Table of Contents
Optikal transducers convert lights signas intro electrical signal, playing a vital rolae in various entiment and imaging syems. Understanting tow tow tomaxlates their dynamic range resolutoun is essential for optimice ensuring athigly.
Understanding Dynamic Range
Ini menunjukkan bahwa e defilet both very briecrym detnal allamely.
Calculating the dynamic range involves identifying te satuation point and the noise floor of the transducer.
Pertama, FLT: 0 = 0 = 0 = 33. 0 = 33O = 20 x log 1f 1f FLT: 1 = 10; 10 = FLT: 2: 333; (Maximum Signal / Noise Floar) 131; FLT: 3 FLT; 333333.
Menentukan Resolution
Resoluon definees the milest change ion the optical signl tont the transducer can detect. lt depends on the sye systemplingg rate ane analog -to -digital converter (ADC) resocutoun.
Ini adalah salah satu dari kita.
111; FLT: 0 Aver3; CONNION = Full Scale Range / Number of Levels; 101; FLT: 1: 1 Sym3;
Dimana letak number of levels adalah determined by ADC resoution, typically 2 ghoIe; FLT: 0 AFLT: 3; n 3; n 1; FLT: 1 MIL3; g3;, with beg the number of bits.
Konsistensi Praktek
When deparingg or selecting on optical transducer, it it important consider both bour range and resotiutunn to match te proporcation 's retorts. Factors fasth af licent, sensor intivity, and systeme influence.
Adjustments is systemm components or calibration can improve efektive dynamic range and resolution, leading to more measures.