Catalytic Bead DrägerSensor®

Catalytic Bead DrägerSensor®

Dräger
TF: 007005-HW-Dräger-005
Overview

These sensors use a dual-detector optical principle to reduce drift, enhance accuracy, and maintain stable operation over extended periods. Ideal for continuous safety monitoring, they offer dependable performance in demanding applications such as oil & gas, chemical processing, and industrial manufacturing.

Name

Formular

CAS

Acetic Acid

C2H4O2

64-19-7

suitable options: 11

Acetic acid butyl ester

C6H12O2

123-86-4

suitable options: 11

Acetone

C3H6O

67-64-1

suitable options: 11

Acetylene

C2H2

74-86-2

suitable options: 11

Ammonia (anhydrous)

NH3

7664-41-7

suitable options: 11

Benzene

C6H6

71-43-2

suitable options: 11

Dimethyl ether

C2H6O

115-10-6

suitable options: 11

Ethanol

C2H6O

64-17-5

suitable options: 11

Ethyl acetate

C4H8O2

141-78-6

suitable options: 11

Ethyl ether

C4H10O

60-29-7

suitable options: 11

Ethylene

C2H4

74-85-1

suitable options: 10

Ethylene oxide

C2H4O

75-21-8

suitable options: 11

Hexane

C6H14

110-54-3

suitable options: 11

Hydrogen

H2

1333-74-0

suitable options: 11

Liquified petroleum gas (L.P.G.)

Unspecified

68476-85-7

suitable options: 10

Methane

CH4

74-82-8

suitable options: 11

Methanol

CH4O

67-56-1

suitable options: 11

Methyl methacrylate

C5H8O2

80-62-6

suitable options: 11

n-Butane

C4H10

106-97-8

suitable options: 11

n-Pentane

C5H12

109-66-0

suitable options: 11

Nonane

C9H20

111-84-2

suitable options: 11

Octane

C8H18

111-65-9

suitable options: 11

Propane

C3H8

74-98-6

suitable options: 11

Propylene

C3H6

115-07-1

suitable options: 11

Propylene oxide

C3H6O

75-56-9

suitable options: 11

Toluene

C7H8

108-88-3

suitable options: 11

1,2-Dimethylbenzene

C8H10

95-47-6

suitable options: 11

1,3-Butadiene

C4H6

106-99-0

suitable options: 11

2-Butanone

C4H8O

78-93-3

suitable options: 10

2-Propanol

C3H8O

67-63-0

suitable options: 10

Name

Formular

CAS

Acetic Acid

C2H4O2

64-19-7

suitable options: 11

Acetic acid butyl ester

C6H12O2

123-86-4

suitable options: 11

Acetone

C3H6O

67-64-1

suitable options: 11

Acetylene

C2H2

74-86-2

suitable options: 11

Ammonia (anhydrous)

NH3

7664-41-7

suitable options: 11

Benzene

C6H6

71-43-2

suitable options: 11

Dimethyl ether

C2H6O

115-10-6

suitable options: 11

Ethanol

C2H6O

64-17-5

suitable options: 11

Ethyl acetate

C4H8O2

141-78-6

suitable options: 11

Ethyl ether

C4H10O

60-29-7

suita

Ethylene

C2H4

74-85-1

suitable options: 10

Ethylene oxide

C2H4O

75-21-8

suitable options: 11

Hexane

C6H14

110-54-3

suitable options: 11

Hydrogen

H2

1333-74-0

suitable options: 11

Liquified petroleum gas (L.P.G.)

Unspecified

68476-85-7

suitable options: 10

Methane

CH4

74-82-8

suitable options: 11

Methanol

CH4O

67-56-1

suitable options: 11

Methyl methacrylate

C5H8O2

80-62-6

suitable options: 11

n-Butane

C4H10

106-97-8

suitable options: 11

n-Pentane

C5H12

109-66-0

suitable options: 11

Nonane

C9H20

111-84-2

suitable options: 11

Octane

C8H18

111-65-9

suitable options: 11

Propane

C3H8

74-98-6

suitable options: 11

Propylene

C3H6

115-07-1

suitable options: 11

Propylene oxide

C3H6O

75-56-9

suitable options: 11

Toluene

C7H8

108-88-3

suitable options: 11

1,2-Dimethylbenzene

C8H10

95-47-6

suitable options: 11

1,3-Butadiene

C4H6

106-99-0

suitable options: 11

2-Butanone

C4H8O

78-93-3

suitable options: 10

2-Propanol

C3H8O

67-63-0

suitable options: 10

Sensors for fixed gas detectors are designed for reliable detection of flammable gases and vapours in industrial environments. Their advanced double-detector compensation method ensures long-term stability and consistent measurement performance.