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IS1622 OPIC light detector signal detection (Integrates 6-divisio
Top Searches for this datasheetIS1622 IS1622 OPIC light detector signal detection (Integrates 6-division photodiode amplifier onto single chip) operating voltage design (Operating voltage 5.5V) Sensitivity switching between playback mode recording mode Compact thin transparent package (Package dimensions OPIC Light Detector Playback/Recording player Outline Dimensions +0.2 0.8-0.4 (Unit +0.3 1.1-0.2 Reference plane 2-0.15MAX. Detector center 2-0.5MAX. ±0.1 9.3MAX. 6.0±0.1 0.15+0.3 (0.5) 6.1±0.1 6.1±0.1 0.54 Detector face +0.03 0.05-0.05 Applications Optical pickup playback/recording players P0.7 0+0.2 +0.2 10-0.3-0.1 +0.2 0.8-0.4 ±0.1 (1.07) index mark (Ta=25°C) Unit 1.5±0.1 Absolute Maximum Ratings Parameter Supply voltage Cathode terminal voltage Mode switching terminal voltage Output voltage Power dissipation Operating temperature Storage temperature Soldering temperature Symbol Rating -0.5 +6.0 -0.5 +6.0 -0.5 VMP/R -0.5 Topr Tstg Tsol +260 ±0.1 Reference plane ±0.1 index mark Terminal connection Unspecified tolerance ±0.2mm Reference dimensions MP/R Applies individual terminals decrease rate 2mW/°C 25°C MAX. seconds soldering area "OPIC"(Optical trademark SHARP Corporation. OPIC consists light-detecting element signalprocessing circuit integrated onto signal chip. Soldering area Soldering area Notice absence confirmation device specification sheets, SHARP takes responsibility defects that occur equipment using SHARP devices shown catalogs, data books, etc. Contact SHARP order obtain latest device specification sheets before using SHARP device. Internet Internet address Electronic Components Group http://www.sharp.co.jp/ecg/ 3.7+0.5 3.7+0.5 IS1622 Recommended Operating Conditions Parameter Supply voltage Cathode terminal voltage "H"gain mode incident light quantity range "H"gain mode incident light quantity range "L"gain mode incident light quantity range "L"gain mode incident light quantity range Symbol Vcc1 MIN. TYP. MAX. Unit incident light quantity range applies individual photodiodes specified incident light quantity single photodiode. incident light quantity range applies individual photodiodes specified incident light quantity single photodiode. Electro-optical Characteristics (Current flowing into device Current flowing device Parameter Supply current Dark output voltage Dark output differential voltage Sensitivity Sensitivity temperature coefficient Response frequency Output noise level Supply current Dark output voltage Dark output differential voltage Sensitivity Sensitivity temperature coefficient Response frequency Output noise level Output noise level Sensitivity Output current Dark current Terminal capacitance Mode switching terminal voltage Mode switching terminal voltage Mode switching terminal current Mode switching terminal current Mode switching Sensitivity response characteristics Sensitivity response "H"gain mode "L"gain mode Common both modes Symbol ICCP VodP VodPS RpPt ICCR VodR VodRS RpRt VnR1 VnR2 RpE, IdE, RpRP RpPR Conditions Ta=-20 +70°C -3dB f=720kHz, BW=10kHz Ta=-20 +70°C -3dB f=22kHz, BW=1kHz f=720kHz, BW=10kHz (Ta=25°C, Vcc=VK=3.0V) Unit mV/µW ppm/°C mV/µW ppm/°C µA/µW mV/µW mV/µW Application MP/R MP/R MP/R MP/R MIN. 0.28 Vcc-0.5 11.7 TYP. 22.5 +7000 1.35 +7000 -100 0.37 (20) 22.5 MAX. 10.0 0.52 -0.5 35.7 Specified sampling test 6µW, 50µm light applied center each photodiode. Under that condition, sensitivity shown following formula. RpP=|VpP-VodP|/6µW Output voltage when light applied. VodP Output voltage when light applied. 50µW 50µm light applied center each photodiode. Under that condition, sensitivity shown following formula. RpR=|VpR-VodR|/50µW Output voltage when light applied. VodR Output voltage when light applied. Playback mode VMP/R=0V Recording mode VMP/R=VCC. Sensitivity response characteristics after switcing mode specified sensitivity 200µs after change mode switcing voltage. Take measurement with light radiated center each photodiode 50µm. Rp=|Vp-Vod|/20µW IS1622 Fig.1 Response Time gain mode gain mode switching time ("L" gain mode) Mode switching terminal voltage ("H" gain mode) Mode switching terminal voltage Fig.2 Response Time gain mode gain mode switching time ("H" gain mode) ("L" gain mode) Output 200µs Output 200µs Fig.3 Detecting Pattern Photodiode (Unit Fig.4 Block Diagram Switch Amp. Amp. Switch MP/R Switch (500) Amp. Amp. Switch switching circuit operates according voltage MP/R terminals. Mode "H"gain mode "L"gain mode MP/R terminal voltage state Gain resistance R1/R2 IS1622 Fig.5 Supply Current Ambient Temperature Gain Mode) Supply current (mA) Supply current (mA) VCC=Vk=3.0V Fig.6 Supply Current Ambient Temperature Gain Mode) VCC=Vk=3.0V Ambient temperature (°C) Ambient temperature (°C) Fig.7 Response Frequency Ambient Temperature Gain Mode) Response frequency (MHz) VCC=Vk=3.0V =780nm Fig.8 Response Frequency Ambient Temperature Gain Mode) Response frequency (MHz) VCC=Vk=3.0V =780nm Ambient temperature (°C) Ambient temperature (°C) Fig.9 Dark Output Voltage Ambient Temperature Gain Mode) Dark output voltage VCC=Vk=3.0V Fig.10 Dark Output Voltage Ambient Temperature Gain Mode) Dark output voltage VCC=Vk=3.0V Ambient temperature (°C) Ambient temperature (°C) IS1622 Fig.11 Sensitivity Ambient Temperature Gain Mode) Sensitivity (mV/µW) VCC=Vk=3.0V =780nm Fig.12 Sensitivity Ambient Temperature Gain Mode) Sensitivity (mV/µW) VCC=Vk=3.0V =780nm Ambient temperature (°C) Ambient temperature (°C) Fig.13 Sensitivity Ambient Temperature (H/L Gain Mode) 0.43 0.42 0.41 Sensitivity (µA/µW) 0.40 0.39 0.38 0.37 0.36 0.35 0.34 0.33 VCC=Vk=3.0V =780nm Ambient temperature (°C) Application Circuits NOTICE qThe circuit application examples this publication provided explain representative applications SHARP devices intended guarantee circuit design license intellectual property rights. SHARP takes responsibility problems related intellectual property right third party resulting from SHARP's devices. qContact SHARP order obtain latest device specification sheets before using SHARP device. SHARP reserves right make changes specifications, characteristics, data, materials, structure, other contents described herein time without notice order improve design reliability. Manufacturing locations also subject change without notice. qObserve following points when using devices this publication. 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