Base Part Number Package Output Type - with Light. Internal 10K - High Internal 10K - Low Internal 10K - High Internal 10K - Low.

Similar documents
OPL530, OPL531, OPL535, OPL536, OPL550, OPL551, OPL560, OPL561, OPL562, OPL563

Photologic Sensor OPL530, OPL531, OPL535, OPL536, OPL550, OPL551, OPL560, OPL561, OPL562, OPL563

OPL800, OPL800-OC, OPL801, OPL801-OC, OPL810, OPL810-OC, OPL811, OPL811-OC, OPL812-OC, OPL813-OC, OPL820, OPL820-OC, OPL821-OC

1-OF-8 DECODER/DEMULTIPLEXER High-Speed Silicon-Gate CMOS

Hallogic Hall-effect Sensors OH090U, OH180U, OH360U OHN3000 Series, OHS3000 Series OHN3100 Series, OHS3100 Series

Hallogic Hall-Effect Sensors OH090U, OH180U, OH360U OHN3000 series, OHS3000 series OHN3100 series, OHS3100 series

OP550, OP552, OP555, OP560, OP565, OP750 Series

High Reliability Hallogic Hall- Effect Sensors OMH090, OMH3019, OMH3020, OMH3040, OMH3075, OMH3131 (B, S versions)

MM74C150 MM82C19 16-Line to 1-Line Multiplexer 3-STATE 16-Line to 1-Line Multiplexer

12-Stage Binary Ripple Counter High-Voltage Silicon-Gate CMOS

MM82C19 16-Line to 1-Line Multiplexer

PIN Silicon Photodiode OP950 Series

Dual D Flip-Flop with Set and Reset High-Speed Silicon-Gate CMOS

Octal 3-State Noninverting Transparent Latch

MM74C14 Hex Schmitt Trigger

PIN Silicon Photodiode OP950 Series

MM74C14 Hex Schmitt Trigger

1-OF-8 DECODER/DEMULTIPLEXER High-Speed Silicon-Gate CMOS

MM74C93 4-Bit Binary Counter

74HC86. Quad 2 Input Exclusive OR Gate. High Performance Silicon Gate CMOS

MM74C906 Hex Open Drain N-Channel Buffers

MM74HC374 3-STATE Octal D-Type Flip-Flop

CD40106BC Hex Schmitt Trigger

MM74HC244 Octal 3-STATE Buffer

NTE74HC173 Integrated Circuit TTL High Speed CMOS, 4 Bit D Type Flip Flop with 3 State Outputs

Quad 2-Input NAND Gate with Open-Drain Outputs High-Performance Silicon-Gate CMOS

MM74HC574 3-STATE Octal D-Type Edge-Triggered Flip-Flop

NTE40160B, NTE40161B NTE40162B, NTE40163B Integrated Circuit CMOS, Synchronous Programmable 4 Bit Counters

NTE74HC165 Integrated Circuit TTL High Speed CMOS, 8 Bit Parallel In/Serial Out Shift Register

MM74C73 Dual J-K Flip-Flops with Clear and Preset

MM74C175 Quad D-Type Flip-Flop

MM74HC373 3-STATE Octal D-Type Latch

IN74HC164А 8-Bit Serial-Input/Parallel-Output Shift Register

MM74HC157 Quad 2-Input Multiplexer

MM74HC151 8-Channel Digital Multiplexer

MM74HC573 3-STATE Octal D-Type Latch

MM74HC574 3-STATE Octal D-Type Edge-Triggered Flip-Flop

Presettable Counters High-Performance Silicon-Gate CMOS

MM74HC00 Quad 2-Input NAND Gate

MM74HC74A Dual D-Type Flip-Flop with Preset and Clear

MM74HC251 8-Channel 3-STATE Multiplexer

MM74HC4020 MM74HC Stage Binary Counter 12-Stage Binary Counter

MM74C85 4-Bit Magnitude Comparator

MM74HCT573 MM74HCT574 Octal D-Type Latch 3-STATE Octal D-Type Flip-Flop

MM74C00 MM74C02 MM74C04 Quad 2-Input NAND Gate Quad 2-Input NOR Gate Hex Inverter

MM74HC08 Quad 2-Input AND Gate

Dual 4-Input Data Selector/Multiplexer High-Performance Silicon-Gate CMOS

MM74HC32 Quad 2-Input OR Gate

Hex 3-State Noninverting Buffer with Common Enables High-Performance Silicon-Gate CMOS

