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CPU 16-bit Frequency (MHz) 75, 200 Hardware accelerators FFT Coprocessor Operating system DSP/BIOS, VLX Rating Catalog Operating temperature range (°C) -40 to 85
CPU 16-bit Frequency (MHz) 75, 200 Hardware accelerators FFT Coprocessor Operating system DSP/BIOS, VLX Rating Catalog Operating temperature range (°C) -40 to 85
NFBGA (ZCH) 196 100 mm² (10 mm × 10 mm)
  • CORE:
    • High-Performance, Low-Power, TMS320C55x Fixed-Point Digital Signal Processor
      • 13.33- to 5-ns Instruction Cycle Time
      • 75- to 200-MHz Clock Rate
      • One or Two Instructions Executed per Cycle
      • Dual Multiply-and-Accumulate Units (Up to 450 Million Multiply-Accumulates per Second [MMACS])
      • Two Arithmetic and Logic Units (ALUs)
      • Three Internal Data or Operand Read Buses and Two Write Buses
      • Software-Compatible with C55x Devices
      • Industrial Temperature Devices Available
    • 320KB of Zero-Wait State On-Chip RAM:
      • 64KB of Dual-Access RAM (DARAM),
        8 Blocks of 4K x 16-Bit
      • 256KB of Single-Access RAM (SARAM),
        32 Blocks of 4K x 16-Bit
    • 128KB of Zero Wait-State On-Chip ROM
      (4 Blocks of 16K x 16-Bit)
    • Tightly Coupled FFT Hardware Accelerator
  • PERIPHERAL:
    • One Universal Host-Port Interface (UHPI) with 16-Bit Muxed Address or Data Bus
    • Master and Slave Multichannel Serial Ports Interface (McSPI) with Three Chip Selects
    • Master and Slave Multichannel Buffered Serial Ports Interface (McBSP)
    • 16- and 8-Bit External Memory Interface (EMIF) with Glueless Interface to:
      • 8- or 16-Bit NAND Flash, 1- or 4-Bit ECC
      • 8- and 16-Bit NOR Flash
      • Asynchronous Static RAM (SRAM)
      • SDRAM or mSDRAM (1.8, 2.75, and 3.3 V)
    • 3.84375M x 16-Bit Maximum Addressable External Memory Space (SDRAM or mSDRAM)
    • Universal Asynchronous Receiver/Transmitter (UART)
    • Device USB Port with Integrated 2.0 High-Speed PHY that Supports:
      • USB 2.0 Full- and High-Speed Devices
    • Direct Memory Access (DMA) Controller
      • Four DMA with Four Channels Each
    • Three 32-Bit General-Purpose (GP) Timers
      • One Selectable as a Watchdog or GP
      • Clocking Options, Including External General-Purpose I/O (GPIO) Clock Input
    • Two MultiMedia Card and Secure Digital (eMMC, MMC, and SD) Interfaces
    • Serial Port Interface (SPI) with Four Chip Selects
    • Master and Slave Inter-Integrated Circuit (I2C Bus)
    • Three Inter-IC Sound (I2S Bus) Modules for Data Transport
    • 10-Bit 4-Input Successive Approximation (SAR) ADC
    • IEEE-1149.1 (JTAG)
      Boundary-Scan-Compatible
    • Up to 26 GPIO Pins (Multiplexed with Other Functions)
  • POWER:
    • Four Core Isolated Power Supply Domains: Analog, RTC, CPU and Peripherals, and USB
    • Four I/O Isolated Power Supply Domains: RTC I/O, EMIF I/O, USB PHY, and DVDDIO
    • 1.05-V Core, 1.8-, 2.75-, or 3.3-V I/Os
    • 1.3-V Core, 1.8-, 2.75-, or 3.3-V I/Os
    • 1.4-V Core, 1.8-, 2.75-, or 3.3-V I/Os
  • CLOCK:
    • Real-Time Clock (RTC) with Crystal Input, Separate Clock Domain, and Power Supply
    • Software-Programmable Phase-Locked Loop (PLL) Clock Generator
  • BOOTLOADER:
    • On-Chip ROM Bootloader
      • Each Peripheral Supports Unencrypted Booting
  • PACKAGE:
    • 196-Terminal Pb-Free Plastic BGA (Ball Grid Array) (ZCH Suffix), 0.65-mm Pitch

All trademarks are the property of their respective owners. All trademarks are the property of their respective owners.

