No. I16Z42454-SRD04 Page48 of 90
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1 Page48 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch1, Center Frequency) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch1, 30 MHz-1 GHz)
2 Page49 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch1, 1 GHz-2.5 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch1, 2.5 GHz-7.5 GHz)
3 Page50 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch1, 7.5 GHz-10 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch1, 10 GHz-15 GHz)
4 Page51 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch1, 15 GHz-20 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch1, 20 GHz-26 GHz)
5 Page52 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch6, Center Frequency) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch6, 30 MHz-1 GHz)
6 Page53 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch6, 1 GHz-2.5 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch6, 2.5 GHz-7.5 GHz)
7 Page54 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch6, 7.5 GHz-10 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch6, 10 GHz-15 GHz)
8 Page55 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch6, 15 GHz-20 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch6, 20 GHz-26 GHz)
9 Page56 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch11, Center Frequency) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch11, 30 MHz-1 GHz)
10 Page57 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch11, 1 GHz-2.5 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch11, 2.5 GHz-7.5 GHz)
11 Page58 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch11, 7.5 GHz-10 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch11, 10 GHz-15 GHz)
12 Page59 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch11, 15 GHz-20 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch11, 20 GHz-26 GHz)
13 Page60 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch1, Center Frequency) Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch1, 30 MHz-1 GHz)
14 Page61 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch1, 1 GHz-2.5 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch1, 2.5 GHz-7.5 GHz)
15 Page62 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch1, 7.5 GHz-10 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch1, 10 GHz-15 GHz)
16 Page63 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch1, 15 GHz-20 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch1, 20 GHz-26 GHz)
17 Page64 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch6, Center Frequency) Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch6, 30 MHz-1 GHz)
18 Page65 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch6, 1 GHz-2.5 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch6, 2.5 GHz-7.5 GHz)
19 Page66 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch6, 7.5 GHz-10 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch6, 10 GHz-15 GHz)
20 Page67 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch6, 15 GHz-20 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch6, 20 GHz-26 GHz)
21 Page68 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch11, Center Frequency) Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch11, 30 MHz-1 GHz)
22 Page69 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch11, 1 GHz-2.5 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch11, 2.5 GHz-7.5 GHz)
23 Page70 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch11, 7.5 GHz-10 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch11, 10 GHz-15 GHz)
24 Page71 of 90 Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch11, 15 GHz-20 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11n-HT20, Ch11, 20 GHz-26 GHz)
25 Page72 of 90 A.6.2 Transmitter Spurious Emission - Radiated Method of Measurement: See ANSI C clause 6.4 &6.5 & 6.6 Measurement Limit: Standard Limit FCC 47 CFR Part , , dB below peak output power In addition, radiated emissions which fall in the restricted bands, as defined in (a), must also comply with the radiated emission limits specified in (a) (see (c)). Limit in restricted band: Frequency of emission Field strength(uv/m) Field strength (MHz) Above Frequency (MHz) Field strength(μv/m) Measurement distance (m) /F(kHz) /F(kHz) Test Condition The EUT was placed on a non-conductive table. The measurement antenna was placed at a distance of 3 meters from the EUT. During the tests, the antenna height and the EUT azimuth were varied in order to identify the maximum level of emissions from the EUT. This maximization process was repeated with the EUT positioned in each of its three orthogonal orientations. Frequency of emission RBW/VBW Sweep Time(s) (MHz) KHz/300KHz MHz/1MHz MHz/1MHz MHz/1MHz 20 EUT ID: EUT1
26 Level in dbµv/m No. I16Z42454-SRD04 Page73 of 90 Measurement s: b mode Mode Channel Frequency Range Test s Conclusion 6 9 khz ~30 MHz Fig.A P b Power 2.38GHz ~2.45GHz Fig.A P Power 2.45GHz ~2.5GHz Fig.A P g mode Mode Channel Frequency Range Test s Conclusion g Power 2.38GHz ~2.43GHz Fig.A P Power 2.45GHz ~2.5GHz Fig.A P n-HT20 mode Mode Channel Frequency Range Test s Conclusion n Power 2.38GHz ~2.45GHz Fig.A P (HT20) Power 2.45GHz ~2.5GHz Fig.A P Conclusion: Pass Fu ll S p e c tru m FCC P a rt 1 5 _ 9 k H z-3 0 M H z 0 9k k M 2M 3M 5M 10M 20 30M Fre q u e n c y in H z Fig.A Transmitter Spurious Emission - Radiated (802.11b, Ch6, 9kHz-30 MHz) Note: A "reference path loss" is established and the A Rpl is the attenuation of reference path loss, and including the gain of receive antenna, the gain of the preamplifier, the cable loss. is the field strength recorded from the instrument. The measurement results are obtained as described below: = +A Rpl= + Loss+ Average
