產品詳細資料

Number of ADC channels 8 Number of DAC channels 2 Digital audio interface DSP, I2S, L, R Analog inputs 1 Analog outputs 2 Sampling rate (max) (kHz) 125 Rating Catalog Features Phase-locked loop (PLL), Stereo headphone amplifier ADC SNR (typ) (dB) 97 DAC SNR (typ) (dB) 97 Operating temperature range (°C) -40 to 85
Number of ADC channels 8 Number of DAC channels 2 Digital audio interface DSP, I2S, L, R Analog inputs 1 Analog outputs 2 Sampling rate (max) (kHz) 125 Rating Catalog Features Phase-locked loop (PLL), Stereo headphone amplifier ADC SNR (typ) (dB) 97 DAC SNR (typ) (dB) 97 Operating temperature range (°C) -40 to 85
TSSOP (DA) 32 89.1 mm² 11 x 8.1
  • 4-Wire Touch Screen Interface
  • Integrated Touch Screen Processor With Fully Automated Modes of Operation
  • Programmable Converter Resolution, Speed, and Averaging
  • Programmable Autonomous Timing Control
  • Direct Battery Measurement
  • On-Chip Temperature Measurement
  • Stereo Audio Playback Up to 48 ksps
  • 97-dB Stereo Audio Playback
  • Integrated PLL for Audio Clock Generation
  • Programmable Digital Audio Effects Processing
  • Stereo Headphone Amplifier
  • SPI™ Serial Interface
  • Glueless Interface With OMAP™ and Xscale™ Processors
  • Full Power-Down Control
  • Low Power: 11-mW Stereo Audio Playback
  • 32-Pin TSSOP Package
  • APPLICATIONS
    • Personal Digital Assistants
    • Smart Cellular Phones
    • MP3 Players


US Patent No. 624639
SPI is a trademark of Motorola.
OMAP is a trademark of Texas Instruments.
Xscale is a trademark of Intel.

  • 4-Wire Touch Screen Interface
  • Integrated Touch Screen Processor With Fully Automated Modes of Operation
  • Programmable Converter Resolution, Speed, and Averaging
  • Programmable Autonomous Timing Control
  • Direct Battery Measurement
  • On-Chip Temperature Measurement
  • Stereo Audio Playback Up to 48 ksps
  • 97-dB Stereo Audio Playback
  • Integrated PLL for Audio Clock Generation
  • Programmable Digital Audio Effects Processing
  • Stereo Headphone Amplifier
  • SPI™ Serial Interface
  • Glueless Interface With OMAP™ and Xscale™ Processors
  • Full Power-Down Control
  • Low Power: 11-mW Stereo Audio Playback
  • 32-Pin TSSOP Package
  • APPLICATIONS
    • Personal Digital Assistants
    • Smart Cellular Phones
    • MP3 Players


US Patent No. 624639
SPI is a trademark of Motorola.
OMAP is a trademark of Texas Instruments.
Xscale is a trademark of Intel.

The TSC2102 is a highly integrated combination resistive touch screen controller with on-chip processor and audio DAC. The touch screen portion of the TSC2102 contains a 12-bit 4-wire resistive touch screen converter complete with drivers, and interfaces to the host controller through a standard SPI™ serial interface. The on-chip processor provides extensive features specifically designed to reduce host processor and bus overhead, with capabilities that include fully automated operating modes, programmable conversion resolution up to 12 bits, programmable sampling rates up to 125 kHz, programmable conversion averaging, and programmable on-chip timing generation.

The TSC2102 also features a high-performance audio DAC with 16, 20, 24, or 32-bit stereo playback functionality at up to 48 ksps. The stereo output drivers on the TSC2102 can be programmed for headphone drive or line-level drive, and support capless as well as ac-coupled output configurations. The digital audio data format is programmable to work with popular audio standard protocols (I2S, DSP, left/right justified) in master or slave mode, and also includes an on-chip PLL for flexible clock generation capability.

The TSC2102 offers two battery measurement inputs capable of reading battery voltages up to 6 V, while operating at only 2.7 V. It also has an on-chip temperature sensor capable of reading 0.3°C resolution. The TSC2102 is available in a 32-lead TSSOP.

The TSC2102 is a highly integrated combination resistive touch screen controller with on-chip processor and audio DAC. The touch screen portion of the TSC2102 contains a 12-bit 4-wire resistive touch screen converter complete with drivers, and interfaces to the host controller through a standard SPI™ serial interface. The on-chip processor provides extensive features specifically designed to reduce host processor and bus overhead, with capabilities that include fully automated operating modes, programmable conversion resolution up to 12 bits, programmable sampling rates up to 125 kHz, programmable conversion averaging, and programmable on-chip timing generation.

The TSC2102 also features a high-performance audio DAC with 16, 20, 24, or 32-bit stereo playback functionality at up to 48 ksps. The stereo output drivers on the TSC2102 can be programmed for headphone drive or line-level drive, and support capless as well as ac-coupled output configurations. The digital audio data format is programmable to work with popular audio standard protocols (I2S, DSP, left/right justified) in master or slave mode, and also includes an on-chip PLL for flexible clock generation capability.

The TSC2102 offers two battery measurement inputs capable of reading battery voltages up to 6 V, while operating at only 2.7 V. It also has an on-chip temperature sensor capable of reading 0.3°C resolution. The TSC2102 is available in a 32-lead TSSOP.

