RTACHQ00 Verizon Mesh Router RF Exposure Info RF Exposure ASUSTeK Computer Inc

ASUSTeK Computer Inc Verizon Mesh Router

FCC ID Filing: MSQ-RTACHQ00
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Report No. 17A0318R-RF-US-Exp
RF Exposure Evaluation declaration
Product Name : Verizon Mesh Router
Trade Name
: ASUS
Model No.
: VZMESHROUTER, VZMESHWAR,
VZW-AC1300
FCC ID.
: MSQ-RTACHQ00
Applicant : ASUSTeK COMPUTER INC.
Address : 4F, No. 150, Li-Te Rd., Peitou, Taipei, Taiwan
Date of Receipt
: Oct. 23, 2017
Date of Declaration : Dec. 04, 2017
Report No.
: 17A0318R-RF-US-Exp
Report Version
: V1.0
The declaration results relate only to the samples calculated.
The declaration shall not be reproduced except in full without the written approval of DEKRA Testing and
Certification Co., Ltd..
Page: 1 of 16
Report No. 17A0318R-RF-US-Exp
1.
RF Exposure Evaluation
1.1.
Limits
According to FCC 1.1310: The criteria listed in the following table shall be used to evaluate
the environment impact of human exposure to radio frequency (RF) radiation as specified in
1.1307(b)
LIMITS FOR MAXIMUM PERMISSIBLE EXPOSURE (MPE)
Frequency Range
Electric Field
Magnetic Field
Power Density
Average Time
(MHz)
Strength (V/m)
Strength (A/m)
(mW/cm2)
(Minutes)
(A) Limits for Occupational/ Control Exposures
300-1500
--
--
F/300
1500-100,000
--
--
(B) Limits for General Population/ Uncontrolled Exposures
300-1500
--
--
F/1500
1500-100,000
--
--
30
F= Frequency in MHz
Friis Formula
Friis transmission formula: Pd = (Pout*G)/(4*pi*r2)
Where
Pd = power density in mW/cm2
Pout = output power to antenna in mW
G = gain of antenna in linear scale
Pi = 3.1416
R = distance between observation point and center of the radiator in cm
Pd id the limit of MPE, 1 mW/cm2 . If we know the maximum gain of the antenna and the total
power input to the antenna, through the calculation, we will know the distance r where the MPE
limit is reached.
1.2.
Test Procedure
Software provided by client enabled the EUT to transmit and receive data at lowest, middle
and highest channel individually.
The temperature and related humidity: 18℃and 78% RH.
Page: 2 of 16
Report No. 17A0318R-RF-US-Exp
1.3.
Test Result of RF Exposure Evaluation
WiFi
Product
Verizon Mesh Router
Test Mode
Transmit_ CDD mode
Test Condition
RF Exposure Evaluation
Antenna Gain
Antenna Gain: The maximum Gain measured in fully anechoic chamber is 3.6 dBi or 2.29 in linear
scale.
Output Power into Antenna & RF Exposure Evaluation Distance:
IEEE 802.11b (ANT 0)
WLAN Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
2412
606.1335
0.27614
2437
642.7731
0.29283
11
2462
671.6383
0.30598
IEEE 802.11g (ANT 0+1)
WLAN Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
2412
237.9031
0.10838
2437
646.6814
0.29462
11
2462
198.6378
0.09050
The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission
formula is far below the limit of 1 mW/cm2.
The results are evaluated using the maximum power.
Page: 3 of 16
Report No. 17A0318R-RF-US-Exp
Product
Verizon Mesh Router
Test Mode
Transmit_ MIMO Mode
Test Condition
RF Exposure Evaluation
Antenna Gain
Antenna Gain: The maximum Gain measured in fully anechoic chamber is 3.6 dBi or 2.29 in linear
scale.
Output Power into Antenna & RF Exposure Evaluation Distance:
IEEE 802.11n (20MHz) (ANT 0+1)
WLAN Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
2412
263.2316
0.11992
2437
644.8586
0.29378
11
2462
218.8284
0.09969
IEEE 802.11n (40MHz) (ANT 0+1)
WLAN Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
2422
128.1658
0.05839
2437
315.1647
0.14358
2452
102.9572
0.04691
The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission
formula is far below the limit of 1 mW/cm2.
The results are evaluated using the maximum power.
Page: 4 of 16
Report No. 17A0318R-RF-US-Exp
Product
Verizon Mesh Router
Test Mode
Transmit_ Beamforming Mode
Test Condition
RF Exposure Evaluation
Antenna Gain
Antenna Gain: The maximum Gain measured in fully anechoic chamber is 0.76 dBi or 1.19 in linear
scale.
Output Power into Antenna & RF Exposure Evaluation Distance:
IEEE 802.11n (20MHz) (ANT 0+1)
WLAN Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
2412
176.9321
0.08061
2437
505.2013
0.23016
11
2462
59.9872
0.02733
IEEE 802.11n (40MHz) (ANT 0+1)
WLAN Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
2422
54.0064
0.02460
2437
60.6331
0.02762
2452
50.5994
0.02305
The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission
formula is far below the limit of 1 mW/cm2.
