FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

Β© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. Hot Pepper Mobile Inc./
  3. 2A33N-L60A

2A33N-L60ASmart Phone with GSM, WCDMA, LTE, Bluetooth and WiFi

Hot Pepper Mobile Inc.
Smart Phone with GSM, WCDMA, LTE, Bluetooth and WiFi - FCC ID 2A33N-L60A - Hot Pepper Mobile Inc.
Click to zoom

Application Details

Equipment Class
PCE - PCS Licensed Transmitter held to ear
Date of Grant
May 24, 2022
Application Purpose
Original Equipment
Date of Application
May 23, 2022
Equipment Note
Smart Phone with GSM, WCDMA, LTE, Bluetooth and WiFi
Frequency Range
815.50000000 - 822.50000000
Company
Hot Pepper Mobile Inc.
Country
United States

Documents & Files

Select a file to view

Users Manual

Cover Letter(s)

β†—
β†—
β†—
β†—

External Photos

β†—

ID Label/Location Info

β†—

Internal Photos

β†—

RF Exposure Info

β†—
β†—
β†—
β†—
β†—
β†—
β†—
β†—
β†—
β†—
β†—
β†—
β†—
β†—
β†—
β†—

Test Report

β†—
β†—
β†—
β†—
β†—
β†—
β†—
β†—
β†—
β†—
β†—

Test Setup Photos

β†—
β†—

Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Cover Letter(s)

Hot Pepper Mobile Inc. Date:2022/5/10 To: Federal Communications Commission, Authorization & Evaluation Division, 7435 Oakland Mills Road, Columbia, MD 21046 Re: Request of Confidentiality for FCC ID: 2A33N-L60A To Whom it may concern: Pursuant to sections 0.457 and 0.459 of Commission’s Rules(CFR 47), and Section 552(b)(4) of the Freedom of Information Act, Sonim Technologies, Inc. hereby requests confidentiality and treatment of certain information accompanying this application. The materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these matters might be harmful to the Applicant and provide unjustified benefits to its competitors. We are also hereby request Short-Term Confidentiality for 180 days after the grant as outlined in Public Notice DA04-1705. This provision will give Sonim Technologies, Inc. temporary confidentiality of commercially sensitive information prior to product release. The requested Permanent and Short-Term Confidential exhibits are listed as follows: PERMANENT AND SHOR T-TERM CONFIDENTIAL LIST Exhibit Description PERMANENT 1 Block Diagram 2 Operational Description 3 Schematics 4 BOM 5 Tune up procedure SHORT-TERM 6 External Photos 7 Internal Photos 8 Test-Setup Photos 9 User Manual The Applicant understands that pursuant to Rule 0.457, disclosure of this application and all accompanying documentations, where applicable, will not be made public before the date of the Grant for this application. Signatory: Contact name: Shawn Sun Title: CEO Tel: 619-341-9501 Email: [email protected] Company name : Hot Pepper Mobile Inc.

Cover Letter(s)

Hot Pepper Mobile Inc. Date: 2022/5/10 To: Federal Communications Commission, Authorization & Evaluation Division, 7435 Oakland Mills Road, Columbia, MD 21046 To Whom It May Concern: The Hot Pepper Mobile Inc. the undersigned, hereby authorizes Mrs. Wendy Zhan from Shenzhen Morlab Communications Technology Co., Ltd., to act on the behalf of the Hot Pepper Mobile Inc. solely in matters relating to the application for an FCC equipment authorization for FCC ID: 2A33N-L60A including the signing of documents in connection with this Application. Necessary acts carried out Shenzhen Morlab Communications Technology Co., Ltd. on our behalf of the Hot Pepper Mobile Inc. in connection with the Application shall have the same effect as acts of the Hot Pepper Mobile Inc. also hereby certify that no party to this application is subject to a denial of benefits, including FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 862. Thank you for your attention to this matter. Yours Sincerely, Signatory: Contact name: Shawn Sun Title: CEO Tel: 619-341-9501 Email: [email protected] Company name : Hot Pepper Mobile Inc.

