
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Shenzhen Feiyufei Digital Technology Co., Ltd 2.911 (d)(5)(i) Equipment Type Attestation v1.2 Section 2.911(d)(5)(i) Certification – EquipmentType Company name: Shenzhen Feiyufei Digital Technology Co., Ltd Address: 3A18, Bldg. A2, Fuhai Technology Industrial Park Fuyong Community, Baoan, Shenzhen, Guangdong, China. Product Name: Tablet FCCID: 2BCOA-NETX Model(s): Net X 2.911(d)(5)(i) EquipmentType We, [Shenzhen Feiyufei Digital Technology Co., Ltd] (“the applicant”) certify that the equipment for which authorization is sought through certification is not: Prohibited from receiving an equipment authorization pursuant to § 2.903; of the FCC rules. Identified as an equipment type in the “Covered List” NOTE 1 Yours sincerely, Name: Brayan Felipe Vargas Gonzalez Date: 2023/09/21 Title and Company name: CEO / Shenzhen Feiyufei Digital Technology Co., Ltd NOTE 1 “Covered List”; is the List of Equipment and Services Covered By Section 2 of The Secure Networks Act, available at https://www.fcc.gov/supplychain/coveredlist References; 1) 986446 D01 Covered Equipment v01 https://apps.fcc.gov/oetcf/kdb/forms/FTSSearchResultPage.cfm?switch=P&id=325672 2) Federal Register document 2022-28263 published on 02/06/23 https://www.federalregister.gov/documents/2023/02/06/2022-28263/protecting-against-national-security-threats-to-the-com munications-supply-chain-through-the
Shenzhen Feiyufei Digital Technology Co., Ltd 2.911 (d)(5)(ii) Applicant Attestation v1.2 Section 2.911(d)(5)(ii) Certification – Applicant (Covered List ) Company name: Shenzhen Feiyufei Digital Technology Co., Ltd Address: 3A18, Bldg. A2, Fuhai Technology Industrial Park Fuyong Community, Baoan, Shenzhen, Guangdong, China. Product Name: Tablet FCCID: 2BCOA-NETX Model(s): Net X 2.911(d)(5)(ii) Applicant filing We, [Shenzhen Feiyufei Digital Technology Co., Ltd] (“the applicant”) certify that, as of the date of the filing of the application, the applicant is not identified NOTE 1 on the “Covered List” NOTE 2 ,established pursuant to §1.50002 of this chapter,as an entity producing coveredcommunications equipment. Yours sincerely, Name: Brayan Felipe Vargas Gonzalez Date: 2023/09/21 Title and Company name: CEO/ Shenzhen Feiyufei Digital Technology Co., Ltd Delete option not applicable to this application. NOTE 2 “Covered List”; is the List of Equipment and Services Covered By Section 2 of The Secure Networks Act, available at https://www.fcc.gov/supplychain/coveredlist References; 1) 986446 D01 Covered Equipment v01 https://apps.fcc.gov/oetcf/kdb/forms/FTSSearchResultPage.cfm?switch=P&id=325672 2) Federal Register document 2022-28263 published on 02/06/23 https://www.federalregister.gov/documents/2023/02/06/2022-28263/protecting-against-national-security-threats-to-the-com munications-supply-chain-through-the
Shenzhen Feiyufei Digital Technology Co., Ltd 2023.09.21 Eurofins Electrical and Electronic Testing NA, Inc. 914 W. Patapsco Avenue Baltimore, MD 21230 USA RE: CONFIDENTIALITY REQUEST FOR Product Name: Tablet FCCID: 2BCOA-NETX Model(s): Net X To Whom It May Concern: This letter serves as an official request for confidentiality under sections 0.457 and 0.459 of CFR 47. We have requested that the - Block Diagram - Schematics - Operational Description - Part list - Tune UP Required to be submitted with this application be permanently withheld from public review. The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these materials may be harmful to the applicant and provide unjustified benefits to its competitors. Please contact me if there is any information you may need. Sincerely, Client’s signature: Client’s name / title : Brayan Felipe Vargas Gonzalez / CEO Contact information / address: Shenzhen Feiyufei Digital Technology Co., Ltd/3A18, Bldg. A2, Fuhai Technology Industrial Park Fuyong Community, Baoan, Shenzhen, Guangdong, China.
