Product details

Sample rate (max) (Msps) 50 Resolution (bps) 8 Number of input channels 1 Interface type Parallel CMOS Analog input BW (MHz) 120 Features Low Power Rating Catalog Peak-to-peak input voltage range (V) 2 Power consumption (typ) (mW) 125 Architecture Two-Step SNR (dB) 48 ENOB (bit) 7.3 SFDR (dB) 57 Operating temperature range (°C) -20 to 75 Input buffer No
Sample rate (max) (Msps) 50 Resolution (bps) 8 Number of input channels 1 Interface type Parallel CMOS Analog input BW (MHz) 120 Features Low Power Rating Catalog Peak-to-peak input voltage range (V) 2 Power consumption (typ) (mW) 125 Architecture Two-Step SNR (dB) 48 ENOB (bit) 7.3 SFDR (dB) 57 Operating temperature range (°C) -20 to 75 Input buffer No
TSSOP (PW) 24 49.92 mm² 7.8 x 6.4
  • Internal Track-and-Hold Function
  • Single +5V Operation
  • Internal Reference Bias Resistors
  • Industry Standard Pinout
  • Power-Down Mode (<5 mW)

Key Specifications

  • Resolution 8 Bits
  • Maximum Sampling Frequency 50 MSPS (min)
  • THD 54 dB (typ)
  • DNL 0.7 LSB (typ)
  • ENOB @ fIN = 25 MHz 6.8 Bits (typ)
  • Ensured No Missing Codes
  • Power Consumption (Excluding
    Reference Current) 125 mW (typ)
    190 mW (max)

All trademarks are the property of their respective owners.

  • Internal Track-and-Hold Function
  • Single +5V Operation
  • Internal Reference Bias Resistors
  • Industry Standard Pinout
  • Power-Down Mode (<5 mW)

Key Specifications

  • Resolution 8 Bits
  • Maximum Sampling Frequency 50 MSPS (min)
  • THD 54 dB (typ)
  • DNL 0.7 LSB (typ)
  • ENOB @ fIN = 25 MHz 6.8 Bits (typ)
  • Ensured No Missing Codes
  • Power Consumption (Excluding
    Reference Current) 125 mW (typ)
    190 mW (max)

All trademarks are the property of their respective owners.

The ADC1175-50 is a low power, 50 MSPS analog-to-digital converter that digitizes signals to 8 bits while consuming just 125 mW (typ). The ADC1175-50 uses a unique architecture that achieves 6.8 Effective Bits at 25 MHz input and 50 MHz clock frequency. Output formatting is straight binary coding.

The excellent DC and AC characteristics of this device, together with its low power consumption and +5V single supply operation, make it ideally suited for many video and imaging applications, including use in portable equipment. Furthermore, the ADC1175-50 is resistant to latch-up and the outputs are short-circuit proof. The top and bottom of the ADC1175-50's reference ladder is available for connections, enabling a wide range of input possibilities. The low input capacitance (7 pF, typical) makes this device easier to drive than conventional flash converters and the power down mode reduces power consumption to less than 5 mW.

The ADC1175-50 is offered in 24-pin TSSOP and 24-pin WQFN packages and is designed to operate over the extended commercial temperature range of −20°C to +75°C.

The ADC1175-50 is a low power, 50 MSPS analog-to-digital converter that digitizes signals to 8 bits while consuming just 125 mW (typ). The ADC1175-50 uses a unique architecture that achieves 6.8 Effective Bits at 25 MHz input and 50 MHz clock frequency. Output formatting is straight binary coding.

The excellent DC and AC characteristics of this device, together with its low power consumption and +5V single supply operation, make it ideally suited for many video and imaging applications, including use in portable equipment. Furthermore, the ADC1175-50 is resistant to latch-up and the outputs are short-circuit proof. The top and bottom of the ADC1175-50's reference ladder is available for connections, enabling a wide range of input possibilities. The low input capacitance (7 pF, typical) makes this device easier to drive than conventional flash converters and the power down mode reduces power consumption to less than 5 mW.

The ADC1175-50 is offered in 24-pin TSSOP and 24-pin WQFN packages and is designed to operate over the extended commercial temperature range of −20°C to +75°C.

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* Data sheet ADC1175-50 8-Bit, 50 MSPS, 125 mW A/D Converter datasheet (Rev. G) 02 Apr 2013
EVM User's guide ADC117x Evaluation Module User's Guide 08 Mar 2018

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