Dual mode pixel array detector
Devices for detecting electromagnetic radiation, and method of configuring the devices, are disclosed. In one aspect, a pixel array detector includes a plurality of dual-mode pixels arranged in an array. Each dual-mode pixel includes a mixed-mode sensor configured to detect accumulated charge created by electromagnetic radiation incident on the pixel. Each dual-mode pixel further includes a digital-mode sensor configured to count individual photons incident on the pixel. Each dual-mode pixel includes a switch configured to selectively couple the mixed-mode sensor and the digital sensor with a diode associated with the pixel. The pixel array detector further includes a controller configured to configure each pixel of the plurality of dual-mode pixels into either mixed-mode or the digital-mode.
1. A pixel array detector comprising:
a plurality of dual-mode pixels arranged in an array, each dual-mode pixel comprising:
a mixed-mode sensor configured to detect accumulated charge created by electromagnetic radiation incident on the pixel;
a digital-mode sensor configured to count individual photons incident on the pixel;
a switch configured to selectively couple the mixed-mode sensor and the digital sensor with a diode associated with the pixel;
a multiplexer configured to combine outputs from both the digital-mode sensor and the mixed-sensor path; and
a combined counter configured to receive output from the multiplexer; and
a controller configured to configure each pixel of the plurality of dual-mode pixels into either the mixed-mode or the digital-mode.
2. The pixel array detector of claim 1 , wherein the digital-mode sensor comprises a charge-sensitive amplifier, a shaper, and a comparator.
3. The pixel array detector of claim 1 , wherein the mixed-mode sensor comprises a capacitor, a slow amplifier, a comparator, and a precision charge remover.
4. The pixel array detector of claim 1 , wherein the combined counter is configured to store a photon count when the pixel is configured in the digital mode.
5. The pixel array detector of claim 1 , wherein the combined counter is configured to store a ramp count when the pixel is configured in the mixed mode.
6. The pixel array detector of claim 1 , wherein the combined counter comprises an N-bit counter, where N can have any positive integer value.
7. A method of configuring a dual-mode pixel array detector, the detector comprising a plurality of dual-mode pixels each comprising a mixed-mode sensor configured to detect accumulated charge created by electromagnetic radiation incident on the pixel, a digital-mode sensor configured to count individual photons incident on the pixel, a switch configured to selectively couple the mixed-mode sensor and the digital sensor with a diode associated with the pixel, a multiplexer configured to combine outputs from both the digital-mode sensor and the mixed-sensor path, and a combined counter configured to receive output from the multiplexer, and capable of being configured into either a mixed-mode or a digital-mode, the method comprising:
accumulating a setup image, using a data collection sample, wherein each pixel in the array is set to be in either mode comprising one of the mixed-mode or the digital-mode;
reading the setup image;
determining an intensity distribution of the setup image; and
configuring the detector such that each pixel in the array is configured into one of the mixed-mode or the digital-mode based on the intensity distribution of the setup image.
8. The method of claim 7 , wherein accumulating the setup image comprises configuring each pixel in the array into the mixed-mode.
9. The method of claim 7 , wherein accumulating the setup image comprises configuring each pixel in the array into the digital-mode.
10. The method of claim 7 , wherein accumulating the setup image comprises illuminating a crystal with X-rays.
11. The method of claim 7 , wherein determining the intensity distribution comprises determining a closed curve.
12. The method of claim 11 , further comprising configuring each pixel in the array, into one of the mixed-mode or the digital-mode, based on whether the pixel is inside or outside the closed curve.
13. The method of claim 7 , further comprising determining a threshold value for at least one of: pixel intensity, dead-time loss, and signal noise.
14. The method of claim 13 , wherein configuring the detector comprises configuring each pixel in the array, into one of the mixed-mode or the digital-mode, based on whether a measured intensity at the pixel is above or below the threshold value.
15. The method of claim 13 , further comprising determining the threshold value based on a predicated amount of dead-time loss that would result from saturation of a digital-mode pixel.
16. The method of claim 13 , further comprising determining the threshold value based on a predicated amount of signal noise that would result in under-exposure of a mixed-mode pixel.