The results are evaluated using the maximum power.
Page: 5 of 16
Report No. 17A0318R-RF-US-Exp
Product
Verizon Mesh Router
Test Mode
Transmit_ CDD Mode
Test Condition
RF Exposure Evaluation
Antenna Gain
5.2G Antenna Gain: The maximum Gain measured in fully anechoic chamber is 3.6 dBi or 2.29 in
linear scale.
5.8G Antenna Gain: The maximum Gain measured in fully anechoic chamber is 3.5 dBi or 2.24 in
linear scale.
Output Power into Antenna & RF Exposure Evaluation Distance:
IEEE 802.11a (ANT 0+1)
WLAN Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
36
5180
155.5149
0.07085
40
5220
379.3422
0.17282
44
5240
376.6019
0.17157
IEEE 802.11a (ANT 0+1)
WLAN Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
149
5745
427.5773
0.19054
157
5785
352.6956
0.15717
165
5825
469.7247
0.20932
The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission
formula is far below the limit of 1 mW/cm2.
The results are evaluated using the maximum power.
Page: 6 of 16
Report No. 17A0318R-RF-US-Exp
Product
Verizon Mesh Router
Test Mode
Transmit_ MIMO Mode
Test Condition
RF Exposure Evaluation
Antenna Gain
5.2G Antenna Gain: The maximum Gain measured in fully anechoic chamber is 3.6 dBi or 2.29 in
linear scale.
5.8G Antenna Gain: The maximum Gain measured in fully anechoic chamber is 3.5 dBi or 2.24 in
linear scale.
Output Power into Antenna & RF Exposure Evaluation Distance:
IEEE 802.11n (20MHz) (ANT 0+1)
WLAN Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
36
5180
177.0799
0.08067
40
5220
373.7124
0.17026
44
5240
361.2202
0.16456
IEEE 802.11n (20MHz) (ANT 0+1)
WLAN Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
149
5745
405.4072
0.18066
157
5785
321.0289
0.14306
165
5825
435.2160
0.19395
The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission
formula is far below the limit of 1 mW/cm2.
The results are evaluated using the maximum power.
Page: 7 of 16
Report No. 17A0318R-RF-US-Exp
Product
Verizon Mesh Router
Test Mode
Transmit_ MIMO Mode
Test Condition
RF Exposure Evaluation
Antenna Gain
5.2G Antenna Gain: The maximum Gain measured in fully anechoic chamber is 3.6 dBi or 2.29 in
linear scale.
5.8G Antenna Gain: The maximum Gain measured in fully anechoic chamber is 3.5 dBi or 2.24 in
linear scale.
Output Power into Antenna & RF Exposure Evaluation Distance:
IEEE 802.11n (40MHz) (ANT 0+1)
WLAN Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
38
5190
72.6158
0.03308
46
5230
335.0028
0.15262
IEEE 802.11n (40MHz) (ANT 0+1)
WLAN Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
151
5755
374.7904
0.16702
159
5795
425.1722
0.18947
The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission
formula is far below the limit of 1 mW/cm2.
The results are evaluated using the maximum power.
Page: 8 of 16
Report No. 17A0318R-RF-US-Exp
Product
Verizon Mesh Router
Test Mode
Transmit_ MIMO Mode
Test Condition
RF Exposure Evaluation
Antenna Gain
5.2G Antenna Gain: The maximum Gain measured in fully anechoic chamber is 3.6 dBi or 2.29 in
linear scale.
5.8G Antenna Gain: The maximum Gain measured in fully anechoic chamber is 3.5 dBi or 2.24 in
linear scale.
Output Power into Antenna & RF Exposure Evaluation Distance:
IEEE 802.11ac (80MHz) (ANT 0+1)
WLAN Function
Channel
42
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
5210
80.5564
0.03670
IEEE 802.11ac (80MHz) (ANT 0+1)
WLAN Function
Channel
155
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
5775
277.0129
0.12345
The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission
formula is far below the limit of 1 mW/cm2.
The results are evaluated using the maximum power.
Page: 9 of 16
Report No. 17A0318R-RF-US-Exp
Product
Verizon Mesh Router
Test Mode
Transmit_ Beamforming Mode
Test Condition
RF Exposure Evaluation
Antenna Gain
5.2G Antenna Gain: The maximum Gain measured in fully anechoic chamber is 3.6 dBi or 2.29 in
linear scale.
5.8G Antenna Gain: The maximum Gain measured in fully anechoic chamber is 3.5 dBi or 2.24 in
linear scale.
Output Power into Antenna & RF Exposure Evaluation Distance:
IEEE 802.11n (20MHz) (ANT 0+1)
WLAN Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
36
5180
177.0799
0.08067
40
5220
373.7124
0.17026
44
5240
361.2202
0.16456
IEEE 802.11n (20MHz) (ANT 0+1)
WLAN Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
149
5745
405.4072
0.18470
157
5785
321.0289
0.14625
165
5825
435.2160
0.19828
The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission
formula is far below the limit of 1 mW/cm2.
The results are evaluated using the maximum power.
