会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明申请
    • APPARATUS AND METHODS FOR HIGH PERFORMANCE RADIOGRAPHIC IMAGING ARRAY INCLUDING REFLECTIVE CAPABILITY
    • 高性能射线照相阵列装置和方法,包括反射能力
    • WO2012091932A3
    • 2012-09-27
    • PCT/US2011065047
    • 2011-12-15
    • CARESTREAM HEALTH INCTREDWELL TIMOTHY J
    • TREDWELL TIMOTHY J
    • H01L27/14H01L27/146
    • G01T1/2018
    • Embodiments of methods/apparatus according to the application can include radiographic imaging device comprising an imaging array of pixels or a plurality of photosensors including a first side to receive light from a scintillator and a second side to pass second light responsive to impingement of the scintillator light and a reflective layer configured to reflect third light responsive to impingement of the second light. Exemplary photosensors can absorb a prescribed amount of the scintillator light received through a first transparent side and the third light received through a second transparent side. Exemplary reflective arrangements can be selected based upon scintillotor emission characteristics and/or photosensor absorption characteristics. Embodiments of radiographic detector arrays and methods can reduce photosensor thickness to reduce noise, reduce image lag and/or increase charge capacity. Embodiments can maintain the quantum efficiency of a reduced thickness photosensor.
    • 根据本申请的方法/设备的实施例可以包括射线照相成像设备,其包括像素的成像阵列或者多个光电传感器,其包括用于接收来自闪烁体的光的第一侧和响应于闪烁体光的照射而传递第二光的第二侧 以及被配置为响应于第二光的照射而反射第三光的反射层。 示例性的光电传感器可以吸收规定量的通过第一透明侧接收的闪烁体光和通过第二透明侧接收的第三光。 可以基于闪烁发射特性和/或光电传感器吸收特性来选择示例性的反射配置。 放射照相检测器阵列和方法的实施例可以减小光电传感器厚度以减少噪声,减少图像滞后和/或增加电荷容量。 实施例可以保持减小厚度的光电传感器的量子效率。
    • 7. 发明申请
    • APPARATUS AND METHODS FOR HIGH PERFORMANCE RADIOGRAPHIC IMAGING ARRAY INCLUDING REFLECTIVE CAPABILITY
    • 用于高性能放射成像阵列的装置和方法,包括反射能力
    • WO2012091932A2
    • 2012-07-05
    • PCT/US2011/065047
    • 2011-12-15
    • CARESTREAM HEALTH, INC.TREDWELL, Timothy J.
    • TREDWELL, Timothy J.
    • H01L27/14H01L27/146
    • G01T1/2018
    • Embodiments of methods/apparatus according to the application can include radiographic imaging device comprising an imaging array of pixels or a plurality of photosensors including a first side to receive light from a scintillator and a second side to pass second light responsive to impingement of the scintillator light and a reflective layer configured to reflect third light responsive to impingement of the second light. Exemplary photosensors can absorb a prescribed amount of the scintillator light received through a first transparent side and the third light received through a second transparent side. Exemplary reflective arrangements can be selected based upon scintillotor emission characteristics and/or photosensor absorption characteristics. Embodiments of radiographic detector arrays and methods can reduce photosensor thickness to reduce noise, reduce image lag and/or increase charge capacity. Embodiments can maintain the quantum efficiency of a reduced thickness photosensor.
    • 根据本申请的方法/装置的实施例可以包括包括像素的成像阵列或多个光电传感器的放射线照相成像装置,所述成像阵列包括第一侧以接收来自闪烁体的光,并且第二侧响应于闪烁体光的撞击而传递第二光 以及反射层,被配置为响应于所述第二光的撞击而反射第三光。 示例性光电传感器可以吸收通过第一透明侧接收的规定量的闪烁体光,并且通过第二透明侧吸收第三光。 可以基于闪烁扫描仪发射特性和/或光电传感器吸收特性来选择示例性的反射布置。 放射线检测器阵列和方法的实施例可以降低光电传感器厚度以减少噪声,降低图像滞后和/或增加电荷容量。 实施例可以保持减小厚度光电传感器的量子效率。