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CRVW3-NE Three-Channel Vibrating Wire Datalogger without Enclosure

Updated:2025-03-13

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  • Brand: Campbell
  • Model: CRVW3-NE
  • Description: The CRVW3-NE is a three-channel vibrating wire data logger. It is designed to be an independent data logger, or you can use it as a reliable component in your larger data acquisition system. The CRVW3
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Product Details

CRVW3-NE Three-Channel Vibrating Wire Datalogger without Enclosure Description:

Datasheet

The CRVW3-NE is a three-channel vibrating wire data logger. It is designed to be an independent data logger, or you can use it as a reliable component in your larger data acquisition system. The CRVW3-NE has multiple communication options and a power regulator for easy solar panel and battery connection.

The CRVW3-NE and the CRVW3 are similar products that share the same electronic components. The main difference between them is that the CRVW3-NE allows you to select the enclosure and battery, whereas the CRVW3 includes an environmental enclosure and battery as a complete system.

Technical Description

The CRVW3-NE uses vibrating wire spectral-analysis technology (VSPECT?) to provide the best measurement possible for vibrating wire sensors. VSPECT? observes the incoming sensor signal, performs a Fourier transform and a spectral analysis (transforming the time series into individual sinusoidal components in the frequency spectrum), and determines the sensor frequency by identifying the strongest signal in the acceptable range while filtering out environmental and electrical noise.

The CRVW3-NE provides the following data: the resonant sensor frequency, thermistor resistance for temperature calculation, and diagnostic values to help determine the validity of the frequency measurement.

Advantages and characteristics

Reads and stores data from one to three vibrating wire sensors

Charge regulator included for solar panel connection

Simple configuration interface

Compatible with many existing Campbell Scientific data acquisition networks

PakBus router/radio capabilities

User-selectable battery and enclosure options

CRVW3-NE Three-Channel Vibrating Wire Datalogger without Enclosure Specification:

Operating Temperature Range
  • -40° to +70°C
  • Non-condensing environment
Processor ST ARM CORTEX-M4 (32-bit with hardware FPU, running at 144 MHz)
Data Storage 16 MB serial flash, up to 420,000 records (single channel), up to 160,000 records (3 channels)
Real-Time Clock Accuracy ±3 min. per year
Measurement Interval Range 1 s to 1 day
USB Micro B Direct connect to PC (supplies power for configuration and data collection), 2.0 full speed, 12 Mbps
Configuration Software configurable, no programming required
Compliance RoHS
Warranty One year against defects in materials and workmanship
Static Vibrating Wire Measurements Supported
Mounting Mounting holes for easy mounting and installation in a Campbell Scientific enclosure
Dimensions 18.4 x 12.7 x 4.5 cm (7.25 x 5.0 x 1.75 in.)
Weight 0.36 kg (0.8 lb)
Power
Charge Terminal 16 to 28 Vdc (from solar panel or dc power converter). Typical applications use 10 to 20 W panels.
Battery Terminal Sealed, rechargeable, lead-acid batteries. Typical applications use 7, 12, and 24 Ah rechargeable batteries.
Current Drain
  • 1 mA (no radio, basic operation)
  • ~37.5 mA/s (each time a channel is measured)
Measurements
Channel Count 3 vibrating wire (VW) and 3 thermistor/RTD (temperature) measurements
Measurement Speed 1 s per sensor (VW and temperature)
Measurements - Vibrating Wire
Measurement Excitation Options 2 V (±1 V), 5 V (±2.5 V),12 V (±6 V)
Measurement (Frequency) Resolution 0.001 Hz RMS (-40° to +70°C)
Time-series Basic Resolution 24-bit ADC
Measurement Accuracy ±0.005% of reading (-40° to +70°C)
Measurement Method VSPECT (Spectral Analysis), includes diagnostic data
Measurements - Temperature (Resistanh3>
-NOTE- Thermistor or RTD resistance can be scaled to Temperature (Deg C) per manufacturer specifications. The resulting temperature can be used as a correction factor for the sensor’s output.
Measurement Method Half-bridge ratiometric, 24-bit ADC, built-in completion resistor 4.99 kΩ 0.1%
Thermistor Precision 0.020 Ω RMS @ 3000 Ω (~0.00015 °C RMS for most vibrating wire thermistors)
Accuracy ±0.15% of reading (-40° to +70°C)
-RF407 Option
Internal Radio Description 5 to 250 mW, user selectable; 902 to 928 MHz license-free band, frequency hopping spread-spectrum radio
Radio Repeater Devices with the -RF407 option can be set up as a radio repeater.
Where Used US, Canada
Compliance Information
  • MCQ-XB900HP (United States FCC Part 15.247)
  • 846A-XB900HP (Industry Canada ([IC])
  • RCPDIXB15-0672-A2 (Mexico IF)
-RF412 Option
Internal Radio Description 5 to 250 mW, user selectable; 915 to 928 MHz license-free band, frequency hopping spread-spectrum radio
Radio Repeater Devices with the -RF412 option can be set up as a radio repeater.
Where Used Australia
Compliance Information
  • ACMA RCM
  • MCQ-XB900HP (United States FCC Part 15.247)
  • 1846A-XB900HP (Industry Canada [IC])
-RF422 Option
Internal Radio Description 2 to 25 mW, user selectable; 863 to 870 MHz license-free band, frequency hopping spread-spectrum radio
Where Used Europe and some of Asia (ETSI)
EU Conformity View the EU Declaration of Conformity in the Documents section of the web page.
-RF427 Option
Internal Radio Description 5 to 250 mW, user selectable; 905/920 MHz license-free band, frequency hopping spread-spectrum radio
Radio Repeater Devices with the -RF427 option can be set up as a radio repeater.
Where Used Brazil
Compliance Information 08335-17-10644 Brazil (ANATEL standards in Resolution No. 506)
-RF452 Option
Internal Radio Description 10 to 1,000 mW, user selectable; 902 to 928 MHz license-free band, frequency hopping spread-spectrum radio
Radio Repeater Devices with the -RF452 option can be set up as a radio repeater.
Where Used US, Canada, Australia
Compliance Information
  • KNYAMM0921TT (United States FCC ID)
  • 2329B-AMM0921TT (Canada [IC])

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