OPL550A OPTEK | Alldatasheet

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OPTEK Technology Inc. — 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (972) 323-2200 or (800) 341-4747 FAX: (972) 3 23-2396 sensors@optekinc.com www.optekinc.com Issue A 09/08 Page 1 of 8 Photologic Sensor OPL530, OPL531, OPL535, OPL536, OPL550, OPL551, OPL560, OPL561, OPL562, OPL563 OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible. Description: All components in this series include a photodiode, amplifier, voltage regulator, Schmitt trigger and NPN output transistor 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 side-looking package with an integral lens (recessed integral lens 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 VCC. OPL530, OPL531, OPL535 and OPL536 include a 10 K Ω pull-up resistor (R L) from output to VCC. These components exhibit very stable performance over supply voltages ranging from 4.5 V to 16 V 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 medium-speed 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 V to 16 V. 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. Features:

  • Choice of four output options in low-cost side-looking package
  • Choice of two sensitivity options (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 consumption Product Photo Here Applications:
  • Non-contact reflective object sensor
  • Assembly line automation
  • Machine automation
  • Machine safety
  • End of travel sensor
  • Door sensor Base Part Number Package Output Type - with Light Input Power Range (mW/cm2) [Min/Max] - A B OPL530 Recessed Lens Internal 10K - High 0.08/.40 0.08/.25 0.20/0.40 OPL531 Internal 10K - Low OPL535 Internal 10K - High OPL536 Internal 10K - Low OPL550 Totem Pole - High 0.25/2.4 0.25/1.4 OPL551 Totem Pole - Low 0.25/2.5 0.25/1.5 OPL560 Totem Pole - High 0.09/.55 0.09/.36 OPL561 Totem Pole - Low OPL562 Totem Pole - High OPL563 Totem Pole - Low OC = Open Collector Output RoHS

OPTEK Technology Inc. — 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (972) 323-2200 or (800) 341-4747 FAX: (972) 3 23-2396 sensors@optekinc.com www.optekinc.com Issue A 09/08 Page 2 of 8 Photologic Sensor OPL530, OPL531, OPL535, OPL536, OPL550, OPL551, OPL560, OPL561, OPL562, OPL563 OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible. OPL530, OPL550, OPL560 Series OPL535, OPL536 Series Pin # Sensor

1 Ground

2 Output

3 V CC

Pin # Sensor DIMENSIONS ARE IN: [ MILLIMETERS] INCHES DIMENSIONS ARE IN: [ MILLIMETERS] INCHES

OPTEK Technology Inc. — 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (972) 323-2200 or (800) 341-4747 FAX: (972) 3 23-2396 sensors@optekinc.com www.optekinc.com Issue A 09/08 Page 3 of 8 Photologic Sensor OPL530, OPL531, OPL535, OPL536, OPL550, OPL551, OPL560, OPL561, OPL562, OPL563 OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible. 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 VCC OUT GND VCC OUT GND VCC OUT GND VCC OUT GND OPL550/550A/560/560A/562/562A Totem-Pole OPL 551/551A/561/561A/563/563A/ Inverted Totem-Pole OPL 531/536/551/561/563 (-OC, -OCA, -OCB) Inverted Open-Collector OPL530/535/550/560/562 (-OC, -OCA, -OCB) Open-Collector OPL530, OPL530A, OPL530B, OPL531, OPL531A, OPL531B OPL535, OPL535A, OPL535B, OPL536, OPL536A, OPL536B VCC OUT GND VCC OUT GND VCC OUT GND VCC OUT GND OPL530/530A/530B, OPL535/535A/535B 10K Pull-Up OPL531/531A/531B, OPL536/536A/536B Inverted 10K Pull-Up