  • CORE:
    • High-Performance, Low-Power, TMS320C55x Fixed-Point Digital Signal Processor
      • 13.33- to 5-ns Instruction Cycle Time
      • 75- to 200-MHz Clock Rate
      • One or Two Instructions Executed per Cycle
      • Dual Multiply-and-Accumulate Units (Up to 450 Million Multiply-Accumulates per Second [MMACS])
      • Two Arithmetic and Logic Units (ALUs)
      • Three Internal Data or Operand Read Buses and Two Write Buses
      • Software-Compatible with C55x Devices
      • Industrial Temperature Devices Available
    • 320KB of Zero-Wait State On-Chip RAM:
      • 64KB of Dual-Access RAM (DARAM),
        8 Blocks of 4K x 16-Bit
      • 256KB of Single-Access RAM (SARAM),
        32 Blocks of 4K x 16-Bit
    • 128KB of Zero Wait-State On-Chip ROM
      (4 Blocks of 16K x 16-Bit)
    • Tightly Coupled FFT Hardware Accelerator
  • PERIPHERAL:
    • One Universal Host-Port Interface (UHPI) with 16-Bit Muxed Address or Data Bus
    • Master and Slave Multichannel Serial Ports Interface (McSPI) with Three Chip Selects
    • Master and Slave Multichannel Buffered Serial Ports Interface (McBSP)
    • 16- and 8-Bit External Memory Interface (EMIF) with Glueless Interface to:
      • 8- or 16-Bit NAND Flash, 1- or 4-Bit ECC
      • 8- and 16-Bit NOR Flash
      • Asynchronous Static RAM (SRAM)
      • SDRAM or mSDRAM (1.8, 2.75, and 3.3 V)
    • 3.84375M x 16-Bit Maximum Addressable External Memory Space (SDRAM or mSDRAM)
    • Universal Asynchronous Receiver/Transmitter (UART)
    • Device USB Port with Integrated 2.0 High-Speed PHY that Supports:
      • USB 2.0 Full- and High-Speed Devices
    • Direct Memory Access (DMA) Controller
      • Four DMA with Four Channels Each
    • Three 32-Bit General-Purpose (GP) Timers
      • One Selectable as a Watchdog or GP
      • Clocking Options, Including External General-Purpose I/O (GPIO) Clock Input
    • Two MultiMedia Card and Secure Digital (eMMC, MMC, and SD) Interfaces
    • Serial Port Interface (SPI) with Four Chip Selects
    • Master and Slave Inter-Integrated Circuit (I2C Bus)
    • Three Inter-IC Sound (I2S Bus) Modules for Data Transport
    • 10-Bit 4-Input Successive Approximation (SAR) ADC
    • IEEE-1149.1 (JTAG)
      Boundary-Scan-Compatible
    • Up to 26 GPIO Pins (Multiplexed with Other Functions)
  • POWER:
    • Four Core Isolated Power Supply Domains: Analog, RTC, CPU and Peripherals, and USB
    • Four I/O Isolated Power Supply Domains: RTC I/O, EMIF I/O, USB PHY, and DVDDIO
    • 1.05-V Core, 1.8-, 2.75-, or 3.3-V I/Os
    • 1.3-V Core, 1.8-, 2.75-, or 3.3-V I/Os
    • 1.4-V Core, 1.8-, 2.75-, or 3.3-V I/Os
  • CLOCK:
    • Real-Time Clock (RTC) with Crystal Input, Separate Clock Domain, and Power Supply
    • Software-Programmable Phase-Locked Loop (PLL) Clock Generator
  • BOOTLOADER:
    • On-Chip ROM Bootloader
      • Each Peripheral Supports Unencrypted Booting
  • PACKAGE:
    • 196-Terminal Pb-Free Plastic BGA (Ball Grid Array) (ZCH Suffix), 0.65-mm Pitch

All trademarks are the property of their respective owners. All trademarks are the property of their respective owners.

