Teledyne HFM-E-200, HFC-E-202 instruction manual SO2

Page 23

152

R123A

C2HCl2F3

0.2699

4

6.251

-

153

R125

C2HF5

0.2826

2

4.906

-

154

R134

C2H2F4

0.2996

4

4.170

-

155

R134A

C2H2F4

0.3110

2

4.170

-

156

R143

C2H3F3

0.3451

4

3.435

-

157

R143A

C2H3F3

0.3394

4

3.435

-

158

R152A

C2H4F2

0.3877

4

2.700

-

159

R218

C3F8

0.1818

4

7.685

-

160

R1416

C2H3Cl2F

0.3047

4

4.780

-

161

Radon

Rn

1.4043

4

9.074

-

162

Sec-butanol

C4H10O

0.2327

4

3.030

-

163

Silane

SiH4

0.6809

5

1.313

-

164

Silicone Tetrafluoride

SiF4

0.3896

5

4.254

-

165

Sulfur Dioxide

SO2

0.6878

4

2.619

-

166

Sulfur Hexafluoride

SF6

0.2701

1

5.970

-

167

Sulfur Tetrafluoride

SF4

0.3752

4

4.417

-

168

Sulfur Trifluoride

SF3

0.4368

4

3.640

-

169

Sulfur Trioxide

SO3

0.5397

4

3.273

-

170

Tetrachloroethylene

C2Cl4

0.2926

4

6.778

-

171

Tetrafluoroethylene

C2F4

0.3395

4

4.088

-

172

Tetrahydrofuran

C4H8O

0.3271

4

2.947

-

173

Tert-butanol

C4H10O

0.2298

4

3.030

-

174

Thiophene

C4H4S

0.3538

4

2.783

-

175

Toluene

C7H8

0.2448

4

3.766

-

176

Transbutene

C4H8

0.2053

4

2.293

-

177

Trichloroethane

C2H3Cl3

0.3133

4

5.453

-

178

Trichloroethylene

C2HCl4

0.3423

4

6.820

-

179

Trichlorotrifluoroethane

C2Cl3F3

0.2253

4

7.659

-

180

Triethylamine

C6H15N

0.1619

4

4.136

-

181

Trimethyl Amine

C3H9N

0.2822

4

2.416

-

182

Tungsten Hexafluoride

WF6

0.2453

5

12.174

-

183

Uranium Hexafluoride

UF6

0.1859

4

14.389

-

184

Vinyl Bromide

C2H3Br

0.4768

4

4.372

-

185

Vinyl Chloride

C2H3Cl

0.4956

4

2.555

-

186

Vinyl Flouride

C2H3F

0.5716

5

1.882

-

187

Water Vapor

H2O

0.7992

5

0.742

-

188

Xenon

Xe

1.4042

4

5.366

-

189

Xylene, m-

C8H10

0.2036

4

4.339

-

190

Xylene, o-

C8H10

0.1953

4

4.339

-

191

Xylene, p-

C8H10

0.2028

4

4.339

-

 

 

1,2-Dichloro-1,2,2-

 

 

 

6.823

-

trifluoroethane

1.2

54.37

3.1065

5.355

-

Pentafluoroethane

1.2

66.50

2.6844

4.552

-

1,1,2,2-tetrafluoroethane

1.2

78.42

2.4595

4.552

-

1,1,1,2-tetrafluoroethane

1.2

78.42

2.5001

3.750

-

1,1,2-trifluoroethane

1.2

95.52

2.2693

 

 

1,1,1-trifluoroethane,

 

 

 

3.750

-

Methylfluoroform

1.2

95.52

2.2533

2.947

-

1,1-Difluoroethane

1.2

122.18

1.9753

8.389

-

Octafluoropropane

1.2

44.22

3.0998

5.218

-

1,1-Dichloro-1-fluoroethane,

1.2

71.10

2.7342

9.905

-

NA

1.2

37.45

1.0000

3.307

-

2-butanol, Sec-butyl Alcohol

1.2

112.17

1.9213

1.433

-

NA

1.2

258.88

1.1934

4.644

-

Tetrafluorosilane

1.2

79.89

2.9041

2.858

-

NA

1.2

129.78

2.7013

6.516

-

NA

1.2

56.93

3.0092

4.821

-

NA

1.2

76.94

2.9215

3.974

-

NA

1.2

93.36

2.7312

3.572

-

NA

1.2

103.85

2.8922

7.399

-

NA

1.2

50.14

3.4711

4.462

-

Tetrafluoroethene

1.2

83.13

2.5732

3.217

-

NA

1.2

115.31

1.9924

 

 

