제품 상세 정보

Sample rate (max) (Msps) 125 Resolution (Bits) 12 Number of input channels 4 Interface type Serial LVDS Analog input BW (MHz) 500 Features High Performance Rating Catalog Peak-to-peak input voltage range (V) 2 Power consumption (typ) (mW) 1650 Architecture Pipeline SNR (dB) 70.9 ENOB (Bits) 11.4 SFDR (dB) 90 Operating temperature range (°C) -40 to 85 Input buffer No
Sample rate (max) (Msps) 125 Resolution (Bits) 12 Number of input channels 4 Interface type Serial LVDS Analog input BW (MHz) 500 Features High Performance Rating Catalog Peak-to-peak input voltage range (V) 2 Power consumption (typ) (mW) 1650 Architecture Pipeline SNR (dB) 70.9 ENOB (Bits) 11.4 SFDR (dB) 90 Operating temperature range (°C) -40 to 85 Input buffer No
VQFN (RGC) 64 81 mm² (9 mm × 9 mm)
  • Maximum Sample Rate: 125 MSPS
  • 12-Bit Resolution with No Missing Codes
  • 1.65-W Total Power
  • Simultaneous Sample and Hold
  • 70.3 dBFS SNR at Fin = 50 MHz
  • 83 dBc SFDR at Fin = 50 MHz, 0 dB Gain
  • 79 dBc SFDR at Fin = 170 MHz, 3.5 dB Gain
  • 3.5 dB Coarse Gain and up to 6 dB Programmable Fine Gain for SFDR/SNR Trade-Off
  • Serialized LVDS Outputs with Programmable Internal Termination Option
  • Supports Sine, LVCMOS, LVPECL, LVDS Clock Inputs and Amplitude Down to 400 mVpp Differential
  • Internal Reference with External Reference Support
  • No External Decoupling Required for References
  • 3.3-V Analog and Digital Supply
  • 64 QFN Package (9 mm × 9 mm)
  • Pin Compatible 14-Bit Family (ADS644X - SLAS532)
  • APPLICATIONS
    • Base-Station IF Receivers
    • Diversity Receivers
    • Medical Imaging
    • Test Equipment

  • Maximum Sample Rate: 125 MSPS
  • 12-Bit Resolution with No Missing Codes
  • 1.65-W Total Power
  • Simultaneous Sample and Hold
  • 70.3 dBFS SNR at Fin = 50 MHz
  • 83 dBc SFDR at Fin = 50 MHz, 0 dB Gain
  • 79 dBc SFDR at Fin = 170 MHz, 3.5 dB Gain
  • 3.5 dB Coarse Gain and up to 6 dB Programmable Fine Gain for SFDR/SNR Trade-Off
  • Serialized LVDS Outputs with Programmable Internal Termination Option
  • Supports Sine, LVCMOS, LVPECL, LVDS Clock Inputs and Amplitude Down to 400 mVpp Differential
  • Internal Reference with External Reference Support
  • No External Decoupling Required for References
  • 3.3-V Analog and Digital Supply
  • 64 QFN Package (9 mm × 9 mm)
  • Pin Compatible 14-Bit Family (ADS644X - SLAS532)
  • APPLICATIONS
    • Base-Station IF Receivers
    • Diversity Receivers
    • Medical Imaging
    • Test Equipment

The ADS6425 is a high performance 12-bit, 125-MSPS quad channel ADC. Serial LVDS data outputs reduce the number of interface lines, resulting in a compact 64-pin QFN package (9 mm × 9 mm) that allows for high system integration density. The device includes a 3.5 dB coarse gain option that can be used to improve SFDR performance with little degradation in SNR. In addition to the coarse gain, fine gain options also exist, programmable in 1dB steps up to 6dB.

The output interface is 2-wire, where each ADC's data is serialized and output over two LVDS pairs. This makes it possible to halve the serial data rate (compared to a 1-wire interface) and restrict it to less than 1Gbps easing receiver design. The ADS6425 also includes the traditional 1-wire interface that can be used at lower sampling frequencies.

An internal phase locked loop (PLL) multiplies the incoming ADC sampling clock to derive the bit clock. The bit clock is used to serialize the 12-bit data from each channel. In addition to the serial data streams, the frame and bit clocks are also transmitted as LVDS outputs. The LVDS output buffers have features such as programmable LVDS currents, current doubling modes, and internal termination options. These can be used to widen eye-openings and improve signal integrity, easing capture by the receiver.

The ADC channel outputs can be transmitted either as MSB or LSB first and 2s complement or straight binary.

The ADS6425 has internal references, but can also support an external reference mode. The device is specified over the industrial temperature range (-40°C to 85°C).

The ADS6425 is a high performance 12-bit, 125-MSPS quad channel ADC. Serial LVDS data outputs reduce the number of interface lines, resulting in a compact 64-pin QFN package (9 mm × 9 mm) that allows for high system integration density. The device includes a 3.5 dB coarse gain option that can be used to improve SFDR performance with little degradation in SNR. In addition to the coarse gain, fine gain options also exist, programmable in 1dB steps up to 6dB.

The output interface is 2-wire, where each ADC's data is serialized and output over two LVDS pairs. This makes it possible to halve the serial data rate (compared to a 1-wire interface) and restrict it to less than 1Gbps easing receiver design. The ADS6425 also includes the traditional 1-wire interface that can be used at lower sampling frequencies.

An internal phase locked loop (PLL) multiplies the incoming ADC sampling clock to derive the bit clock. The bit clock is used to serialize the 12-bit data from each channel. In addition to the serial data streams, the frame and bit clocks are also transmitted as LVDS outputs. The LVDS output buffers have features such as programmable LVDS currents, current doubling modes, and internal termination options. These can be used to widen eye-openings and improve signal integrity, easing capture by the receiver.

