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VSP2582 Series

12-bit, 36 MSPS 1-Channel AFE for CCD Sensors

Manufacturer: Texas Instruments

Catalog(3 parts)

PartNumber of ChannelsPackage / CaseVoltage - Supply, AnalogVoltage - Supply, AnalogVoltage - Supply, DigitalVoltage - Supply, DigitalPower (Watts)Supplier Device PackageSupplier Device PackageSupplier Device PackageMounting TypeNumber of Bits
Texas Instruments
VSP2582RHN
1 Channel AFE 12 Bit 85 mW 36-VQFN (6.2x6.2)
1 ul
36-VFQFN
2.700000047683716 V
3.5999999046325684 V
2.700000047683716 V
3.5999999046325684 V
0.08500000089406967 W
36-VQFN
6.199999809265137 ul
6.199999809265137 ul
Surface Mount
12 ul
Texas Instruments
VSP2582RHNRG4
1 Channel AFE 12 Bit 85 mW 36-VQFN (6.2x6.2)
1 ul
36-VFQFN
2.700000047683716 V
3.5999999046325684 V
2.700000047683716 V
3.5999999046325684 V
0.08500000089406967 W
36-VQFN
6.199999809265137 ul
6.199999809265137 ul
Surface Mount
12 ul
Texas Instruments
VSP2582RHNR
1 Channel AFE 12 Bit 85 mW 36-VQFN (6.2x6.2)
1 ul
36-VFQFN
2.700000047683716 V
3.5999999046325684 V
2.700000047683716 V
3.5999999046325684 V
0.08500000089406967 W
36-VQFN
6.199999809265137 ul
6.199999809265137 ul
Surface Mount
12 ul

Key Features

CCD Signal Processing:36-MHz Correlated Double Sampling (CDS)12-Bit Analog-to-Digital Conversion:36-MHz Conversion RateNo Missing Codes Ensured78-dB Input-referred SNR (at CDS Gain 0 dB)Programmable Black Level ClampingProgrammable Gain Amp (PGA):–9 dB to +35 dB, –3 dB to +9 dBby Analog Front Gain (CDS)–6 dB to +26 dB by Digital GainPortable Operation:Low Voltage: 2.7 V to 3.6 VLow Power: 85 mW at 3.0 V and 36 MHz,1 mW in Standby ModeQFN-36 PackageAll trademarks are the property of their respective owners.CCD Signal Processing:36-MHz Correlated Double Sampling (CDS)12-Bit Analog-to-Digital Conversion:36-MHz Conversion RateNo Missing Codes Ensured78-dB Input-referred SNR (at CDS Gain 0 dB)Programmable Black Level ClampingProgrammable Gain Amp (PGA):–9 dB to +35 dB, –3 dB to +9 dBby Analog Front Gain (CDS)–6 dB to +26 dB by Digital GainPortable Operation:Low Voltage: 2.7 V to 3.6 VLow Power: 85 mW at 3.0 V and 36 MHz,1 mW in Standby ModeQFN-36 PackageAll trademarks are the property of their respective owners.

Description

AI
The VSP2582 is a complete mixed-signal processing IC for digital cameras that provides correlated double sampling (CDS) and analog-to-digital conversion (ADC) for the output of charge-coupled device (CCD) array. The CDS extracts video information of the pixels from the CCD signal, and the ADC converts it to a digital signal. For varying illumination conditions, –9 dB to +35 dB very stable gain control is provided. This gain control is linear in dB. Input signal clamping and offset correction of the input CDS are also provided. Offset correction is performed by an Optical Black (OB) level calibration loop, and held at a calibrated black level clamping for an accurate black level reference. Additionally, the black level is quickly recovered after a gain change. The VSP2582 is available in a QFN-36 package, and operates from a single +3 V supply. The RHH package features an exposed thermal pad, resulting in substantially improved thermal performance. The VSP2582 is a complete mixed-signal processing IC for digital cameras that provides correlated double sampling (CDS) and analog-to-digital conversion (ADC) for the output of charge-coupled device (CCD) array. The CDS extracts video information of the pixels from the CCD signal, and the ADC converts it to a digital signal. For varying illumination conditions, –9 dB to +35 dB very stable gain control is provided. This gain control is linear in dB. Input signal clamping and offset correction of the input CDS are also provided. Offset correction is performed by an Optical Black (OB) level calibration loop, and held at a calibrated black level clamping for an accurate black level reference. Additionally, the black level is quickly recovered after a gain change. The VSP2582 is available in a QFN-36 package, and operates from a single +3 V supply. The RHH package features an exposed thermal pad, resulting in substantially improved thermal performance.