センサ / 気圧センサ
気圧センサ

製品ライン

圧力範囲 標高 温度範囲 正確度 消費電流

BaroVue 10

500 ~ 1100 hPa 海抜下約609.6メートル(2,000フィート)(鉱山内)から海抜4,572メートル(15,000フィート)まで -40° ~ +60°C
  • < 5 mA (アクティビブモード)
  • 200 µΑ (スリープモード)

CS100

600 ~ 1100 hPa 海抜下約609.6メートル(2,000フィート)(鉱山内)から海抜約3,657.6メートル(12,000フィート)まで -40° ~ +60°C
  • 精度とは、エンドポイントの非線形性、ヒステリシス、再現性、および校正の不確実性の二乗和 (RSS) を指します。
  • ±0.5 hPa (@ +20°C)
  • ±1.0 hPa (@ 0° ~ 40°C)
  • ±1.5 hPa (@ -20° ~ +50°C)
  • ±2.0 hPa (@ -40° ~ +60°C)
  • < 3 mA (アクティブ)
  • < 1 µΑ (スリープモード)

その他製品

圧力範囲 標高 温度範囲 正確度 消費電流

CS106

500 ~ 1100 hPa 海抜下約609.6メートル(2,000フィート)(鉱山内)から海抜4,572メートル(15,000フィート)まで -40° ~ +60°C
  • 精度とは、エンドポイントの非線形性、ヒステリシス、再現性、および校正の不確実性の二乗和 (RSS) を指します。
  • ±0.3 hPa (@ +20°C)
  • ±0.6 hPa (@ 0° ~ 40°C)
  • ±1.0 hPa (@ -20° ~ +45°C)
  • ±1.5 hPa (@ -40° ~ +60°C)
  • < 4 mA (アクティブ)
  • < 1 µΑ (静止)

ドキュメント

よくある質問

気圧センサに関するよくある質問の数: 18

すべて展開すべて折りたたむ

  1. The BaroVue 10 can fit inside an ENC100. For more information, refer to the Specifications information on the ENC100 product page.

  2. It is possible that an older version of Short Cut is being used. Download the latest version of Short Cut.

  3. There is no warm-up time for the BaroVue 10.

  4. Contact your local Campbell Scientific office to purchase a calibrated BaroVue 10 sensor card (BVC10). After you receive the calibrated card, swap it with your current card, and mail it back to your local Campbell Scientific office. In this way, only one trip to the field site is required, and there will be no downtime for the sensor.

  5. While the measurement is equivalent, the BaroVue 10 is not a drop-in replacement. Unlike the CS100 and the CS106, the BaroVue 10 is a digital sensor that communicates either via SDI-12 or RS-232. To use the BaroVue 10 in a system that previously used a CS100/CS106, the wiring and program will need to be changed, as it is a digital sensor.

  6. Campbell Scientific recommends calibration on a yearly basis. However, conformance to published standards or regulations may require this on a more frequent basis.

  7. Yes, but only if certain conditions are met:

    • The sensor must reside in a non-condensing environment.
    • The vent tube accessing the high-humidity environment must be extremely well desiccated to keep any moisture from reaching the sensor’s components. Moisture in the sensor will damage the sensor, often to an un-repairable state.
  8. When using SDI-12 or RS-232 communication protocols, the pressure measurement can be returned in hPa, kPa, mmHg, inHg, or PSI. Refer to the BaroVue 10 manual for more information. If different measurement units are required, refer to a conversion chart.

  9. In most cases, the enclosures or buildings where the BaroVue 10 is housed have enough ventilation for the pressure to stay at equilibrium with the ambient pressure. Therefore, the sensor does not need to be vented to the outside

    However, if the sensor resides in an air-tight environment, and the pressure external to this environment needs to be measured, then the sensor will need to be vented to the outside. The preferred method for measuring the pressure external to the enclosure is to use a two-plate pressure port such as the RM Young 61002 to minimize dynamic pressure errors due to wind.

  10. Zero downtime/recalibration

    The BaroVue 10 has been designed to allow for zero downtime recalibration during normal use. Other sensors on the market need to be taken offline and sent back to the manufacturer to be recalibrated, often for weeks at a time, resulting in loss of data and costing time and money.

    In comparison, the sensor card of the BaroVue 10 is calibrated ahead of time and sent out to customers to replace the old sensor card, requiring only one trip to the field and no downtime.

    Further to this, the design of the BaroVue 10 allows customers to remove and replace their sensor card quickly and easily without having to disassemble the equipment in the enclosure or having to send the product back to the manufacturer. There is no need to turn the device off to replace the card.

    Highly reliable measurements

    The BaroVue 10 sensor card employs multiple sensor cells with statistical analysis to produce an accurate, precise, and repeatable measurement as well as a data-quality metric. The customer can use this quality metric for tracking calibration cycles, planning, maintenance schedules, and detecting pre-fault conditions.

    Low power

    The BaroVue 10 is a low power device and can be kept running continuously. The BaroVue 10 does not require any power cycling, unlike other products in this category.

    Very low noise

    The BaroVue 10 uses direct-to-digital sensors, and no analog-to-digital reconversion takes place inside the barometer.

    These factors, coupled with the multiple sensor cells, result in a reduction in noise when compared with analog sensors.

    Campbell Scientific aesthetics and form

    The BaroVue 10 has been designed with functionality in mind, and its aesthetic complements other Campbell Scientific products.

    The BaroVue 10 can be mounted in the orientation that best suits the application and has a smaller backplane footprint than its competitors.

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