廃止 – DPI 605

廃番

DruckのDPI 605高精度ポータブル圧力校正器は、電気計測・電源供給機能、圧力・真空の発生、データ処理などの機能を備えていました。指示値の0.05%の精度を提供し、ゲージ圧で-1~+20 barの範囲に対応しました。

説明

産業分野

石油・ガス

石油・ガス産業では、安全で効率的な運用を確保するために、信頼性、精度、安定性が重要です。Druckは50年以上にわたり高性能圧力センサの信頼されるプロバイダとして、これらの分野の厳しい要件に応える革新的なソリューションを提供してきました。 海底用途 海底環境では、Druckの圧力センサが各種プロセスの監視・制御に不可欠です。坑口の圧力・温度測定、コントロールポッドの圧力監視、海底処理などに使用されます。これらのセンサは重要パラメータを安全限界内に維持し、潜在的な故障を防止するとともに生産を最適化します。…

発電

In the dynamic and demanding power generation market, precision and reliability are paramount. Druck has been at the forefront of pressure sensing technology for over 50 years, providing innovative solutions that ensure optimal performance and safety in …

海洋

Druckの圧力センサは海洋産業に不可欠であり、各種海洋システムの安全性・効率・性能を確保するための正確で信頼性の高い測定を提供します。これらのセンサは、極端な温度、高湿度、腐食性の高い海水など、海洋環境の過酷条件に耐えられるよう設計されています。 海洋産業におけるDruck圧力センサの主要用途の一つが、バラスト制御システムです。バラストシステムは、船舶の安定性と運航効率を維持するうえで重要です。DruckのUNIK5600およびUNIK5700の海洋認証圧力センサは、バラストタンク内の圧力を監視・制御…

原子力

原子力発電業界では、安全性と効率を確保するために精度と信頼性が極めて重要です。Druckは圧力センシング技術のリーダーとして、原子力用途の厳格な要求に応えるソリューションを提供しています。 原子力発電での用途 Druckの圧力センサは、原子力分野の複数の重要用途で使用されています。炉心冷却系の監視において重要な役割を担い、圧力と流体レベルを安全限界内に維持して過熱や潜在的な故障を防止します。さらに、蒸気発生器で蒸気圧を監視し、効率的な発電に不可欠な管理を支援します。

Wafer Fabrication

Druck have sensors specifically designed to operate in the semiconductor industry Druck have a strong pedigree providing high performance pressure sensors and pressure modules into critical equipment OEM supplying silicon wafer fabrication, semiconductor…

Semiconductor

The role of semiconductors is vital Semiconductors are integral components across a wide range of applications and industries. From consumer electronics, communications, and transportation to energy and healthcare, the role of semiconductors is vital to …

Renewables

As the world transitions towards cleaner energy sources, the renewables industry demands precision and reliability in its operations. Druck has been a leader in pressure sensing technology for over 50 years, providing innovative solutions that meet the s…

Motorsports

Leading global motorsport teams have trusted Druck’s pressure sensors for many years due to the performance, speed and reliability our sensors provide, which is of paramount importance in the motorsport arena. Druck can provide pressure and temperature s…

Metrology and Calibration

Overcoming challenges with precision and traceability In the world of metrology and calibration, accuracy and repeatability are non-negotiable. Druck, delivers market-leading pressure measurement solutions that ensure confidence in every calibration. Fro…

Industrial

Overcoming challenges with precision and reliability Industrial operations rely on accurate and reliable pressure measurement to ensure safety, efficiency, and productivity. Druck, delivers high-performance pressure sensors and instruments that meet the …

Electronics Manufacturing

Precise pressure control is vital for manufacture Druck, is a globally recognized leader in precision pressure measurement and calibration solutions, widely used in electronics manufacturing. Their products are essential for ensuring accuracy, reliabilit…

アプリケーション

圧力校正と圧力試験

FAQs

Check the Setup menu to see what batteries are being detected.

If “Dry Cell Level” is shown then the DPI 610 is not detecting that the Ni-Cad Battery pack is fitted, otherwise it would say “Ni-Cad Battery Level”
On the underside of the battery pack there is an additional terminal which the instrument uses to detect if a Ni-Cad battery pack is fitted. This terminal makes contact with the spring terminal in the case base, the terminal is highlighted in the image below.
It seems that the terminal on the battery pack may not be making contact with the spring terminal in the case base. The spring terminal in the case base may need bending slightly towards the battery pack so that it makes better contact with the battery pack.

When the battery pack is making a good contact with the base terminal the instrument will show Ni-Cad Battery Level and not Dry Cell Level in the Setup menu.
The instrument will only charge the battery when the Ni-Cad battery is detected.

The weight of the sensor is approximately 450 to 900 g depending on the configuration.

The specifications on page 5 of the datasheet apply to both the calibrators internal sensor and external/remote sensor (Option B1).
For a range of -1 to +1 bar we calculate the positive direction as ±0.025% FS = ±0.00025 bar.
But for the negative direction we use the Compound Range instead of FS to calculate the specification.

