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2.2M
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3D.4.3 Aggregate power tolerance for UL MIMO
.............................................................................. 1016
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138 521-1
6.3D.4.3_1 Aggregate power tolerance for SUL with UL MIMO
.............................................................. 1018
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3D.4.3_2 Aggregate power tolerance for UL MIMO for UE supporting 4Tx
......................................... 1020
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3E Output power dynamics for V2X
........................................................................................................ 1021
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138 521-1
6.3E.1 Minimum output power for V2X
................................................................................................... 1021
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138 521-1
6.3E.1.0 Minimum conformance requirements
...................................................................................... 1021
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138 521-1
6.3E.1.1 Minimum output power for V2X / non-concurrent operation
.................................................. 1021
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138 521-1
6.3E.1.1D Minimum output power for V2X / non-concurrent operation / SL-MIMO
.............................. 1023
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138 521-1
6.3E.1.2 Minimum output power for V2X concurrent operation
........................................................... 1026
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138 521-1
6.3E.2 Transmit OFF power for V2X
....................................................................................................... 1026
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138 521-1
6.3E.2.0 Minimum conformance requirements
...................................................................................... 1026
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3E.2.1 Transmit OFF power for V2X / non-concurrent operation
...................................................... 1026
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3E.2.1D Transmit OFF power for V2X / non-concurrent operation / SL-MIMO
.................................. 1027
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3E.2.2 Transmit OFF power for V2X / concurrent operation
.............................................................. 1028
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3E.3 Transmit ON/OFF time mask for V2X
.......................................................................................... 1028
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3E.3.0 Minimum conformance requirements
...................................................................................... 1028
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3E.3.1 Transmit ON/OFF time mask for V2X / non-concurrent operation
......................................... 1030
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3E.3.1D Transmit ON/OFF time mask for V2X / non-concurrent operation / SL-MIMO
..................... 1033
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3E.3.2 Transmit ON/OFF time mask for V2X / concurrent operation
................................................ 1034
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3E.4 Power control for V2X
.................................................................................................................. 1034
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3E.4.0 Minimum conformance requirements
...................................................................................... 1034
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3E.4.1 Absolute power tolerance for V2X
.......................................................................................... 1035
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138 521-1
6.3E.4.1.1 Absolute power tolerance for V2X / non-concurrent operation
......................................... 1035
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3E.4.1.1D Absolute power tolerance for V2X / non-concurrent operation / SL-MIMO
..................... 1037
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3E.4.1.2 Absolute power tolerance for V2X / concurrent operation
................................................. 1038
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138 521-1
6.3F Output power dynamics for shared spectrum channel access
.............................................................. 1038
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138 521-1
6.3F.1 Minimum output power
................................................................................................................. 1038
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3F.2 Transmit OFF power for shared spectrum channel access
............................................................. 1040
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3F.3 Transmit ON/OFF time mask for shared spectrum channel access
............................................... 1042
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3F.3.1 General
..................................................................................................................................... 1042
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3F.3.2 General ON/OFF time mask
.................................................................................................... 1042
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3F.4 Power control for shared spectrum access
..................................................................................... 1046
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3F.4.1 General
..................................................................................................................................... 1046
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3F.4.2 Absolute power tolerance for shared spectrum access
............................................................. 1046
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3F.4.3 Relative power tolerance for shared spectrum channel access
................................................. 1049
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3F.4.4 Aggregate power tolerance for shared spectrum channel access
.............................................. 1058
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G Output power dynamics for Tx Diversity
............................................................................................ 1061
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.1 Minimum output power for Tx Diversity
...................................................................................... 1061
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.1_1 Minimum output power for Tx Diversity for UE supporting 4Tx
................................................. 1062
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.2 Transmit OFF power for Tx Diversity
........................................................................................... 1063
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.2_1 Transmit OFF power for Tx Diversity for UE supporting 4Tx
...................................................... 1064
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.3 Transmit ON/OFF time mask for Tx Diversity
............................................................................. 1065
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.3.1 General ON/OFF time mask for Tx Diversity
.......................................................................... 1065
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.3.1_1 General ON/OFF time mask for Tx Diversity for UE supporting 4Tx
.................................... 1066
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.3.2 PRACH time mask for Tx Diversity
........................................................................................ 1068
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.3.2_1 PRACH time mask for Tx Diversity for UE supporting 4Tx
................................................... 1070
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.3.3 SRS time mask for Tx Diversity
.............................................................................................. 1072
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.3.3_1 SRS time mask for Tx Diversity for UE supporting 4Tx
......................................................... 1073
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.4 Power control for Tx Diversity
...................................................................................................... 1075
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.4.1 Absolute power tolerance for Tx Diversity