Shenzhen Feiyufei Digital Technology Co., Ltd 2023/09/21 Eurofins Electrical and Electronic Testing NA, Inc. 914 W. Patapsco Avenue Baltimore, MD 21230 USA RE: LETTER OF AGENT AUTHORIZATION Product Name: Tablet FCCID: 2BCOA-NETX Model(s): Net X To Whom It May Concern: We, the undersigned, hereby authorize Shenzhen BCTC Testing Co., Ltd to act on our behalf in all matters relating to application for equipment authorization, including the signing of all documents relating to these matters. We also hereby certify that no party to the application authorized hereunder is subject to the denial of benefits, including FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C.853(a). This agreement expires one year from the current date. Sincerely, Client’s signature: Client’s name / title : Brayan Felipe Vargas Gonzalez / CEO Contact information / address: Shenzhen Feiyufei Digital Technology Co., Ltd/3A18, Bldg. A2, Fuhai Technology Industrial Park Fuyong Community, Baoan, Shenzhen, Guangdong, China.
EUT EXTERNAL PHOTOGRAPHS EUT Photo 1 EUT Photo 2 EUT Photo 3 EUT Photo 4 EUT Photo 5 EUT Photo 6 ----------------The end----------------
Length * width:50MM*30MM This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) This device must accept any interference received, including interference that may cause undesired operation. FCC ID: 2BCOA-NETX Product Name: Trademark: Model/Type Reference: Tablet Krono Net X
EUT INTERNAL PHOTOGRAPHS EUT Housing and Board View 1 EUT Housing and Board View 2 EUT Housing and Board View 3 EUT Housing and Board View 4 EUT Housing and Board View 5 EUT Housing and Board View 6 EUT Housing and Board View 7 EUT Housing and Board View 8 GSM/WCDMA/L TE Ant. EUT Housing and Board View 9 EUT Housing and Board View 10 ----------------The end---------------- WIFI/BT Antenna LTE RX.Ant
No.:BCTC/RF-EMC-005 Page 1 of 160 Edition:B.0 TEST REPORT Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC2308011528-5E Applicant: Shenzhen Great Asia Electronic Co., Ltd. Product Name: Tablet Model/Type reference: Net X Tested Date: 2023-09-12 to 2023-09-15 Issued Date: 2023-09-26 Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 2 of 160 Edition:B.0 FCC ID: 2BCTC-NETX The test report is effective only with both signature and specialized stamp. This result(s) shown in this report refer only to the sample(s) tested. Without written approval of Shenzhen BCTC Testing Co., Ltd, this report can’t be reproduced except in full. The tested sample(s) and the sample information are provided by the client. Product Name: Tablet Trademark: Krono Model/Type Ref.: Net X Applicant: Shenzhen Great Asia Electronic Co., Ltd. Address: Floor 5, Building B, Ruixiangfa Science Park, No. 3, Shangxue Science Park, Bantian, Shenzhen, Guangdong, China Manufacturer: Shenzhen Great Asia Electronic Co., Ltd. Address: Floor 5, Building B, Ruixiangfa Science Park, No. 3, Shangxue Science Park, Bantian, Shenzhen, Guangdong, China Prepared By: Shenzhen BCTC Testing Co., Ltd. Address: 1-2/F., Building B, Pengzhou Industrial Park, No.158, Fuyuan 1st Road, Zhanche ng , Fuhai Subdistrict, Bao'an District, Shenzhen, Guangdong, China Sample Received Date: 2023-09-12 Sample tested Date: 2023-09-12 to 2023-09-15 Issue Date: 2023-09-26 SAR Max. Values is: 0.617 W/kg (1g) for Body 0.959 W/kg (1g) for Hotspot Test Standards: IEEE Std C95.1, 2019/ IEEE Std 1528™-2013/FCC Part 2.1093 Test Results: PASS Remark: This is SAR test report Tested by: Approved by: Min Zhi Cheng/ Project Handler Zero Zhou/Reviewer Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 3 of 160 Edition:B.0 Table Of Content Test Report Declaration Page 1. Version .................................................................................................................. 5 2. Test Standards ...................................................................................................... 6 3. Test Summary ....................................................................................................... 7 4. SAR Limits............................................................................................................. 