Page: 10 of 16
Report No. 17A0318R-RF-US-Exp
Product
Verizon Mesh Router
Test Mode
Transmit_ Beamforming Mode
Test Condition
RF Exposure Evaluation
Antenna Gain
5.2G Antenna Gain: The maximum Gain measured in fully anechoic chamber is 3.6 dBi or 2.29 in
linear scale.
5.8G Antenna Gain: The maximum Gain measured in fully anechoic chamber is 3.5 dBi or 2.24 in
linear scale.
Output Power into Antenna & RF Exposure Evaluation Distance:
IEEE 802.11n (40MHz) (ANT 0+1)
WLAN Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
38
5190
55.6274
0.02534
46
5230
335.0028
0.15262
IEEE 802.11n (40MHz) (ANT 0+1)
WLAN Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
151
5755
374.7904
0.17075
159
5795
425.1722
0.19370
The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission
formula is far below the limit of 1 mW/cm2.
The results are evaluated using the maximum power.
Page: 11 of 16
Report No. 17A0318R-RF-US-Exp
Product
Verizon Mesh Router
Test Mode
Transmit_ Beamforming Mode
Test Condition
RF Exposure Evaluation
Antenna Gain
5.2G Antenna Gain: The maximum Gain measured in fully anechoic chamber is 3.6 dBi or 2.29 in
linear scale.
5.8G Antenna Gain: The maximum Gain measured in fully anechoic chamber is 3.5 dBi or 2.24 in
linear scale.
Output Power into Antenna & RF Exposure Evaluation Distance:
IEEE 802.11ac (80MHz) (ANT 0+1)
WLAN Function
Channel
42
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
5210
44.7404
0.02038
IEEE 802.11ac (80MHz) (ANT 0+1)
WLAN Function
Channel
155
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
5775
282.7483
0.12881
The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission
formula is far below the limit of 1 mW/cm2.
The results are evaluated using the maximum power.
Page: 12 of 16
Report No. 17A0318R-RF-US-Exp
Product
Verizon Mesh Router
Test Mode
Transmit
Test Condition
RF Exposure Evaluation
Power Density (2.4GHz) Power Density (5GHz)
(mW/cm2)
(mW/cm2)
0.30598
0.20932
Page: 13 of 16
Total Power Density
(2.4GHz+5GHz)
(mW/cm2)
Limit
(mW/cm2)
0.5153
Report No. 17A0318R-RF-US-Exp
BT 2.0
Product
Verizon Mesh Router
Test Mode
Transmit mode
Test Condition
RF Exposure Evaluation
Antenna Gain
Antenna Gain: The maximum Gain measured in fully anechoic chamber is 2.5dBi or 1.78 in linear
scale.
Output Power into Antenna & RF Exposure Evaluation Distance:
GFSK
Bluetooth Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
00
2402
7.1614
0.00254
39
2441
9.1411
0.00324
78
2480
10.7152
0.00379
π/4 DQPSK
Bluetooth Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
00
2402
12.6183
0.00447
39
2441
16.1065
0.00570
78
2480
16.1436
0.00572
The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission
formula is far below the limit of 1 mW/cm2.
Page: 14 of 16
Report No. 17A0318R-RF-US-Exp
Product
Verizon Mesh Router
Test Mode
Transmit mode
Test Condition
RF Exposure Evaluation
Antenna Gain
Antenna Gain: The maximum Gain measured in fully anechoic chamber is 2.5dBi or 1.78 in linear
scale.
Output Power into Antenna & RF Exposure Evaluation Distance:
8DQPSK
Bluetooth Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
00
2402
14.2889
0.00506
39
2441
17.7828
0.00630
78
2480
20.3704
0.00721
The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission
formula is far below the limit of 1 mW/cm2.
Page: 15 of 16
Report No. 17A0318R-RF-US-Exp
BT 4.0
Product
Verizon Mesh Router
Test Mode
Transmit mode
Test Condition
RF Exposure Evaluation
Antenna Gain
Antenna Gain: The maximum Gain measured in fully anechoic chamber is 2.5dBi or 1.78 in linear
scale.
Output Power into Antenna & RF Exposure Evaluation Distance:
GFSK
Bluetooth Function
Channel
Channel Frequency
Output Power to Antenna Power Density at R = 20 cm
(MHz)
(mW)
(mW/cm2)
00
2402
1.1376
0.00040
19
2440
1.8793
0.00067
39
2480
2.6669
0.00094
The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission
formula is far below the limit of 1 mW/cm2.
Page: 16 of 16
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Document ID3712361
Application IDKfFvH7WedrzT9i8VtwXBOQ==
Document DescriptionRF Exposure
Short Term ConfidentialNo
Permanent ConfidentialNo
SupercedeNo
Document TypeRF Exposure Info
Display FormatAdobe Acrobat PDF - pdf
Filesize12.25kB (153068 bits)
Date Submitted2018-01-12 00:00:00
Date Available2018-01-12 00:00:00
Creation Date2017-12-18 14:12:35
Producing SoftwareAcrobat Distiller 9.0.0 (Windows)
Document Lastmod2017-12-18 14:12:35
Document TitleRF Exposure
Document CreatorPScript5.dll Version 5.2.2
Document Author: A316373

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