Sign In |Help & Support
ALL SECTORS
  • ALL SECTORS
  • GB(National Standard)
  • CB(Shipping)
  • CECS(Engineering Construction)
  • CJ(Urban Construction)
  • CY(News and Publication)
  • DB(Provincial Standard)
  • DL(Electricity & Power)
  • DZ(Geology & Mineralogy)
  • FZ(Spinning & Textile)
  • GA(Public Security)
  • HB(Aviation)
  • HG(Chemical Industry)
  • HJ(Environmental Protection)
  • JB(Machinery)
  • JC(Building Materials)
  • JG(Building & Construction)
  • JJ(Metering)
  • JT(Highway & Transportation)
  • LY(Forestry)
  • MT(Coal)
  • NB(Energy)
  • NY(Agriculture)
  • QB(Light Industry)
  • QC(Automobile & Vehicle)
  • QJ(Aerospace)
  • SH(Petrochemical)
  • SJ(Electronics)
  • SL(Water Resources)
  • SN(Commodity Inspection)
  • SY(Oil & Gas)
  • TB(Railway & Train)
  • YB(Ferrous Metallurgy)
  • YC(Tobacco)
  • YD(Telecommunication)
  • YY(Medical Device)
Database: 365,228(8 Aug 2026)

itu-r p.1406

itu-r p.1406, Total:57 items.

The international standard classification for "itu-r p.1406" includes: .

The Chinese standard classification for "itu-r p.1406" includes: .


International Telecommunication Union (ITU)