8 5. Measurement Uncertainty ..................................................................................... 9 6. Product Information and Test Setup .................................................................... 10 6.1 Product Information ............................................................................................... 10 6.2 Test Setup Configuration ....................................................................................... 12 6.3 Support Equipment ................................................................................................ 12 6.4 Test Environment .................................................................................................. 12 7. Test Facility and Test Instrument Used ............................................................... 13 7.1 Test Facility ........................................................................................................... 13 7.2 Test Instrument Used ............................................................................................ 13 8. Specific Absorption Rate (SAR) .......................................................................... 15 8.1 Introduction ............................................................................................................ 15 8.2 SAR Definition ....................................................................................................... 15 9. SAR Measurement System ................................................................................. 16 9.1 The Measurement System ..................................................................................... 16 9.2 Probe ..................................................................................................................... 16 9.3 Probe Calibration Process ..................................................................................... 18 9.4 Phantom ................................................................................................................ 19 9.5 Device Holder ........................................................................................................ 19 10. Tissue Simulating Liquids .................................................................................... 20 10.1 Composition of Tissue Simulating Liquid ............................................................. 20 10.2 Limit ..................................................................................................................... 21 10.3 Tissue Calibration Result ..................................................................................... 22 11. System Check ..................................................................................................... 23 11.1 Purpose of System Performance Check .............................................................. 23 11.2 System Setup ...................................................................................................... 23 11.3 Validation Results ................................................................................................ 24 12. EUT Testing Position ........................................................................................... 25 12.1 Define Two Imaginary Lines on the Handset ....................................................... 25 12.2 Cheek Position .................................................................................................... 25 12.3 Tilted Position ...................................................................................................... 26 12.4 Body Position ..................................................................…
