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1. Radiation hard DMAPS pixel sensors in 150nm CMOS technology for operation at LHC

2. CMOS Monolithic Pixel Sensors based on the Column-Drain Architecture for the HL-LHC Upgrade

3. Characterization of a depleted monolithic pixel sensors in 150 nm CMOS technology for the ATLAS Inner Tracker upgrade

4. Study of prototypes of LFoundry active and monolithic CMOS pixels sensors for the ATLAS detector

5. Depleted fully monolithic CMOS pixel detectors using a column based readout architecture for the ATLAS Inner Tracker upgrade

6. Development of a Depleted Monolithic CMOS Sensor in a 150 nm CMOS Technology for the ATLAS Inner Tracker Upgrade

7. DMAPS Monopix developments in large and small electrode designs

8. Development of a PCI Express Based Readout Electronics for the XPAD3 X-Ray Photon Counting Image

9. XPAD3 hybrid pixel detector applications

10. Radiation hard DMAPS pixel sensors in 150 nm CMOS technology for operation at LHC

11. Test results and prospects for RD53A, a large scale 65 nm CMOS chip for pixel readout at the HL-LHC

12. Technical Design Report for the ATLAS inner Tracker pixel detector

13. Characterization of a depleted monolithic pixel sensors in 150 nm CMOS technology for the ATLAS Inner Tracker upgrade

14. CMOS monolithic pixel sensors based on the column-drain architecture for the HL-LHC upgrade

15. The Monopix chips: depleted monolithic active pixel sensors with a column-drain read-out architecture for the ATLAS Inner Tracker upgrade

16. RD53A: a large scale prototype for HL-LHC silicon pixel detector phase 2 upgrades

17. Design implementation and test results of the RD53A, a 65 nm large scale chip for next generation pixel detectors at the HL-LHC

18. Depleted fully monolithic CMOS pixel detectors using a column based readout architecture for the ATLAS Inner Tracker upgrade

19. Study of prototypes of LFoundry active CMOS pixels sensors for the ATLAS detector

20. Characterization of a new HV/HR CMOS Sensor in LF150nm Process for the ATLAS Inner Tracker Upgrade

21. Design of analog front-ends for the RD53 demonstrator chip

22. Development of a Depleted Monolithic CMOS Sensor in a 150 nm CMOS Technology for the ATLAS Inner Tracker Upgrade

24. Recent progress of RD53 Collaboration towards next generation Pixel Read-Out Chip for HL-LHC

25. CMOS pixel sensors on high resistive substrate for high-rate, high-radiation environments

27. 65nm technology for HEP: status et perspective

28. HL-LHC/ATLAS Hybrid Pixel Detector Upgrade : Test Results of the First 3D-IC Prototype

29. Prototype Active Silicon Sensor in 150 nm HR-CMOS technology for ATLAS Inner Detector Upgrade

30. Test Results of the first 3D-IC Prototype Chip Developed in the Framework of HL-SLHC/ATLAS Hybrid Pixel Upgrade

31. Contribution du CNRS/IN2P3 à l'upgrade d'ATLAS. Proposition soumise au Conseil Scientifique de l'IN2P3 du 21 Juin 2012

32. Atlas Pixel Design Using Two Tiers of Electronics

33. Development of a PCI Express Based Readout Electronics for the XPAD3 X-Ray Photon Counting Image

34. PIXSIC: a Pixellated Radiosensitive Intracerebral Beta Microprobe Allowing the Kinetics Measurements of Radiotracer on Awake and Fully Freely Moving Small Animals

35. Test results of the first 3D-IC prototype chip developed in the framework of HL-LHC/ATLAS hybrid pixel upgrade

36. Experience with 3D integration technologies in the framework of the ATLAS pixel detector upgrade for the HL-LHC

37. A Tezzaron-Chartered 3D-IC electronic for SLHC/ATLAS hybrid pixels detectors test results and irradiations performance

38. Performance and Applications of the CdTe- and Si-XPAD3 photon counting 2D detector

39. Test results and irradiation performances of 3-D circuits developed in the framework of ATLAS hybrid pixel upgrade

42. The XPAD3 hybrid pixel detector applications

44. 3D electronics for hybrid pixel detectors - TWEPP-09

45. 65 nm technology for HEP: Status and perspective

46. RD53A: A large scale prototype for HL-LHC silicon pixel detector phase 2 upgrades

47. CMOS Monolithic Pixel Sensors based on the Column-Drain Architecture for the HL-LHC Upgrade

48. A bio-inspired analog silicon retina with Michaelis-Menten auto-adaptive pixels sensitive to small and large changes in light.

49. Hardware architecture and cutting-edge assembly process of a tiny curved compound eye.

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