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  Pheriche AWS Barometer

At the AWS Pheriche station the CX115P Lsi-Lastem barometer is connected with measurement system (recorder, data logger) that accepts analog signals. The barometer functions according to the piezometric principle: a resistive film is deposited on a slice of silica with a bridge form; as the pressure changes, the slice will deform and consequently changes the system's resistance. The CX115P model mounts a special thermal compensation system that significantly reduces drift. The sensor take hourly measurements of atmospheric pressure.
 
Citation proposal
(2011) . Pheriche AWS Barometer. https://geoportal.mountaingenius.org/geonetwork/srv/api/records/828f82ed-c07d-4112-a760-57072e10722b
 
  • INSPIRE
  • SDS

INSPIRE

Identification

File identifier
828f82ed-c07d-4112-a760-57072e10722b   XML
Hierarchy level
Series
Online resource
Protocol
Resource identifier
Encoding
Projection
code
WGS 84 (EPSG:4326)
 

Classification of data and services

Topic category
  • Climatology, meteorology, atmosphere
  • Environment
  • Geoscientific information
 

Classification of data and services

Coupled resource
Coupled resource
 
 

Classification of data and services

Coupled resource
Coupled resource
 
 

Keywords

GEMET ( Theme )
  • thermal power plant
Other keywords
Keywords
  • SHARE , Network , Station , High Altitude
Keywords
  • CEOP , GAW , WMO
Keywords ( Place )
  • Nepal , Pheriche , Khumbu Valley , Sagarmatha National Park
Keywords ( Theme )
  • Atmospheric pressure
 
 

Geographic coverage

N
S
E
W


 

Temporal reference

Temporal extent
Temporal extent
Date ( Publication )
2011-05-20T03:00:00
 

Quality and validity

Lineage

Barometers are sensors for measuring atmospheric pressure. The station was installed on October 2001. The sensors about air pressure are mounted on a 2m mast . The CX115P model is destined for applications with connections to measurement systems (recorders, data loggers, etc.) that accept analog signals. The barometers function according to the piezometric principle : a resistive film is deposited on a slice of silica with a bridge form; as the pressure changes, the slice will deform and consequently changes the system’s resistance. The output can be reduced to sea level via trimmer on the CX110P and CX115P models and by software calibration on the data logger for the CX111P model. The CX115P model mounts a special thermal compensation system that significantly reduces drift, on this model is also available a second analog output corresponding to the temperature of the Pt100 element placed inside the sensor.

General characteristics:

Range: 800 ž 1100 hPa (1 hPa=1 mBar)

Sea level correction range: -300...+2000 mt.

Thermal drift: 0,01 hPa/°C (-10..+60°C)

Linearity&Hysteresis: < 0,3% of the range

Overload: max. 2 Pa

Load resi stance: Current output types: <500W.

Power consumption: 3 W

Response time (T90): 1 ms

Environmental limits: -25 .. +60°C

Output connections: terminals

Weight: 650 gr.

Housing case material: Plastic

Protection: IP40 Downward cable outlet

 

Conformity

Conformity
Conformity
 

Conformity

Conformity
Conformity
 

Restrictions on access and use

Access constraints
 

Restrictions on access and use

 

Responsible organization (s)

Contact for the resource
Organisation name
Ev-K2-CNR
Email
evk2cnr@evk2cnr.org
 

Responsible organization (s)

Contact for the resource
Organisation name
Ev-K2-CNR
Email
evk2cnr@evk2cnr.org
 

Metadata information

Contact for the metadata
Organisation name
Ev-K2-CNR
Email
metadata@evk2cnr.org
Date stamp
2025-01-21T08:14:23
Metadata language
eng
Character set
UTF8
 
 

SDS

Conformance class 1: invocable

Access Point URL
Endpoint URL
Technical specification
 

Conformance class 2: interoperable

Coordinate reference system
 
Quality of Service
 
Access constraints
Limitation
 
Use constraints
Limitation
 
Responsible custodian
Contact for the resource
 
 

Conformance class 3: harmonized

 
 

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