Dual JK Flip-Flop IW4027B TECHNICAL DATA PIN ASSIGNMENT LOGIC DIAGRAM FUNCTION TABLE. Rev. 00

8-Input Data Selector/Multiplexer with 3-State Outputs High-Performance Silicon-Gate CMOS


MM74HC175 Quad D-Type Flip-Flop With Clear

CD4071BC CD4081BC Quad 2-Input OR Buffered B Series Gate Quad 2-Input AND Buffered B Series Gate

Octal 3-State Inverting Transparent Latch High-Performance Silicon-Gate CMOS

MM74HCT138 3-to-8 Line Decoder

Presettable 4-Bit Binary UP/DOWN Counter High-Performance Silicon-Gate CMOS

MM74HCT08 Quad 2-Input AND Gate

NTE40194B Integrated Circuit CMOS, 4 Bit Bidirectional Universal Shift Register

MM74C00 MM74C02 MM74C04 Quad 2-Input NAND Gate Quad 2-Input NOR Gate Hex Inverter

HIGH SPEED TRANSISTOR OPTOCOUPLERS

MM74HC154 4-to-16 Line Decoder

MM74HC175 Quad D-Type Flip-Flop With Clear

2 Input NAND Gate L74VHC1G00

CD4093BC Quad 2-Input NAND Schmitt Trigger

CD4024BC 7-Stage Ripple Carry Binary Counter

MM74HC4020 MM74HC Stage Binary Counter 12-Stage Binary Counter

MM74HC373 3-STATE Octal D-Type Latch

BCD-TO-DECIMAL DECODER HIGH-VOLTAGE SILICON-GATE CMOS IW4028B TECHNICAL DATA

74LS244 Octal 3-STATE Buffer/Line Driver/Line Receiver

MM74C90 MM74C93 4-Bit Decade Counter 4-Bit Binary Counter

CD4021BC 8-Stage Static Shift Register

Octal 3-State Noninverting Buffer/Line Driver/Line Receiver High-Performance Silicon-Gate CMOS

CD4071BC CD4081BC Quad 2-Input OR Buffered B Series Gate Quad 2-Input AND Buffered B Series Gate

MM74HC139 Dual 2-To-4 Line Decoder

MM74HC540 MM74HC541 Inverting Octal 3-STATE Buffer Octal 3-STATE Buffer

MM74HC164 8-Bit Serial-in/Parallel-out Shift Register

74HC123; 74HCT123. Dual retriggerable monostable multivibrator with reset

Dual J-K Flip-Flop with Set and Reset

74VHC00 Quad 2-Input NAND Gate

DM74S373 DM74S374 3-STATE Octal D-Type Transparent Latches and Edge-Triggered Flip-Flops

HIGH SPEED TRANSISTOR OPTOCOUPLERS

Features Y Wide supply voltage range 3 0V to 15V. Y High noise immunity 0 45 VDD (typ ) Y Low power TTL fan out of 2 driving 74L

74HC74. Dual D Flip Flop with Set and Reset. High Performance Silicon Gate CMOS

Schmitt-Trigger Inverter/ CMOS Logic Level Shifter

74LS240 / 74LS241 Octal 3-STATE Buffer/Line Driver/Line Receiver

MM74HC138 3-to-8 Line Decoder

74VHC393 Dual 4-Bit Binary Counter

CD4028BC BCD-to-Decimal Decoder

Dual D Flip-Flop with Set and Reset

MM54HCT193 MM74HCT193 Synchronous Binary Up Down Counters

CD40174BC CD40175BC Hex D-Type Flip-Flop Quad D-Type Flip-Flop

HIGH SPEED-10 MBit/s LOGIC GATE OPTOCOUPLERS

74VHC74 Dual D-Type Flip-Flop with Preset and Clear

CD4027BC Dual J-K Master/Slave Flip-Flop with Set and Reset

74VHC138 3-to-8 Decoder/Demultiplexer

MM74HCT373 MM74HCT374 3-STATE Octal D-Type Latch 3-STATE Octal D-Type Flip-Flop

CD4028BC BCD-to-Decimal Decoder

MM74C221 Dual Monostable Multivibrator

NTE74HC109 Integrated Circuit TTL High Speed CMOS, Dual J K Positive Edge Triggered Flip Flop w/set & Reset