Cover Letter(s)

UNII Declaration Letter We have declared below featured for FCC/IC equipment authorization, device FCC ID: 2A33N-L60A (1) DFS Device -- Master, Client with Radar detection capability , Client without radar detection capability, N/A (2) Active / Passive Scanning , adhoc mode access point capability Frequency Band (MHz) Active Scanning (the device can transmit a probe (beacon)) passive scanning (where the device is can listen only with no probes ) Ad Hoc Mode capability Access point capability 2412 – 2462 MHz Yes, No Yes, No Yes, No Yes, No 2422 – 2452 MHz Yes, No Yes, No Yes, No Yes, No 5745 – 5825 MHz Yes, No Yes, No Yes, No Yes, No 5755 – 5795 MHz Yes, No Yes, No Yes, No Yes, No 5180 – 5240 MHz Yes, No Yes, No Yes, No Yes, No 5190 – 5230 MHz Yes, No Yes, No Yes, No Yes, No 5260 – 5320 MHz Yes, No Yes, No Yes, No Yes, No 5270 – 5310 MHz Yes, No Yes, No Yes, No Yes, No 5500 – 5700 MHz Yes, No Yes, No Yes, No Yes, No 5510 – 5670 MHz Yes, No Yes, No Yes, No Yes, No (3) Country code selection ability - Yes , No If no, pls explain how was implemented : Country is selected as US by default and user can not change the country code. (4) Meet 15.202 requirement - Yes , No , pls check below : A master device is defined as a device operating in a mode in which it has the capability to transmit without receiving an enabling signal. In this mode it is able to select a channel and initiate a network by sending enabling signals to other devices A client device is defined as a device operating in a mode in which the transmissions of the device are under control of the master. A device in client mode is not able to initiate a network. N/A (5) For client devices that have software configuration control to operate in different modes (active scanning in some and passive scanning in others) in different bands (devices with multiple equipment classes or those that operate on non-DFS frequencies) or modular devices which configure the modes of operations through software, the application must provide software and operations description on how the software and / or hardware is implemented to ensure that proper operations modes can not be modified by end user or an installer. Apply , No Apply , (If apply , pls help to provide explanation on how it was implement (By hardware or software , and how software was controlled) The device configuration can not be modified by user as program is not exposed to user by any means. Hardware does not allow USB connection for user which is must to change the configuration. If you have any questions, please feel free to contact me at the address shown below. Yours sincerely, Signatory Contact name: Shawn Sun Title: CEO

Cover Letter(s)