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類型 標題 日期
* Data sheet Programmable Touch Screen Controller w/Integrat Stereo Audio DAC & Headphone Amp datasheet (Rev. A) 2004年 6月 17日
Application note Using the PGA Function in TSC210x/AIC26/AIC28/DAC26 Devices 2005年 6月 3日
Application note Programming Audio Power Up/Down on TSC210x & TLV320AIC26/28 (Rev. A) 2005年 5月 5日
Application note How to Set the TSC/AIC EVM to Record & Playback Audio or Other Sound Through PC 2004年 12月 14日
Application note Interface TSC Through McBSP 2004年 10月 28日
Application note Programming Sequences and Tips for TSC2000/2200/230x Applications 2004年 3月 8日
Application note TSC2100 WinCE Generic Drivers 2004年 3月 8日

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TSC2102 IBIS Model

SLAM109.ZIP (28 KB) - IBIS Model
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COEFFICIENT-CALC Coefficient Calculator For Digital Biquad Filters

COEFFICIENT-CALC (TIBQ) calculates the coefficients for the digital filter biquad transfer function implemented in TI audio codecs. The characteristics of the digital filter are adjusted by selecting a filter type and moving a control point within a window that shows the transfer function gain and (...)

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音訊轉碼器
TLV320AIC26 具有耳機/喇叭放大器和 12 位元測量 ADC 的低功耗單聲道 ADC/立體聲 DAC TLV320AIC28 具 6 個音訊輸入和耳機/揚聲器放大器的低功耗單聲道 ADC/立體聲道 DAC TLV320AIC29 具 6 個音訊輸入和耳機/揚聲器放大器的低功耗單聲道 ADC/立體聲道 DAC TLV320AIC3007 具整合式 D 類放大器的低功耗立體聲道轉碼器 TLV320AIC31 具 6 輸入、6 輸出整合式耳機/揚聲器放大器以及 3D 效果的低功耗立體聲道轉碼器 TLV320AIC3100 具音訊處理和單聲道 D 類放大器的低功耗音訊轉碼器 TLV320AIC3101 具 6 個輸入、6 個輸出、喇叭/HP 放大器和強化數位效果的低功耗立體聲道轉碼器 TLV320AIC3104 具 6 個輸入、6 個輸出、HP 放大器和強化數位效果的低功耗立體聲道轉碼器 TLV320AIC3105 具 6 個輸入、6 個輸出、HP 放大器和強化數位效果的低功耗立體聲道轉碼器 TLV320AIC3106 具 10 輸入 7 輸出、耳機放大器和強化數位效果的低功耗立體聲道音訊轉碼器 TLV320AIC3107 具整合式單聲道 D 類放大器的低功耗立體聲道轉碼器 TLV320AIC3110 具 1.3W 立體聲道 D 類揚聲器放大器的低功耗音訊轉碼器 TLV320AIC3111 具嵌入式 miniDSP 和立體聲道 D 類揚聲器放大器的低功耗音訊轉碼器 TLV320AIC3120 具 miniDSP 和 2.5-W 單聲道 D 類揚聲器放大器的低功耗音訊轉碼器 TLV320AIC32 具有 6 輸入、6 輸出、耳機/喇叭放大器和 3D 效果的低功耗立體聲轉碼器 TLV320AIC3204 採用 PowerTune™ 技術的超低功耗立體聲道音訊轉碼器 TLV320AIC3206 具 DirectPath™ HP 放大器的超低功耗立體聲道轉碼器 TLV320AIC3254 具可編程 miniDSP 的超低功耗立體聲音訊轉碼器 TLV320AIC3256 具 miniDSP 和 DirectPath™ HP 放大器的超低功耗立體聲道轉碼器 TLV320AIC33 具有 10 輸入、7 輸出、耳機/喇叭放大器和增強數位效果的低功耗立體聲轉碼器 TLV320AIC34 低功耗 4 通道轉碼器 TSC2100 具有配備 HP/喇叭放大器的立體聲 DAC/單聲道 ADC 的 4 線觸控螢幕控制器 TSC2101 具有 HP/喇叭放大器立體聲 DAC/單聲道 ADC 的 4 線觸控螢幕控制器 TSC2102 具有附 HP 放大器的立體聲 DAC 的 4 線觸控螢幕控制器 TSC2117 具低功耗單聲道 ADC/立體聲 DAC 的 4 線觸摸式螢幕控制器 TSC2301 4 線觸控螢幕控制器、具 HP 放大器的標準轉碼器 (鍵盤 Int.+ 6 GPIO)
音訊 ADC
TLV320ADC3001 92dB SNR 低功耗立體聲道 ADC (ADC3001) TLV320ADC3101 具數位麥克風支援和 miniDSP 的 92-dB SNR 低功耗立體聲道 ADC
喇叭放大器
TAS2505 具音訊處理和單聲道耳機放大器的 2W、單聲道、數位與字類比輸入 D 級音訊放大器 TAS2505-Q1 具音訊處理功能的車用 2-W、單聲道、數位或類比輸入 D 類放大器 TAS2521 具 miniDSP & 18-mW 單聲道耳機驅動器的 2W、單聲道、數位與類比輸入 D 類音訊放大器
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PSpice® for TI is a design and simulation environment that helps evaluate functionality of analog circuits. This full-featured, design and simulation suite uses an analog analysis engine from Cadence®. Available at no cost, PSpice for TI includes one of the largest model libraries in the (...)
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