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ADC3668中文資料德州儀器數(shù)據(jù)手冊(cè)PDF規(guī)格書

ADC3668
廠商型號(hào)

ADC3668

功能描述

ADC3668, ADC3669 Dual-Channel, 16-Bit 250MSPS and 500MSPS Analog-to-Digital Converter (ADC)

文件大小

4.10552 Mbytes

頁面數(shù)量

80

生產(chǎn)廠商 Texas Instruments
企業(yè)簡(jiǎn)稱

TI1德州儀器

中文名稱

德州儀器官網(wǎng)

原廠標(biāo)識(shí)
數(shù)據(jù)手冊(cè)

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更新時(shí)間

2025-3-10 23:26:00

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ADC3668規(guī)格書詳情

1 Features

? 16-bit, dual channel 250 and 500MSPS ADC

? Noise spectral density: -160.4dBFS/Hz

? Thermal Noise: 76.4dBFS

? Single core (non-interleaved) ADC architecture

? Aperture jitter: 75fs

? Buffered analog inputs

– Programmable 100Ω and 200Ω termination

? Input fullscale: 2VPP

? Full power input bandwidth (-3dB): 1.4GHz

? Spectral performance (fIN = 70MHz, -1dBFS):

– SNR: 75.6dBFS

– SFDR HD2,3: 80dBc

– SFDR worst spur: 94dBFS

? INL: ±2 LSB (typical)

? DNL: ±0.5 LSB (typical)

? Digital down-converters (DDCs)

– Up to four independent DDCs

– Complex and real decimation

– Decimation: /2, /4 to /32768 decimation

– 48-bit NCO phase coherent frequency hopping

? DDR/Serial LVDS interface

– 16-bit Parallel DDR LVDS for DDC bypass

– Serial LVDS for decimation

– 32-bit output option for high decimation

? Power consumption: 300mW/channel (500MSPS)

2 Applications

? Software defined radio

? Spectrum analyzer

? Radar

? Spectroscopy

? Power amplifier linearization

? Communications infrastructure

3 Description

The ADC3668 and ADC3669 (ADC366x) are a 16-

bit, 250MSPS and 500MSPS, dual channel analog to

digital converters (ADC). The devices are designed

for high signal-to-noise ratio (SNR) and deliver a

noise spectral density of ?160dBFS/Hz (500MSPS).

The ADC366x includes an optional quad band

digital down-converter (DDC) supporting wide band

decimation by 2 to narrow band decimation by 32768.

The DDC uses a 48-bit NCO which supports phase

coherent and phase continuous frequency hopping.

The ADC366x is outfitted with a flexible LVDS

interface. In decimation bypass mode, the device

uses a 16-bit wide parallel DDR LVDS interface.

When using decimation, the output data is transmitted

using a serial LVDS interface reducing the number

of lanes needed as decimation increases. For high

decimation ratios, the output resolution can be

increased to 32-bit.

The power efficient ADC architecture consumes

300mW/ch at 500MSPS and provides power scaling

with lower sampling rates (250mW/ch at 250MSPS).

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