP With Flash. D High-Performance Static CMOS Technology D Includes the T320C2xLP Core CPU Object Compatible With the TMS320C2xx Source Code Compatible With TMS320C25 Upwardly Compatible With 132-Pin Plastic Quad Flat Package (PQ Suffix) 50-ns Instruction Cycle Time Industrial and Automotive Temperature Available Memory 544 Words × 16 Bits of On-Chip Data/Program.
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TMS320LC15FNL : TMS320 Family->TMS320C1X Fixed Point DSP. ti TMS320LC15, Digital Signal Processors.
TMS320C6720 : The TMS320C672x is the next generation of Texas Instruments' C67x generation of high-performance 32-/64-bit floating-point digital signal processors. The TMS320C672x includes the TMS320C6727B, TMS320C6726B, TMS320C6722B, and TMS320C6720 devices.(1) Enhanced C67x+ CPU. The C67x+ CPU is an enhanced version of the C67x CPU used on the C671x DSPs. It is compatible.
TMS320DM6467 : Digital Media System-on-Chip The TMS320DM6467 (also referenced as DM6467) leverages TI’s DaVinci?? technology to meet the networked media encode and decode application processing needs of next-generation embedded devices. The DM6467 enables OEMs and ODMs to quickly bring to market devices featuring robust operating systems support, rich user interfaces,.
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