This device is a member of TI's C5000 fixed-point Digital Signal Processor (DSP) product family and is designed for low active and standby power consumption.

The device is based on the TMS320C55x DSP generation CPU processor core. The C55x DSP architecture achieves high performance and low power through increased parallelism and total focus on power savings. The CPU supports an internal bus structure that is composed of one program bus, one 32-bit data read bus and two 16-bit data read buses, two 16-bit data write buses, and additional buses dedicated to peripheral and DMA activity. These buses provide the ability to perform up to four 16-bit data reads and two 16-bit data writes in a single cycle. The device also includes four DMA controllers, each with 4 channels, providing data movement for 16 independent channel contexts without CPU intervention. Each DMA controller can perform one 32-bit data transfer per cycle, in parallel and independent of the CPU activity.

The C55x CPU provides two multiply-accumulate (MAC) units, each capable of 17-bit x 17-bit multiplication and a 32-bit add in a single cycle. A central 40-bit arithmetic and logic unit (ALU) is supported by an additional 16-bit ALU. Use of the ALUs is under instruction set control, providing the ability to optimize parallel activity and power consumption. These resources are managed in the Address Unit (AU) and Data Unit (DU) of the C55x CPU.

The C55x CPU supports a variable byte width instruction set for improved code density. The Instruction Unit (IU) performs 32-bit program fetches from internal or external memory and queues instructions for the Program Unit (PU). The PU decodes the instructions, directs tasks to the AU and DU resources, and manages the fully protected pipeline. Predictive branching capability avoids pipeline flushes on execution of conditional instructions.

The GPIO functions along with the 10-bit SAR ADC to provide sufficient pins for status, interrupts, and bit I/O for keyboards, and media interfaces.

Serial media is supported through two multimedia card and secure digital (MMC and SD) peripherals, three Inter-IC Sound (I2S Bus) modules, one serial port interface (SPI) with up to four chip selects, one master and slave multichannel serial port interface (McSPI) with up to three chip selects, one multichannel serial port (McBSP), one I2C multimaster and slave interface, and a universal asynchronous receiver/transmitter (UART) interface

The device peripheral set includes an external memory interface (EMIF) that provides glueless access to asynchronous memories, such as EPROM, NOR, NAND, and SRAM, as well as to high-speed, high-density memories such as synchronous DRAM (SDRAM) and mobile SDRAM (mSDRAM).

Additional peripherals include a configurable 16-bit universal host-port interface (UHPI), a high-speed universal serial bus (USB2.0) device mode only, a real-time clock (RTC), three general-purpose timers with one configurable as a watchdog timer, and an analog phase-locked loop (APLL) clock generator.

The device also includes a tightly coupled FFT hardware accelerate that supports 8- to 1024-point (by power of 2) real- and complex-valued FFTs and three integrated LDOs to power different sections of the device, except CVDDRTC which requires an external power source: ANA_LDO to provide 1.3 V to the SAR and power-management circuits (VDDA_ANA), DSP_LDO to provide 1.3 or 1.05 V to the DSP core (CVDD), selectable on-the-fly by software as long as operating frequency ranges are observed, and USB_LDO to provide 1.3 V to the USB core digital (USB_VDD1P3) and PHY circuits (USB_VDDA1P3).

The device is supported by the industry’s award-winning eXpressDSP, Code Composer Studio Integrated Development Environment (IDE), DSP/BIOS, Texas Instruments’ algorithm standard, and a large third-party network. Code Composer Studio IDE features code generation tools including a C Compiler and Linker, RTDX, XDS100, XDS510, XDS560 emulation device drivers, and evaluation modules. The device is also supported by the C55x DSP library which features more than 50 foundational software kernels (FIR filters, IIR filters, FFTs, and various math functions) as well as chip support libraries.

