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References in periodicals archive ?
TS 34.121 Terminal Conformance Specification Function 5 Transmitter Test 5.2 Maximum Output Power Power Level 5.3 Frequency Stability Frequency 5.4 Output Power Dynamics in the Uplink 5.4.1 Open Loop Power Control in the Uplink Power Level 5.4.2 Inner Loop Power Control in the Uplink Power Level 5.4.3 Minimum Output Power Power Level 5.5 Transmit ON/OFF Power 5.5.1 Transmit OFF Power Power Level 5.8 Occupied Bandwidth Spectrum 5.9 Spectrum Emission Mask Spectrum 5.10 Adjacent Channel Leakage Power Ratio Spectrum 5.13 Transmit Modulation 5.13.1 Modulation Accuracy EVM 5.13.2 Peak Code Domain Error PCDE 6 Receiver Test 6.2 Reference Sensitivity Level BER 6.3 Maximum Input Level BER 7 Performance Requirements 7.2.1 Demodulation of Dedicated Channel BLER Table 1.
Adjacent channel leakage of a WCDMA signal is one measurement where phase noise, sensitivity and intermodulation products all affect the performance of a signal analyzer.
The resulting error vector magnitude (EVM) and adjacent channel leakage ratio (ACLR) levels predicted by simulation closely matched the measurements.
The effect of this correction method is that the MPA output power capability is increased by as much as 20 percent for the same level of adjacent channel leakage ratio (ACLR) or, alternatively, for the same output power, the ACLR is improved by approximately 3 dB.
The adjacent channel leakage ratio (ACLR) for both bias conditions is similar at the same output power, but the efficiency is higher for the class AB mode.
The standard transmitter tests which the 6413 supports are the measurement of the following: maximum output power up to [+ or -]46 dBm with a test tolerance of [+ or -]0.4 dB; the spectrum emission mask in order to check that the broadcast has the correct roll-out rate; adjacent channel leakage ratio; common pilot indication channel (CPICH) power accuracy; occupied bandwidth; peak code domain error; error vector magnitude (EVM); and frequency error.
The linearity, expressed by adjacent channel leakage ratio (ACLR), is studied and the gain and phase flatness of these products are measured.
This scenario requires more stringent performance for adjacent channel leakage of the transmitters or adjacent channel rejection of the receiver.
Adjacent channel leakage recombination, also referred to as multipath[sup.1] and dual-path[sup.2] is the interference effect caused by the presence of a common signal both in a test channel and in the adjacent channel that recombine at a common port, as shown in Figure 2.