OPTEK Technology Inc. — 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (972) 323-2200 or (800) 341-4747 FAX: (972) 3 23-2396 sensors@optekinc.com www.optekinc.com Issue A 09/08 Page 4 of 8 Photologic Sensor OPL530, OPL531, OPL535, OPL536, OPL550, OPL551, OPL560, OPL561, OPL562, OPL563 OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible. Notes: (1) RMA flux is recommended. Duration can be extended to 10 se c. max. when flow soldering. For OPL530, OPL530-OC, OPL531, OPL531-OC, OPL535, OPL535-OC, OPL536 and OPL536-OC, a maximum of 20 grams force may be applied to leads while at soldering temperatures. (2) Derate linearly 2.67 mW/°C above 70° C for OPL530, OPL530-OC, OPL531, OPL531-OC, OPL535, OPL535-OC, OPL536 and OPL536-OC. 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 versions only. For I CC on pull-up versions, add VCC/10 KΩ. Absolute Maximum Ratings (TA=25°C unless otherwise noted) Input Diode Supply Voltage (VCC) OPL530, OPL530-OC, OPL531, OPL531-OC, OPL535, OPL535-OC, OPL536, OPL536-OC, OPL550, OPL551 OPL560, OPL561, OPL562, OPL563 18 V 10 V 18 V Operating Temperature Range -40° C to + 85° C Storage Temperature Range -40° C to + 100° C Lead Soldering Temperature [1/16 inch (1.6mm) from the case for 5 sec. with soldering iron] 260°C Power Dissipation OPL530, OPL530-OC, OPL531, OPL531-OC, OPL535, OPL535-OC, OPL536, OPL536-OC OPL550, OPL551, OPL560, OPL561, OPL562, OPL563 90 mW 200 mW(2) Sinking Current OPL530, OPL530-OC, OPL531, OPL531-OC, OPL535, OPL535-OC, OPL536, OPL536-OC OPL550, OPL551 OPL560, OPL561, OPL562, OPL563 50 mA 50 mA Voltage at Output Lead (4) OPL530, OPL530-OC, OPL531, OPL531-OC, OPL535, OPL535-OC, OPL536, OPL536-OC OPL550-OC, OPL551-OC OPL560-OC, OPL561-OC, OPL562-OC, OPL563-OC 35 V 35 V 35 V Duration of Output Short to VCC or Ground OP550, OP551 1 second Duration of Output Short to VCC OPL550-OC, OPL551-OC OPL560, OPL561, OPL562, OPL563, OP L560-OC, OPL561-OC, OPL562-OC, OPL563-OC 1 second 1 second Low Level Output Current OPL550, OPL551 Series 16 mA High Level Output Current OPL550, OPL551 Series 1 mA Irradiance OPL550, OPL551 Series OPL560, OPL560-OC, OPL561, OPL561-OC OPL562, OPL562-OC, OPL563, OPL563-OC 10 mW/cm2 9 mW/cm 3 mW/cm2 Sourcing Current OPL560, OPL561, OPL562, OPL563 10 mA

