ADC11DV200

PinoutSpecificationsResolution11 bitsChannels2 ChannelsSNR62.5 dBSFDR82 dBENOB10.1 bitsMax Sample Rate200 MSPSMin Sample Rate45 MSPSPower Dissipation0.45 WattINL (+/-)0.65 LSBSINAD62.3 dBDNL (+/-)0.32 LSBMin Supply Voltage1.7 VoltMax Supply Voltage1.9 VoltNominal Vin1.5 VppTemperature Min-40 deg C...

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ADC11DV200 Picture
SeekIC No. : 004274086 Detail

ADC11DV200: PinoutSpecificationsResolution11 bitsChannels2 ChannelsSNR62.5 dBSFDR82 dBENOB10.1 bitsMax Sample Rate200 MSPSMin Sample Rate45 MSPSPower Dissipation0.45 WattINL (+/-)0.65 LSBSINAD62.3 dBDNL (+/-)0....

floor Price/Ceiling Price

Part Number:
ADC11DV200
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/11/21

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Product Details

Description



Pinout




Specifications

Resolution11 bits
Channels2 Channels
SNR62.5 dB
SFDR82 dB
ENOB10.1 bits
Max Sample Rate200 MSPS
Min Sample Rate45 MSPS
Power Dissipation0.45 Watt
INL (+/-)0.65 LSB
SINAD62.3 dB
DNL (+/-)0.32 LSB
Min Supply Voltage1.7 Volt
Max Supply Voltage1.9 Volt
Nominal Vin1.5 Vpp
Temperature Min-40 deg C
Temperature Max85 deg C
Data Converter TypeADC
AEC Q-100 Automotive Grade0
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Description

The ADC11DV200 is a monolithic analog-to-digital converter capable of converting two analog input signals into 11-bit digital words at rates up to 200 Mega Samples Per Second (MSPS). The digital output mode is selectable and can be either differential LVDS or CMOS signals. This converter uses a differential, pipelined architecture with digital error correction and an on-chip sample-and-hold circuit to minimize die size and power consumption while providing excellent dynamic performance. A unique sample-and-hold stage yields a full-power bandwidth of 900MHz. Fabricated in core CMOS process, the ADC11DV200 may be operated from a single 1.8V power supply. The ADC11DV200 achieves approximately 10.06 effective bits at Nyquist and consumes just 280mW at 170MSPS in CMOS mode 450mW at 200MSPS in LVDS mode. The power consumption can be scaled down further by reducing sampling rates.




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