D ate: 2022/5/10 Federal Communications Commission Office of Engineering and Technology Laboratory Division 7435 Oakland Mills Rd. Columbia MD 21046 Attn: Office of Engineering and Technology FCC ID: 2A33N-L60A To whom it may concern: H ot Pepper Mobile Inc. hereby declares that the MIF values detailed below are based on worst case operating modes for all air interfaces for which the HAC M-rating is provided based on the current methodology ANSI C63.19 2011withpre-determined MIF values which provided by Speag. UID Communication System Name MIF(dB) 10021 GSM-FDD(TDMA,GMSK) 3.63 10025 EDGE-FDD (TDMA, 8PSK, TN 0) 3.75 10460 UMTS-FDD(WCDMA, AMR) -25.43 10225 UMTS-FDD (HSPA+) -20.39 10169 LTE-FDD(SC-FDMA,1RB,20MHz,QPSK) -15.63 10170 LTE-FDD(SC-FDMA,1RB,20MHz,16-QAM) -9.76 10179 LTE-FDD(SC-FDMA,1RB,20MHz,64-QAM) -9.93 10181 LTE-FDD(SC-FDMA,1RB,15MHz,QPSK) -15.63 10175 LTE-FDD(SC-FDMA,1RB,10MHz,QPSK) -15.63 10177 LTE-FDD(SC-FDMA,1RB,5MHz,QPSK) -15.63 10184 LTE-FDD(SC-FDMA,1RB,3MHz,QPSK) -15.62 10187 LTE-FDD(SC-FDMA,1RB,1.4MHz,QPSK) -15.62 UID Communication System Name MIF(dB) 10172 LTE-TDD (SC-FDMA, 1 RB, 20 MHz, QPSK) -1.62 10173 LTE-TDD (SC-FDMA, 1 RB, 20 MHz, 16-QAM) -1.44 10174 LTE-TDD (SC-FDMA, 1 RB, 20 MHz, 64-QAM) -1.54 10240 LTE-TDD (SC-FDMA, 1 RB, 15 MHz, QPSK) -1.62 10237 LTE-TDD (SC-FDMA, 1 RB, 10 MHz, QPSK) -1.62 10234 LTE-TDD (SC-FDMA, 1 RB, 5 MHz, QPSK) -1.62 10231 LTE-TDD (SC-FDMA, 1 RB, 3 MHz, QPSK) -1.62 10228 LTE-TDD (SC-FDMA, 1 RB, 1.4 MHz, QPSK) -1.62 10061 IEEE 802.11b WiFi 2.4 GHz (DSSS, 11 Mbps) -2.02 10077 IEEE 802.11g WiFi 2.4 GHz (DSSS/OFDM, 54 Mbps) 0.12 10427 IEEE 802.11n (HT Greeneld, 150 Mbps, 64-QAM) -13.44 10069 IEEE 802.11a/n WiFi 5 GHz (OFDM, 54 Mbps) -3.15 10616 IEEE 802.11ac WiFi (40MHz, MCS0, 90pc duty cycle) -5.57 Sincerely, Signature _________________________ Date: 2022.5.24

External Photos

FCC ID: 2A33N-L60A External Photos 1. EUT front view 2. EUT rear view 3. EUT left side view 4. EUT right side view 5. EUT top view 6. EUT bottom view 7. Accessories

ID Label/Location Info

1、 Label 2、 Label location(back view)

Internal Photos

FCC ID: 2A33N-L60A Internal Photos 1. EUT uncover view 2. Antenna view First ANT Bluetooth/Wi-Fi/GPS ANT Second ANT