2-methyl-2-propanol,

 

 

 

3.307

-

Tertiarey

1.2

112.17

1.9210

Butyl Alcohol

3.037

-

Thiofuran

1.2

122.14

1.9586

4.111

-

Methylbutene

1.2

90.24

2.1756

2.503

-

2-butene

1.2

148.19

1.6978

5.952

-

NA

1.2

62.33

3.0712

7.444

-

NA

1.2

63.28

3.9903

 

 

R113, 1,1,2-trichloro-1,2,2-

 

 

 

8.360

-

trifluoroethane

1.2

44.374

3.2607

 

 

UN 1296, n,n-

 

 

 

4.515

-

diethylethanamine

1.2

82.167

2.3280

2.637

-

n,n-dimethylmethanamine

1.2

140.661

1.7109

13.288

-

NA

1.2

27.92

4.7379

15.706

-

Uranium Fluoride

1.2

23.62

4.4681

4.772

-

NA

1.2

77.74

3.5770

2.788

-

Chloroethylene

1.2

133.04

2.0988

2.054

-

NA

1.2

180.58

1.6528

0.810

-

NA

1.33

461.53

0.6715

5.858

-

NA

1.6

63.33

1.0000

4.737

-

NA

1.2

78.32

2.3103

4.737

-

NA

1.2

78.32

2.3108

4.737

-

NA

1.2

78.32

2.3102

HFM-E-200/HFC-E-202

Page 23 of 30

Image 23
Contents Teledyne Hastings Manual Print History Table of Contents Features Installation and OperationSwagelok, 1/8 Swagelok, VCR, VCO SpecificationsOptional 4-20 mA Current Output Other AccessoriesHastings Power supplies Interconnecting CablesMechanical Connections Power RequirementsOutput Signal Receiving InspectionElectrical Connections Zero Check OperationOperating Conditions High Pressure Operation Operation with a Hastings power supplyOperation with a power supply other than a Hastings Operation with External DevicesSoft Start Range ChangingOperation with an external sensor. Fig Electronics Theory of OperationOverall Functional Description SensorShunt Valve Troubleshooting MaintenanceAuthorized Maintenance Calibration Procedure Figure AdjustmentsInlet Removal Printed Circuit Board ReplacementSensor Replacement Miscellaneous adjustmentsHFC-E-202 Orifice 0014 QReplacement Parts BF3 Conversion Factor TableC2H7N C3H8O SO2 Non-Warranty Repair Policy Warranty Repair PolicyDrawings HFM-E-200/HFC-E-202 HFM-E-200/HFC-E-202 HFM-E-200/HFC-E-202 HFM-E-200/HFC-E-202 HFM-E-200/HFC-E-202

HFC-E-202, HFM-E-200 specifications

Teledyne HFC-E-202 and HFM-E-200 are advanced flow meters designed to provide precise measurement and monitoring of gas and liquid flows in various industrial applications. Both devices are engineered to meet the demands of sectors such as petrochemicals, pharmaceuticals, and food and beverage, where accuracy and reliability are paramount.

The Teledyne HFC-E-202 is a highly sensitive flow meter that utilizes a thermal mass flow measurement technology. This technology enables the HFC-E-202 to accurately measure the mass flow rate of gases regardless of temperature and pressure conditions. One of its key features is its ability to provide high precision and fast response times, making it suitable for applications that require immediate data feedback. The device is also equipped with advanced diagnostics that allow users to monitor the health of the system and identify potential issues before they escalate.

On the other hand, the HFM-E-200 is particularly renowned for its versatility in measuring both gas and liquid flows. It employs differential pressure technology, which is highly effective in a wide range of operating conditions. The HFM-E-200 incorporates a robust design that can withstand harsh environments, ensuring longevity and reliability. Its user-friendly interface allows for easy configuration and monitoring, catering to both novice and experienced technicians.

Both flow meters feature digital output options, facilitating seamless integration with existing control systems. This enables real-time data acquisition and monitoring, enhancing process control and efficiency. Furthermore, their compact design minimizes installation space, allowing for easy placement in tight operational areas.

In terms of safety and compliance, both the HFC-E-202 and HFM-E-200 are designed to meet strict industry standards, ensuring they can be deployed in critical applications without compromising safety.

In conclusion, Teledyne HFC-E-202 and HFM-E-200 flow meters stand out due to their innovative technologies, accuracy, and durability. Their unique features position them as essential tools for a variety of industrial sectors, enhancing operational efficiency and ensuring reliable fluid flow measurement. With Teledyne’s commitment to quality and innovation, users can trust that these devices will meet their demands both now and in the future.