Transcription:

Choice of four output optio in lowcost sidelooking package Choice of two seitivity optio (OPL560/561/562/563) High noise immunity Direct TTL/LSTTL CMOS interface Data rates to 250 kbaud for all except OPL560 series (200 kbaud) Low power coumption All components in this series include a photodiode, amplifier, voltage regulator, Schmitt trigger and NPN output traistor on a single silicon chip. OPL560 chips also include a voltage regulator on the chip. All devices in the series have a Photologic chip that is encapsulated in a molded plastic sidelooking package with an integral le (recessed integral le for OPL535 and OPL536). This packaging provides enhanced optical coupling, combined with mechanical protection. The hysteresis characteristics of the Schmitt trigger on each device offers high immunity to noise on input and CC. OPL530, OPL531, OPL535 and OPL536 include a 10 K Ω pullup resistor (R L ) from output to CC. These components exhibit very stable performance over supply voltages ranging from 4.5 to 16 and a wide range of irradiance levels. OPL550 and OPL551 devices feature TTL/LSTTL compatible logic level output which can drive up to 8 TTL loads without additional circuitry and mediumspeed data rates to 250 kbaud, with typical rise and fall times of 25 nanoseconds. OPL560, OPL561, OPL562 and OPL563 devices feature TTL/LSTTL compatible logic level output which can drive up to 10 TTL loads over supply voltages ranging from 4.5 to 16. OPL530, OPL531, OPL550, OPL551, OPL560, OPL561, OPL562 and OPL563 are mechanically and spectrally matched to OP140 and OP240 LEDs. OPL535 and OPL536 are mechanically and spectrally matched to OP145 and OP245 series LEDs. Noncontact reflective object seor Assembly line automation Machine automation Machine safety End of travel seor Door seor Base Part Number Package Output Type with Light OPL530 OPL531 OPL535 OPL536 OPL550 External Le Recessed Le External Le Internal 10K High Internal 10K Low Internal 10K High Internal 10K Low Input Power Range (mw/cm 2 ) [Min/Max] A B 0.08/0.40 0.08/0.25 0.20/0.40 Totem Pole High 0.25/2.4 0.25/1.4 OPL551 Totem Pole Low 0.25/2.5 0.25/1.5 OPL560 OPL561 OPL562 OPL563 Totem Pole High Totem Pole Low Totem Pole High Totem Pole Low OC = Open Collector Output N/A 0.09/0.55 0.09/0.36 0.18/0.55 0.025/0.23 0.025/0.14 0.07/0.23 RoHS

OPL530, OPL550, OPL560 Series DIMENSIONS ARE IN: [ MILLIMETERS] INCHES Pin # Seor 1 Ground 2 Output 3 CC Pin # Seor 1 Ground 2 Output 3 cc OPL535, OPL536 Series DIMENSIONS ARE IN: [ MILLIMETERS] INCHES Pin # Seor 1 Ground 2 Output 3 CC Pin # Seor 1 Ground 2 Output 3 cc

OPL530, OPL531, OPL535, OPL536, OPL550, OPL551, OPL560, OPL561, OPL562, OPL563 (OC, OCA, OCB) OPL550, OPL550A, OPL551, OPL551A, OPL560, OPL560A, OPL561, OPL561A, OPL562, OPL562A, OPL563, OPL563A OPL550/550A/560/560A/562/562A TotemPole OPL530/535/550/560/562 (OC, OCA, OCB) OpenCollector CC CC OPL 551/551A/561/561A/563/563A/ Inverted TotemPole OPL 531/536/551/561/563 (OC, OCA, OCB) Inverted OpenCollector CC CC

OPL530, OPL530A, OPL530B, OPL531, OPL531A, OPL531B OPL535, OPL535A, OPL535B, OPL536, OPL536A, OPL536B OPL530/530A/530B, OPL535/535A/535B 10K PullUp OPL531/531A/531B, OPL536/536A/536B Inverted 10K PullUp CC CC CC CC