RF Exposure Info

MORLAB Shenzhen Morlab Communications Technology Co., Ltd. FL1-3, Building A, FeiYang Science Park, No.8 LongChang Road, Block67, BaoAn District, ShenZhen , GuangDong Province, P. R. China Tel: 86-755-36698555 Fax: 86-755-36698525 Http://www.morlab.cn E-mail: [email protected] REPORT No.:SZ21120041S01 Annex C Plots of System Performance Check Test Laboratory: Shenzhen Morlab Communications Technology Co., Ltd. Date: 2022.03.03 System Check_750MHz Communication System: UID 0, CW (0); Frequency: 750 MHz;Duty Cycle: 1:1 Medium: HSL_750 Medium parameters used: f = 750 MHz; Οƒ = 0.902 S/m; Ξ΅ r = 40.752; ρ = 1000 kg/m 3 Ambient Temperature:23.2 Β°C; Liquid Temperature:22.2 Β°C DASY5 Configuration: - Probe: ES3DV3 - SN7608; ConvF(10.2, 10.2, 10.2) @ 750 MHz; Calibrated: 2022.01.12 - Sensor-Surface: 2mm (Mechanical Surface Detection) - Electro nics: DAE4 Sn480; Calibrated: 2021.06.22 - Phantom: SAM 2; Type: QD000P40CC; Serial: TP:1464 - Measurement SW: DASY52, Version 52.8 (8); SEMCAD X Version 14.6.14 (7483) CW 750/Area Scan (81x81x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 2.31 W/kg CW 750/Zoom Scan (5x5x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 51.98 V/m; Power Drift = -0.02 dB Peak SAR (extrapolated) = 3.12 W/kg SAR(1 g) = 2.09 W/kg; SAR(10 g) = 1.37 W/kg Smallest distance from peaks to all points 3 dB below: Larger than measurement grid Ratio of SAR at M2 to SAR at M1 = 69% Maximum value of SAR (measured) = 2.30 W/kg 0 dB = 2.30 W/kg Test Laboratory: Shenzhen Morlab Communications Technology Co., Ltd. Date: 2022.03.05 System Check_900MHz Communication System: UID 0, CW (0); Frequency: 900 MHz;Duty Cycle: 1:1 Medium: HSL_900 Medium parameters used: f = 900 MHz; Οƒ = 0.984 S/m; Ξ΅ r = 40.922; ρ = 1000 kg/m 3 Ambient Temperature:23.2 Β°C; Liquid Temperature:22.2 Β°C DASY5 Configuration: - Probe: EX3DV4 - SN7608; ConvF(9.81, 9.81, 9.81) @ 900 MHz; Calibrated: 2022.01.12 - Sensor-Surface: 2mm (Mechanical Surface Detection) - Electronics: DAE4 Sn480; Calibrated: 2021.06.22 - Phantom: SAM 2; Type: QD000P40CC; Serial: TP:1464 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7483) CW900/Area Scan (71x71x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 3.24 W/kg CW900/Zoom Scan (5x5x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 55.19 V/m; Power Drift = -0.04 dB Peak SAR (extrapolated) = 3.85 W/kg SAR(1 g) = 2.69 W/kg; SAR(10 g) = 1.84 W/kg Smallest distance from peaks to all points 3 dB below = 16 mm Ratio of SAR at M2 to SAR at M1 = 66.3% Maximum value of SAR (measured) = 3.27 W/kg 0 dB = 3.27 W/kg Test Laboratory: Shenzhen Morlab Communications Technology Co., Ltd. Date: 2022.4.08 System Check_1800MHz Communication System: UID 0, CW (0); Frequency: 1800 MHz;Duty Cycle: 1:1 Medium: HSL_1800 Medium parameters used: f = 1800 MHz; Οƒ = 1.408 S/m; Ξ΅ r = 40.05; ρ = 1000 kg/m 3 Ambient