OPTEK Technology Inc. — 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (972) 323-2200 or (800) 341-4747 FAX: (972) 3 23-2396 sensors@optekinc.com www.optekinc.com Issue A 09/08 Page 5 of 8 Photologic Sensor OPL530, OPL531, OPL535, OPL536, OPL550, OPL551, OPL560, OPL561, OPL562, OPL563 OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible. Notes: (1) RMA flux is recommended. Duration can be extended to 10 se c. max. when flow soldering. For OPL530, OPL530-OC, OPL531, OPL531-OC, OPL535, OPL535-OC, OPL536 and OPL536-OC, a maximum of 20 grams force may be applied to leads while at soldering temperatures. (2) Derate linearly 2.67 mW/°C above 70° C for OPL530, OPL530-OC, OPL531, OPL531-OC, OPL535, OPL535-OC, OPL536 and OPL536-OC. 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 versions only. For I CC on pull-up versions, add VCC/10 KΩ. Electrical Characteristics (TA = 25°C unless otherwise noted) SYMBOL PARAMETER MIN TYP MAX UNITS TEST CONDITIONS VCC Operating Supply Voltage OPL530, OPL530-OC, OPL531, OPL531-OC OPL535, OPL535-OC, OPL536, OPL536-OC, OPL560, OPL561 Series OPL550, OPL551 Series 4.5 4.5 5.5 V V Peak-to-Peak VCC Ripple Necessary to Cause False Triggering of Output OPL530, OPL530-OC, OPL531, OPL531-OC OPL535, OPL535-OC, OPL536, OPL536-OC OPL560, OPL561 Series OPL550, OPL551 Series V V f = DC to 50 MHz V CC = 5 V DC, f = DC to 50 MHz ICC Supply Current(4) OPL530, OPL530-OC, OPL531, OPL531-OC OPL535, OPL535-OC, OPL536, OPL536-OC OPL550, OPL551 Series OPL560, OPL561 Series 2.7 mA mA mA EE = 0 or 1 mW/cm2 E E = 0 or 3 mW/cm2, VCC = 5.5 V EE = 0 or 1 mW/cm2 EeT(+) Positive-Going Threshold Irradiance(3) OPL530, OPL530-OC, OPL531, OPL531-OC OPL535, OPL535-OC, OPL536, OPL536-OC OPL530A, OPL530-OCA, OPL531A, OPL531-OCA OPL535A, OPL535-OCA, OPL536A, OPL536-OCA OPL530B, OPL530-OCB, OPL531B, OPL531-OCB OPL535B, OPL535-OCB, OPL536B, OPL536-OCB OPL550, OPL550-OC, OPL551, OPL551-OC OPL550A, OPL550-OCA, OPL551, OPL551-OCA 0.08 0.08 0.12 .25 .25 0.40 0.25 0.40 2.4 1.4 mW/cm2 mW/cm2 mW/cm2 mW/cm2 mW/cm2 TA = 25° C TA = 25° C TA = 25° C VCC = 5 V, TA = 25° C VCC = 5 V, TA = 25° C EeT(+)/EeT(-) Hysteresis Ratio OP530, OP531 Series OP535, OP536 Series OPL550, OPL551 Series OPL560, OPL561 Series 1.05 1.05 1.50 1.20 1.3 1.2 1.55 1.6 1.5 2.5 ∆Eet(+) (∆T) Temperature Co-efficient OPL530, OPL530-OC, OPL531, OPL531-OC OPL535, OPL535-OC, OPL536, OPL536-OC -0.6 -1.6 %/°C %/°C >0°C <0°C

