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Digital IC converter AS5912
ADCLVDSmulti-channel

Digital IC converter - AS5912 - OSRAM Opto Semiconductors - ADC / LVDS / multi-channel
Digital IC converter - AS5912 - OSRAM Opto Semiconductors - ADC / LVDS / multi-channel
Digital IC converter - AS5912 - OSRAM Opto Semiconductors - ADC / LVDS / multi-channel - image - 2
Digital IC converter - AS5912 - OSRAM Opto Semiconductors - ADC / LVDS / multi-channel - image - 3
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Characteristics

Type
digital, ADC
Bus
LVDS
Other characteristics
multi-channel

Description

The AS5912 is an ultra-low noise, 512-channel low power current to digital converter that enables the readout of photodiodes of a CT detector with highest sensitivity. The output currents of 512 photodiodes are converted simultaneously into digital without any dead time resulting in no charge loss on the inputs. The AS5912 combines current-to-voltage integration and A/D conversion for 512-channels in one device. The ADC architecture with its low-noise integrators, coarse quantizer, sample-and-hold and fine quantizer guarantee lowest input related noise of maximum 0.29 fC (low noise mode) at an input current range of 0.5 µA. The input current range of the ADC is selectable between 0.5 µA and 1 µA. The AS5912 supports two supply concepts: a single analog and true ground supply, in both modes the photodiodes are zero biased for ultra-low dark current of the photodiode. In true ground mode, the AS5912 operates at ±1.5 V dual analog supply while in single supply mode only a single analog supply of +3.0 V is needed. The device detects automatically the chosen supply concept. No external components are required for supply decoupling. To reduce PCB area and simplify the assembly process, decoupling capacitors for supply and reference voltages are integrated in the 23 x 15 mm² FBGA package. The on-chip LDOs, reference voltages and a temperature sensor minimize the external component requirements and reduces the bill of material. Full-scale range, integration time and power mode are configurable over a SPI-compatible serial interface as well as the digital output modes of the LVDS interface.

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