Temperature:23.2 Β°C; Liquid Temperature:22.1 Β°C DASY5 Configuration: - Probe: EX3DV4 - SN7608; ConvF(8.26, 8.26, 8.26) @ 1800 MHz; Calibrated: 2022.01.12 - Sensor-Surface: 2mm (Mechanical Surface Detection) - Electronics: DAE4 Sn480; Calibrated: 2021.06.22 - Phantom: SAM 2; Type: QD000P40CC; Serial: TP:1464 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7483) CW1800/Area Scan (81x81x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 14.5 W/kg CW1800/Zoom Scan (5x5x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 87.77 V/m; Power Drift = -0.02 dB Peak SAR (extrapolated) = 18.2 W/kg SAR(1 g) = 10.05 W/kg; SAR(10 g) = 5.19 W/kg Smallest distance from peaks to all points 3 dB below = 11.2 mm Ratio of SAR at M2 to SAR at M1 = 56.2% Maximum value of SAR (measured) = 14.5 W/kg 0 dB = 14.5 W/kg Test Laboratory: Shenzhen Morlab Communications Technology Co., Ltd. Date: 2022.04.10 System Check_2000MHz Communication System: UID 0, CW (0); Frequency: 2000 MHz;Duty Cycle: 1:1 Medium: HSL_2000 Medium parameters used: f = 2000 MHz; Οƒ = 1.43 S/m; Ξ΅ r = 40.67; ρ = 1000 kg/m 3 Ambient Temperature:23.2 Β°C; Liquid Temperature:22.1 Β°C DASY5 Configuration: - Probe: EX3DV4 - SN7608; ConvF(7.99, 7.99, 7.99) @ 2000 MHz; Calibrated: 2022.01.12 - Sensor-Surface: 4mm (Mechanical Surface Detection) - Electronics: DAE4 Sn480; Calibrated: 2021.06.22 - Phantom: SAM 2; Type: QD000P40CC; Serial: TP:1464 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7483) CW2000/Area Scan (81x81x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 11.9 W/kg CW2000/Zoom Scan (5x5x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 91.90 V/m; Power Drift = -0.07 dB Peak SAR (extrapolated) = 19.1 W/kg SAR(1 g) = 10.11 W/kg; SAR(10 g) = 5.23 W/kg Smallest distance from peaks to all points 3 dB below = 11.2 mm Ratio of SAR at M2 to SAR at M1 = 55.6% Maximum value of SAR (measured) = 11.6 W/kg 0 dB = 11.6 W/kg Test Laboratory: Shenzhen Morlab Communications Technology Co., Ltd. Date: 2022.03.18 System Check_2450MHz Communication System: UID 0, CW (0); Frequency: 2450 MHz;Duty Cycle: 1:1 Medium: HSL_2450 Medium parameters used: f = 2450 MHz; Οƒ = 1.807 S/m; Ξ΅ r = 39.514; ρ = 1000 kg/m 3 Ambient Temperature:23.2 Β°C; Liquid Temperature:22.1 Β°C DASY5 Configuration: - Probe: EX3DV4 - SN7608; ConvF(7.42, 7.42, 7.42) @ 2450 MHz; Calibrated: 2022.01.12 - Sensor-Surface: 4mm (Mechanical Surface Detection) - Electronics: DAE4 Sn480; Calibrated: 2021.06.22 - Phantom: SAM 2; Type: QD000P40CC; Serial: TP:1464 - Measurement SW: DASY52, Version 5 2.10 (4); SEMCAD X Version 14.6.14 (7483) CW2450/Area Scan (81x101x1): Interpolated grid: dx=1.200 mm, dy=1.200 mm Maximum value of SAR (interpolated) = 16.1 W/kg CW2450/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 89.48 V/m; Power Drift = 0.04 dB Peak SAR (extrapolated) = 26.8 W/kg SAR(1 g) = 12.72 W/kg; SAR(10 g) = 6…

