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IC-LSHCCHIP 数据表(PDF) 5 Page - IC-Haus GmbH |
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IC-LSHCCHIP 数据表(HTML) 5 Page - IC-Haus GmbH |
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5 / 7 page ![]() preliminary preliminary iC-LSHC 3-CHANNEL SIN/COS PHOTOSENSOR ARRAY Rev B1, Page 5/7 ELECTRICAL CHARACTERISTICS Operating conditions: VCC = 4.5...5.5 V, Tj = -40..125 °C, unless otherwise stated Item Symbol Parameter Conditions Unit No. Min. Typ. Max. Total Device 001 VCC Permissible Supply Voltage 4.5 5.5 V 002 I(VCC) Supply Current in VCC no output load, photocurrents within linear op- erating range (no override) 9.5 15 mA 003 Vc()hi Clamp-Voltage hi at all pins I() = 4 mA 11 V 004 Vc()lo Clamp-Voltage lo at all pins I() = -4 mA -1.2 -0.3 V Photosensors 101 λ ar Spectral Application Range Se(λ ar) = 0.25 x S(λ )max 400 950 nm 102 λ pk Peak Sensitivity Wavelength 680 nm 103 Aph() Radiant Sensitive Area 0.8 mm x 0.33 mm 0.264 mm2 104 S(λ ) Spectral Sensitivity λ LED = 740 nm 0.5 A/W 105 S(λ pk)max Maximum Spectral Sensitivity λ LED = λ pk 0.55 A/W 106 E()mxr Irradiance For Maximum Signal Level λ LED = 740 nm, Vout() not yet saturated 0.15 0.5 0.8 mW/ cm2 Photocurrent Amplifiers 201 Iph() Permissible Photocurrent Operating Range 0 280 nA 202 η ()r Photo Sensitivity (light-to-voltage conversion ratio) λ LED = 740 nm 0.8 1.2 2.0 V/µW 203 Z() Equivalent Transimpedance Gain Z = Vout() / Iph() 2.69 4.0 5.46 MΩ 204 TCz Temperature Coefficient of Transimpedance Gain -0.12 %/°C 209 ∆ Z()pn Transimpedance Gain Matching P vs. N path per diff. channel -0.2 0.2 % 210 ∆ Vout()pn Signal Matching no illumination, any output to any output -35 35 mV 211 ∆ Vout()pn Signal Matching no illumination, P.. output vs. corresponding N.. output -2.5 2.5 mV 212 fc()hi Cut-off Frequency (-3 dB) 120 180 280 kHz 213 VNoise() RMS Output Noise illuminated to 500 mV signal level above dark level, 500 kHz band width 0.5 mV Signal Outputs 301 Vout()mx Permissible Maximum Output Voltage illumination to E()mxr, linear gain 2.45 2.72 3.02 V 302 Vout()d Dark Signal Level no illumination, load 20 kΩ vs. +2 V 600 770 1000 mV 303 Vout()acmx Maximum Signal Level Vout()acmx = Vout()mx - Vout()d 1.48 1.96 2.35 V 304 Isc()hi Short-Circuit Current hi load current to ground 100 420 800 µA 305 Isc()lo Short-Circuit Current lo load current to IC 250 480 700 µA 306 Ri() Internal Output Resistance f = 1 kHz 70 110 180 Ω 307 ton() Power-On Settling Time VCC = 0 V → 5 V 100 µs Reference Voltage VREF 401 VREF Reference Voltage I(VREF) = 0...+1.6 mA 600 770 1000 mV 402 dVout() Load Balancing I(VREF) = 0...+1.6 mA -10 +10 mV 403 Isc()hi Short-Circuit Current hi load current to ground 200 420 800 µA 404 Isc()lo Short-Circuit Current lo load current to IC 2 4.5 10 mA |
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