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Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 29 of 160 Edition:B.0 13.4 Volume Scan Procedures The volume scan is used for assess overlapping SAR distributions for antennas transmitting in different frequency bands. It is equivalent to an oversized zoom scan used in standalone measurements. The measurement volume will be used to enclose all the simultaneous transmitting antennas. For antennas transmitting simultaneously in different frequency bands, the volume scan is measured separately in each frequency band. In order to sum correctly to compute the 1g aggregate SAR, the EUT remain in the same test position for all measurements and all volume scan use the same spatial resolution and grid spacing (step-size is 4, 4 and 2.5 mm). When all volume scan were completed, the software can combine and subsequently superpose these measurement data to calculating the multiband SAR. 13.5 SAR Averaged Methods The local SAR inside the phantom is measured using small dipole sensing elements inside a probe body. The probe tip must not be in contact with the phantom surface in order to minimize measurements errors, but the highest local SAR will occur at the surface of the phantom. An extrapolation is using to determinate this highest local SAR values. The extrapolation is based on a fourth-order least-square polynomial fit of measured data. The local SAR value is then extrapolated from the liquid surface with a 1mm step. The measurements have to be performed over a limited time (due to the duration of the battery) so the step of measurement is high. It could vary between 5 and 8 mm. To obtain an accurate assessment of the maximum SAR averaged over 10g and 1 g requires a very fine resolution in the three dimensional scanned data array. 13.6 Power Drift Monitoring All SAR testing is under the EUT install full charged battery and transmit maximum output power. In SATIMO measurement software, the power reference measurement and power drift measurement procedures are used for monitoring the power drift of EUT during SAR test. Both these procedures measure the field at a specified reference position before and after the SAR testing. The software will calculate the field difference in dB. If the power drift more than 5%, the SAR will be retested. Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 30 of 160 Edition:B.0 14. SAR Test Result 14.1 Conducted RF Output Power According KDB 447498 D01 General RF Exposure Guidance v06 Section 4.1 2) states that “Unless it is specified differently in the published RF exposure KDB procedures, these requirements also apply to test reduction and test exclusion considerations. Time-averaged maximum conducted output power applies to SAR and, as required by § 2.1091(c), time-averaged ERP applies to MPE. When an antenna port is not available on the device to support conducted power measurement, such as FRS and certain Part 15 transmitters with built-in integral antennas, the maximum output power allowed for production units should be used to determine RF exposure test exclusion and compliance.” The Tune-up limit already includes component tolerance. KDB 447498 sec.4.1.(d) at the maximum rated output power and within the tune-up tolerance range specified for the product, but not more than 2 dB lower than the maximum tune-up tolerance limit. <GSM> General Note: 1. Per KDB 447498 D01, the maximum output power channel is used for SAR testing and for further SAR test reduction. 2. Per KDB 941225 D01, SAR test reduction for GPRS and EDGE modes is determined by the source-based time-averaged output power specified for production units, including tune-up tolerance. The data mode with highest specified time-averaged output power should be tested for SAR compliance in the applicable exposure conditions. 3. Per October 2013 TCB Workshop: When the maximum frame-averaged powers levels are within 0.25 dB of each other, test the configuration with the most number of time slots. Conducted power measurement results GSM - Burst Average Power (dBm) Band GSM850 Tune- up GSM1900 Tune- up Channel 128 190 251 512 661 810 Frequency (MHz) 824.2 836.6 848.8 1850.2 1880 1909.8 GSM 31.56 31.35 31.33 32.0 29.05 28.98 28.81 39.5 GSM - Source-Based Time-Average Power (dBm) Band GSM850 GSM1900 Channel 128 190 251 512 661 810 Frequency (MHz) 824.2 836.6 848.8 1850.2 1880 1909.8 GSM 22.56 22.35 22.33 20.05 19.98 19.81 Notes:Per KDB 941225 D01, SAR is not required for EDGE (8PSK) mode because the maximum output power and tune-up limit is ≤ 1/4dB higher than GPRS/EDGE (GMSK) or the adjusted SAR of the highest reported SAR of GPRS/EDGE (GMSK) is ≤ 1.2W/kg. Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 31 of 160 Edition:B.0 <W-CDMA> The following tests were conducted according to the test requirements outlines in 3GPP TS 34.121 specification. A summary of these settings are illustrated below: HSDPA Setup Configuration: a. The EUT was connected to Base Station E5515C referred to theSetup Configuration. b. The RF path losses were compensated into the measurements. c. A call was established between EUT and Base Station with following setting: i. Set Gain Factors (βc and βd) and parameters were set according to each ii. Specific sub-test in the following table, C10.1.4, quoted from the TS 34.121 iii. Set RMC 12.2Kbps + HSDPA mode. iv. Set Cell Power = -86 dBm v. Set HS-DSCH Configuration Type to FRC (H-set 1, QPSK) vi. Select HSDPA Uplink Parameters vii. Set Delta ACK, Delta NACK and Delta CQI = 8 viii. Set Ack-Nack Repetition Factor to 3 ix. Set CQI Feedback Cycle (k) to 4 ms x. Set CQI Repetition Factor to 2 xi. Power Ctrl Mode = All Up bits d. The transmitted maximum output power was recorded. Setup Configuration Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 32 of 160 Edition:B.0 HSUPA Setup Configuration: a. The EUT was connected to Base StationR&S CMU200 referred to the Setup Configuration. b. The RF path losses were compensated into the measurements. c. A call was established between EUT …
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Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 57 of 160 Edition:B.0 F. 3D Image 3D screen shot Hot spot position Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 58 of 160 Edition:B.0 System check at 2450 MHz A. Experimental conditions. Probe SN 26/23 EPGO420 ConvF 1.11 Area Scan surf_sam_plan.txt Zoom Scan 7x7x8,dx=5mm dy=5mm dz=4mm Phantom Validation plane Device Position Dipole Band CW2450 Channels Middle Signal CW (Crest factor: 1.0) B. Permitivity Frequency (MHz) 2450.000 Relative permitivity (real part) 39.515 Relative permitivity (imaginary part) 13.242 Conductivity (S/m) 1.746 C. SAR Surface and Volume SURFACE SAR VOLUME SAR Maximum location: X=7.00, Y=0.00 ; SAR Peak: 29.42 W/kg D. SAR 1g & 10g SAR 10g (W/Kg) 6.780 SAR 1g (W/Kg) 13.233 Variation (%) -2.350 Horizontal validation criteria: minimum distance (mm) - Vertical validation criteria: SAR ratio M2/M1 (%) - E. Z Axis Scan Z (mm) 0.00 4.00 8.00 12.00 16.00 SAR (W/Kg) 28.802 15.018 7.416 3.658 1.912 Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 59 of 160 Edition:B.0 F. 3D Image 3D screen shot Hot spot position Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 60 of 160 Edition:B.0 System check at 2600 MHz A. Experimental conditions. Probe SN 26/23 EPGO420 ConvF 1.03 Area Scan surf_sam_plan.txt Zoom Scan 7x7x8,dx=5mm dy=5mm dz=4mm Phantom Validation plane Device Position Dipole Band CW2600 Channels Middle Signal CW (Crest factor: 1.0) B. Permitivity Frequency (MHz) 2600.000 Relative permitivity (real part) 40.469 Relative permitivity (imaginary part) 13.906 Conductivity (S/m) 2.036 C. SAR Surface and Volume SURFACE SAR VOLUME SAR Maximum location: X=3.00, Y=0.00 ; SAR Peak: 31.98 W/kg D. SAR 1g & 10g SAR 10g (W/Kg) 6.399 SAR 1g (W/Kg) 13.913 Variation (%) 2.273 Horizontal validation criteria: minimum distance (mm) - Vertical validation criteria: SAR ratio M2/M1 (%) - E. Z Axis Scan Z (mm) 0.00 4.00 8.00 12.00 16.00 SAR (W/Kg) 31.172 16.108 7.982 3.835 1.964 Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 61 of 160 Edition:B.0 F. 3D Image 3D screen shot Hot spot position Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 62 of 160 Edition:B.0 15.2 SAR Test Graph Results SAR plots for the highest measured SAR in each exposure configuration, wireless mode and frequency band combination according to FCC KDB 865664 D02 Plot 1 A. Experimental conditions. Probe SN 26/23 EPGO420 ConvF 0.81 Area Scan surf_sam_plan.txt Zoom Scan 