TT ELECTRONICS OPB980N51Z
Specifications
Manufacturer
TT electronics
Manufacturers Part #
OPB980N51Z
Industry Aliases
OPB980N51Z
Sub-Category
Photointerrupters
Brand
Optek Technology
Packaging
Bulk
Factory Pack Quantity
25
Datasheet
Extracted Text
Choice of logic and output driver circuits Choice of aperture size, covered or open Wire or PCB leads Choice of mounting features Direct TTL, LSTTL, CMOS Interface ® The OPB960/ 970/ 980/ 990 series of non-contact Photologic slotted optical switches provides flexibility in meeting application specific requirements for the design engineer. Building from a standard housing with a 0.125” (3.18mm) wide slot, the user can specify output logic state, output driver circuit, aperture width, aperture surface and mounting tab locations. Furthermore, an option of wire or PCB leads allows electrical interface flexibility. The device body is an opaque plastic which minimizes sensitivity to both visible and near-infrared external light sources which may impact operation. Aperture width choices provide different optical resolution for motion sensing. A covered aperture provides dust protection, while an open aperture provides maximum protection against external light sources. Electrical operation is over a wide supply voltage range. LED emissions are near-infrared (850—940nm). Detector digital output logic choices of buffer or inverter with totem-pole or open-collector driver circuit simplify interface for various electrical requirements. Custom electrical, wire and cabling services are available. Contact your local representative or OPTEK for more information. Compliant to EU RoHS Directive 2002/95/EC Speed and direction Mechanical switch replacement Printers - Top of form, End of travel, Home position. indication Sliding Door Automotive and Lift gate applications Mechanical limit indication Rotary encoders Part Number Guide OPB 9XX X XX X OPTEK Assembly Z = Wires only, None for PCB leads ® Photologic Sensor Family Aperture Width Guide Options: 55, 51, 11 ( See Aperture Width Guide ) Slot Aperture Surface and Lead Options: 6 — Covered (apertures not visible), PCB leads 7 — Open (apertures visible), PCB leads Mounting Tab Location: 8 — Covered (apertures not visible), Wires L — Emitter 9 — Open (apertures visible), Wires N — None P — Sensor Logic and Output Driver Types: T — Both (two mounting tabs) 0 — Buffer Totem-Pole 1 — Buffer Open-Collector Input Output Log- Logic Type 2 — Inverter Totem-Pole LED ic State 3 — Inverter Open-Collector Buffer OFF LOW = 0 Inverter OFF HIGH = 1 RoHS PACKAGE OUTLINE for OPB960 and OPB970 Series APERTURE WIDTH GUIDE CODE LED SENSOR TABLE 1 55 .050” [1.27mm] .050” [1.27mm] Lead No. Function 51 .050” [1.27mm] .010” [0.25mm] 1 Anode 11 .010” [0.25mm] .010” [0.25mm] 2 Cathode Lengths are .050” [1.27mm] 3 Vcc 4 Output 5 Ground Notes: (1) RMA flux recommended. Duration can be extended to 10 seconds max. (2) Feature controlled at body. (3) Highly activated water soluble fluxes may attack plastic. Recommend trial to verify application. (4) Maximum lead soldering temperature [1.6mm from case for 5 seconds with soldering iron] 260° C. (5) Cathode lead may be shorter. (6) Part number marking may be on any side. APERTURE WIDTH GUIDE PACKAGE OUTLINE for OPB980 and OPB990 Series CODE LED SENSOR TABLE 2 55 .050” [1.27mm] .050” [1.27mm] Wire Color Function 51 .050” [1.27mm] .010” [0.25mm] Red Anode 11 .010” [0.25mm] .010” [0.25mm] Black Cathode Lengths are .050” [1.27mm] White Vcc Blue Output Green Ground Notes: (7) Wire is 26AWG, UL Rated PVC insulation. (8) Ideal torque for bolt or screw 0,45 to 0,68 Nm ( 4 to 6 Lb-in ). ® (9) When using a thread lock compound, ND Industries ”ND Vibra-Tite Formula 3” will avoid stress cracking plastic. (10) Plastic is soluble in chlorinated hydrocarbons and ketones. Methanol or isopropanol are recommended as cleaning agents. Storage Temperature Range -40°C to +85° C Operating Temperature Range -40°C to +70° C Input Diode (E) ( 11) Input Diode Power Dissipation 100 mW ( 14) Input Diode Forward D.C. Current, T = 25°C 40 mA A Input Diode Reverse D.C. Voltage, T = 25°C 2 V A Sensor (S) ( 13) Supply Voltage (V to Ground) 18 V CC ( 12) Output Photologic® Power Dissipation 200 mW Voltage at Output Lead (Open-Collector Output), T = 25°C 35V A Short Circuit Output Current to Ground (I ) 1 sec Max. 30 mA OS Notes: (11) Derate linearly 2.22 mW / °C above 25° C. (12) Derate linearly 4.44 mW / °C above 25° C. (13) Prior to 2004 Vcc was limited to 5.5V maximum. (14) Do not connect input diode directly to a voltage source without an external current limiting resistor. Block Diagram Buffer Totem-Pole Buffer Open-Collector OPB960/ OPB970/ OPB980/ OPB990 OPB961/ OPB971/ OPB981/ OPB991 Inverter Open-Collector Inverter Totem-Pole OPB963/ OPB973/ OPB983/ OPB993 OPB962/ OPB972/ OPB982/ OPB992 Input Diode (See OP140 / OP240 LED for additional information) V Forward Voltage - - 1.70 V I = 20 mA, T = 25° C F F A I Reverse Current - - 100 µA V = 2.0 V, T = 25° C R R A Coupled (See OPL560 Detector for additional information) V Operating D.C. Supply Voltage 4.5 - 16 V CC I Supply Current - - 12 mA V = 4.5V to 16V CC CC Low Level Output Voltage: Buffer Totem-Pole OPB960,OPB970 V = 4.5V, I = 12.8mA CC OL OPB980,OPB990 (14) I = 0 mA F Buffer Open-Collector OPB961,OPB971 OPB981,OPB991 V - - 0.4 V OL Inverter Totem-Pole OPB962,OPB972 OPB982,OPB992 V = 4.5V, I = 12.8mA CC OL Inverter Open-Collector OPB963,OPB973 I = 15 mA F OPB983,OPB993 High Level Output Voltage: V = 4.5V to 16V, I = 800µA CC OH Buffer Totem-Pole OPB960,OPB970 I = 15 mA F OPB980,OPB990 V V -2.1 - - V OH CC Inverter Totem-Pole OPB962,OPB972 V = 4.5V to 16V, I = 800µA CC OH (14) OPB982,OPB992 I = 0 mA F High Level Output Current: V = 4.5V to 16V, V = 30V CC OH Buffer Open-Collector OPB961,OPB971 I = 15 mA F OPB981,OPB991 I - - 100 µA OH Inverter Open-Collector OPB963,OPB973 V = 4.5V to 16V, V = 30V CC OH (14) I = 0 mA OPB981,OPB991 F (16) I (+) LED Positive-Going Threshold Current - - 15 mA V = 5.0V, T = 25° C F CC A I (+) / I (-) Hysteresis Ratio - 1.5 - - V = 5.0V F F CC V = 5.0V, I = 15 mA, T = 25° C CC F peak A t , t Output Rise Time, Output Fall Time - 70 - ns R F 100 kHz square wave, C = 10pF max. Propagation Delay Time R = 360 Ω to GND (Totem-Pole) L t , t - 5.0 - µs PLH PHL Low to High, High to Low R = 1KΩ pull-up (Open-Collector) L Notes: 14) Normal application would be with light source blocked, simulated by I = 0 mA. F 15) All parameters are tested using pulse techniques. 16) An increasing current applied to the LED which causes the output logic state to change. For proper application IF(+), LED current, should be more than the stated maximum. Logic Output vs Left to Right Bocking Distance (X-Axis Blocked) 5.0 VCC = 5 Volts IF = 20mA Buffer Totem-Pole 4.0 3.0 Aperture Width 11 Aperture Width 51 Aperture Width 55 2.0 1.0 0.0 0.000 0.025 0.050 0.075 0.100 0.125 0.150 0.175 0.200 0.225 0.250 Distance (inches) Logic Output vs Top to Bottom Bocking Distance (Y-Axis Blocked) 5.0 VCC = 5 Volts IF = 20mA Buffer Totem-Pole 4.0 3.0 2.0 1.0 0.0 0.000 0.025 0.050 0.075 0.100 0.125 0.150 0.175 0.200 0.225 0.250 Distance (inches) Logic Output (V) Logic Output (V)
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