OPTEK Technology Inc. — 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (972) 323-2200 or (800) 341-4747 FAX: (972) 3 23-2396 sensors@optekinc.com www.optekinc.com Issue A 09/08 Page 6 of 8 Photologic Sensor OPL530, OPL531, OPL535, OPL536, OPL550, OPL551, OPL560, OPL561, OPL562, OPL563 OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible. Notes: (1) RMA flux is recommended. Duration can be extended to 10 se c. max. when flow soldering. For OPL530, OPL530-OC, OPL531, OPL531-OC, OPL535, OPL535-OC, OPL536 and OPL536-OC, a maximum of 20 grams force may be applied to leads while at soldering temperatures. (2) Derate linearly 2.67 mW/°C above 70° C for OPL530, OPL530-OC, OPL531, OPL531-OC, OPL535, OPL535-OC, OPL536 and OPL536-OC. 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 versions only. For I CC on pull-up versions, add VCC/10 KΩ. Electrical Characteristics (TA = 25°C unless otherwise noted) SYMBOL PARAMETER MIN TYP MAX UNITS TEST CONDITIONS VOH Operating Supply Voltage OPL550 OPL551 OPL560 OPL561 2.4 2.4 VCC -2.1 VCC -2.1 3.3 3.3 V V V V VCC = 4.5 V, IOH = -800 µa, EE = 3 mW/cm2 VCC = 4.5 V, IOH = -800 µa, EE = 0 IOH = -1 µA, EE = 1 mW/cm2 IOH = -1 µA, EE = 0 VOL Low Level Output Voltage OPL530, OPL530-OC, OPL535, OPL535-OC OPL531, OPL531-OC, OPL536, OPL536-OC OPL550 OPL551 OPL560, OPL560-OC OPL561, OPL561-OC 0.2 0.2 0.25 0.25 0.4 0.4 0.4 0.4 V V V V V V IOL = 16 mA, EE = 0 IOL = 16 mA, EE = 1 mW/cm2 VCC = 4.5 V, IOL = 12.8 mA, EE = 0 VCC = 4.5 V, IOL = 12.8 mA, EE = 3 mW/cm2 IOL = 16 mA, EE = 0 IOL = 16 mA, EE = 1 mW/cm2 IOS Short Circuit Output Current OPL550 OPL551 -20 -20 -55 -55 -100 -100 mA mA VCC = 5.5 V, Output = GND, EE = 3 mW/cm2 VCC = 5.5 V, Output = GND, EE = 0 IOH High Level Output Current(4) OPL531, OPL531-OC, OPL536, OPL536-OC OPL535, OPL535-OC, OPL530, OPL530-OC OPL550-OC OPL551-OC OPL560-OC OPL561-OC 0.1 0.1 100 100 100 100 µA µA µA µA µA µA VOH = 30 V, EE = 0 VOH = 30 V, EE = 1 mW/cm2 VCC = 4.5 V, VOH = 30 V, EE = 3 mW/cm2 VCC = 4.5 V, VOH = 30 V, EE = 0 VOH = 30 V, EE = 1 mW/cm2 V OH = 30 V, EE = 0

OPTEK Technology Inc. — 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (972) 323-2200 or (800) 341-4747 FAX: (972) 3 23-2396 sensors@optekinc.com www.optekinc.com Issue A 09/08 Page 7 of 8 Photologic Sensor OPL530, OPL531, OPL535, OPL536, OPL550, OPL551, OPL560, OPL561, OPL562, OPL563 OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible. Notes: (1) RMA flux is recommended. Duration can be extended to 10 se c. max. when flow soldering. For OPL530, OPL530-OC, OPL531, OPL531-OC, OPL535, OPL535-OC, OPL536 and OPL536-OC, a maximum of 20 grams force may be applied to leads while at soldering temperatures. (2) Derate linearly 2.67 mW/°C above 70° C for OPL530, OPL530-OC, OPL531, OPL531-OC, OPL535, OPL535-OC, OPL536 and OPL536-OC. 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 versions only. For I CC on pull-up versions, add VCC/10 KΩ. Electrical Characteristics (TA = 25°C unless otherwise noted) SYMBOL PARAMETER MIN TYP MAX UNITS TEST CONDITIONS tr Output Rise Time OPL530, OPL531, OPL535, OPL536 OPL530-OC, OPL531-OC, OPL535-OC, OPL536-OC OPL550, OPL551 OPL550-OC, OPL551-OC OPL560, OPL561 OPL560-OC, OPL561-OC 1.5 100 µs ns ns ns ns µs EE = 0 or 1 mW/cm2, CL = 50 pF EE = 0 or 1 mW/cm2, RL = 300 Ω to

