photoelectric sensors - Koning & Hartman
photoelectric sensors - Koning & Hartman
photoelectric sensors - Koning & Hartman
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FX-301<br />
Features<br />
FX-301(P) (red LED type) version upgrade<br />
We improved the standard model by enhancing its sensing<br />
stability and equipping it with handy functions such as the lightemitting<br />
amount selection function. This makes using a fi ber<br />
sensor easier than ever while conserving the superior operationability<br />
of the conventional model.<br />
Super high speed response of 35μs<br />
The new FX-301(P)-HS model is the digital type fi ber sensor<br />
realizing a super high speed response of 35μs rendering it capable<br />
of sensing minute objects moving at high speeds. At<br />
65μs, the standard FX-301(P) model (H-SP mode) realizes<br />
twice the speed of the conventional model.<br />
Stable sensing over long and short periods<br />
In addition to a four-chemical emitting element which suppresses<br />
changes in the light-emitting element over time so that a<br />
stable level of light emission can be maintained over long periods,<br />
a new APC (Auto Power Control) circuit has also been<br />
adopted. Because fl uctuations over short periods of time have<br />
also been suppressed, stable sensing is possible very quickly<br />
once the power is turned back on after setup changes.<br />
6<br />
� Stable sensing comparison<br />
Light-emitting amount<br />
Short-term stability<br />
Deviation<br />
Long-term stability<br />
Time<br />
FX-301(P)(-HS)<br />
Three-chemical<br />
emitting element,<br />
No APC<br />
FIBER OPTIC SENSORS<br />
FX-301<br />
Enhanced functions and<br />
performance but still easy to use<br />
07/2010<br />
Sensing range has been greatly increased<br />
All models use a double coupling lens that enables a much<br />
wider sensing range and maximization in the light emission effi<br />
ciency. Sensing ranges with small diameter fi bers and ultra<br />
small diameter fi bers, which have become very popular due to<br />
the miniaturization of chip components, have been increased<br />
by 50% over previous values achieved with other amplifi ers.