Supply oltage ( CC ) OPL530, OPL530OC, OPL531, OPL531OC, OPL535, OPL535OC, OPL536, OPL536OC, OPL550, OPL551 OPL560, OPL561, OPL562, OPL563 Operating Temperature Range Storage Temperature Range 18 10 18 40 C to + 85 C 40 C to + C Lead Soldering Temperature [1/16 inch (1.6mm) from the case for 5 sec. with soldering iron] 260 C Sourcing Current OPL560, OPL561, OPL562, OPL563 Power Dissipation OPL530, OPL530OC, OPL531, OPL531OC, OPL535, OPL535OC, OPL536, OPL536OC OPL550, OPL551, OPL560, OPL561, OPL562, OPL563 Sinking Current OPL530, OPL530OC, OPL531, OPL531OC, OPL535, OPL535OC, OPL536, OPL536OC OPL550, OPL551 OPL560, OPL561, OPL562, OPL563 oltage at Output Lead (4) OPL530, OPL530OC, OPL531, OPL531OC, OPL535, OPL535OC, OPL536, OPL536OC OPL550OC, OPL551OC OPL560OC, OPL561OC, OPL562OC, OPL563OC Duration of Output Short to CC or Ground OP550, OP551 Duration of Output Short to CC OPL550OC, OPL551OC OPL560, OPL561, OPL562, OPL563, OPL560OC, OPL561OC, OPL562OC, OPL563OC Low Level Output Current High Level Output Current Irradiance OPL560, OPL560OC, OPL561, OPL561OC OPL562, OPL562OC, OPL563, OPL563OC 10 ma 90 mw 200 mw (2) 50 ma 50 ma 35 35 35 1 second 1 second 1 second 16 ma 1 ma 10 mw/cm 2 9 mw/cm 3 mw/cm 2 Notes: (1) RMA flux is recommended. Duration can be extended to 10 sec. max. when flow soldering. For OPL530, OPL530OC, OPL531, OPL531OC, OPL535, OPL535OC, OPL536 and OPL536OC, a maximum of 20 grams force may be applied to leads while at soldering temperatures. (2) Derate linearly 2.67 mw/ C above C for OPL530, OPL530OC, OPL531, OPL531OC, OPL535, OPL535OC, OPL536 and OPL536OC. Derate linearly 2.5 mw/ C above 25 C for all devices in the OPL550, OPL551, OPL560, OPL561, OPL562 and OPL563 series. (3) Irradiance measurements are made with λi = 935 nm. (4) This applies to OC versio only. For I CC on pullup versio, add CC /10 KΩ.

Operating Supply oltage OPL530, OPL530OC, OPL531, OPL531OC OPL535, OPL535OC, OPL536, OPL536OC, OPL560, OPL561 Series 4.5 16 4.5 5.5 CC PeaktoPeak CC Ripple Necessary to Cause False Triggering of Output OPL530, OPL530OC, OPL531, OPL531OC OPL535, OPL535OC, OPL536, OPL536OC OPL560, OPL561 Series 2 f = DC to 50 MHz 2 CC = 5 DC, f = DC to 50 MHz Supply Current (4) OPL530, OPL530OC, OPL531, OPL531OC OPL535, OPL535OC, OPL536, OPL536OC 2.7 5 ma E E = 0 or 1 mw/cm 2 I CC 8 15 ma E E = 0 or 3 mw/cm 2, CC = 5.5 OPL560, OPL561 Series 8 12 ma E E = 0 or 1 mw/cm 2 PositiveGoing Threshold Irradiance (3) OPL530, OPL530OC, OPL531, OPL531OC OPL535, OPL535OC, OPL536, OPL536OC 0.08 0.40 mw/cm 2 T A = 25 C E et(+) OPL530A, OPL530OCA, OPL531A, OPL531OCA OPL535A, OPL535OCA, OPL536A, OPL536OCA 0.08 0.25 mw/cm 2 T A = 25 C OPL530B, OPL530OCB, OPL531B, OPL531OCB OPL535B, OPL535OCB, OPL536B, OPL536OCB 0.12 0.40 mw/cm 2 T A = 25 C OPL550, OPL550OC, OPL551, OPL551OC OPL550A, OPL550OCA, OPL551, OPL551OCA.25.25 2.4 1.4 mw/cm 2 mw/cm 2 CC = 5, T A = 25 C CC = 5, T A = 25 C

