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ADC09SJ800-Q1中文資料德州儀器數(shù)據(jù)手冊PDF規(guī)格書

ADC09SJ800-Q1
廠商型號

ADC09SJ800-Q1

功能描述

ADC09xJ800-Q1 Quad, Dual, Single Channel, 800-MSPS, 9-bit, Analog-to-Digital Converter (ADC) with JESD204C Interface

文件大小

4.93624 Mbytes

頁面數(shù)量

152

生產(chǎn)廠商 Texas Instruments
企業(yè)簡稱

TI德州儀器

中文名稱

美國德州儀器公司官網(wǎng)

原廠標(biāo)識
數(shù)據(jù)手冊

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更新時間

2024-10-26 17:39:00

ADC09SJ800-Q1規(guī)格書詳情

1 Features

? AEC-Q100 qualified for automotive applications:

– Temperature grade 1: –40°C to +125°C, TA

? ADC Core:

– Resolution: 9 Bit

– Non-interleaved architecture

– Internal dither reduces high-order harmonics

? Performance specifications:

– SNR (–1 dBFS, 97 MHz): 53.5 dBFS

– ENOB (–1 dBFS, 97 MHz): 8.51 Bits

– SFDR (–1 dBFS, 97 MHz): 64 dBFS

– Noise floor (–20 dBFS, 97 MHz): –140.5

dBFS/Hz

? Full-scale input voltage: 800 mVPP-DIFF

? Full-power input bandwidth: 6 GHz

? JESD204C Serial data interface:

– Support for 2 to 8 (Quad/Dual channel) or 1 to 4

(Single channel) total SerDes lanes

– Maximum baud-rate: 17.16 Gbps

– 64B/66B and 8B/10B encoding modes

– Subclass-1 support for deterministic latency

– Compatible with JESD204B receivers

? Optional internal sampling clock generation

– Internal PLL and VCO (7.2–8.2 GHz)

? SYSREF Windowing eases synchronization

? Four clock outputs simplify system clocking

– Reference clocks for FPGA or adjacent ADC

– Reference clock for SerDes transceivers

? Timestamp input and output for pulsed systems

? Power consumption (800 MSPS):

– Quad Channel: 420 mW / channel

– Dual channel: 555 mW / channel

– Single channel: 840 mW

? Power supplies: 1.1 V, 1.9 V

2 Applications

? Light detection and ranging (LiDAR)

3 Description

ADC09xJ800-Q1 is a family of quad, dual and

single channel, 9-bit, 800 MSPS analog-to-digital

converters (ADC). Low power consumption, high

sampling rate and 9-bit resolution makes the

ADC09xJ800-Q1 suited for light detection and ranging

(LiDAR) systems. The ADC09xJ800-Q1 is qualified

for automotive applications.

Full-power input bandwidth (-3 dB) of 6 GHz provides

flat frequency response for frequency modulated

continuous wave (FMCW) LiDAR systems and

provides a narrow impulse response for pulse-based

systems. The full-power input bandwidth also enables

direct RF sampling of up to 4 GHz.

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