24. FCC MPE

FCC ID: TE7M4RV2

RF Exposure Info

Download: PDF
FCCID_4471851

 PV


3 L L                                                              Report No.: BTL—FCCP—3—1907C001




               FCC RF EXPOSURE REPORT

                               FCC ID: TEZMA4RV2
   Project No.          :   1907C001
   Equipment            :   AC1200 Whole Home Mesh Wi—Fi System
   Brand Name           :   tp—link
   Test Model           :   Deco M4R
   Series Model         :   N/A
   Applicant            :   TP—Link Technologies Co., Ltd.
   Address              :   Building 24(floors1,3,4,5) and 28(floors1—4) Central Science and
                            Technology Park, Shennan Rd, Nanshan, Shenzhen, China
   Manufacturer         :   TP—Link Technologies Co., Ltd.
   Address              :   Building 24(floors1,3,4,5) and 28(floors1—4) Central Science and
                            Technology Park, Shennan Rd, Nanshan, Shenzhen, China
   Date of Receipt      :   Jul. 01, 2019
   Date of Test         :   Jul. 01, 2019 ~Aug. 02, 2019
   Issued Date          :   Sep. 19, 2019
   Report Version       :   ROO
   Test Sample          :    Engineering Sample No.: DG19070151
   Standard(s)          :   FCC Guidelines for Human Exposure IEEE C95.1
                            FCC Title 47 Part 2.1091, OET Bulletin 65 Supplement C

  The above equipment has been tested and found compliance with the requirement of the
  relative standards by BTL Inc.




       CAoy . Cns
       Prepared by : Chay Cai



       Approved by : Ethan Ma                             Z NS         [ACCREDITED)

                                                              Certificate #5123.02

  Add: No.3, Jinshagang 1st Road, Shixia, Dalang Town,Dongguan, Guangdong, China.
  Tel: +86—769—8318—3000
  Web: www.newbtl.com




                                            Page 1 of 5


                                              Report No.: BTL-FCCP-3-1907C001


                 REPORT ISSUED HISTORY

Report Version                Description                    Issued Date
     R00                     Original Issue                 Sep. 19, 2019




                        Page 2 of 5


     PV


3 L L                                                                        Report No.: BTL—FCCP—3—1907C001


 1. MPE CALCULATION METHOD

              Calculation Method of RF Safety Distance:

              $   . 16_ERP
                   im   4n‘

             where:
             S = power density
             P = power input to the antenna
             G = power gain of the antenna in the direction of interest relative to an isotropic radiator
             R = distance to the center of radiation of the antenna


Antenna Specification:
For 2.4GHz:
Ant.                 Brand          Model Name           Antenna Type           Connector         Gain (dBi)
     1                                   N/A               Monopole                 N/A              1.48
     2                                   N/A               Monopole                 N/A              1.49
Note:
This EUT supports CDD, and antenna gains are not equal, so Directional gain=
10log{(10°"+10°"%...10°~"%}°/NJdBi, that is Directional gain=10log[(10‘**"°+10‘**"%*/2]dBi =4.50.

For 5GHz:

Ant.               Brand         Model Name        Antenna Type       Connector      Gain (dBi)       Note

     1       TCP—LINK]               N/A             Monopole            N/A              0.92       UNI—1
     2       P—LINK                  N/A             Monopole            N/A              0.85       UNII—1
  1          TCP—LINK]               N/A             Monopole            N/A              0.96       UNII—3
  2          TCP—LINK]               N/A             Monopole            N/A              0.96       UNII—3
Note:
This EUT supports CDD, and antenna gains are not equal for UNII—1, all antennas have the same
gain for UNII—3, so
(1) For Non Beamforming Function:
For UNII—1:
Directional gain =10log[(10°""+10°"% ...10°‘"°%}*/NJdBi, that is Directional gain=
10log[(10%°"%+10°*""%"/2]dBi =3.90.
For UNII—3:
a)       power spectral density measurements, Nany = 2, Nss = 1.
         So Directional gain = Ganrt + Array Gain =10 log (Nant/ Nss) dB =0.96+1010g(2/1)dBi=3.97.
b) Power measurements, Array Gain = 0 dB (Nayz < 4), so the Directional gain=0.96.
(2) For With Beamforming Function:
Beamforming Gain: 3 dB. So UNII—1Directional gain=0.92+3=3.92, UNII—3
Directional gain=0.96+3=3.96.




                                                    Page 3 of 5


                                                               Report No.: BTL-FCCP-3-1907C001



2. TEST RESULTS

For 2.4GHz:
 Directional   Directional Max. Average Max. Average   Power     Limit of Power
                                                                                      Test
     Gain         Gain     Output Power Output Power Density (S)   Density (S)
                                                              2                      Result
     (dBi)     (numeric)      (dBm)        (mW)      (mW/cm )      (mW/cm2)
    4.50        2.8184       27.10       512.8614       0.28771          1          Complies



For 5GHz UNII-1 Non Beamforming:
 Directional Directional Max. Output    Max. Output      Power     Limit of Power
                                                                                      Test
     Gain       Gain       Power          Power        Density (S)   Density (S)
                                                                2                    Result
     (dBi)   (numeric)     (dBm)          (mW)         (mW/cm )      (mW/cm2)
    3.90        2.4547       28.01       632.4119       0.30899          1          Complies


For 5GHz UNII-3 Non Beamforming:
 Directional Directional Max. Output    Max. Output      Power     Limit of Power
                                                                                      Test
     Gain       Gain       Power          Power        Density (S)   Density (S)
                                                                                     Result
     (dBi)   (numeric)     (dBm)          (mW)         (mW/cm2)      (mW/cm2)
    0.96        1.2474       28.72       744.7320       0.18491          1          Complies


For 5GHz UNII-1 With Beamforming:
 Directional Directional Max. Output    Max. Output      Power     Limit of Power
                                                                                      Test
     Gain       Gain       Power          Power        Density (S)   Density (S)
                                                                                     Result
     (dBi)   (numeric)     (dBm)          (mW)         (mW/cm2)      (mW/cm2)
    3.92        2.4660       28.01       632.4119       0.31042          1          Complies


For 5GHz UNII-3 With Beamforming:
 Directional Directional Max. Output    Max. Output      Power     Limit of Power
                                                                                      Test
     Gain       Gain       Power          Power        Density (S)   Density (S)
                                                                                     Result
     (dBi)   (numeric)     (dBm)          (mW)         (mW/cm2)      (mW/cm2)
    3.96        2.4889       28.60       724.4360       0.35888          1          Complies




                                         Page 4 of 5


                                                                 Report No.: BTL-FCCP-3-1907C001


For the max simultaneous transmission MPE:

   Power Density (S) Power Density (S)                      Limit of Power
      (mW/cm2)          (mW/cm2)                 Total        Density (S)     Test Result
       2.4GHz             5GHz                                (mW/cm2)
        0.28771           0.35888            0.64659              1            Complies

Note: The calculated distance is 20 cm.
     Output power including tune up tolerance.




                                       End of Test Report
                                            Page 5 of 5



Document Created: 2019-10-09 06:08:03
Document Modified: 2019-10-09 06:08:03

© 2024 FCC.report
This site is not affiliated with or endorsed by the FCC