Hysteresis Ratio OP530, OP531 Series 1.05 1.3 1.6 E et(+)/ E et() OP535, OP536 Series 1.05 1.2 1.5 1.50 2 2.5 E et (+)( T) OPL560, OPL561 Series Temperature Coefficient OPL530, OPL530OC, OPL531, OPL531OC OPL535, OPL535OC, OPL536, OPL536OC 1.20 Notes: (1) RMA flux is recommended. Duration can be extended to 10 sec. max. when flow soldering. For OPL530, OPL530OC, OPL531, OPL531OC, OPL535, OPL535OC, OPL536 and OPL536OC, a maximum of 20 grams force may be applied to leads while at soldering temperatures. (2) Derate linearly 2.67 mw/ C above C for OPL530, OPL530OC, OPL531, OPL531OC, OPL535, OPL535OC, OPL536 and OPL536OC. Derate linearly 2.5 mw/ C above 25 C for all devices in the OPL550, OPL551, OPL560, OPL561, OPL562 and OPL563 series. (3) Irradiance measurements are made with λi = 935 nm. (4) This applies to OC versio only. For I CC on pullup versio, add CC /10 KΩ. 1.55 0.6 1.6 2 %/ C %/ C >0 C <0 C

OH Operating Supply oltage OPL550 OPL551 OPL560 2.4 2.4 CC 2.1 3.3 3.3 CC = 4.5, I OH = 800 µa, E E = 3 mw/cm 2 CC = 4.5, I OH = 800 µa, E E = 0 I OH = 1, E E = 1 mw/cm 2 OPL561 CC 2.1 I OH = 1, E E = 0 Low Level Output oltage OPL530, OPL530OC, OPL535, OPL535OC 0.2 0.4 I OL = 16 ma, E E = 0 OPL531, OPL531OC, OPL536, OPL536OC 0.2 0.4 I OL = 16 ma, E E = 1 mw/cm 2 OL OPL550 OPL551 OPL560, OPL560OC 0.25 0.25 0.4 0.4.4 CC = 4.5, I OL = 12.8 ma, E E = 0 CC = 4.5, I OL = 12.8 ma, E E = 3 mw/cm 2 I OL = 16 ma, E E = 0 OPL561, OPL561OC.4 I OL = 16 ma, E E = 1 mw/cm 2 I OS Short Circuit Output Current OPL550 OPL551 20 20 55 55 ma ma CC = 5.5, Output =, E E = 3 mw/cm 2 CC = 5.5, Output =, E E = 0 High Level Output Current (4) OPL531, OPL531OC, OPL536, OPL536OC 0.1 10 OH = 30, E E = 0 OPL535, OPL535OC, OPL530, OPL530OC 0.1 10 OH = 30, E E = 1 mw/cm 2 I OH OPL550OC OPL551OC OPL560OC 1 1 CC = 4.5, OH = 30, E E = 3 mw/cm 2 CC = 4.5, OH = 30, E E = 0 OH = 30, E E = 1 mw/cm 2 OPL561OC OH = 30, E E = 0 Notes: (1) RMA flux is recommended. Duration can be extended to 10 sec. max. when flow soldering. For OPL530, OPL530OC, OPL531, OPL531OC, OPL535, OPL535OC, OPL536 and OPL536OC, a maximum of 20 grams force may be applied to leads while at soldering temperatures. (2) Derate linearly 2.67 mw/ C above C for OPL530, OPL530OC, OPL531, OPL531OC, OPL535, OPL535OC, OPL536 and OPL536OC. Derate linearly 2.5 mw/ C above 25 C for all devices in the OPL550, OPL551, OPL560, OPL561, OPL562 and OPL563 series. (3) Irradiance measurements are made with λi = 935 nm. (4) This applies to OC versio only. For I CC on pullup versio, add CC /10 KΩ.