This device is a member of TI's C5000 fixed-point Digital Signal Processor (DSP) product family and is designed for low active and standby power consumption.

The device is based on the TMS320C55x DSP generation CPU processor core. The C55x DSP architecture achieves high performance and low power through increased parallelism and total focus on power savings. The CPU supports an internal bus structure that is composed of one program bus, one 32-bit data read bus and two 16-bit data read buses, two 16-bit data write buses, and additional buses dedicated to peripheral and DMA activity. These buses provide the ability to perform up to four 16-bit data reads and two 16-bit data writes in a single cycle. The device also includes four DMA controllers, each with 4 channels, providing data movement for 16 independent channel contexts without CPU intervention. Each DMA controller can perform one 32-bit data transfer per cycle, in parallel and independent of the CPU activity.

The C55x CPU provides two multiply-accumulate (MAC) units, each capable of 17-bit x 17-bit multiplication and a 32-bit add in a single cycle. A central 40-bit arithmetic and logic unit (ALU) is supported by an additional 16-bit ALU. Use of the ALUs is under instruction set control, providing the ability to optimize parallel activity and power consumption. These resources are managed in the Address Unit (AU) and Data Unit (DU) of the C55x CPU.

The C55x CPU supports a variable byte width instruction set for improved code density. The Instruction Unit (IU) performs 32-bit program fetches from internal or external memory and queues instructions for the Program Unit (PU). The PU decodes the instructions, directs tasks to the AU and DU resources, and manages the fully protected pipeline. Predictive branching capability avoids pipeline flushes on execution of conditional instructions.

The GPIO functions along with the 10-bit SAR ADC to provide sufficient pins for status, interrupts, and bit I/O for keyboards, and media interfaces.

Serial media is supported through two multimedia card and secure digital (MMC and SD) peripherals, three Inter-IC Sound (I2S Bus) modules, one serial port interface (SPI) with up to four chip selects, one master and slave multichannel serial port interface (McSPI) with up to three chip selects, one multichannel serial port (McBSP), one I2C multimaster and slave interface, and a universal asynchronous receiver/transmitter (UART) interface

The device peripheral set includes an external memory interface (EMIF) that provides glueless access to asynchronous memories, such as EPROM, NOR, NAND, and SRAM, as well as to high-speed, high-density memories such as synchronous DRAM (SDRAM) and mobile SDRAM (mSDRAM).

Additional peripherals include a configurable 16-bit universal host-port interface (UHPI), a high-speed universal serial bus (USB2.0) device mode only, a real-time clock (RTC), three general-purpose timers with one configurable as a watchdog timer, and an analog phase-locked loop (APLL) clock generator.

The device also includes a tightly coupled FFT hardware accelerate that supports 8- to 1024-point (by power of 2) real- and complex-valued FFTs and three integrated LDOs to power different sections of the device, except CVDDRTC which requires an external power source: ANA_LDO to provide 1.3 V to the SAR and power-management circuits (VDDA_ANA), DSP_LDO to provide 1.3 or 1.05 V to the DSP core (CVDD), selectable on-the-fly by software as long as operating frequency ranges are observed, and USB_LDO to provide 1.3 V to the USB core digital (USB_VDD1P3) and PHY circuits (USB_VDDA1P3).

The device is supported by the industry’s award-winning eXpressDSP, Code Composer Studio Integrated Development Environment (IDE), DSP/BIOS, Texas Instruments’ algorithm standard, and a large third-party network. Code Composer Studio IDE features code generation tools including a C Compiler and Linker, RTDX, XDS100, XDS510, XDS560 emulation device drivers, and evaluation modules. The device is also supported by the C55x DSP library which features more than 50 foundational software kernels (FIR filters, IIR filters, FFTs, and various math functions) as well as chip support libraries.