27 Page74 of b Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL
28 Page75 of g Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL
29 Page76 of n-HT20 Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL
30 Page77 of n-HT40 Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL
31 Page78 of 90 Peak b Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL
32 Page79 of g Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL
33 Page80 of n-HT20 Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL
34 Page81 of n-HT40 Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Ch HORIZONTAL HORIZONTAL VERTICAL HORIZONTAL HORIZONTAL HORIZONTAL Sample calculation: n 40MHz CH9 Peak, MHz Peak ERP(dBm) = (73.1 dbuv/m) + Loss(-38.9) + (27.7) = 61.9 dbuv/m
35 Level in dbµv/m Level in dbµv/m No. I16Z42454-SRD04 Page82 of 90 Fu ll S p e c tru m FCC P A R T G H z _ P K FCC P A R T G H z _ A V G Fre q u e n c y in M H z Fig.A Transmitter Spurious Emission - Radiated (Power): b, ch1, 2.38 GHz 2.45GHz Fu ll S p e c tru m FCC P a rt G H z _ P K FCC P a rt G H z _ A V G Fre q u e n c y in M H z Fig.A Transmitter Spurious Emission - Radiated (Power): b, ch11, 2.45 GHz GHz
36 Level in dbµv/m Level in dbµv/m No. I16Z42454-SRD04 Page83 of 90 Fu ll S p e c tru m FCC P A R T G H z _ P K G H z FCC P A R T G7 H7 z d_ B Aµ V G/ m G H z d B µ V / m Fre q u e n c y in M H z Fig.A Transmitter Spurious Emission - Radiated (Power): g, ch1, 2.38 GHz GHz Fu ll S p e c tru m FCC P a rt G H z _ P K G H z d B µ V / m FCC P a rt G H z _ A V G Fre q u e n c y in M H z G H z d B µ V / m Fig.A Transmitter Spurious Emission - Radiated (Power): g, ch11, 2.45 GHz GHz
37 Level in dbµv/m Level in dbµv/m No. I16Z42454-SRD04 Page84 of 90 Fu ll S p e c tru m FCC P A R T G H z _ P K FCC P A R T G H z _ A V G Fre q u e n c y in M H z Fig.A Transmitter Spurious Emission - Radiated (Power): n-HT20, ch1, 2.38 GHz GHz Fu ll S p e c tru m FCC P a rt G H z _ P K FCC P a rt G H z _ A V G Fre q u e n c y in M H z Fig.A Transmitter Spurious Emission - Radiated (Power): n-HT20, ch11, 2.45 GHz GHz
38 Page85 of 90 A.7. AC Power-line Conducted Emission Method of Measurement: See ANSI C clause The one EUT cable configuration and arrangement and mode of operation that produced the emission with the highest amplitude relative to the limit is selected for the final measurement, while applying the appropriate modulating signal to the EUT. 2 If the EUT is relocated from an exploratory test site to a final test site, the highest emissions shall be remaximized at the final test location before final ac power-line conducted emission measurements are performed. 3 The final test on all current-carrying conductors of all of the power cords to the equipment that comprises the EUT (but not the cords associated with other non-eut equipment in the system) is then performed for the full frequency range for which the EUT is being tested for compliance without further variation of the EUT arrangement, cable positions, or EUT mode of operation. 4 If the EUT is comprised of equipment units that have their own separate ac power connections, e.g., floor-standing equipment with independent power cords for each shelf that are able to connect directly to the ac power network, each current-carrying conductor of one unit is measured while the other units are connected to a second (or more) LISN(s). All units shall be separately measured. If a power strip is provided by the manufacturer, to supply all of the units making up the EUT, only the conductors in the power cord of the power strip shall be measured. 5 If the EUT uses a detachable antenna, these measurements shall be made with a suitable dummy load connected to the antenna output terminals; otherwise, the tests shall be made with the antenna connected and, if adjustable, fully extended. When measuring the ac conducted emissions from a device that operates between 150 khz and 30 MHz a non-detachable antenna may be replaced with a dummy load for the measurements within the fundamental emission band of the transmitter, but only for those measurements.36 Record the six highest EUT emissions relative to the limit of each of the current-carrying conductors of the power cords of the equipment that comprises the EUT over the frequency range specified by the procuring or regulatory agency. Diagram or photograph the test setup that was used. See Clause 8 for full reporting requirements. Test Condition: Voltage(V) Frequency(Hz)
39 Level in dbµv No. I16Z42454-SRD04 Page86 of 90 Measurement and limit: WLAN (Quasi-peak Limit) (db V) Frequency range Quasi-peak With charger (MHz) Limit (db V) b Idle Conclusion 0.15 to to 56 Fig.A to 5 56 Fig.A.7.3 Fig.A.7.2 P 5 to Fig.A.7.4 NOTE: The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz to 0.5 MHz. WLAN (Average Limit) (db V) Frequency range Average Limit With charger (MHz) (db V) b Idle Conclusion 0.15 to to 46 Fig.A to 5 46 Fig.A.7.3 Fig.A.7.1 P 5 to Fig.A.7.4 NOTE: The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz to 0.5 MHz. Conclusion: Pass Test graphs as below: CBA0060AGHC k M 2M 3M 4M5M M 20M 30M Frequency in Hz Fig.A.7.1 AC Powerline Conducted Emission b
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