Proxim Wireless U58-45 User Manual Modified page

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Document ID80351
Application IDDUOhkRTdLM4JNkQF+Slx5w==
Document DescriptionModified page
Short Term ConfidentialNo
Permanent ConfidentialNo
SupercedeNo
Document TypeUser Manual
Display FormatMicrosoft Excel - pdf
Filesize1.43kB (17921 bits)
Date Submitted2000-01-10 00:00:00
Date Available2000-01-11 00:00:00
Creation Date2001-05-03 07:49:45
Producing SoftwareAcrobat Distiller 4.0 for Windows
Document Lastmod2001-05-03 07:49:46
Document TitleModified page

Antenna Type
1 Foot Flat Panel
2 Foot Flat Panel
2 Foot Parabolic
3 Foot Parabolic
4 Foot Parabolic
6 Foot Parabolic
8 Foot Parabolic
Feeder Loss Type
1/2" foam coax
5/8" foam coax
Waveguide
Manufacturer
Gabriel
Gabriel
RSI
Gabriel
RSI
Radio Waves
Radio Waves
Gabriel
RSI
Radio Waves
Gabriel
RSI
Radio Waves
Gabriel
RSI
Model Number
DFPD1-52
DFPD2-52
A57A24-U
SSP2-52B
P-57C24
SP2-5.2
SP3-5.2
SSP4-52A
P-57B48
SP4-5.2
SSP6-52A
P-57A72
SP6-5.2
DRFB8-55ASE
P-57A96
Mid-band Gain (dBi)
23.5
28
26.5
28.5
29
28.3
31.4
34.2
34.7
34.6
37.5
38.2
37.7
40.7
40.8
Notes
Not rated @ 5.2 GHz
Not rated @ 5.2 GHz
Manufacturer
Andrew
Andrew
Andrew
Model Number
LDF 4-50
LDF 4.5-50
EW-52
Loss/100'
6.6 dB
4.7 dB
1.2 dB
Notes
add ~0.25 dB per connector
add ~0.25 dB per connector
does not include transitions
Not rated @ 5.2 GHz
Not rated @ 5.2 GHz
Not rated @ 5.2 GHz
Not rated @ 5.2 GHz
Formula for determining maximum output power setting for 5.2 GHz U-NII (LE-LAN) Transmitters (@ EIRP=30dBm):
Max Tx (dBm) = 30 - G + FL
where: G = Antenna Gain
FL = Feeder Loss including connectors
Formula for determining maximum output power setting for 5.7 GHz U-NII (LE-LAN) Transmitters:
Max Tx (dBm) = 23 + (Commission Certified Output Power) - G + FL
where: G = Antenna Gain
FL = Feeder Loss including connectors
Note: All Western Multiplex radios require professional installation.
Note: Western Multiplex U-NII devices have a built-in calibrated Tx Power Output Voltage port to aid in setting
the output power correctly, without the use of an RF power meter. The measurement in Volts is multiplied
by 10 for a measurement in dBm. e.g. 1.0 V = 10 dBm; 2.0 V = 20 dBm, 1.5 V = 15 dBm; 0.5 V = 5 dBm; etc.

Source Exif Data:
File Type                       : PDF
File Type Extension             : pdf
MIME Type                       : application/pdf
PDF Version                     : 1.2
Linearized                      : Yes
Create Date                     : 2001:05:03 07:49:45
Producer                        : Acrobat Distiller 4.0 for Windows
Modify Date                     : 2001:05:03 07:49:46-04:00
Page Count                      : 1
EXIF Metadata provided by EXIF.tools
FCC ID Filing: HZB-U58-45

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