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Product Data Sheet: Model D and DL Sensor - emerson.com

Product Data Sheet PS-00388, Rev. HAugust 2019 Micro Motion Model D and DL sensors provide flow and density measurement for liquids, gases, and slurries simply and directly. Features and benefits Dual-tube design for ease of installation and use Fits a wide range of line sizes for high flow rate capacity Special models available for high-pressure fluid containment or tomeet 3-A Sanitary StandardsMicro Motion Model D and DLCoriolis Flow and Density Meters2 Model D and DL Coriolis Flow and Density MetersModel D and DL feature comparison Sensor modelTypical line sizeCorrosion resistant materialsHighpressureHigh temperaturePurge fittings availableRupture disk availableSanitary StandardsStandard sensors DS150Z1 to 2 inch(25 to 50 mm)DS300 (all)2 to 4 inch(50 to 100 mm)

Product Data Sheet PS-00388, Rev. F April 2013 Micro Motion® Model D and DL sensors provide flow and density measurement for liquids, gases, and slurries — simply and directly. Features and benefits

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Transcription of Product Data Sheet: Model D and DL Sensor - emerson.com

1 Product Data Sheet PS-00388, Rev. HAugust 2019 Micro Motion Model D and DL sensors provide flow and density measurement for liquids, gases, and slurries simply and directly. Features and benefits Dual-tube design for ease of installation and use Fits a wide range of line sizes for high flow rate capacity Special models available for high-pressure fluid containment or tomeet 3-A Sanitary StandardsMicro Motion Model D and DLCoriolis Flow and Density Meters2 Model D and DL Coriolis Flow and Density MetersModel D and DL feature comparison Sensor modelTypical line sizeCorrosion resistant materialsHighpressureHigh temperaturePurge fittings availableRupture disk availableSanitary StandardsStandard sensors DS150Z1 to 2 inch(25 to 50 mm)DS300 (all)2 to 4 inch(50 to 100 mm)

2 High pressure sensors DH100S1/2 to 1 inch(15 to 25 mm)DH150S1 to 11/2 inch(25 to 40 mm)DH300S11/2 to 3 inch(40 to 80 mm)Sanitary sensorsDL200S2 inch(50 mm)ContentsLiquid flow performance .. 3 Gas flow performance .. 6 Density specifications (liquid only).. 7 Temperature specifications .. 8 Pressure ratings .. 8 Environmental effects .. 9 Hazardous area classifications .. 10 Materials of construction .. 11 Weight .. 12 Dimensions .. 12 Fitting options .. 16 Ordering information .. 19 Model D and DL Coriolis Flow and Density Meters3 Liquid flow performance MassVolumelb/minkg/hgal/minl/hNominal flow range(1)(1) Micro Motion has adopted the terminology nominal flow range.

3 The upper limit of this range is the flow rate at which water at reference conditions causes approximately 15 psid (1 bar) of pressure sensorsDS150Z0 to 14000 to 38,1360 to 1680 to 38,136DS300 (all)0 to 70000 to 190,6800 to 8390 to 190,680 High-pressure sensorsDH100S0 to 4000 to 10,8960 to 480 to 10,896DH150S0 to 14000 to 38,1360 to 1680 to 38,136DH300S0 to 70000 to 190,6800 to 8390 to 190,680 Sanitary sensorsDL200S0 to 25000 to 68,1000 to 3000 to 68,100 Maximum flow rate(2) (3)(2) Maximum flow rate for volume measurement is based on a process-fluid density of 1 g/cm3. For fluids with density other than 1 g/cm3, the maximum volume flow rate equals the maximum mass flow rate divided by the fluid s density.

4 (3) Maximum flow rate calculated at a pressure drop of 29 psi (2 bar). Higher flow rates are possible with higher pressure sensorsDS150Z280076,27233676,272DS300 (all)7000190,680839190,680 High-pressure sensorsDH100S80021,7929621,792DH150S2800 76,27233676,272DH300S7000190,680839190,6 80 Sanitary sensorsDL200S0 to 350095,34042095,340 Mass flow accuracy(4) (4) Flow accuracy includes the combined effects of repeatability, linearity, and hysteresis. All specifications for liquids are based on reference conditions of water at 68 to 77 F (20 to 25 C) and 15 to 30 psig (1 to 2 bar), unless otherwise withMVD Technology (5)(5) When flow rate < zero stability / , accuracy = [(zero stability / flow rate) 100]% of rate and repeatability = [ (zero stability / flow rate) 100]% of other transmitters [(zero stability / flow rate) 100]% of rateRepeatability(4)Transmitter withMVD Technology (5)All other transmitters [ (zero stability / flow rate) 100]% of rateZero stabilitylb/minkg/hgal/minl/hStandard (all)

5 D and DL Coriolis Flow and Density MetersLiquid flow performance continued Typical accuracy, turndown, and pressure dropTo determine accuracy, turndown, and pressure drop using your process variables, use Micro Motion s Product selector at sensors with transmitter with MVD TechnologyAccuracy ( %) Turndown 100:120:110:11 (all) dropTurndown100:120:110:11:1DS150 Zpsi~ ~ (all)psi~ ~ sensors with transmitter with MVD TechnologyAccuracy ( %)Turndown100:120:110:11 dropTurndown100:120:110:11:1DH100 Spsi~ ~ ~ ~ ~ ~ (%)Nominal flow rate (%) :120:110:11:1 Accuracy (%)Nominal flow rate (%) :120:110:11:1 Model D and DL Coriolis Flow and Density Meters5 Liquid flow performance continued Typical accuracy, turndown, and pressure dropTo determine accuracy, turndown, and pressure drop using your process variables, use Micro Motion s Product selector at sensors with transmitter with MVD TechnologyAccuracy ( %) Turndown 100:120:110:11 dropTurndown100:120:110:11:1DL200 Spsi~ ~ (%)Nominal flow rate (%) :120:110:11.