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기술 자료

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22개 모두 보기
상위 문서 유형 직함 형식 옵션 최신 영어 버전 다운로드 날짜
* 데이터 시트 TMS320C5517 Fixed-Point Digital Signal Processor datasheet (Rev. C) PDF | HTML 2014. 4. 23
* 정오표 TMS320C5517 Fixed-Point DSP Silicon Errata (Rev. B) 2017. 9. 7
애플리케이션 노트 How to Migrate CCS 3.x Projects to the Latest CCS (Rev. A) PDF | HTML 2021. 5. 19
애플리케이션 노트 Using the TMS320C5517 Bootloader (Rev. A) 2019. 11. 21
애플리케이션 노트 C55x CSL Audio Pre-Processing PDF | HTML 2019. 6. 17
애플리케이션 노트 TMS320VC5502 to TMS320C5517 Hardware Migration Guide 2018. 7. 31
애플리케이션 노트 Sitara Linux ALSA DSP Microphone Array Voice Recognition 2017. 6. 30
백서 Voice as the user interface – a new era in speech processing white Paper 2017. 5. 9
애플리케이션 노트 MEMS Microphone Direct PDM Input via I2S to a C5515 EVM With Software Decimation 2016. 9. 22
애플리케이션 노트 Usage Guidelines for C55x On-Chip Low Dropout Regulators (LDOs) 2016. 7. 26
애플리케이션 노트 Instructions to Benchmark C55 DSP Library 2016. 4. 1
애플리케이션 노트 C5000 DSP-Based Low-Power System Design 2015. 11. 30
애플리케이션 노트 Power Estimation and Power Consumption summary for TMS320C5517 Device 2015. 10. 6
사용 설명서 TMS320C5517 Digital Signal Processor Technical Reference Manual (Rev. B) 2015. 9. 30
애플리케이션 노트 Migrating from TMS320C5515 to 5517 2014. 4. 2
애플리케이션 노트 Estimating Power Consumption on the TMS320C5517 2014. 4. 2
애플리케이션 노트 Validating High- and Full-Speed USB on TMS320C5517 2014. 4. 2
사용 설명서 TMS320C55x Optimizing C/C++ Compiler User's Guide (Rev. G) 2011. 11. 9
사용 설명서 TMS320C55x Assembly Language Tools User's Guide (Rev. I) 2011. 11. 9
사용 설명서 TMS320C55x v3.x DSP Algebraic Instruction Set Reference Guide (Rev. E) 2009. 6. 24
사용 설명서 TMS320C55x v3.x DSP Mnemonic Instruction Set Reference Guide (Rev. E) 2009. 6. 24
사용 설명서 TMS320C55x DSP v3.x CPU Reference Guide (Rev. E) 2009. 6. 17

설계 및 개발

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디버그 프로브

TMDSEMU200-U — XDS200 USB 디버그 프로브

XDS200은 TI 임베디드 장치를 디버깅하는 데 사용되는 디버그 프로브(에뮬레이터)입니다. 대부분의 장치의 경우 더욱 저렴한 신형 XDS110(www.ti.com/tool/TMDSEMU110-U)을 사용하실 것을 권장합니다. XDS200은 단일 포드에서 다양한 표준(IEEE1149.1, IEEE1149.7, SWD)을 지원합니다. 모든 XDS 디버그 프로브는 ETB(임베디드 트레이스 버퍼)가 포함되어 있는 모든 Arm® 및 DSP 프로세서에서 코어 및 시스템 트레이스를 지원합니다.

XDS200은 TI 20핀 커넥터(TI 14핀, (...)

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TMDSEMU560V2STM-U — XDS560™ 소프트웨어 v2 시스템 추적 USB 디버그 프로브

XDS560v2는 디버그 프로브의 XDS560™ 제품군 중 최고의 성능을 가진 제품으로, 기존의 JTAG 표준(IEEE1149.1)과 cJTAG(IEEE1149.7)를 모두 지원합니다.  SWD(직렬 와이어 디버그)는 지원하지 않습니다.

모든 XDS 디버그 프로브는 ETB(임베디드 추적 버퍼)가 있는 모든 ARM 및 DSP 프로세서에서 코어와 시스템 트레이스를 지원합니다.  핀을 통한 추적의 경우 XDS560v2 PRO TRACE가 필요합니다.

