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ADC12J1600NKET - 68-QFN

ADC12J1600NKET

Active
Texas Instruments

12-BIT, 1.6-GSPS, RF SAMPLING ANALOG-TO-DIGITAL CONVERTER (ADC)

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ADC12J1600NKET - 68-QFN

ADC12J1600NKET

Active
Texas Instruments

12-BIT, 1.6-GSPS, RF SAMPLING ANALOG-TO-DIGITAL CONVERTER (ADC)

Technical Specifications

Parameters and characteristics commom to parts in this series

SpecificationADC12J1600NKETADC12J1600 Series
ArchitectureFolding InterpolatingFolding Interpolating
ConfigurationS/H-ADCS/H-ADC
Data InterfaceJESD204BJESD204B
Input TypeDifferentialDifferential
Mounting TypeSurface MountSurface Mount
Number of A/D Converters11
Number of Bits1212
Number of Inputs11
Operating Temperature [Max]85 °C85 °C
Operating Temperature [Min]-40 °C-40 °C
Package / Case68-VFQFN Exposed Pad68-VFQFN Exposed Pad
Ratio - S/H:ADC1:11:1
Reference TypeInternalInternal
Sampling Rate (Per Second)1.6 G1.6 G
Supplier Device Package68-VQFN (10x10)68-VQFN (10x10)
Voltage - Supply, Analog [Max]1.26 V, 2 V1.26 - 2 V
Voltage - Supply, Analog [Min]1.8 V, 1.14 V1.14 - 1.8 V
Voltage - Supply, Digital [Max]1.26 V1.26 V
Voltage - Supply, Digital [Min]1.14 V1.14 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

ADC12J1600 Series

12-Bit, 1.6-GSPS, RF Sampling Analog-to-Digital Converter (ADC)