5 V, CL = 50 Pf

VCC = 5 V, TA = 25° C, EE = 0 or 3 mW/cm2, f = 10 kHz, DC = 50% RL = 8 TTL loads VCC = 5 V, TA = 25° C, EE = 0 or 3 mW/cm2, f = 10 kHz, DC = 50%, RL = 360 Ω TA = 25° C, EE = 0 or 1 mW/cm2, f = 10 kHz, DC = 50%, RL = 360 Ω tr Output Rise Time OPL530, OPL531, OPL535, OPL536 OPL530-OC, OPL531-OC, OPL535-OC, OPL536-OC OPL550-OC, OPL551-OC OPL560-OC, OPL561-OC OPL560, OPL561 OPL560-OC, OPL561-OC 100 µs ns ns ns ns ns EE = 0 or 1 mW/cm2, CL = 50 pF EE = 0 or 1 mW/cm2, RL = 300 Ω to VCC = 5 V, TA = 25° C, EE = 0 or 3 mW/cm2, RL = 8 TTL loads, f = 10 kHz, DC = 50% VCC = 5 V, TA = 25° C, EE = 0 or 3 mW/cm2, RL = 8 TTL loads, f = 10 kHz, DC = 50% TA = 25° C, EE = 0 or 1 mW/cm2, f = 10 kHz TA = 25° C, EE = 0 or 1 mW/cm2, f = 10 kHz tf Output Fall Time OPL530, OPL531, OPL535, OPL536 OPL530-OC, OPL531-OC, OPL535-OC, OPL536-OC OPL550-OC, OPL551-OC OPL560, OPL561 OPL560-OC, OPL561-OC 100 ns ns ns ns ns EE = 0 or 1 mW/cm2, CL = 50 Pf EE = 0 or 1 mW/cm2, RL = 300 Ω to VCC = 5 V, TA = 25° C, EE = 0 or 3 mW/cm2, RL = 360 Ω, f = 10 kHz, DC = 50% TA = 25° C, EE = 0 or 1 mW/cm2, f = 10 kHz TA = 25° C, EE = 0 or 1 mW/cm2, f = 10 kHz

OPTEK Technology Inc. — 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (972) 323-2200 or (800) 341-4747 FAX: (972) 3 23-2396 sensors@optekinc.com www.optekinc.com Issue A 09/08 Page 8 of 8 Photologic Sensor OPL530, OPL531, OPL535, OPL536, OPL550, OPL551, OPL560, OPL561, OPL562, OPL563 OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible. Electrical Characteristics (TA = 25°C unless otherwise noted) SYMBOL PARAMETER MIN TYP MAX UNITS TEST CONDITIONS tPLH, TPHL Propagation Delay (Low-High/High-Low) OPL560, OPL561 OP560-OC, OPL561-OC µs µs DC = 50%, RL = 10 TTL Loads DC = 50%, RL = 300 Ω tpEeT(-) Propagation Delay OPL530, OPL531, OPL535, OPL536, OPL530-OC, OPL531-OC, OPL535-OC, OPL536-OC OPL550-OC, OPL551-OC 3.0 2.5 µs µs EE= 0 or 1 mW/cm2, RL = 300 Ω to 5V, CL = 50 pF VCC = 5 V, TA = 25° C, EE = 0 or 3 mW/cm2, RL = 360 Ω, f = 10 kHz, DC = 50% tpEeT(+) Propagation Delay OPL530, OPL531, OPL535, OPL536 OPL530-OC, OPL531-OC, OPL535-OC, OPL536-OC OPL550-OC, OPL551-OC 1.0 1.0 2.5 µs µs µs EE = 0 or 1 mW/cm2, RL = 300 Ω to EE = 0 or 1 mW/cm2, RL = 300 Ω to VCC = 5 V, TA = 25° C, EE = 0 or 3 mW/cm2, RL = 8 TTL loads, f = 10 kHz, DC = 50% Notes: (1) RMA flux is recommended. Duration can be extended to 10 se c. max. when flow soldering. For OPL530, OPL530-OC, OPL531, OPL531-OC, OPL535, OPL535-OC, OPL536 and OPL536-OC, a maximum of 20 grams force may be applied to leads while at soldering temperatures. (2) Derate linearly 2.67 mW/°C above 70° C for OPL530, OPL530-OC, OPL531, OPL531-OC, OPL535, OPL535-OC, OPL536 and OPL536-OC. 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 versions only. For I CC on pull-up versions, add VCC/10 KΩ.