XDS560v2는 MIPI HSPT 60핀 커넥터(TI 14핀, TI 20핀 및 ARM (...)

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TMDSEMU560V2STM-UE — XDS560v2 시스템 추적 USB 및 이더넷 디버그 프로브

The XDS560v2 is the highest performance of the XDS family of debug probes and supports both the traditional JTAG standard (IEEE1149.1) and cJTAG (IEEE1149.7). Note that it does not support serial wire debug (SWD).

All XDS debug probes support Core and System Trace in all ARM and DSP processors that (...)

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LB-3P-TRACE32-DSP — DSP(디지털 신호 프로세서)용 Lauterbach TRACE32 디버그 및 트레이스 시스템

Lauterbach‘s TRACE32® tools are a suite of leading-edge hardware and software components that enables developers to analyze, optimize and certify all kinds of single- or multi-core Digital Signal processors (DSPs) which are a popular choice for audio and video processing as well as radar data (...)

발송: Lauterbach GmbH
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드라이버 또는 라이브러리

AEC-AER — Acoustic echo cancellation/removal for TI C64x+, C674x, C55x and Cortex®-A8 processors

Voice Library - VoLIB provides components that, together, facilitate the development of the signal processing chain for Voice over IP applications such as infrastructure, enterprise, residential gateways and IP phones. Together with optimized implementations of ITU-T voice codecs, that can be (...)

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C55XCSL-LOWPOWER — TMS320C55x Chip Support Library for C5504/05, C5514/15/17 and C5535/45 devices

C55x CSL(칩 지원 라이브러리)은 사용 편의성, 다양한 C55x 장치 간 호환성 및 하드웨어 추상화를 위해 DSP 온칩 주변 기기를 구성하고 제어하는 데 사용되는 API(애플리케이션 프로그래밍 인터페이스)를 제공합니다. CSL은 표준화 및 이식성을 제공하여 개발 시간을 단축합니다.

  • C55x CSL(SPRC133): 기능 섹션에 나열된 기능은 C5501, C5502, C5509, C5509A 및 C5510, C5510A를 비롯한 TMS320C55x DSP를 위해 특별히 설계되었습니다.
  • C55x CSL - 초저전력: 기능 섹션에 (...)
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드라이버 또는 라이브러리

FAXLIB — FAX library (FAXLIB) for C66x, C64x+ and C55x processors

Voice Library - VoLIB provides components that, together, facilitate the development of the signal processing chain for Voice over IP applications such as infrastructure, enterprise, residential gateways and IP phones. Together with optimized implementations of ITU-T voice codecs, that can be (...)

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SPRC264 — TMS320C5000/6000 IMGLIB(이미지 라이브러리)

C5000/6000 이미지 처리 라이브러리(IMGLIB)는 C 프로그래머를 위한 최적화된 이미지/비디오 처리 기능 라이브러리입니다. 여기에는 일반적으로 계산 집약적 실시간 애플리케이션에서 사용되는 C 호출 가능한 범용 이미지/비디오 처리 루틴이 포함되어 있습니다. 이 루틴을 사용하면 상응하는 표준 ANSI C 언어 코드보다 더 높은 성능을 달성할 수 있습니다. IMGLIB는 즉시 사용할 수 있는 DSP 기능을 소스 코드와 함께 제공하여 애플리케이션 개발 시간을 크게 단축시킬 수 있습니다.

벤치마크 확인: DSP 코어 벤치마크

지원되는 제품 및 하드웨어
드라이버 또는 라이브러리

VOLIB — Voice library (VoLIB) for C66x, C64x+ and C55x processors

Voice Library - VoLIB provides components that, together, facilitate the development of the signal processing chain for Voice over IP applications such as infrastructure, enterprise, residential gateways and IP phones. Together with optimized implementations of ITU-T voice codecs, that can be (...)

