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 Reflective Object Sensor
OPB609 Series
Features:
* * * *
OP609 emitter (940 nm IR-LED) Unfocused for sensing diffuse surface Low-cost plastic housing High-speed phototransistor output
Description:
The OPB609 consists of an 940 nm, Light Emitting Diode (LED) and an NPN silicon Phototransistor, which are mounted "side-by-side" on parallel axes in a black opaque plastic housing. This unfocused reflective object sensor is ideal for detection of diffuse materials such as paper, labels, or anything with a matte finish. Custom electrical, wire and cabling and connectors are available. Contact your local representative or OPTEK for more information.
Applications:
* * * * * * * * *
Non-contact reflective object sensor Assembly line automation CONTAINS POLYSULFONE Machine automation To avoid stress cracking, we suggest using ND Industries' Vibra-Tite for thread-locking. Machine safety Vibra-Tite evaporates fast without causing structural failure in OPTEK's molded plastics. End-of-travel sensor Door sensor Edge detection Paper jam detection Mark detection 0.374 [9.5] 0.107 [2.70]
Min.
Ordering Information
Part Number OPB609AX OPB609GU OPB609RA Reflective Object Sensor with IR LED Description
0.006 [0.15]
Pin #
1 2 3 4
Function
Anode Cathode Collector Emitter
4 1
0.071 [1.80]
0.134 [3.40]
DIMENSIONS ARE IN: [ MILLIMETERS] INCHES
OPB609AX
3 2
0.026 [0.65]
0.038 [0.95]
0.026 [0.65]
0.020 [0.50]
OPB609GU
OPB609RA
0.134 [3.40]
0.059 [1.50]
0.005 [0.12] 0.038 [0.95]
0 - 20 0.370 [9.4] Min.
RoHS
OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible. Issue A 07/07 Page 1 of 3
OPTEK Technology Inc. -- 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (972) 323-2200 or (800) 341-4747 FAX: (972) 323-2396 sensors@optekinc.com www.optekinc.com
Reflective Object Sensor
OPB609 Series
Absolute Maximum Ratings (TA=25C unless otherwise noted)
Storage and Operating Temperature Range
Lead Soldering Temperature [1/16 inch (1.6 mm) from the case for 5 seconds with soldering iron]
(1)
-25 C to +85 C 260 C(1)
Input LED Forward DC Current Peak Forward Current (1 s pulse width, 300 pps) Reverse DC Voltage Power Dissipation
(2)
50 mA 1A 5V 75 mW
Output Phototransistor Collector-Emitter Voltage Emitter-Collector Voltage Collector DC Current Power Dissipation
(3)
30 V 5V 50 mA 75 mW
Electrical Characteristics (TA = 25C unless otherwise noted)
SYMBOL PARAMETER MIN TYP MAX UNITS TEST CONDITIONS
Input IR LED (see OP168 for additional information) VF IR Forward Voltage Reverse Current Beam Divergence 90 1.7 10 V A IF = 20 mA VR = 5 V
Degree IF = 20 mA
Output Phototransistor (see OP508 for additional information) V(BR)CE0 V(BR)ECO ICEO Collector Emitter Breakdown Voltage Emitter Collector Breakdown Voltage Collector Dark Current 30 5 100 V v nA IC = 100 A IE = 100 A VCE = 10 V, IF = 0
Coupled Characteristics V CE(SAT) I C(ON) I C(OFF) Collector Emitter Saturation Voltage On-State Collector Current Off-State Collector Current 0.1 0.4 200 V mA nA EE = 2.0 mW/cm2, IC = 2 mA d = 0.5" (12.7 mm) IF = 20 mA, Vce = 5 V VCE = 5 V, IF = 20 mA
Notes: 1. RMA flux is recommended. Duration can be extended to 10 seconds maximum when flow soldering. 2. 3. Derate linearly 1.25 mW/C above 25C. Derate linearly 1.33mW/C above 25C.
OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible. Issue A 07/07 Page 2 of 3
OPTEK Technology Inc. -- 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (972) 323-2200 or (800) 341-4747 FAX: (972) 323-2396 sensors@optekinc.com www.optekinc.com
Reflective Object Sensor
OPB609 Series
OP609 - Normalized Output vs Distance
1.00 0.90 0.80 0.70
Normalized Output
0.60 0.50 0.40 0.30 0.20 0.10 0.00 0.00
0.05
0.10
0.15
0.20
0.25
0.30
0.35
Distance (inches)
OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible.
OPTEK Technology Inc. -- 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (972) 323-2200 or (800) 341-4747 FAX: (972) 323-2396 sensors@optekinc.com www.optekinc.com
Issue A 07/07 Page 3 of 3


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