rain[e]LP

Minimum energy consumption

APPLICATIONS
  • Agricultural meteorology
  • Traffic meteorology
  • Measuring networks of water utilities
  • Wastewater treatment plants
Description
MINIMUM ENERGY CONSUMPTION

rain[e] is a new type of weighing precipitation sensor: Highest resolution combined with the most compact design. The Low Power (LP) version of the sensor is the ideal choice for solar or battery powered applications. The unique self-emptying collection system enables the measurement of every single drop with the high resolution of 0.001 mm/m2. Full functionality all year around without antifreeze fluid makes the rain[e] very environmentally friendly.

rain[e]LP is easy to lift, transport, install and maintain. The small packing volume and the low weight ensure minimum logistical effort. The rain[e] series is compatible with OTT and Campbell Scientific data loggers and ideal for setup and expansion of rainfall measurement networks.

  • Amazing resolution and precision
  • Verification of precipitation sensors with tipping bucket and other weighing systems
  • Compact and rugged design with very light weight
  • All-metal housing, weatherproof and durable
  • Easy installation and maintenance
Additional information
Brands

Measuring range

without limitation (0.005~∞ mm)

Amount of accuracy

± 0.1 mm or 1 % at < 6 mm/min • ± 2 % at ≥ 6 mm/min

Amount of Resolution

0.001 mm (pulse output: 0.01 mm)

Intensity range

0~20 mm/min resp. 0~1200 mm/h

Intensity of resolution

0.001 mm/min resp. 0.001 mm/h

Output

SDI-12 • 1 Pulse-Output for linearised, bounce-free output signal

Collection surface

200 cm2

Environmental conditions

0~+70 °C

Protection class

IP67

Weight

approx. 2.5 kg

Reviews (0)

Reviews

There are no reviews yet.

Be the first to review “rain[e]LP”

Your email address will not be published. Required fields are marked *

About brand
LAMBRECHT meteo GmbH develops and manufactures world-class meteorological sensors and measurement solutions for wind, precipitation, pressure, temperature, and humidity serving various classical meteorological and highly specific environmental and industrial end-markets.
Data Sheets