-1 to +1 bar = a Compound Range of 2 bar.
Therefore for the negative direction the specification would be: – 2 bar x 0.025% = ±0.0005 bar

For a range of -1 to +3.5 bar we calculate the positive direction as ±0.025% FS = ± 0.000875 bar.
But for the negative direction the compound range will be -1 to +3.5 = 4.5 bar.
Therefore for the negative direction the specification would be:- 4.5 bar x 0.025% = ±0.00113 bar.

Where we quote the accuracy on the datasheet as 0.025% FS and the instrument has a negative calibration then the specification for the negative direction is ±0.025% of Compound Range.

The specification for the Negative direction is ±0.025% of the Compound Range (-Ve FS plus +Ve FS)
For example if the instrument range was -1 to 20 bar then the Compound Range will be 21 bar.

For DPI 610 external sensors use the part number IO610B-1.
You will need to specify the pressure range and pressure connection on your order.

Calibration will not be required.
All calibration data is stored on the mainboard, just exchanging the display board will not affect the calibration.

NOTE:- We only supply the mainboard and display as an assembly, if this is replaced then calibration is required.

The recommended recalibration period is 12 months.
However the instrument has a stability of 0.015% of reading per annum therefore the actual calibration interval will depend on the total measurement uncertainty acceptable for your application.

The sensor is calibrated externally to the instrument on a production calibration rig.
The sensor is calibrated on oil but the front end of the sensor is then washed out to remove the oil.
The sensor is then fitted to the DPI610E Hydraulic Calibrator, pressure testing and leak tests are then carried out using demineralised water.

This may be caused by the button on the Battery Status indicator being permanently in the “on” state.
Check for any signs of damage to the button.
The Battery Status Indicator is not available as a spare therefore the case top will need to be replaced.
Case Top Assembly, part number IS610E-FRONT-ASSY

Note – Having the Battery Status indicator permanently on will not affect the operation of the instrument it will just slightly shorten the time between charges.

Pressure ranges 1 to 20 bar are calibrated from -1 bar to the positive full-scale pressure.
The 350 mbar range is calibrated ±350 mbar.
Ranges of 35 bar and above do not have a negative calibration.

The Leak Rate for Pneumatic versions is 50 mbar/min.
For the Positive direction use a wait time of 60 seconds for 20 and 35 bar units, for units less than 20 bar use a wait time of 30 seconds.
The Leak Rate is then measured over the next 30 seconds.
For the Negative direction use a wait time of 30 seconds.
The Leak Rate is then measured over the next 30 seconds.
The Leak Rate for Hydraulic versions is 1.5 bar/min
Use a wait time of 30 seconds.
The Leak Rate is then measured over the next 30 seconds.
Compared to the DPI 610 Leak Test we are using a much shorter wait time so the Leak Rate specification is higher.
On the DPI 610 we used a wait time of 4 minutes and a measure time of 1 minute so we were giving the pressure much longer to stabilise.
We would expect if you use a wait time of 4 minutes you will get a Leak Rate much less than 50 mbar/min.

There is no problem using the power adapter with a DPI 611 that has AA alkaline batteries fitted, protection is in place to prevent the batteries from being charged.

Typically a change in the reading of approximately 0.00040 bar can be seen.

The battery charging time is 6 hours.

The main thing that will affect the battery life is the intensity of the backlight.
Under normal operation with the settings shown below the running time should be around 12 hours.

The part number for the Standard Accuracy internal sensor is IA2975.
You will be asked to specify the pressure range and pressure connection (G1/8 or 1/8NPT) on your request.

You can use the Scaling Function on the DPI 800/802 to create a “metres of Sea Water” scale.
To Setup the Scaling Function:
With the pressure reading displayed select the Settings menu.
Next select P1 Pressure and press the Menu/OK key.
From the menu tick/check the box next to “x=y” using the Menu/OK key.
Then press the right hand square key to edit the parameters for P1 Scaling.
NB For reference you can refer to section 1.7 of the User Manual K0335.

To over-ride an unknown pin use the pin 0800 followed immediately by pressing the HOLD key. NOTE:- This applies to all models within the DPI 800 series.

The display updates at two times per second (response time = 0.5 sec).

“IDOS Disconnected” is displayed when trying to calibrate IDOS sensor on DPI800/802

This is likely to be caused by a bug in the instruments firmware. Check the status menu to see what version of firmware (DK246) is installed. If the firmware is older than
V06.04.03 then it will require upgrading to the latest version. NOTE:- This applies to all variants of the DPI 800 series apart from the DPI 880

ダウンロード

種類タイトル言語形式ダウンロード
DatasheetsDruck DPI611 DatasheetEnglishPDFダウンロード
DatasheetsDruck DPI610E DatasheetEnglishPDFダウンロード

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