Text truncated - open the document above for the full version.

RF Exposure Info

MORLAB Shenzhen Morlab Communications Technology Co., Ltd. FL1-3, Building A, FeiYang Science Park, No.8 LongChang Road, Block67, BaoAn District, ShenZhen , GuangDong Province, P. R. China Tel: 86-755-36698555 Fax: 86-755-36698525 Http://www.morlab.cn E-mail: [email protected] REPORT No.:SZ21120041S01 Annex D Plots of Maximum SAR Test Results Test Laboratory: Shenzhen Morlab Communications Technology Co., Ltd. Date: 2022.03.05 GSM850_GPRS(4 TX slots)_Left Cheek_Ch189 Communication System: UID 0, GSM850(class 12) (0); Frequency: 836.4 MHz;Duty Cycle: 1:2.08 Medium: HSL_900 Medium parameters used: f = 836.4 MHz; Οƒ = 0.943 S/m; Ξ΅ r = 42.978; ρ = 1000 kg/m 3 Ambient Temperature:23.2 Β°C; Liquid Temperature:22.2 Β°C DASY5 Configuration: - Probe: EX3DV4 - SN7608; ConvF(9.81, 9.81, 9.81) @ 836.4 MHz; Calibrated: 2022.01.12 - Sensor-Surface: 2mm (Mechanical Surface Detection) - Electronics: DAE4 Sn480; Calibrated: 2021.06.22 - Phantom: SAM 2; Type: QD000P40CC; Serial: TP:1464 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7483) Ch189/Area Scan (71x81x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 0.382 W/kg Ch189/Zoom Scan (5x5x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 5.991 V/m; Power Drift = -0.03 dB Peak SAR (extrapolated) = 0.405 W/kg SAR(1 g) = 0.317 W/kg; SAR(10 g) = 0.250 W/kg Smallest distance from peaks to all points 3 dB below: Larger than measurement grid Ratio of SAR at M2 to SAR at M1 = 77.7% Maximum value of SAR (measured) = 0.365 W/kg 0 dB = 0.365 W/kg Test Laboratory: Shenzhen Morlab Communications Technology Co., Ltd. Date: 2022.04.10 GSM1900_GPRS(4 TX slots)_Left Titl_Ch661 Communication System: UID 0, GSM1900(class 12) (0); Frequency: 1880 MHz;Duty Cycle: 1:2.08 Medium: HSL_2000 Medium parameters used: f = 1880 MHz; Οƒ = 1.366 S/m; Ξ΅ r = 40.167; ρ = 1000 kg/m 3 Ambient Temperature:23.2 Β°C; Liquid Temperature:22.2 Β°C DASY5 Configuration: - Probe: EX3DV4 - SN7608; ConvF(7.99, 7.99, 7.99) @ 1880 MHz; Calibrated: 2022.01.12 - Sensor-Surface: 2mm (Mechanical Surface Detection) - Electronics: DAE4 Sn480; Calibrated: 2021.06.22 - Phantom: SAM 2; Type: QD000P40CC; Serial: TP:1464 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7483) Ch661/Area Scan (71x81x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 1.13 W/kg Ch661/Zoom Scan (5x5x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 12.42 V/m; Power Drift = -0.11 dB Peak SAR (extrapolated) = 1.65 W/kg SAR(1 g) = 0.763 W/kg; SAR(10 g) = 0.335 W/kg Smallest distance from peaks to all points 3 dB below = 10.8 mm Ratio of SAR at M2 to SAR at M1 = 53% Maximum value of SAR (measured) = 1.23 W/kg 0 dB = 1.23 W/kg Test Laboratory: Shenzhen Morlab Communications Technology Co., Ltd. Date: 2022.04.10 WCDMA Band II_RMC 12.2Kbps_Left Titl_Ch9538 Communication System: UID 0, UMTS-FDD (0); Frequency: 1907.6 MHz;Duty Cycle: 1:1 Medium: HSL_2000 Medium parameters used: f = 1908 MHz; Οƒ = 1.378 S/m; Ξ΅ r = 39.922; ρ = 1000 kg/m 3 Ambient Temperature:23.2 Β°C; Liquid Temperature:22.2 Β°C DASY5 Configuration: - Probe: EX3DV4 - SN7608; ConvF(7.99, 7.99, 7.99) @ 1907.6 MHz; Calibrated: 2022.01.12 - Sensor-Surface: 2mm (Mechanical Surface Detection) - Electronics: DAE4 Sn480; Calibrated: 2021.06.22 - Phantom: SAM 2; Type: QD000P40CC; Serial: TP:1464 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7483) Ch9538/Area Scan (71x91x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 1.09 W/kg Ch9538/Zoom Scan (5x5x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 13.29 V/m; Power Drift = -0.14 dB Peak SAR (extrapolated) = 1.18 W/kg SAR(1 g) = 0.982 W/kg; SAR(10 g) = 0.498 W/kg Smallest distance from peaks to all points 3 dB below = 9.4 mm Ratio of SAR at M2 to SAR at M1 = 53.3% Maximum value of SAR (measured) = 0.869 W/kg 0 dB = 0.869 W/kg Test Laboratory: Shenzhen Morlab Communications Technology Co., Ltd. Date: 2022.04.08 WCDMA Band IV_RMC 12.2Kbps_Left Titl_Ch1312 Communication System: UID 0, UMTS-FDD (0); Frequency: 1712.4 MHz;Duty Cycle: 1:1 Medium: HSL_1800 Medium parameters used: f = 1712.4 MHz; Οƒ = 1.384 S/m; Ξ΅ r = 40.015; ρ = 1000 kg/m 3 Ambient Temperature:23.2 Β°C; Liquid Temperature:22.1 Β°C DASY5 Configuration: - Probe: EX3DV4 - SN7608; ConvF(8.26, 8.26, 8.26) @ 1712.4 MHz; Calibrated: 2022.01.12 - Sensor-Surface: 2mm (Mechanical Surface Detection) - Electronics: DAE4 Sn480; Calibrated: 2021.06.22 - Phantom: SAM 2; Type: QD000P40CC; Serial: TP:1464 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7483) Ch1312/Area Scan (71x91x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 0.854 W/kg Ch1312/Zoom Scan (5x5x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 13.37 V/m; Power Drift = -0.19 dB Peak SAR (extrapolated) = 1.23 W/kg SAR(1 g) = 0.964 W/kg; SAR(10 g) = 0.474 W/kg Smallest distance from peaks to all points 3 dB below = 8.2 mm Ratio of SAR at M2 to SAR at M1 = 50.2% Maximum value of SAR (measured) = 0.944 W/kg 0 dB = 0.944 W/kg Test Laboratory: Shenzhen Morlab Communications Technology Co., Ltd. Date: 2022.03.05 WCDMA Band V_RMC 12.2Kbps_Left Cheek_Ch4182 Communication System: UID 0, UMTS-FDD (0); Frequency: 836.4 MHz;Duty Cycle: 1:1 Medium: HSL_900 Medium parameters used: f = 836.4 MHz; Οƒ = 0.943 S/m; Ξ΅ r = 42.978; ρ = 1000 kg/m 3 Ambient Temperature:23.2 Β°C; Liquid Temperature:22.2 Β°C DASY5 Configuration: - Probe: EX3DV4 - SN7608; ConvF(9.81, 9.81, 9.81) @ 836.4 MHz; Calibrated: 2022.01.12 - Sensor-Surface: 2mm (Mechanical Surface Detection) - Electronics: DAE4 Sn480; Calibrated: 2021.06.22 - Phantom: SAM 2; Type: QD000P40CC; Serial: TP:1464 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7483) Ch4182/Area Scan (71x71x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 0.161 …

