Tech-
invite
3GPP
space
IETF
space
21
22
23
24
25
26
27
28
29
31
32
33
34
35
36
37
38
4‑5x
Content for
TR 45.050
Word version: 18.0.0
1…
3…
A…
B…
E…
F…
J…
P…
R…
S…
T…
V…
VA…
X…
Y…
Z…
ZD…
ZF…
T
GSM400 system scenarios
T.0
Introduction
T.1
Frequency bands and channel arrangement
T.2
System Scenario Calculations for GSM400 systems
T.3
Worst Case Scenario Requirements
T.4
Transmitter characteristics
T.5
Receiver characteristics
T.6
Receiver performance
U
850 MHz and 1 900 MHz Mixed-Mode Scenarios
U.1
Introduction
U.2
BTS Wide Band Noise and Intra BTS Intermodulation Attenuation
U.3
BTS Blocking and AM Suppression Characteristics
...
T
GSM400 system scenarios
p. 207
T.0
Introduction
p. 207
T.1
Frequency bands and channel arrangement
p. 207
T.2
System Scenario Calculations for GSM400 systems
p. 208
T.2.1
Worst case proximity scenarios
p. 208
T.3
Worst Case Scenario Requirements
p. 210
T.3.1
Transmitter
p. 210
T.3.1.1
Modulation, Spurs and noise
p. 210
T.3.1.1.1
Co-ordinated BTS → MS
p. 210
T.3.1.1.2
Uncoordinated BTS → MS
p. 210
T.3.1.1.3
Coordinated & Uncoordinated MS → BTS
p. 210
T.3.1.1.4
Coordinated & Uncoordinated MS → MS
p. 210
T.3.1.1.5
Coordinated & Uncoordinated BTS → BTS
p. 210
T.3.1.2
Switching transients
p. 210
T.3.1.2.1
Uncoordinated MS → BTS
p. 210
T.3.1.2.2
Uncoordinated BTS → MS
p. 210
T.3.1.3
Intermodulation
p. 211
T.3.1.3.1
Coordinated BTS → MS
p. 211
T.3.1.3.2
Uncoordinated BTS → MS
p. 211
T.3.1.3.3
Uncoordinated MSs → BTS
p. 211
T.3.1.3.4
Uncoordinated MS & MS → MS
p. 211
T.3.2
Receiver
p. 211
T.3.2.1
Blocking
p. 211
T.3.2.1.1
Coordinated & Uncoordinated BTS → MS
p. 211
T.3.2.1.2
Coordinated MS → BTS
p. 211
T.3.2.1.3
Uncoordinated MS → BTS
p. 211
T.3.2.1.4
Coordinated & Uncoordinated MS → MS
p. 211
T.3.2.1.5
Coordinated & Uncoordinated BTS → BTS
p. 211
T.3.2.2
Intermodulation
p. 211
T.3.2.2.1
Coordinated & Uncoordinated BTS → MS
p. 211
T.3.2.2.2
Coordinated MS → BTS
p. 211
T.3.2.2.3
Uncoordinated MS → BTS
p. 212
T.3.2.3
Maximum level
p. 212
T.3.2.3.1
Coordinated MS → BTS
p. 212
T.3.2.3.2
Coordinated BTS → MS
p. 212
T.4
Transmitter characteristics
p. 212
T.4.1
Output power
p. 212
T.4.1.1
Mobile Station
p. 212
T.4.1.2
Base Station
p. 212
T.4.2
Output RF Spectrum
p. 212
T.4.2.1
Spectrum due to the modulation and wideband noise
p. 212
T.4.2.2
Spectrum due to switching transients
p. 213
T.4.3
Spurious emissions
p. 213
T.4.3.1
Principle of the specification
p. 213
T.4.3.2
Base transceiver station
p. 214
T.4.3.3
Mobile station
p. 214
T.4.4
Radio frequency tolerance
p. 214
T.4.5
Output level dynamic operation
p. 214
T.4.5.1
Base station
p. 214
T.4.5.2
Mobile station
p. 214
T.4.6
Phase accuracy
p. 215
T.4.7
Intermodulation attenuation
p. 215
T.5
Receiver characteristics
p. 215
T.5.1
Blocking characteristics
p. 215
T.5.2
AM suppression characteristics
p. 217
T.5.3
Intermodulation Characteristics
p. 218
T.5.4
Spurious emissions
p. 218
T.6
Receiver performance
p. 218
U
850 MHz and 1 900 MHz Mixed-Mode Scenarios
p. 219
U.1
Introduction
p. 219
U.2
BTS Wide Band Noise and Intra BTS Intermodulation Attenuation
p. 219
U.2.1
Overview
p. 219
U.2.1.1
TIA/EIA-136
p. 219
U.2.1.2
ETSI GSM
p. 220
U.2.2
Scenario - Mixed-Mode Multi-Carrier BTS in FCC Regulated Environment
p. 220
U.2.3
BTS Wide Band Noise and Intra BTS Intermodulation Attenuation Analysis
p. 221
U.3
BTS Blocking and AM Suppression Characteristics
p. 223
U.3.1
Overview
p. 223
U.3.1.1
TIA/EIA-136
p. 223
U.3.1.2
ETSI GSM
p. 223
U.3.2
Scenario - Mixed-Mode Multiple MS and BTS, Uncoordinated Close Proximity
p. 223
U.3.3
Blocking Analysis
p. 224
U.3.3.1
Definition
p. 224
U.3.3.2
Calculation
p. 224
U.3.4
AM Suppression Analysis
p. 225