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TSL12T Datasheet(PDF) 3 Page - TEXAS ADVANCED OPTOELECTRONIC SOLUTIONS |
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TSL12T Datasheet(HTML) 3 Page - TEXAS ADVANCED OPTOELECTRONIC SOLUTIONS |
3 / 14 page TSL12T, TSL13T LIGHT-TO-VOLTAGE CONVERTERS TAOS062D − APRIL 2007 3 The LUMENOLOGY r Company r r Copyright E 2007, TAOS Inc. www.taosinc.com Electrical Characteristics at VDD = 5 V, TA = 25°C, λp = 640 nm, RL = 10 kΩ (unless otherwise noted) (see Notes 3, 4, 5) PARAMETER TEST CONDITIONS TSL12T TSL13T UNIT PARAMETER TEST CONDITIONS MIN TYP MAX MIN TYP MAX UNIT VOM Maximum output voltage 4.6 4.9 4.6 4.9 V Ee = 20.5 μW/cm2 1.5 2 2.5 V Output voltage Ee = 83 μW/cm2 1.5 2 2.5 V VO Output voltage Ee = 41 μW/cm2 4 V Ee = 166 μW/cm2 4 Re Irradiance responsivity Note 6 96 24 mV/ (μW/ cm2) VOS Extrapolated offset voltage Note 6 −0.02 0.03 0.08 −0.02 0.03 0.08 V Vd Dark voltage Ee = 0 0 0.08 0 0.08 V I Supply current Ee = 20.5 μW/cm2 1.1 1.7 mA ID Supply current Ee = 83 μW/cm2 1.1 1.7 mA NOTES: 3. Measurements are made with RL = 10 kΩ between output and ground. 4. Optical measurements are made using small-angle incident radiation from an LED optical source. 5. The 640 nm input irradiance Ee is supplied by an AlInGaP LED with peak wavelength λp = 640 nm. 6. Irradiance responsivity is characterized over the range VO = 0.2 to 4 V. The best-fit straight line of Output Voltage VO versus irradiance Ee over this range may have a positive or negative extrapolated VO value for Ee = 0. For low irradiance values, the output voltage VO versus irradiance Ee characteristic is non linear with a deviation toward VO = 0, Ee = 0 origin from the best-fit straight line referenced above. Dynamic Characteristics at VDD = 5 V, TA = 25°C, λp = 640 nm, RL = 10 kΩ (unless otherwise noted) (see Figure 1) PARAMETER TEST CONDITIONS TSL12T TSL13T UNIT PARAMETER TEST CONDITIONS MIN TYP MAX MIN TYP MAX UNIT t Output pulse delay time for rising edge (0% Min VO = 0 V; Peak VO = 2 V 13 1.7 s tdr Output pulse delay time for rising edge (0% to 10%) Min VO = 0.5 V; Peak VO = 2 V 2.3 1.2 μs t Output pulse rise time (10% to 90%) Min VO = 0 V; Peak VO = 2 V 20 7.2 s tr Output pulse rise time (10% to 90%) Min VO = 0.5 V; Peak VO = 2 V 10 6.5 μs t Output pulse delay time for falling edge Min VO = 0 V; Peak VO = 2 V 2.3 1.2 s tdf Output pulse delay time for falling edge (100% to 90%) Min VO = 0.5 V; Peak VO = 2 V 2.2 1.1 μs t Output pulse fall time (90% to 10%) Min VO = 0 V; Peak VO = 2 V 10 6.8 s tf Output pulse fall time (90% to 10%) Min VO = 0.5 V; Peak VO = 2 V 9 6.4 μs |
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