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R82 bảng dữ liệu(PDF) 3 Page - Magnetrol International, Inc.

tên linh kiện R82
Giải thích chi tiết về linh kiện  PULSEBURSTRADAR
PDF  12 Pages
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nhà sản xuất  MAGNETROL [Magnetrol International, Inc.]
Trang chủ  http://www.magnetrol.com
Logo MAGNETROL - Magnetrol International, Inc.

R82 bảng dữ liệu(HTML) 3 Page - Magnetrol International, Inc.

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EVOLUTION. First developed during WWII, practi-
cal radar instrumentation has grown to include a myriad
of sensors and trans-
mitters. Today, radar
serves us in applica-
tions that range from
the commonplace to
the cosmic. Radar
maps the topology
of distant planets
and pinpoints
weather fronts on
earth (doppler
radar); it automati-
cally opens supermarket doors (continuous wave
radar); and it cooks our meals with microwaves (cavity
magnetron radar). Radar is presently the fastest growing
measurement technology for industrial level control.
But radar’s beginnings were less than auspicious.
Early level instruments were costly, bulky, over-special-
ized and complicated. The development of simpler, less
costly and easier-to-use devices would be made possible
by solid state components and by a growing fund of
applications knowledge.
TYPES. Radar level sensing devices detect the
position of process liquids by measuring the interval
between the emission and return of high frequency
radio waves. Guided Wave Radar, used by Magnetrol’s
Eclipse
® and Horizontransmitters, is a contact technology
that launches its signal along a waveguide that runs
directly into the process media. Pulse Burst Radar, uti-
lized by Pulsar
® and the Model R82, is a non-contact
technology that launches its signal into open air along a
trajectory directed toward the process media.
PULSE RADAR. Of the two operational technolo-
gies commonly used for radar, Magnetrol products
employ a pulse burst approach rather than frequency
modulated continuous wave (FMCW). Pulse Burst Radar
operates in the time domain and does not require
complex and expensive processing as needed to
enable FMCW. Because echoes are discrete and
separated in time, Pulse Burst Radar is better
able to sort through extraneous echoes and
select the one generated by true level. Pulse Burst
Radar also has excellent averaging characteristics,
important in those applications where a return signal
is attenuated by the factors described below.
Unlike true pulse devices that transmit a single,
sharp (fast rise-time) waveform of wide-band energy,
Magnetrol products emit short bursts of 5.8/6.3 GHz
(Pulsar) or 26 GHz (Model R82) energy and measures
the transit time of the signal reflected from the liquid
surface. Distance is calculated utilizing the equation:
Distance = C
× Transit time (C = speed of light)
2
The Level value is then developed by factoring in Tank
Height and Sensor Offset information. The exact refer-
ence point for distance and level calculations is the
Sensor Reference Point—bottom of an NPT thread, top
of a BSP thread, or face of a flange.
Equivalent Time Sampling (ETS) measures the high
speed, low power electromagnetic energy (EM). ETS is
critical in the application of radar to vessel level meas-
urement. The high-speed EM energy is difficult to meas-
ure over short distances and at the resolution required
in the process industry. ETS captures the EM signals in
real time (nanoseconds) and reconstructs them in
equivalent time (milliseconds), which is much easier to
measure with today’s technology.
ETS is accomplished by scanning the waveguide to
collect thousands of samples. The round trip event on a
65 foot (20 meter) tank takes only 133 nanoseconds in
real time. After it is reconstructed in equivalent time it
measures 200 milliseconds.
THE THREE Ds. Radar applications are influenced
by three basic conditions: (1) the
Dielectric of the
process medium; (2) the
Distance, or measuring range
Liquid Level Sensing with Pulse Burst Radar
3
1 ns
500 ns



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