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D12SN6FPYQ

Description
光纤 光学传感器 - NPN
CategoryThe sensor    Optical sensors   
ManufacturerBanner Engineering
Download Datasheet Parametric View All

D12SN6FPYQ Overview

光纤 光学传感器 - NPN

D12SN6FPYQ Parametric

Parameter NameAttribute value
category
MakerBanner Engineering
seriesD12
Packagebox
Sensing methodoptical fiber
Sensing distance-
Voltage - Power supply10V ~ 30V
Response time500µs
Output configurationNPN
light source-
connection methodConnector, M12
Intrusion protectionNEMA 2 IEC IP11
cable length-
Adjustment typeadjustable, potentiometer
Operating temperature-20°C ~ 70°C
Basic product numberD12SN6
D12 Series DIN Rail High Power Fiber
Optic
Sensor
Datasheet
Powerful Self-Contained Sensors for Use with Glass or
Plastic
Fiber
Optic
Assemblies
Fiber
optic
sensors for DIN rail
mounting;
cabled or quick disconnect (QD)
Fast response: 500
μs
standard, 50
μs
for Y & Y1 models
Visible red light source; models for use with either glass or
plastic fibers
Choice of either NPN (sinking) or PNP (sourcing) complementary outputs; 150 mA maximum
(continuous)
load
Normally closed output of most models may be wired as a
diagnostic
alarm output (depending
upon hookup to power)
Sensors operate from 10 V dc to 30 V dc
LED indicators for Power On and N.O. Output
Conducting
7-segment LED bargraph indicates received signal strength, output overload, and marginal excess
gain
WARNING: Not To Be Used for Personnel
Protection
Never use this device as a sensing device for personnel
protection.
Doing so could lead to serious injury or death.
This device
does not include the self-checking redundant circuitry necessary to allow its use in personnel safety
applications.
A sensor failure
or
malfunction
can cause either an energized or de-energized sensor output
condition.
CAUTION:
Electrostatic
Discharge (ESD)
ESD
Sensitive
Device.
Use proper handling procedures to prevent ESD damage to these devices. The module does not contain any
specific
ESD
protection
beyond the structures contained in its integrated circuits. Proper handling procedures should include
leaving devices in their
anti-static
packaging
until
ready for use; wearing
anit-static
wrist straps; and assembling units on a
grounded,
static-dissipative
surface.
Models
Glass Fiber
Optic
Sensors
Models
1
D12SN6FV(Q)
D12SN6FVY(Q)
D12SN6FVY1(Q)
D12SP6FV(Q)
D12SP6FVY(Q)
D12SP6FVY1(Q)
Output Type
NPN
NPN
NPN
PNP
PNP
PNP
Response Speed
Standard 500
μs
response
time
Selectable 50
μs
high speed response mode
Selectable 50
μs
high speed response mode and 20 ms pulse stretcher
Standard 500
μs
response
time
Selectable 50
μs
high speed response mode
Selectable 50
μs
high speed response mode and 20 ms pulse stretcher
See the performance curves
Range
Plastic
Fiber
Optic
Sensors
Models
1
D12SN6FP(Q)
D12SN6FPY(Q)
D12SN6FPY1(Q)
D12SP6FP(Q)
D12SP6FPY(Q)
D12SP6FPY1(Q)
Output Type
NPN
NPN
NPN
PNP
PNP
PNP
Response Speed
Standard 500
μs
response
time
Selectable 50
μs
high speed response mode
Selectable 50
μs
high speed response mode and 20 ms pulse stretcher
Standard 500
μs
response
time
Selectable 50
μs
high speed response mode
Selectable 50
μs
high speed response mode and 20 ms pulse stretcher
See the performance curves
Range
Overview
D12 sensors are compact, self-contained visible-red
fiber optic
sensors for DIN rail
mounting.
D12 sensors are designed for use with Banner glass and cut-
to-length
plastic fiber optics.
Standard D12FP and D12FV
plastic
and glass
fiber optic
sensors
offer
fast 0.5 millisecond (500
μs)
response. D12FVY Series
and D12FPY Series sensors have switch-selectable 50
μs/500 μs
response modes for
applications
that require a faster, high speed response
time.
D12FVY1 and D12FPY1 models have switch-selectable response
times
along with a built-in 20 ms pulse stretcher for use with loads (or input circuits) that
are too slow to react to quick sensing events when using the 50
μs
response mode.
1 Include "Q" in model
suffix
to specify 6-inch cable with 4-pin pico-style QD. Omit "Q" to specify models with 6-foot
attached
cable. Models with 30-foot
attached
cable are available.
Original Document
32822 Rev. G
11 September 2017
32822
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