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CSLFC Manual

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CSLFC Liquid Ultrasonic Flow Transmitters

Loop Powered 4-20 mA Output, Flows to 3000 GPM, 4" to 10" Pipe, Carbon Steel

DESCRIPTION

Clark Sonic® Ultrasonic Flowmeters are ideal for measurement of flow rates of acoustically conductive liquids including most clean liquids and many liquids with entrained solids.

Main advantages include excellent long term stability, no pressure drop, broad fluid compatibility, high accuracy and low cost. Also, there are no moving parts.

At the heart of the transmitter is a proprietary 
mixed signal ASIC which allows sophisticated 
timing, control and transducer drive circuitry 
to be combined on a single integrated circuit. 
The ASIC uses a special algorithm that is an improvement upon 
the standard single-path measurement technique. Using the 
"sing around" method, the ultrasonic transducer alternates between 
transmitting and receiving to measure differences in flight time between 
upstream and downstream transmissions. A sound pulse is transmitted from 
an upstream transducer towards a downstream transducer like a traditional 
time-of-flight measurement.  However, the received sound pulse then triggers 
a second downstream transmission that then triggers a third and so on for a 
specific number of cycles. This process is repeated in the upstream direction.
Because it takes an average flight time over multiple cycles to compute the 
difference in flight times, the approach yields a significant improvement in timing 
accuracy when compared with the time-of -flight difference of a single sound pulse 
in each direction. This algorithm, combined with the pico-second timing resolution 
of the ASIC, provides the precise time measurement capability necessary for compact, 
small diameter ultrasonic meters.
The output of the transmitter is unaffected by changes in fluid temperature, density 
and viscosity as the flow calculation is independent of the speed of sound.
Wetted materials include ULTEM® encapsulated ultrasonic transducers with a choice 
of elastomer seals and epoxy coated carbon steel body material.

SPECIFICATIONS
GENERAL

Flow Range: Bi-directional, field selectable per "Standard Models" table
Accuracy: ±0.75% of full scale
Operating Temperature: -40 to 190°F (-40 to 87.8°C)
Response Time: User selectable, 2 or 10 seconds
Viscosity Range: 0.2 to 150 cSt (0.2 to 150 mPas)
Liquid Density: 30.6 to 74.9 lb/cu.ft. (490 to 1200 kg/m3)
Max. Working Pressure: 200 PSI (13.8 bars)
Pipe Sizes: 4", 6", 8", 10"
Pipe Connections: ASME class 150 flange
Electrical Enclosure: Integral to Body casting with gasketed cover; One 1/2" 
    NPT conduit connection (plugged when model ordered with metric threads) 
    and one M16 x 1.5 connection (plugged when model ordered with NPT threads)
Electrical Connections: Screw terminal connections on PC board
Enclosure Rating: NEMA 4 (IP 65)
Power: 18 to 36 VDC

WETTED MATERIALS

Ultrasonic Transducers: ULTEM® Encapsulated
Seals: EPDM, Buna-N, Neoprene, FKM, or other
Body Material: Schedule 40, epoxy coated, carbon steel pipe

OUTPUT

Analog: 2-wire, 4-20 mA output; Output is 4 mA from zero to min. flow 
    (see Standard Model table)
Error Detection: An optically isolated sink output is activated under 
   certain detectable fault conditions, such as transducer failure or 
   overly noisy output due to flow stream anomalies, as might be seen 
   due to excessive bubble entrainment. The optional Fault output is 
   an optically isolated NPN transistor capable of sinking up to 10 mA 
   from a voltage source of no more than 48 VDC.
Direction of Flow: Optional output to indicate direction of flow is available. 
    Activation or deactivation of an optically isolated 10 mA (max. 48V no load voltage) 
    sink output indicates flow direction. Error detection is not available when this 
    option is ordered.
Optional Temperature Sensor: 3 wire RTD, 100 Ohm, Platinum, 0.06% accuracy. Built in to 
	transducer shell for monitoring process temperature. Optional 8 pin electrical connector 
	recommended with this option.

Optional NEMA 4 four or eight-pin receptacles installed in transmitter conduit connection and factory wired along with mating circular connectors simplify field installation.

Graph
Pipe Sizes
Pipe Size Dimensions (Inches)
A B C D E F Bolt Circle Diameter Number of Holes
4" 13.00 9.00 4.00 6.54 2.62 0.75 7.50 8
6" 16.00 11.00 5.09 6.54 2.62 0.88 9.50 8
8" 18.00 13.50 6.11 6.54 2.62 0.88 11.75 8
10" 22.00 16.00 7.18 6.54 2.62 1.00 14.25 12


STANDARD MODELS

Model Pipe Size *Field Selectable Full Scale Ranges (GPM) Min. Max. *Field Selectable Full Scale Ranges (LPM) Min. Max.
CSLFC4 4" L 4.5 300 17.0 1150
H 7.5 500 29.0 1900
CSLFC6 6" L 9.0 600 35.0 2300
H 18.0 1200 68.0 4500
CSLFC8 8" L 15.0 1000 57.0 3800
H 30.0 2000 114 7600
CSLFC10 10" L 22.5 1500 86.0 5700
H 45.0 3000 165 11000
*F.S. ranges can be user specified to 125% of each stated high (H) range with no change to specifications and to 25% of each low (L) range with some specification modification. Consult factory.

DP/DS PANEL METER/DISPLAY OPTION

Digital panel meter installed on transmitter Power Supply: Loop Powered Display: 4-1/2 Digit LED, 0.6" Case: NEMA 4X Versions: DP Option: Displays 0-100% F.S DS Option: Scaled to customer requirement

 

       Panel Meter/Display option

      Four or eight pin receptacle
      connector recommended.

 


ORDERING INFORMATION ORDER NUMBER (ABCD) Example: CSLFC10GB
FOR YOUR CONVENIENCE, THESE ITEMS ARE AVAILABLE ONLINE OR PLEASE CALL 1-800-253-2497 TO ORDER
A B C
Model Units of Measure Transducer Seal
CSLFC4 G= Gallons Per Minute (U.S.) E = EPDM
CSLFC6 L= Liters Per Minute B = Buna-N
CSLFC8   N= Neoprene®
CSLFC10 V= FKM
 
Options
- = None
DF= Direction of flow output option, call factory at 1-800-253-2497 to order.
R=100 Ohm Platinum RTD
DP=Display % F.S
DS=Display in Engineering Units- specify
Transmitter Connector Option
- = 1/2" NPT
4R= 4-Pin Male Circular Receptacle
8R= 8-Pin Male Circular Receptacle
4C= 4-Pin Female Circular Connector
8C= 8-Pin Female Circular Connector
 
*For non-listed ranges specify model followed by full span value
Example: CSLFC4-150G = 150 GPM at 20 mA or CSLFC4-750L=750LPM @ 20 mA

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ULTEM® is a registered trademark of The General Electric Company Neoprene® is a registered trademark of DuPont Dow Clark reserves the right to make design changes without prior notice.
INSTRUMENTATION > FLOW > CSLFC Liquid Ultrasonic Flow Transmitters