  • ITU-R P.1239-1997 ITU-R Reference Ionospheric Characteristics
  • ITU-R P.1239-2012 ITU-R reference ionospheric characteristics
  • ITU-R P.1239-2-2009 ITU-R reference ionospheric characteristics
  • ITU-R P.1239-3-2012 ITU-R reference ionospheric characteristics
  • ITU-R P.1623-1-2005 Prediction method of fade dynamics on Earth-space paths (Question ITU-R 201/3)
  • ITU-R P.1239-1-2007 ITU-R Reference Ionospheric Characteristics
  • ITU-R P.526-8-2003 Propagation by diffraction (Question ITU-R 202/3)
  • ITU-R P.372-9-2007 Radio noise (Question ITU-R 214/3)
  • ITU-R P.1240-1997 ITU-R Methods of Basic MUF@ Operational MUF and Ray-Path Prediction
  • ITU-R P.1406-1999 Propagation Effects Relating to Terrestrial Land Mobile Service in the VHF and UHF Bands
  • ITU-R P.1240-2015 ITU-R methods of basic MUF, operational MUF and ray-path prediction
  • ITU-R P.1406-2015 Propagation effects relating to terrestrial land mobile and broadcasting services in the VHF and UHF bands
  • ITU-R P.1240-1-2007 ITU-R Methods of Basic MUF Operational MUF and Ray-Path Prediction
  • ITU-R REPORT P.2145-2009 Model parameters for an urban environment for the physical-statistical wideband LMSS model in Recommendation ITU-R P.681-6
  • ITU-R P.676-6-2005 Attenuation by Atmospheric Gases (Question ITU-R 201/3)
  • ITU-R P.835-4-2005 Reference standard atmospheres
  • ITU-R P.1407-2-2005 Multipath propagation and parameterization of its characteristics (Question ITU-R 203/3)
  • ITU-R P.1623-2003 Prediction method of fade dynamics on Earth-space paths (Question ITU-R 201/3)
  • ITU-R P.1407-1-2003 Multipath propagation and parameterization of its characteristics (Question ITU-R 203/3)
  • ITU-R P.684-3-2003 Prediction of field strength at frequencies below about 150 kHz (Question ITU-R 225/3)
  • ITU-R P.1621-2003 Propagation data required for the design of Earth-space systems operating between 20 THz and 375 THz (Question ITU-R 228/3)
  • ITU-R P.834-4-2003 Effects of tropospheric refraction on radiowave propagation (Question ITU-R 201/3)
  • ITU-R P.838-2-2003 Specific attenuation model for rain for use in prediction methods (Question ITU-R 201/3)
  • ITU-R P.1239-2 SPANISH-2009 ITU-R reference ionospheric characteristics Caracter韘ticas ionosf閞icas de referencia del UIT-R
  • ITU-R P.1147-3-2005 Prediction of sky-wave field strength at frequencies between about 150 and 1 700 kHz (Question ITU-R 225/3)
  • ITU-R P.1406-1-2007 Propagation effects relating to terrestrial land mobile and broadcasting services in the VHF and UHF bands
  • ITU-R P.1406-2-2015 Propagation effects relating to terrestrial land mobile and broadcasting services in the VHF and UHF bands
  • ITU-R P.1147-2-2003 Prediction of sky-wave field strength at frequencies between about 150 and 1 700 kHz (Question ITU-R 225/3)
  • ITU-R P.841-3-2003 Conversion of annual statistics to worst-month statistics (Question ITU-R 201/3)
  • ITU-R P.434-6-1995 ITU-R Reference Ionospheric Characteristics and Methods of Basic MUF@ Operational MUF and Ray-Path Prediction
  • ITU-R P.834-5-2005 Effects of tropospheric refraction on radiowave propagation (Question ITU-R 201/3; Study Group 3)
  • ITU-R P.1239-2 FRENCH-2009 ITU-R reference ionospheric characteristics Caract閞istiques ionosph閞iques de r閒閞ence de l'UIT-R
  • ITU-R P.1240-2-2015 ITU-R methods of basic MUF, operational MUF and ray-path prediction
  • ITU-R P.1321-1-2005 Propagation Factors Affecting Systems Using Digital Modulation Techniques at LF and MF (Question ITU-R 225/3)
  • ITU-R P.620-5-2003 Propagation data required for the evaluation of coordination distances in the frequency range 100 MHz to 105 GHz (Question ITU-R 208/3)
  • ITU-R P.531-7-2003 Ionospheric propagation data and prediction methods required for the design of satellite services and systems (Question ITU-R 218/3)
  • ITU-R P.531-8-2005 Ionospheric propagation data and prediction methods required for the design of satellite services and systems ((Question ITU-R 218/3))
  • ITU-R P.838-3 FRENCH-2005 Specific attenuation model for rain for use in prediction methods
  • ITU-R P.1791 FRENCH-2007 Propagation prediction methods for assessment of the impact of ultra-wideband devices
  • ITU-R P.1623-1 FRENCH-2005 Prediction method of fade dynamics on Earth-space paths
  • ITU-R P.452-11-2003 Prediction procedure for the evaluation of microwave interference between stations on the surface of the Earth at frequencies above about 0.7 GHz (Question ITU-R 208/3)
  • ITU-R P.1623-1 SPANISH-2005 Prediction method of fade dynamics on Earth-space paths
  • ITU-R P.1240-1 FRENCH-2007 ITU-R Methods of Basic MUF Operational MUF and Ray-Path Prediction
  • ITU-R P.1238-3-2003 Propagation data and prediction methods for the planning of indoor radiocommunication systems and radio local area networks in the frequency range 900 MHz to 100 GHz (Question ITU-R 211/3)
  • ITU-R P.1622 SPANISH-2003 Prediction methods required for the design of Earth-space systems operating between 20 THz and 375 THz
  • ITU-R P.434-6 FRENCH-1995 CARACT?RISTIQUES IONOSPH?RIQUES DE R?F?RENCE DE L'UIT-R ET M?THODES DE PR?VISION DES MUF DE R?F?RENCE ET D'EXPLOITATION ET DU TRAJET DES RAYONS
  • ITU-R P.620-6 SPANISH-2005 Propagation data required for the evaluation of coordination distances in the frequency range 100 MHz to 105 GHz
  • ITU-R P.1406-1 FRENCH-2007 Propagation effects relating to terrestrial land mobile and broadcasting services in the VHF and UHF bands
  • ITU-R P.1240-1 SPANISH-2007 ITU-R Methods of Basic MUF Operational MUF and Ray-Path Prediction
  • ITU-R P.620-6 FRENCH-2005 Propagation data required for the evaluation of coordination distances in the frequency range 100 MHz to 105 GHz (Question ITU-R 208/3)
  • ITU-R P.1238-4-2005 Propagation data and prediction methods for the planning of indoor radiocommunication systems and radio local area networks in the frequency range 900 MHz to 100 GHz (Question ITU-R 211/3)
  • ITU-R P.1411-3-2005 Propagation data and prediction methods for the planning of short-range outdoor radiocommunication systems and radio local area networks in the frequency range 300 MHz to 100 GHz (Question ITU-R 211/3)
  • ITU-R P.1406-1 SPANISH-2007 Propagation effects relating to terrestrial land mobile and broadcasting services in the VHF and UHF bands
  • ITU-R P.1411-2-2003 Propagation data and prediction methods for the planning of short-range outdoor radiocommunication systems and radio local area networks in the frequency range 300 MHz to 100 GHz (Question ITU-R 211/3)
  • ITU-R P.1410-2-2003 Propagation data and prediction methods required for the design of terrestrial broadband millimetric radio access systems operating in a frequency range of about 20-50 GHz (Question ITU-R 203/3)
  • ITU-R P.1621-1 SPANISH-2005 Propagation data required for the design of Earth-space systems operating between 20 THz and 375 THz Question ITU-R 228/3
  • ITU-R P.434-6 SPANISH-1995 ITU-R Reference Ionospheric Characteristics and Methods of Basic MUF@ Operational MUF and Ray-Path Prediction