6 16 Model D and DL Coriolis Flow and Density MetersGas flow performance When selecting sensors for gas applications, measurement accuracy is a function of fluid mass flow rate independent of operating temperature, pressure, or composition. However, pressure drop through the Sensor is dependent upon operating temperature, pressure, and fluid composition. Therefore, when selecting a Sensor for any particular gas application, it is highly recommended that each Sensor be sized using Micro Motion s Product selector, available at flow range(1)(1) Micro Motion has adopted the terminology nominal flow range. The upper limit of this range is the flow rate at which water at reference conditions causes approximately 15 psid (1 bar) of pressure sensorsDS150Z0 to 14000 to 38,136DS300 (S, H, and Z) High-pressure sensorsDH100S0 to 4000 to 10,896DH150S0 to 14000 to 38,136DH300S Sanitary sensorsDL200S0 to 25000 to 68,100 Maximum flow rateStandard sensorsDS150Z280076,272DS300 (S, H, and Z) High-pressure sensorsDH100S80021,792DH150S280076,272DH 300S Sanitary sensorsDL200S350095,340 Accuracy(2)(2) Flow accuracy includes the combined effects of repeatability, linearity, and hysteresis.

7 All specifications for liquids are based on reference conditions of water at 68 to 77 F (20 to 25 C) and 15 to 30 psig (1 to 2 bar), unless otherwise models except DS300 and DH300 STransmitter withMVD Technology (3)(3) When flow rate < zero stability / , accuracy = [(zero stability / flow rate) 100]% of rate and repeatability = [ (zero stability / flow rate) 100]% of rate. All other transmitters [(zero stability / flow rate) 100]% of rateRepeatability(2)All models except DS300and DH300 STransmitter withMVD Technology (3)All other transmitters [(zero stability / flow rate) 100]% of rateZero stabilitylb/minkg/hStandard (S, H, and Z) High-pressure Sanitary D and DL Coriolis Flow and Density Meters7 Density specifications (liquid only) g/cm3kg/m3 AccuracyStandard sensorsDS150Z(1)(1) Flow tubes are 316L stainless steel with Tefzel lining.

8 Or DS300H (1) sensorsDH100S sensorsDL200S sensorsDS150Z or DS300H sensorsDH100S sensorsDL200S models0 to 50 to 50008 Model D and DL Coriolis Flow and Density MetersTemperature specifications Pressure ratings Accuracy 1 C of reading in CRepeatability CProcess fluid limits F CStandard sensorsDS150Z(1)(1) Flow tubes are 316L stainless steel with Tefzel lining. Maximum allowable rate of Sensor temperature change for Tefzel meters is 30 F/hr (17 C/h).+32 to +2500 to +121DS300S or DS300H 400 to +400 240 to +204DS300Z(1)+32 to +2500 to +121 With remote booster amplifier(2)(2) The remote booster amplifier has ambient temperature limits of 40 to +140 F ( 40 to +60 C).

9 400 to +400 240 to +204 High-pressure sensorsDH100S, DH150S, DH300S 400 to +400 240 to +204 Sanitary sensorsDL200S 400 to +400 240 to +204 Ambient limits F CULAll models+104 maximum+40 maximumCSAAll models 40 to +140 40 to +60 ATEXAll modelsRefer to graphs on pages 10 tube rating(1)(1) Flow tube pressure rating at 77 F (25 C), according to ASME For higher operating temperatures, tube pressure needs to be derated as follows:DS150Z(2)(2) Flow tubes are 316L stainless steel with Tefzel or DS300H74051DS300Z(2)74051DH100S4937340DH 150S4790330DH300S3110214DL200S74051 PED complianceSensors comply to council directive 97/23/EC of 29 May 1997 on Pressure modelsHousing is not rated for pressure steel sensorsUp to 300 F (up to 148 C) NoneAt 400 F (204 C) deratingNickel alloy sensorsUp to 200 F (up to 93 C)NoneAt 400 F (204 C)

10 DeratingModel D and DL Coriolis Flow and Density Meters9 Environmental effects Process temperature effectProcess temperature effect is defined as the worst-case zero offset due to process fluid temperature change away from the zeroing of nominal flow rate per C(1)(1) Nominal flow rate is the upper limit of the nominal flow sensorsDS150Z(2)(2) Flow tubes are 316L stainless steel with Tefzel lining. or DS300H, DS300Z(1) sensorsDH100S, DH150S, DH300S sensorsDL200S effectPressure effect is defined as the change in Sensor flow and density sensitivity due to process pressure change away from the calibration pressure.


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