지원되는 제품 및 하드웨어
소프트웨어 코덱

ADT-3P-DSPVOIPCODECS — Adaptive Digital Technologies DSP VoIP, 음성 및 오디오 코덱

Adaptive Digital is a developer of voice quality enhancement algorithms, and best-in-class acoustic echo cancellation software that work with TI DSPs. Adaptive Digital has extensive experience in the algorithm development, implementation, optimization and configuration tuning. They provide (...)
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소프트웨어 코덱

ALGOT-3P-DSPVOIPCODECS — Algotron C5000 DSP 텔레콤 및 오디오 코덱

Algotron provides C5000 DSP software modules for telecoms & audio. Examples are: modem data pumps, speech coders, signal generators & detectors for DTMF and caller ID. All modules feature simple yet flexible interfaces with full re-entrancy. They come with user's guides, example (...)

발송: Algotron
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소프트웨어 코덱

DSPI-3P-DSPVOIPCODECS — DSP 혁신: DSP VoIP 코덱

DSP Innovations is a supplier of C5000TM DSP-software and engineering services. Proprietary and standard vocoders from DSPINI have superior characteristics, operate in range from 300 bps up to 64 kbps and are used in: secure voice, software defined radio, wireless, VoIP, voice storage, and more. (...)

발송: DSP Innovations
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시뮬레이션 모델

C5517 ZCH BSDL Model

SPRM631.ZIP (5 KB) - BSDL 모델
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시뮬레이션 모델

C5517 ZCH IBIS Model

SPRM632.ZIP (902 KB) - IBIS 모델
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레퍼런스 디자인

TIDA-01589 — 잡음 감소 및 음향 반향 제거를 지원하는 하이파이, 근거리 양방향 오디오 레퍼런스 설계

수동 기계 상호 작용에는 전이중 핸즈프리 통신을 제공하기 위한 음향 인터페이스가 필요합니다. 핸즈프리 모드에서는 스피커의 종단 또는 근거리 오디오 신호의 일부가 마이크에 연결됩니다. 또한 소음이 심한 환경에서는 마이크가 유용한 근거리 오디오 신호 외에도 주변 소음을 포착합니다. 캡처된 멀티 마이크 오디오 신호는 음향 배경 잡음뿐만 아니라 원하는 신호의 인식률을 현저히 떨어뜨리고 후속 오디오 처리 시스템의 성능을 제한하는 반향 신호로 인해 손상됩니다. 이 레퍼런스 설계는 스테레오 ADC를 통한 오디오 입력용 듀얼 마이크와 잡음 (...)
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레퍼런스 디자인

TIDEP-0077 — 음성 기반 애플리케이션을 위한 오디오 전처리 시스템 레퍼런스 설계

이 레퍼런스 설계는 다중 마이크, 빔포밍 알고리즘 및 기타 프로세스를 사용하여 잡음 및 기타 혼잡한 환경에서 선명한 음성 및 오디오를 추출합니다.  잡음이 잦은 음성 인식 디지털 어시스턴트용 환경에서 사용되는 애플리케이션의 급속한 증가로 인해 잡음이 많은 환경에서 선명한 음성을 추출하는 시스템에 대한 수요가 생겼습니다.  이 레퍼런스 설계는 마이크 어레이와 정교한 신호 처리를 사용해 잡음이 심한 환경에서 선명한 오디오를 추출합니다.
지원되는 제품 및 하드웨어
레퍼런스 디자인

TIDEP-0083 — IBM Watson 레퍼런스 설계에 대한 클라우드 연결을 통한 음성 트리거링 및 처리

이 레퍼런스 설계를 사용하면 엔드 투 엔드 음성 캡처, 인식 및 처리 기능을 시연할 수 있는 단일 플랫폼을 구현할 수 있습니다.  감각 키워드 인식 소프트웨어 및 IBM Watson Cloud 서비스와의 사전 통합을 통해 애플리케이션 개발 시간을 더욱 단축할 수 있습니다. 또한 이 설계에는 의도된 애플리케이션 잡음 환경을 기반으로 구성할 수 있는 유연한 마이크 플랫폼이 포함되어 있습니다.
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패키지 CAD 기호, 풋프린트 및 3D 모델
NFBGA (ZCH) 196 Ultra Librarian

주문 및 품질

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지원 및 교육

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