HZ1434 High Precise SF6 Gas Purity Analyzer

The HZ1434 SF6 Gas Purity Analyzer is a cutting-edge, intelligent instrument designed to accurately measure the purity of sulfur hexafluoride gas. Widely employed in high-voltage switchgear within the power industry, the HZ1434 incorporates a state-of-the-art micro thermal conductivity sensor equipped with temperature compensation. It can simply measure the purity (percentage content) of SF 6 gas in bottled SF 6 gas, SF 6 switch, and other equipment.

  • Color LCD intelligent touchscreen interface
  • Built-in high capacity rechargeable lithium battery
  • Standard USB interface for data storage and analysis
  • Micro thermal conductivity sensor with temperature compensation

 

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HZ1434 fully automatic portable SF6 Gas Purity Analyzer adopts a high-stability and high-precision thermal conductivity sensor. According to the difference in gas thermal conductivity, it can accurately and quickly measure the content of a random gas in two mixed gases.

 

Features of SF6 Gas Purity Analyzer

  • Portable design, lighter instrument, easy to carry and use.
  • Long life micro thermal conductivity sensor with temperature compensation is adopted.
  • An imported electronic mass flow sensor is installed inside, and the flow test is accurate.
  • It adopts a large-capacity design and can store up to 100 groups of test data.
  • The 5-inch color touch screen directly displays data, which is intuitive and easy to use.
  • Real-time curve tracking, the changing trend of purity percentage is clear and intuitive.
  • USB 2 . 0 interface is adopted, and historical data can be exported to a USB flash disk through the interface.
  • Built-in 4400 m Ah rechargeable lithium battery, sufficient at one time and can work continuously for 10 hours.

 

Specification of SF6 Gas Purity Analyzer

Detecting Gas Hydrogen Sulfide
Measurement range  0 ~ 100 % (SF 6 percentage)
Measurement accuracy ± 1 ℃ (within 90 % ~ 100 % range)
Resolution 1%
Sampling flow 5 ~ 0. 8 l/ min
Response time 15 s (90 %)
Sampling system built-in pressure stabilizing valve, filter, and electronic flowmeter
Display color touch screen display, all Chinese interface, with backlight
Output interface USB 2 . 0 specification
Power supply built-in rechargeable lithium battery (with charging protection device), which can work continuously for 10 hours
Size 320 (mm) × 270 ( mm) × 140 ( mm)
Operating temperature – 40 ℃ ~ + 80 ℃
Ambient Humidity 0~100% RH
Warranty 1 year
Certification CE

Procedure for Using the HZ1434 SF6 Gas Purity Analyzer

Step 1: Power-On and Warm-Up
Turn on the analyzer and allow it to warm up for ten minutes.

Step 2: Connect SF6 Equipment
Connect the threaded end of the measuring pipe to the switch connector and secure it with a wrench.
Insert one end of the quick connector on the test pipe into the sampling port of the purity analyzer (labeled “gas inlet”).
Connect the exhaust pipe to the air outlet (labeled “gas outlet”).

Step 3: Check Power
When using DC power, verify the battery power level displayed in the upper right corner. If it’s below 20%, turn off the analyzer and recharge it before continuing.

Step 4: Start Measurement
Open the needle valve on the measuring pipe. Adjust the flow valve on the purity analyzer panel to achieve a flow rate of approximately 0.5 L/M. Begin measuring the SF6 gas purity value. You can simultaneously view the SF6 purity percentage, gas flow, ambient temperature, ambient humidity, and current system time.

measurement status interface of SF6 gas analyzer

Step 5: Store Data
After completing the measurement, save the data within the instrument. Press the “data query” key to access the operation menu.

hisorical data query interface of SF6 gas analyzer

Step 6: Measure Other Equipment
Close the needle valve on the measuring pipeline and the regulating valve on the purity instrument. Remove the adapter from the SF6 electrical equipment. Repeat steps 1-5 to measure other equipment.

Step 7: End Measurement
After measuring all equipment, turn off the power supply to the purity analyzer.