PartReference TypeRatio - S/H:ADCNumber of BitsNumber of InputsSampling Rate (Per Second)Supplier Device PackageOperating Temperature [Min]Operating Temperature [Max]ConfigurationData InterfaceVoltage - Supply, Digital [Max]Voltage - Supply, Digital [Min]ArchitectureNumber of A/D ConvertersVoltage - Supply, Analog [Min]Voltage - Supply, Analog [Max]Package / CaseInput TypeMounting Type
Texas Instruments
ADC12J1600NKET
The ADC12J1600 and ADC12J2700 devices are wideband sampling and digital tuning devices. Texas Instruments’ giga-sample analog-to-digital converter (ADC) technology enables a large block of frequency spectrum to be sampled directly at RF. An integrated DDC (Digital Down Converter) provides digital filtering and down-conversion. The selected frequency block is made available on a JESD204B serial interface. Data is output as baseband 15-bit complex information for ease of downstream processing. Based on the digital down-converter (DDC) decimation and link output rate settings, this data is output on 1 to 5 lanes of the serial interface. A DDC bypass mode allows the full rate 12-bit raw ADC data to also be output. This mode of operation requires 8 lanes of serial output. The ADC12J1600 and ADC12J2700 devices are available in a 68-pin VQFN package. The device operates over the Industrial (–40°C ≤ TA≤ 85°C) ambient temperature range. The ADC12J1600 and ADC12J2700 devices are wideband sampling and digital tuning devices. Texas Instruments’ giga-sample analog-to-digital converter (ADC) technology enables a large block of frequency spectrum to be sampled directly at RF. An integrated DDC (Digital Down Converter) provides digital filtering and down-conversion. The selected frequency block is made available on a JESD204B serial interface. Data is output as baseband 15-bit complex information for ease of downstream processing. Based on the digital down-converter (DDC) decimation and link output rate settings, this data is output on 1 to 5 lanes of the serial interface. A DDC bypass mode allows the full rate 12-bit raw ADC data to also be output. This mode of operation requires 8 lanes of serial output. The ADC12J1600 and ADC12J2700 devices are available in a 68-pin VQFN package. The device operates over the Industrial (–40°C ≤ TA≤ 85°C) ambient temperature range.
Internal
1:1
12
1
1.6 G
68-VQFN (10x10)
-40 °C
85 °C
S/H-ADC
JESD204B
1.26 V
1.14 V
Folding Interpolating
1
1.14 V, 1.8 V
1.26 V, 2 V
68-VFQFN Exposed Pad
Differential
Surface Mount
Texas Instruments
ADC12J1600NKER
The ADC12J1600 and ADC12J2700 devices are wideband sampling and digital tuning devices. Texas Instruments’ giga-sample analog-to-digital converter (ADC) technology enables a large block of frequency spectrum to be sampled directly at RF. An integrated DDC (Digital Down Converter) provides digital filtering and down-conversion. The selected frequency block is made available on a JESD204B serial interface. Data is output as baseband 15-bit complex information for ease of downstream processing. Based on the digital down-converter (DDC) decimation and link output rate settings, this data is output on 1 to 5 lanes of the serial interface. A DDC bypass mode allows the full rate 12-bit raw ADC data to also be output. This mode of operation requires 8 lanes of serial output. The ADC12J1600 and ADC12J2700 devices are available in a 68-pin VQFN package. The device operates over the Industrial (–40°C ≤ TA≤ 85°C) ambient temperature range. The ADC12J1600 and ADC12J2700 devices are wideband sampling and digital tuning devices. Texas Instruments’ giga-sample analog-to-digital converter (ADC) technology enables a large block of frequency spectrum to be sampled directly at RF. An integrated DDC (Digital Down Converter) provides digital filtering and down-conversion. The selected frequency block is made available on a JESD204B serial interface. Data is output as baseband 15-bit complex information for ease of downstream processing. Based on the digital down-converter (DDC) decimation and link output rate settings, this data is output on 1 to 5 lanes of the serial interface. A DDC bypass mode allows the full rate 12-bit raw ADC data to also be output. This mode of operation requires 8 lanes of serial output. The ADC12J1600 and ADC12J2700 devices are available in a 68-pin VQFN package. The device operates over the Industrial (–40°C ≤ TA≤ 85°C) ambient temperature range.
Internal
1:1
12
1
1.6 G
68-VQFN (10x10)
-40 °C
85 °C
S/H-ADC
JESD204B
1.26 V
1.14 V
Folding Interpolating
1
1.14 V, 1.8 V
1.26 V, 2 V
68-VFQFN Exposed Pad
Differential
Surface Mount
Texas Instruments
ADC12J1600NKE
The ADC12J1600 and ADC12J2700 devices are wideband sampling and digital tuning devices. Texas Instruments’ giga-sample analog-to-digital converter (ADC) technology enables a large block of frequency spectrum to be sampled directly at RF. An integrated DDC (Digital Down Converter) provides digital filtering and down-conversion. The selected frequency block is made available on a JESD204B serial interface. Data is output as baseband 15-bit complex information for ease of downstream processing. Based on the digital down-converter (DDC) decimation and link output rate settings, this data is output on 1 to 5 lanes of the serial interface. A DDC bypass mode allows the full rate 12-bit raw ADC data to also be output. This mode of operation requires 8 lanes of serial output. The ADC12J1600 and ADC12J2700 devices are available in a 68-pin VQFN package. The device operates over the Industrial (–40°C ≤ TA≤ 85°C) ambient temperature range. The ADC12J1600 and ADC12J2700 devices are wideband sampling and digital tuning devices. Texas Instruments’ giga-sample analog-to-digital converter (ADC) technology enables a large block of frequency spectrum to be sampled directly at RF. An integrated DDC (Digital Down Converter) provides digital filtering and down-conversion. The selected frequency block is made available on a JESD204B serial interface. Data is output as baseband 15-bit complex information for ease of downstream processing. Based on the digital down-converter (DDC) decimation and link output rate settings, this data is output on 1 to 5 lanes of the serial interface. A DDC bypass mode allows the full rate 12-bit raw ADC data to also be output. This mode of operation requires 8 lanes of serial output. The ADC12J1600 and ADC12J2700 devices are available in a 68-pin VQFN package. The device operates over the Industrial (–40°C ≤ TA≤ 85°C) ambient temperature range.
Internal
1:1
12
1
1.6 G
68-VQFN (10x10)
-40 °C
85 °C
S/H-ADC
JESD204B
1.26 V
1.14 V
Folding Interpolating
1
1.14 V, 1.8 V
1.26 V, 2 V
68-VFQFN Exposed Pad
Differential
Surface Mount

Description

General part information

ADC12J1600 Series

The ADC12J1600 and ADC12J2700 devices are wideband sampling and digital tuning devices. Texas Instruments’ giga-sample analog-to-digital converter (ADC) technology enables a large block of frequency spectrum to be sampled directly at RF. An integrated DDC (Digital Down Converter) provides digital filtering and down-conversion. The selected frequency block is made available on a JESD204B serial interface. Data is output as baseband 15-bit complex information for ease of downstream processing. Based on the digital down-converter (DDC) decimation and link output rate settings, this data is output on 1 to 5 lanes of the serial interface.

A DDC bypass mode allows the full rate 12-bit raw ADC data to also be output. This mode of operation requires 8 lanes of serial output.

The ADC12J1600 and ADC12J2700 devices are available in a 68-pin VQFN package. The device operates over the Industrial (–40°C ≤ TA≤ 85°C) ambient temperature range.