7x7x7,dx=5mm dy=5mm dz=5mm Phantom Validation plane Device Position Body Band GSM850 Channels Middle Signal Custom (Crest factor: 1.0) B. Permitivity Frequency (MHz) 836.600 Relative permitivity (real part) 40.822 Relative permitivity (imaginary part) 19.400 Conductivity (S/m) 0.865 C. SAR Surface and Volume SURFACE SAR VOLUME SAR Maximum location: X=8.00, Y=0.00 ; SAR Peak: 0.38 W/kg D. SAR 1g & 10g SAR 10g (W/Kg) 0.163 SAR 1g (W/Kg) 0.240 Variation (%) 3.830 Horizontal validation criteria: minimum distance (mm) 0.000000 Vertical validation criteria: SAR ratio M2/M1 (%) 0.000000 E. Z Axis Scan Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR (W/Kg) 0.273 0.253 0.170 0.124 0.122 Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 63 of 160 Edition:B.0 F. 3D Image 3D screen shot Hot spot position Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 64 of 160 Edition:B.0 Plot 2 A. Experimental conditions. Probe SN 26/23 EPGO420 ConvF 1.04 Area Scan surf_sam_plan.txt Zoom Scan 7x7x7,dx=5mm dy=5mm dz=5mm Phantom Validation plane Device Position Body Band GSM1900 Channels Middle Signal Custom (Crest factor: 1.0) B. Permitivity Frequency (MHz) 1880.000 Relative permitivity (real part) 40.809 Relative permitivity (imaginary part) 13.408 Conductivity (S/m) 1.361 C. SAR Surface and Volume SURFACE SAR VOLUME SAR Maximum location: X=-7.00, Y=1.00 ; SAR Peak: 0.44 W/kg D. SAR 1g & 10g SAR 10g (W/Kg) 0.157 SAR 1g (W/Kg) 0.221 Variation (%) 3.300 Horizontal validation criteria: minimum distance (mm) 0.000000 Vertical validation criteria: SAR ratio M2/M1 (%) 0.000000 E. Z Axis Scan Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR (W/Kg) 1.389 0.214 0.063 0.157 0.032 Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 65 of 160 Edition:B.0 F. 3D Image 3D screen shot Hot spot position Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 66 of 160 Edition:B.0 Plot 3 A. Experimental conditions. Probe SN 26/23 EPGO420 ConvF 1.04 Area Scan surf_sam_plan.txt Zoom Scan 7x7x7,dx=5mm dy=5mm dz=5mm Phantom Validation plane Device Position Body Band Band2_WCDMA1900 Channels Middle (9400) Signal WCDMA (Crest factor: 1.0) B. Permitivity Frequency (MHz) 1880.000 Relative permitivity (real part) 40.809 Relative permitivity (imaginary part) 13.408 Conductivity (S/m) 1.361 C. SAR Surface and Volume SURFACE SAR VOLUME SAR Maximum location: X=-5.00, Y=34.00 ; SAR Peak: 0.91 W/kg D. SAR 1g & 10g SAR 10g (W/Kg) 0.305 SAR 1g (W/Kg) 0.530 Variation (%) -1.140 Horizontal validation criteria: minimum distance (mm) 0.000000 Vertical validation criteria: SAR ratio M2/M1 (%) 0.000000 E. Z Axis Scan Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR (W/Kg) 1.344 0.576 0.294 0.222 0.127 Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 67 of 160 Edition:B.0 F. 3D Image 3D screen shot Hot spot position Report No:BCTC2308011528-5E No.:BCTC/RF-EMC-005 Page 68 of 160 Edition:B.0 Plot 4 A. Experimental conditions. Probe SN 26/23 EPGO420 ConvF 0.81 Area Scan surf_sam_plan.txt Zoom Scan 7x7x7,dx=5mm dy=5mm dz=5mm Phantom Validation plane Device Position Body Band Band5_WCDMA850 Channels Middle (4182) Signal WCDMA (Crest factor: 1.0) B. Permitivity Frequency (MHz) 836.400 Relative permitivity (real part) 40.822 Relative permitivity (imaginary part) 20.226 Conductivity (S/m) 0.865 C. SAR Surface and Volume SURFACE SAR VOLUME SAR Maximum location: X=-5.00, Y=1.00 ; SAR Peak: 0.53 W/kg D. SAR 1g & 10g SAR 10g (W/Kg) 0.192 SAR 1g (W/Kg) 0.321 Variation (%) -1.010 Horizontal validation criteria: minimum distance (mm) 0.000000 Vertical validation criteria: SAR ratio M2/M1 …
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1-2/F., Building B, Pengzhou Industrial Park, · Bao'an District, Shenzhen, Guangdong · China
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 48.00 mW |
Tablet
Equipment Class
DTS - Digital Transmission SystemTablet
Equipment Class
DTS - Digital Transmission System
Tablet
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Tablet
Equipment Class
PCB - PCS Licensed Transmitter
Tablet
Equipment Class
PCE - PCS Licensed Transmitter held to ear