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Turbine Flowmeters with Economical Ball Bearing Design

$1,268.00

Item# FTB-102

 This item is available for quick shipping
Volume discounts available
Volume Discount Schedule
Quantity Price each
1-4 $1,268.00
5-9 $1,204.60
10-24 $1,179.24
25-49 $1,128.52
50-99 $1,103.16
100+ $1,077.80

In stock

Lead Time ( If not in Stock): 3 weeks

Turbine Flowmeters with Economical Ball Bearing Design FTB-102 FTB-102
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  • NIST Certificate Included for Water
  • ±1/2% Rdg Accuracy
  • Non-Metallic Bearing Retainers for Long Life
  • Replacement Bearings Field Installable Without Loss of Calibration
  • Disassembles Quickly for Easy Maintenance
  • Deflector Cones Stabilize Low Mass Rotor for Increased Bearing Life
  • 4 to 20 mA, 0-5 V, and Scaled Frequency Outputs Available

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Category
Media type
Flow Range
Accuracy
Output Signal
Max Operating Pressure
Max Process Temperature
Wetted Materials
Process Connection Type
Process Connection Size
Display

Product Specs

  • Accuracy Value ±½% of reading
  • Maximum Ambient Temperature 232°C (450°F)
  • Output Signal 4 to 20 mA
  • Minimum Ambient Temperature -268°C (-450°F)
  • Power Source 13 to 30 Vdc reverse polarity protection

The FTB-100 Series of turbine meters have a sealed ball bearing design for high accuracy performance (±½% of reading, not full scale) at an economical cost. The non-metallic bearing retainers minimize friction, thereby allowing these meters to be used with clean fluids that have poor lubricating properties ( i.e.water). Ball bearings also give the widest linear flow range, particularly in larger turbines. Bearing replacement and clean-up are fast and easy, since all internal parts are easily accessible by removing a single nut.

These turbine flowmeters have a low mass rotor design which allows rapid dynamic response, so they can be used in pulsating flow applications. Deflector cones eliminate downstream thrust on the rotor and allow hydrodynamic positioning of the rotor between the cones. This provides wider rangeability and longer bearing life than conventional turbine flowmeters. Integral flow-straightening tubes minimize the effects of upstream turbulence.
FTB-100 Turbine Meters are available with integral signal conditioners (as shown in photo) which provide scaled and unscaled frequencies, 4-20 mA, or 0-5 Volt outputs. Units without integral signal conditioners are supplied with mating connector for two-wire hook-up.

SPECIFICATIONS
Accuracy: ±½% of reading
Repeatability: ±0.1% of reading
Maximum Temperature Range: -268 to 232°C (-450 to 450°F)
Maximum Intermittent Overrange: 150% of maximum range
Minimum Output Amplitude: 30 mV Peak-to-Peak Unscaled Pulse
Materials of Construction:
   Body: 304 stainless steel; 1/2 NPT bodies contain Silver Solder. 3/4 NPT and larger are welded.
   Rotor: 17-4 pH steel
   Bearings: Ceramic
Minimum straight pipe requirements: 10 pipe diameters upstream, 5 downstream

Model No. Fittings Linear Flow Range
Water
Max Operating Pressure Max Pressure Drop Length
mm (in)
Nominal
K-Factor
Pulses/Gal
Weight
kg (lb)
LPM GPM
FTB-101 ½ MNPT 1.32 to 13.2 0.35 to 3.5 5000 psig 3.0 psid 62 (2.45) 13,000 0.4 (1)
FTB-102 ½ MNPT 2.84 to 28.4 0.75 to 7.5 5000 psig 5.0 psid 62 (2.45) 10,000 0.4 (1)
FTB-103 ½ MNPT 4.73 to 36 1.25 to 9.5 5000 psig 5.2 psid 62 (2.45) 6,000 0.4 (1)
FTB-104 ¾ MNPT 6.62 to 61 1.75 to 16 5000 psig 3.0 psid 70 (2.75) 4,100 0.4 (1)
FTB-105 ¾ MNPT 9.5 to 110 2.5 to 29 4250 psig 5.0 psid 83 (3.25) 2,200 0.4 (1)
FTB-106 1 MNPT 15 to 227 4 to 60 3850 psig 5.1 psid 89 (3.5) 640 0.9 (2)
FTB-107 1¼ MNPT 23 to 352 6 to 93 3850 psig 4.3 psid 99 (3.88) 410 0.9 (2)
FTB-108 1½ MNPT 30 to 492 8 to 130 3000 psig 3.0 psid 111 (4.38) 230 1.4 (3)
FTB-109 2 MNPT 57 to 852 15 to 225 2500 psig 3.3 psid 121 (4.75) 120 1.8 (4)
FTB-110 2½ MNPT 95 to 1514 25 to 400 2250 psig 4.0 psid 154 (6.06) 62 2.3 (5)
FTB-111 3 MNPT 151 to 2460 40 to 650 2000 psig 4.0 psid 191 (7.50) 55 3.2 (7)

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What is the maximum viscosity for use of a turbine meter

Asked by: MikeF2353
The turbine flow meter has a maximum viscosity noted on the data sheet to be 299 cST (or centiStokes) which is a unit of measure for viscous liquids.
Answered by: JC ENGR
Date published: 2020-02-21
  • y_2020, m_3, d_27, h_13CST
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