Choice of phototransistor (OPB606) or photodarlington (OPB607) output
Unfocused for sensing diffuse surface
Low cost plastic housing
Filtered (OPB606, OPB607)
OPB606 consists of an infrared Light Emitting Diode (LED) and an NPN silicon phototransistor which are mounted “side-byside” on parallel axes in a black opaque plastic housing.
The OPB607 consists of an infrared Light Emitting Diode (LED) and an NPN silicon photodarlington which are mounted “side
-by-side” on parallel axes in a black plastic housing.
The emitting diode and phototransistor of both the OPB606 and OPB607 are encapsulated in a filtering epoxy that reduces
ambient light noise. On both models, the phototransistors respond to radiation from the emitter only when a reflective
object passes within the field of view.
Custom electrical, wire and cabling and connectors are available. Contact your local representative or OPTEK for more
information.
Ordering Information
Typical Reflection
Part
LED Peak
Distance Inch
Lead Length
Non-contact reflective object sensor
Number Wavelength
Sensor
(mm)
Assembly line automation
OPB606A
Machine automation
OPB606B
Transistor
Machine safety
End of travel sensor
OPB606C
0.050"
0.18”
935 nm
Door sensor
(1.27mm)
(Min)
OPB607A
OPB607B
OPB607C
Pin #
LED
Pin # Transistor
4 Cathode 1
Collector
3
Anode
2
Emitter
OPB606
Measurement Surface
OPB607
4
1
4
1
3
2
3
2
DIMENSIONS ARE IN:
RoHS
Darlington
[ MILLIMETERS]
INCHES
CONTAINS POLYSULFONE
To avoid stress cracking, we suggest using ND Industries’ Vibra-Tite for thread-locking.
Vibra-Tite evaporates fast without causing structural failure in OPTEK’s molded plastics.
Storage & Operating Temperature Range
-40° C to +85° C
Lead Soldering Temperature [1/16 inch (1.6 mm) from the case for 5 sec. with soldering iron](1)
260° C
Input Diode
Forward DC Current
50 mA
Peak Forward Current (1 μs pulse width, 300 pps)
3A
Reverse DC Voltage
2V
Power Dissipation
(2)
75 mW
Output Phototransistor (OPB606) / Output Photodarlington (OPB607)
Collector-Emitter Voltage
OPB606A, OPB606B, OPB606C
OPB607A, OPB607B, OPB607C
30 V
15 V
Emitter-Collector Voltage
5V
Collector DC Current
OPB606A, OPB606B, OPB606C
OPB607A, OPB607B, OPB607C
25 mA
125 mA
Power Dissipation(2)
75 mW
Notes:
(1) RMA flux is recommended. Duration can be extended to 10 seconds maximum when flow soldering.
(2) Derate linearly 1.25 mW/°C above 25° C.
OPB606 - Output vs Distance
OPB606 - Output vs Distance (Retro)
600.00
2.00
1.75
500.00
Kodak 90%
3M 3870
1.25
Normalized Output
Kodak 90%
Kodak 19%
Copier Paper
Avery Label
1.50
Normalized Output
Normalized at 90% Kodak and 0.1"
Normalized at 90% Kodak and 0.1"
1.00
0.75
400.00
300.00
200.00
0.50
100.00
0.25
0.00
0.00
Kodak 90%
0.05
0.10
0.15
0.20
Distance (inches)
0.25
0.30
0.35
0.00
0.00
0.05
0.10
0.15
0.20
Distance (inches)
0.25
0.30
0.35
Input Diode
VF
Forward Voltage
-
-
1.7
V
IF = 20 mA
IR
Reverse Current
-
-
100
μA
VR = 2 V
Output Phototransistor
V(BR)CEO
Collector-Emitter Breakdown Voltage
OPB606
OPB607
30
15
-
-
V
V
IC = 100 µA
V(BR)ECO
Emitter-Collector Breakdown Voltage
5
-
-
V
IE = 100 µA
Collector Dark Current
OPB606
OPB607
-
-
100
250
nA
nA
VCE = 5 V, IF = 0
-
-
0.4
1.1
V
IF = 20 mA, IC = 100 µA, d =
0.053” (1.45 mm)(1)(2)
IF = 20 mA, IC = 2 mA, d =
0.053” (1.45 mm)(1)(2)
IC(ON)
On-State Collector Current
OPB606A
OPB606B
OPB606C
OPB607A
OPB607B
OPB607C
500
350
200
25
17
10
-
-
μA
μA
μA
mA
mA
mA
IC(OFF)
Off-State Collector Current
OPB606
OPB607
-
-
200
10
nA
μA
ICEO
Combined
Collector-Emitter Saturation Voltage
VCE(SAT)
OPB606
OPB607
IF = 20 mA, Vce = 5 V, d =
0.053” (1.45 mm)(1)(2)
VCE = 5 V, IF = 20 mA(3)
VCE = 5 V, IF = 20 mA (3)
Notes:
(1) “d” is the distance from the assembly measurement surface to the reflective surface.
(2) Measured using Eastman Kodak neutral white test card with 90% diffuse reflectance as a reflecting surface. Reference: Eastman Kodak, Catalog #
E 152 7795.
(3) On OPB606, off-state collector current IC(OFF) is measured with no reflective surface in the optical path. On OPB607, Crosstalk (Icx) is the collector
current measured with the indicated current in the input diode and with no reflecting surface.
(4) All parameters tested using pulse techniques.
Test Distance
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