Valu-beam 990 series sensors, Sensing mode models beam pattern excess gain, Convergent mode fiber optic mode – Banner VALU-BEAM Series User Manual

Page 16: Retroreflective, Sma990lt, Sma990cv, Sma990fp, Plastic fiber optics)

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SMA990LT

Voltage: 10 to 250V ac
or 12 to 115V dc
Range: 30 feet (9m)
Beam: infrared, 940nm

VALU-BEAM model SMA990LT is designed specifically for "people counting".
Its strong (30 foot range) infrared beam is invisible to the eye, and a built-in 1/10
second on/off delay helps prevent multiple counts. Maximum retroreflective signal
strength is attained when using the model BRT-3 corner-cube retroreflector. Other
retroreflective materials may also be used (see Banner product catalog for descrip-
tive information).

VALU-BEAM convergent sensors produce a precise .06" diameter visible red
sensing spot at a focus point 1.5" in front of the sensor lens. Due to its very narrow
depth of field, this model excels at counting small objects only a fraction of an inch
away from backgrounds. This convergent sensor may be used for reliable counting
of some radiused products which flow past at a fixed distance from the sensor lens.

SMA990CV

Voltage: 10 to 250V ac
or 12 to 115V dc
Focus at 1.5" (38mm)
Beam: visible red, 650nm

SMA990FP

Voltage: 10 to 250V ac
or 12 to 115V dc
Range: see E.G. curves
Beam: visible red, 650nm

Environmental Factors for Plastic Fiber Optics

10

1

DISTANCE

100

1000

.1 FT

1 FT

10 FT

100 FT

with BRT-3 3"
reflector

with BRT-1 1"
reflector

with
BRT-T
tape

SMA990LT

E
X
C
E
S
S

G
A
I
N

I

1000

100

10

1

.1 IN

1 IN

10 IN

100 IN

DISTANCE

(Range based on 90%
reflectance white test
card)

SMA990CV

E
X
C
E
S
S

G
A
I
N

I

1

10

100

1000

.1 IN

1 IN

10 IN

100 IN

PIT46U
with L2
lenses

PIT26U,
no lens

DISTANCE

Opposed mode,
plastic fibers

PIT46U,
no lenses

SMA990FP

E
X
C
E
S
S

G
A
I
N

I

1

10

100

1000

.01 IN

.1 IN

1 IN

10 IN

with
PBT46U
fiber

with
PBT26U
fiber

DISTANCE

SMA990FP

(Range based on
90% reflectance
white test card)

Diffuse mode,
plastic fibers

E
X
C
E
S
S

G
A
I
N

I

0

0

2

4

6

2

4

6

6

12

18

24

32

I
N
C
H
E
S

SMA990LT

DISTANCE TO REFLECTOR--FEET

with BRT-3 reflector

.5

0

0

.03

.06

.09

.03

.06

.09

1.0

1.5

2.0

2.5

I
N
C
H
E
S

DISTANCE TO 90% WHITE TEST CARD--INCHES

SM990CV

1

2

3

0

4

0

.6

5

1.2

1.8

.6

1.2

1.8

PIT26U

PIT46U

Opposed mode

I
N
C
H
E
S

OPPOSED DISTANCE--INCHES

SMA990FP

.3

.6

0

0

.05

.10

.15

.05

.10

.15

1.2

1.5

.9

PBT26U

PBT46U

Diffuse mode

I
N
C
H
E
S

DISTANCE TO 90% WHITE TEST CARD--INCHES

SMA990FP

Sensing Mode

Models

Beam Pattern

Excess Gain

The powerful modulated
visible beam
of this sensor
makes it compatible with
all Banner plastic fiber
optic assemblies.
Banner
plastic fibers are an eco-
nomical alternative to glass
fibers when environmen-
tal conditions allow (see
below). Banner plastic fi-
ber optics are available in
two core diameters and
with various sensing tip
styles. Standard length is 6
feet. See the Banner prod-
uct catalog for more fiber
optic information.

VALU-BEAM 990 Series Sensors

CONVERGENT Mode

FIBER OPTIC Mode

(plastic fiber optics)

RETROREFLECTIVE

DIFFUSE

OBJECT

OPPOSED

OBJECT

16

OPERATING TEMPERATURE OF FIBER OPTIC ASSEMBLIES: -30 to +70

°

C (-20 to +158

°

F).

CHEMICAL RESISTANCE OF FIBER OPTIC ASSEMBLIES: the acrylic core of the monofilament optical
fiber will be damaged by contact with acids, strong bases (alkalis), and solvents. The polyethylene jacket will
protect the optical fiber from most chemical environments; however, materials may migrate through the jacket
with long-term exposure. Samples of plastic fiber optic material are available from Banner for testing and
evaluation.

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