Output Rise Time OPL530, OPL531, OPL535, OPL536 1.5 E E = 0 or 1 mw/cm 2, C L = 50 pf t r OPL530OC, OPL531OC, OPL535OC, OPL536OC OPL550, OPL551 OPL550OC, OPL551OC OPL560, OPL561 OPL560OC, OPL561OC 50 25 25 E E = 0 or 1 mw/cm 2, RL = 300 Ω to 5, C L = 50 Pf CC = 5, T A = 25 C, E E = 0 or 3 mw/cm 2, f = 10 khz, DC = 50% RL = 8 TTL loads CC = 5, T A = 25 C, E E = 0 or 3 mw/cm 2, f = 10 khz, DC = 50%, R L = 360 Ω T A = 25 C, E E = 0 or 1 mw/cm 2, f = 10 khz, DC = 50%, R L = 360 Ω Output Rise Time OPL530, OPL531, OPL535, OPL536 E E = 0 or 1 mw/cm 2, C L = 50 pf OPL530OC, OPL531OC, OPL535OC, OPL536OC E E = 0 or 1 mw/cm 2, RL = 300 Ω to 5, C L = 50 pf t r OPL550OC, OPL551OC OPL560OC, OPL561OC OPL560, OPL561 OPL560OC, OPL561OC 25 CC = 5, T A = 25 C, E E = 0 or 3 mw/cm 2, R L = 8 TTL loads, f = 10 khz, DC = 50% CC = 5, T A = 25 C, E E = 0 or 3 mw/cm 2, R L = 8 TTL loads, f = 10 khz, DC = 50% T A = 25 C, E E = 0 or 1 mw/cm 2, f = 10 khz T A = 25 C, E E = 0 or 1 mw/cm 2, f = 10 khz Output Fall Time OPL530, OPL531, OPL535, OPL536 20 E E = 0 or 1 mw/cm 2, C L = 50 Pf OPL530OC, OPL531OC, OPL535OC, OPL536OC 20 E E = 0 or 1 mw/cm 2, RL = 300 Ω to 5, C L = 50 pf t f OPL550OC, OPL551OC OPL560, OPL561 OPL560OC, OPL561OC 25 CC = 5, T A = 25 C, E E = 0 or 3 mw/cm 2, R L = 360 Ω, f = 10 khz, DC = 50% T A = 25 C, E E = 0 or 1 mw/cm 2, f = 10 khz T A = 25 C, E E = 0 or 1 mw/cm 2, f = 10 khz Notes: (1) RMA flux is recommended. Duration can be extended to 10 sec. max. when flow soldering. For OPL530, OPL530OC, OPL531, OPL531OC, OPL535, OPL535OC, OPL536 and OPL536OC, a maximum of 20 grams force may be applied to leads while at soldering temperatures. (2) Derate linearly 2.67 mw/ C above C for OPL530, OPL530OC, OPL531, OPL531OC, OPL535, OPL535OC, OPL536 and OPL536OC. Derate linearly 2.5 mw/ C above 25 C for all devices in the OPL550, OPL551, OPL560, OPL561, OPL562 and OPL563 series. (3) Irradiance measurements are made with λi = 935 nm. (4) This applies to OC versio only. For I CC on pullup versio, add CC/10 KΩ.

tpe et (+) Propagation Delay OPL530, OPL531, OPL535, OPL536 OPL530OC, OPL531OC, OPL535OC, OPL536OC OPL550OC, OPL551OC 1.0 1.0 2.5 5 E E = 0 or 1 mw/cm 2, RL = 300 Ω to 5, C L = 50 pf E E = 0 or 1 mw/cm 2, RL = 300 Ω to 5, C L = 50 pf CC = 5, T A = 25 C, E E = 0 or 3 mw/cm 2, R L = 8 TTL loads, f = 10 khz, DC = 50% tpe et () Propagation Delay OPL530, OPL531, OPL535, OPL536, OPL530OC, OPL531OC, OPL535OC, OPL536OC 3.0 E E = 0 or 1 mw/cm 2, RL = 300 Ω to 5, C L = 50 pf OPL550OC, OPL551OC 2.5 5 CC = 5, T A = 25 C, E E = 0 or 3 mw/cm 2, R L = 360 Ω, f = 10 khz, DC = 50% t PLH, T PHL Propagation Delay (LowHigh/HighLow) OPL560, OPL561 5 DC = 50%, R L = 10 TTL Loads OP560OC, OPL561OC 5 DC = 50%, R L = 300 Ω Notes: (1) RMA flux is recommended. Duration can be extended to 10 sec. max. when flow soldering. For OPL530, OPL530OC, OPL531, OPL531OC, OPL535, OPL535OC, OPL536 and OPL536OC, a maximum of 20 grams force may be applied to leads while at soldering temperatures. (2) Derate linearly 2.67 mw/ C above C for OPL530, OPL530OC, OPL531, OPL531OC, OPL535, OPL535OC, OPL536 and OPL536OC. Derate linearly 2.5 mw/ C above 25 C for all devices in the OPL550, OPL551, OPL560, OPL561, OPL562 and OPL563 series. (3) Irradiance measurements are made with λi = 935 nm. (4) This applies to OC versio only. For I CC on pullup versio, add CC /10 KΩ.