Schematics
Table Of Contents
SAR REFERENCE DIPOLE CALIBRATION REPORT
Ref: ACR.262.11.20.MVGB.A
900
149.0 ±1 %.
83.3 ±1 %.
3.6 ±1 %.
1450
89.1 ±1 %.
51.7 ±1 %.
3.6 ±1 %.
1500
80.5 ±1 %.
50.0 ±1 %.
3.6 ±1 %.
1640
79.0 ±1 %.
45.7 ±1 %.
3.6 ±1 %.
1750
75.2 ±1 %.
42.9 ±1 %.
3.6 ±1 %.
1800
72.0 ±1 %.
41.7 ±1 %.
3.6 ±1 %.
1900
68.0 ±1 %.
39.5 ±1 %.
3.6 ±1 %.
1950
66.3 ±1 %.
38.5 ±1 %.
3.6 ±1 %.
2000
64.5 ±1 %.
37.5 ±1 %.
3.6 ±1 %.
2100
61.0 ±1 %.
35.7 ±1 %.
3.6 ±1 %.
2300
55.5 ±1 %.
32.6 ±1 %.
3.6 ±1 %.
2450
51.5 ±1 %.
30.4 ±1 %.
3.6 ±1 %.
2600
48.5 ±1 %.
PASS
28.8 ±1 %.
PASS
3.6 ±1 %.
PASS
3000
41.5 ±1 %.
25.0 ±1 %.
3.6 ±1 %.
3500
37.0±1 %.
26.4 ±1 %.
3.6 ±1 %.
3700
34.7±1 %.
26.4 ±1 %.
3.6 ±1 %.
7 VALIDATION MEASUREMENT
The IEEE Std. 1528, OET 65 Bulletin C and CEI/IEC 62209 standards state that the system
validation measurements must be performed using a reference dipole meeting the fore mentioned
return loss and mechanical dimension requirements. The validation measurement must be performed
against a liquid filled flat phantom, with the phantom constructed as outlined in the fore mentioned
standards. Per the standards, the dipole shall be positioned below the bottom of the phantom, with
the dipole length centered and parallel to the longest dimension of the flat phantom, with the top
surface of the dipole at the described distance from the bottom surface of the phantom.
7.1 HEAD LIQUID MEASUREMENT
Frequency
MHz
Relative permittivity (
r
’)
Conductivity (σ) S/m
required
measured
required
measured
750
41.9 ±5 %
0.89 ±5 %
835
41.5 ±5 %
0.90 ±5 %
900
41.5 ±5 %
0.97 ±5 %
1450
40.5 ±5 %
1.20 ±5 %
1500
40.4 ±5 %
1.23 ±5 %
1640
40.2 ±5 %
1.31 ±5 %
1750
40.1 ±5 %
1.37 ±5 %
1800
40.0 ±5 %
1.40 ±5 %
1900
40.0 ±5 %
1.40 ±5 %
1950
40.0 ±5 %
1.40 ±5 %
2000
40.0 ±5 %
1.40 ±5 %
Page: 7/11
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Template_ACR.DDD.N.YY.MVGB.ISSUE_COMOSAR Dipole vH