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Drager X-pid 9000/9500 PID Gas Measurement Device

Update Terakhir
10 DESEMBER 2025
Negara Asal
UNITED STATES
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1
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NEGO
Kategori
Minta Penawaran
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Deskripsi produk

Drager X-pid 9000/9500 PID Gas Measurement Device

Product Features

  • Selective VOC gas detection
  • For frequent testing of toxic & carcinogenic substances
  • Laboratory quality results in very low concentrations
  • Benzene measurement starting from 50 ppb
  • No consumables per measurement

 

The Drager X-pid 9000/9500 selective PID gas measurement device is ideal for users who frequently test for hazardous toxic substances. Benzene, butadiene and other volatile organic compounds (VOCs) are carcinogenic even in the smallest concentrations. Selective measurement is necessary because other gases and vapours are often also present. The gas measurement device allows for short test times and laboratory-quality results.

Two modes for an efficient measurement strategy

“Seeker” mode is a broadband measurement for pre-testing and localising measurement points. It allows continuous, direct-reading measurement of the total concentration of all VOCs present. “Seeker” mode is similar to using a single-PID gas measurement device.

“Analysis” mode allows selective measurement for monitoring specific toxic compounds. Pre-defined target compounds can be precisely measured in seconds. “Analysis” mode is similar to gas chromatography analyses conducted in the laboratory.

Up to 90% time savings

The Dräger X-pid 9000/9500 requires no preparation and is ready to use after a brief start-up phase. Selective measurement in “Analysis” mode takes only a few seconds. A benzene measurement starts with the push of a button and is completed in only 30 seconds. After another 60 seconds, the device is ready to measure for benzene again. Compared with other detection systems, the Dräger X-pid 9000/9500 saves considerable time and enables further monitoring to be undertaken. Simultaneous measurement of other compounds, like benzene and butadiene, further reduces testing times.

Cost savings

Because no consumables are used to take measurements, operating costs can be reduced. For users with high measurement needs, the Dräger X-pid 9000/9500 quickly pays for itself. For example, it requires no pre-tubes, also making it easier to use and preventing user errors. On the basis of 200 measurements per year, the Dräger X-pid 9000/9500 is generally more cost-effective than comparable measurement systems.

High selectivity for greater safety

The selective measurement mode “Analysis” relies on technology which separates individual compounds present in mixed gases. This makes it possible to conduct a compound-specific measurement for benzene, even if other VOCs like toluene and xylene are also present in high concentrations. Cross-sensitivities for benzene are reduced to a minimum. This reduces the number of false-positive measurement results and false alarms.

Reliable performance under tough conditions

The influence on measurement results by environmental factors like variable ambient temperature or high humidity are reduced to a minimum. The sensor unit maintains a constant temperature above the ambient air temperature and separates water vapour from the target compounds. This ensures reliable measurements under tough environmental conditions.

Low detection limits

Concentrations of toxic compounds in the air at work sites must not exceed threshold limit values. Mandatory time-weighted averages in the low ppb to ppm range need to be performed for carcinogenic vapours like benzene. The Dräger X-pid 9000/9500 is optimised for measuring in this concentration range and detects benzene starting at 50 ppb.

Intuitive handling with mobile app

The sensor unit is controlled and the measurment data processing is conducted by a mobile app installed on an explosion-proof smartphone (delivery includes both). The large touch screen and familiar user interface elements are easy to use. This makes the sophisticated technology accessible to a broad group of users. No prior knowledge or extensive training is required.

Laboratory-quality measurement results

The gas measurement device is based on gas chromatography (GC) and photoionisation detection (PID) technologies. These technologies, used widely in laboratories, have a high acceptability due to their excellent analytical performance. The Dräger X-pid 9000/9500 brings these technologies directly to the hazardous area of any production site.

Simple functional test and calibration

The functional test with the test gas isobutylene and toluene is done in just two minutes and the Dräger X-pid 9000/9500 is ready to use. During the test the user is guided through the user interface step-by-step. The calibration is completed within about four minutes.

Two product models for different requirements

There are two models of the product: the 9000 and 9500. The Dräger X-pid 9000 covers the target compounds benzene and butadiene. The Dräger X-pid 9500 offers the possibility of combining more than 23 target compounds into individual analysis programmes and thus expanding its application range. This means, you can independently expand the target substance database for the Dräger X-pid 9500.

 

Product Specification

Ambient conditions:
at operation –10 to +35 °C
700 to 1300 hPa
10 to 95 % RH
Protection class IP 54
Gas inlets and outlets have to be protected from water and dust. The water and dust filter has to be fitted at all times.
Operating times typically 8 h,
reduces with lower ambient temperatures
Dimensions ca. 132 x 281 x 56 mm (W x H x T)
Weight ca. 880 g
Approvals:
ATEX II 1G Ex ia IIC T4 Ga
IECEx Ex ia IIC T4 Ga
cCSAus Class I, Div. 1 Group A, B, C & D T4, Ex ia
Class I, Zone 0, A/Ex ia IIC T4 Ga
CE Marking RED (Directive 2014/53/EU)
ATEX (Directive 2014/34/EU)
Measurement mode Seeker: (only 9x00)
Sensor 10.6 eV PID (Seeker-PID)
Sensitive for compounds < 10.6 eV ionization energy
Precision1
(k = 1, ~68 %)
< 2 % at 10.0 ppm isobutylene
< 2 % at 5.00 ppm benzene
Precision1
(k = 2, ~95 %)
< 4 % at 10.0 ppm isobutylene
< 4 % at 5.00 ppm benzene
Limit of detection2 0.01 ppm (isobutylene response)
Upper range3 60.0 ppm (isobutylene response)
Resolution 0.01 ppm from 0 to 9.99 ppm
0.1 ppm from 10 to 99.9 ppm
1 ppm from 100 ppm
Measurement duration direct reading
Response time t90 ca. 45 seconds (isobutylene, without hose)
Selectivity Sum concentration assuming isobutylene response for entire signal.
No selectivity between detectable compounds.
Measurement mode Analysis:
Sensor 10.6 eV PID (Analysis-PID) after separation with gas chromatography
Sensitive for compounds < 10.6 eV ionization energy and boiling point < 150 °C
Precision1
(k = 1, ~68 %)
< 2 % at 10.0 ppm isobutylene
< 2 % at 5.00 ppm benzene
Precision1
(k = 2, ~95 %)
< 4 % at 10.0 ppm isobutylene
< 4 % at 5.00 ppm benzene
Limit of detection2 Compound-specific, see technical manual
0.07 ppm isobutylene
0.02 ppm benzene
Limit of quantification4 Compound-specific, see technical manual
0.20 ppm isobutylene
0.05 ppm benzene
Upper range3 Compound-specific, see technical manual
100 ppm isobutylene
25.0 ppm benzene
Resolution 0.01 ppm from 0 to 9.99 ppm
0.1 ppm from 10 to 99.9 ppm
1 ppm from 100 ppm
Analysis duration Compound-specific, limited by least volatile compound
20 s isobutylene analysis program
30 s benzene analysis program
30 s isobutylene & benzene analysis program
Response time t90 none (if sample concentration at start of the analysis is at device)
Selectivity Compound-specific, see technical manual
For benzene there are no cross-sensitivities to toluene, ethylbenzene, xylene isomers, n-hexane and many other VOC with different volatility. Benzene has a known cross-sensitivity to cyclohexane.

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