The ADC channel outputs can be transmitted either as MSB or LSB first and 2s complement or straight binary.

The ADS6425 has internal references, but can also support an external reference mode. The device is specified over the industrial temperature range (-40°C to 85°C).

다운로드 스크립트와 함께 비디오 보기 비디오

기술 자료

검색된 결과가 없습니다. 검색어를 지우고 다시 시도하세요.
12개 모두 보기
상위 문서 유형 직함 형식 옵션 최신 영어 버전 다운로드 날짜
* 데이터 시트 Quad Channel 12-Bit 125-MSPS ADC W/Serial LVDS Interface datasheet (Rev. B) 2009. 6. 10
애플리케이션 노트 QFN and SON PCB Attachment (Rev. C) PDF | HTML 2023. 12. 6
애플리케이션 노트 Design Considerations for Avoiding Timing Errors during High-Speed ADC, LVDS Dat (Rev. A) 2015. 5. 22
애플리케이션 노트 Why Use Oversampling when Undersampling Can Do the Job? (Rev. A) 2013. 7. 19
애플리케이션 노트 Band-Pass Filter Design Techniques for High-Speed ADCs 2012. 2. 27
애플리케이션 노트 Driving High-Speed ADCs: Circuit Topologies and System-Level Parameters (Rev. A) 2010. 9. 10
애플리케이션 노트 Smart Selection of ADC/DAC Enables Better Design of Software-Defined Radio 2009. 4. 28
애플리케이션 노트 CDCE62005 as Clock Solution for High-Speed ADCs 2008. 9. 4
애플리케이션 노트 CDCE72010 as a Clocking Solution for High-Speed Analog-to-Digital Converters 2008. 6. 8
애플리케이션 노트 Phase Noise Performance and Jitter Cleaning Ability of CDCE72010 2008. 6. 2
사용 설명서 ADS6245EVM and Lattice ECP2/M Interface Demo User Guide 2008. 1. 14
애플리케이션 노트 QFN Layout Guidelines 2006. 7. 28

설계 및 개발

추가 조건 또는 필수 리소스는 사용 가능한 경우 아래 제목을 클릭하여 세부 정보 페이지를 확인하세요.

평가 모듈(EVM)용 GUI

DATACONVERTERPRO-SW — 고속 데이터 컨버터 프로 GUI 설치 프로그램, v5.31

이 고속 데이터 컨버터 프로 GUI는 대부분의 TI 고속 데이터 컨버터 [ADC(아날로그-디지털 컨버터) 및 DAC(디지털-아날로그 컨버터)] 및 AFE(아날로그 프론트 엔드) 플랫폼을 평가할 수 있도록 설계된 PC(Windows® XP/7/10 호환) 프로그램입니다. 전체 TSW14xxx 시리즈의 데이터 캡처 및 패턴 생성 카드를 지원하도록 설계된 DATACONVERTERPRO-SW는 시간 및 주파수 영역 모두에서 데이터 컨버터를 분석할 수 있는 강력하고 빠른 솔루션과 단일 톤, 멀티톤 및 변조 신호 지원을 제공합니다. 또한 이 (...)

지원되는 제품 및 하드웨어
지원 소프트웨어

HSADC-SPI-UTILITY — ADS5400 EVM GUI

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계산 툴

ADC-HARMONIC-CALC — ADC Frequency Calculator Download

    The ADC Harmonic Calculation tool is an excel based calculator for determining the location in frequency space of high order harmonics following Nyquist aliasing in an analog to digital converter.

    Given an ADC sample rate and the span of a signal of interest the calcultor will determine if the 2nd (...)

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ANALOG-ENGINEER-CALC — PC software analog engineer's calculator

아날로그 엔지니어의 계산기는 아날로그 회로 설계 엔지니어가 정기적으로 사용하는 많은 반복 계산의 속도를 높이도록 설계되었습니다. 이 PC 기반 툴은 피드백 저항을 사용한 연산 증폭기 게인 설정부터 아날로그-디지털 컨버터(ADC) 드라이브 버퍼 회로 안정화를 위한 적절한 회로 설계 요소 선택에 이르기까지 다양한 일반적인 계산 목록이 포함된 그래픽 인터페이스를 제공합니다.

이 계산기는 독립 실행형 툴로 유용할 뿐만 아니라 아날로그 엔지니어의 포켓 레퍼런스에 설명된 개념과도 잘 어울립니다.

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계산 툴

JITTER-SNR-CALC — Jitter and SNR calculator

JITTER-SNR-CALC can be used for calculating theoretical Signal to Noise (SNR) performance of ADCs based on input frequency and clock jitter.

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설계 툴

SBAC119 — TIGAR (Texas Instruments Graphical Evaluation of ADC Response Tool)

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설계 툴

SLAC132 — Modeling the ADS6XXX Family of LVDs Buffer through IBIS

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패키지 CAD 기호, 풋프린트 및 3D 모델
VQFN (RGC) 64 Ultra Librarian

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지원 및 교육

TI 엔지니어의 기술 지원을 받을 수 있는 TI E2E™ 포럼

콘텐츠는 TI 및 커뮤니티 기고자에 의해 "있는 그대로" 제공되며 TI의 사양으로 간주되지 않습니다. 사용 약관을 참조하십시오.

품질, 패키징, TI에서 주문하는 데 대한 질문이 있다면 TI 지원을 방문하세요. ​​​​​​​​​​​​​​

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