.............................................................................. 1075
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.4.1_1 Absolute power tolerance for Tx Diversity for UE supporting 4Tx
......................................... 1076
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.4.2 Relative power tolerance for Tx Diversity
............................................................................... 1077
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.4.3 Aggregate power tolerance for Tx Diversity
............................................................................ 1088
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3G.4.3_1 Aggregate power tolerance for Tx Diversity for UE supporting 4Tx
....................................... 1089 3GPP TS 38.521-1 version 19.2.0 Release 19 10 ETSI TS 138 521-1 V19.2.0 (2025-11) ETSI
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3H Output power dynamics for CA with UL MIMO
................................................................................ 1090
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138 521-1
6.3H.1 Output power dynamics for intra-band UL contiguous CA with UL MIMO
................................ 1090
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138 521-1
6.3H.1.1 Minimum output power for intra-band UL contiguous CA with UL MIMO
........................... 1090
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3H.1.2 Transmit OFF power for intra-band UL contiguous CA with UL MIMO
............................... 1092
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3H.1.3 Transmit ON/OFF time mask for intra-band UL contiguous CA with UL MIMO
.................. 1093
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3H.1.4 Power control for intra-band UL contiguous CA with UL MIMO
.......................................... 1098
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3H.1.4.0 Minimum conformance requirements
................................................................................. 1098
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3H.1.4.1 Absolute power tolerance for intra-band UL contiguous CA with UL MIMO
.................. 1098
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3H.1.4.2 Relative power tolerance for intra-band UL contiguous CA with UL MIMO
.................... 1098
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3H.1.4.3 Aggregate power tolerance for intra-band UL contiguous CA with UL MIMO
................ 1099
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3H.3 Output power dynamics for inter-band UL CA with UL MIMO
................................................... 1099
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138 521-1
6.3H.3.1 Minimum output power for inter-band UL CA with UL MIMO
............................................. 1099
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3H.3.2 Transmit OFF power for inter-band UL CA with UL MIMO
.................................................. 1099
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3H.3.3 Transmit ON/OFF time mask for inter-band UL CA with UL MIMO
.................................... 1100
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3J Output power dynamics for ATG
........................................................................................................ 1100
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3J.1 Minimum output power for ATG
.................................................................................................. 1100
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138 521-1
6.3J.2 Transmit OFF power for ATG
....................................................................................................... 1103
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138 521-1
6.3J.3 Transmit ON/OFF time mask for ATG
.......................................................................................... 1105
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138 521-1
6.3J.3.0 General
..................................................................................................................................... 1105
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138 521-1
6.3J.3.1 General ON/OFF time mask for ATG
...................................................................................... 1105
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3J.3.2 Transmit power time mask for slot and short or subslot boundaries for ATG
......................... 1109
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138 521-1
6.3J.3.3 PRACH time mask for ATG
.................................................................................................... 1109
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3J.3.4 SRS time mask for ATG
.......................................................................................................... 1110
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3J.3.5 PUSCH-PUCCH and PUSCH-SRS time masks for ATG
........................................................ 1111 6.3J.3.6 Transmit power time mask for consecutive slot or long subslot transmission and short subslot transmission boundaries for ATG ............................................................................................ 1111
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3J.3.7 Transmit power time mask for consecutive short subslot transmissions boundaries for ATG
. 1111
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3J.4 Power control for ATG
.................................................................................................................. 1111
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3J.4.1 Absolute power tolerance for ATG
.......................................................................................... 1111
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3J.4.2 Relative power tolerance for ATG
........................................................................................... 1114
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3J.4.3 Aggregate power tolerance for ATG
........................................................................................ 1122
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138 521-1
6.3L
1125
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138 521-1
6.3L.1
1125
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6.3L.2
1125
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3L.3 Output power dynamics for inter-band UL CA with Tx Diversity
................................................ 1125
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3L.3.1 Minimum output power for inter-band UL CA with Tx Diversity
........................................... 1125
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3L.3.2 Transmit OFF power for inter-band UL CA with Tx Diversity
............................................... 1125
47427c363b8cb3a33a525cec081286b5
138 521-1
6.3L.3.3 Transmit ON/OFF time mask for inter-band UL CA with Tx Diversity
.................................. 1126
47427c363b8cb3a33a525cec081286b5
138 521-1
6.4 Transmit signal quality
........................................................................................................................ 1126
47427c363b8cb3a33a525cec081286b5
138 521-1
6.4.1 Frequency error
.............................................................................................................................. 1126
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138 521-1
6.4.2 Transmit modulation quality
.......................................................................................................... 1128
47427c363b8cb3a33a525cec081286b5
138 521-1
6.4.2.1 Error Vector Magnitude
........................................................................................................... 1128
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138 521-1
6.4.2.1a Error Vector Magnitude including symbols with transient period
........................................... 1135
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138 521-1
6.4.2.2 Carrier leakage
......................................................................................................................... 1139
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138 521-1
6.4.2.3 In-band emissions
.................................................................................................................... 1142
47427c363b8cb3a33a525cec081286b5
138 521-1
6.4.2.4 EVM equalizer spectrum flatness
............................................................................................ 1147
47427c363b8cb3a33a525cec081286b5
138 521-1
6.4.2.5 EVM equalizer spectrum flatness for Pi/2 BPSK
..................................................................... 1151
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138 521-1
6.4.2.6 Phase continuity requirements for DMRS bundling
................................................................ 1154