Text truncated - open the document above for the full version.

RF Exposure Info

MORLAB Shenzhen Morlab Communications Technology Co., Ltd. FL1-3, Building A, FeiYang Science Park, No.8 LongChang Road, Block67, BaoAn District, ShenZhen , GuangDong Province, P. R. China Tel: 86-755-36698555 Fax: 86-755-36698525 Http://www.morlab.cn E-mail: [email protected] REPORT No.:SZ21120041S01 Annex E Conducted Power Note: conducted power unit: dBm 128189251128189251 824.2836.4848.8824.2836.4848.8 31.5631.6431.6132.5022.5622.6422.6123.50 31.5331.6131.6432.5022.5322.6122.6423.50 30.8730.9730.9631.5024.8724.9724.96 25.500.10 29.1929.2629.2829.5024.9325.0025.0225.240.09 28.1928.2528.2228.5025.1925.2525.22 25.500.06 26.1526.1126.0226.5017.1517.1117.0217.500.13 24.6924.8524.7625.5018.6918.8518.7619.500.16 22.5222.6122.8823.5018.2618.3518.6219.240.36 21.3621.5421.3822.0018.3618.5418.3819.000.18 Max.31.64Max.25.25 512661810512661810 1850.218801909.81850.218801909.8 29.2329.1929.0829.5020.2320.1920.0820.50 29.0128.9728.8929.5020.0119.9719.8920.50 28.0828.0928.0128.5022.0822.0922.01 22.500.08 26.1226.1126.0526.5021.8621.8521.7922.240.07 25.0025.0224.9325.5022.0022.0221.93 22.500.09 25.2125.2625.0825.5016.2116.2616.0816.500.18 23.5123.7023.6424.5017.5117.7017.6418.500.19 21.7521.8021.8122.5017.4917.5417.5518.240.06 20.6821.0720.8521.5017.6818.0717.8518.500.39 Max.29.23Max.22.09 926294009538131214131513413241824233 966298009938153716381738435744074458 1852.418801907.61712.41732.61752.6826.4836.4846.6 3GPP Rel 99RMC 12.2Kbps22.9122.9422.9223.5022.6622.7522.7323.5022.9622.9722.9223.50 3GPP Rel 6HSDPA Subtest-122.0622.0622.0422.5021.8521.9221.9622.5022.3522.2022.2523.00 3GPP Rel 6HSDPA Subtest-222.0122.0422.0522.5021.9021.9121.9722.5022.2622.1522.2323.00 3GPP Rel 6HSDPA Subtest-321.5321.5221.5522.0021.4321.4121.4322.0021.8121.6821.7222.50 3GPP Rel 6HSDPA Subtest-421.4721.5521.5022.0021.4521.3721.4422.0021.7821.6521.7322.50 3GPP Rel 6HSUPA Subtest-122.0221.5821.5422.5021.4021.4521.4322.0021.8321.6821.7822.50 3GPP Rel 6HSUPA Subtest-221.9822.0422.0922.5021.9321.9721.9022.5022.3222.1922.2323.00 3GPP Rel 6HSUPA Subtest-321.0421.0521.0121.5020.9120.9320.9421.5021.3421.2121.2622.00 3GPP Rel 6HSUPA Subtest-422.0722.1122.1222.5021.8821.9321.9122.5022.3422.2022.2623.00 3GPP Rel 6HSUPA Subtest-521.0221.0521.0221.5020.8720.8720.8921.5021.3021.2021.2922.00 3GPP Rel 7 HSPA+ (16QAM) Subtest-121.0021.0521.0421.5020.9420.9020.9421.5021.2521.1621.2622.00 Cable Loss0.8Cable Loss0.8Cable Loss0.8 Max.22.94Max.22.75Max.22.97 Band Tune-up Limit (dBm) Tune-up Limit (dBm) Tune-up Limit (dBm) Mode Attenuator WCDMA Band IIWCDMA Band IVWCDMA Band V TX Channel Rx Channel Frequency (MHz) Mode AttenuatorCable Loss : 0.8 EDGE 4 Tx slots EDGE 1 Tx slot EDGE 2 Tx slots EDGE 3 Tx slots GPRS 2 Tx slots GPRS 3 Tx slots GPRS 4 Tx slots GSM1900Burst Average Power (dBm)Frame-Average Power (dBm) TX Channel Frequency (MHz) GSM 1 Tx slot GPRS 1 Tx slot Tune-up Limit (dBm) Ch Delta > 0.5 0.34 Tune-up Limit (dBm) Mode AttenuatorCable Loss : 0.8 EDGE 2 Tx slots EDGE 3 Tx slots EDGE 4 Tx slots GPRS 3 Tx slots GPRS 4 Tx slots EDGE 1 Tx slot Frequency (MHz) GSM 1 Tx slot GPRS 1 Tx slot GPRS 2 Tx slots Tune-up Limit (dBm) Tune-up Limit (dBm) Ch Delta > 0.5 0.11 Full Power GSM850Burst Average Power (dBm)Frame-Average Power (dBm) TX Channel BW [MHz] Modulation RB Size RB Offset Low Channel Middle Channel High Channel BW [MHz] Modulation RB Size RB Offset Low Channel Middle Channel High Channel 187001890019100200502017520300 18601880190017201732.51745 20QPSK1023.2723.2823.2120QPSK1022.8222.8722.80 20QPSK14923.2123.2123.2420QPSK14922.8622.8422.81 20QPSK19923.0823.1823.0620QPSK19922.7222.7722.70 20QPSK50022.2522.4022.2420QPSK50021.7322.1122.06 20QPSK502422.1422.2922.0720QPSK502421.9821.9521.94 20QPSK505022.0622.1822.2120QPSK505022.0321.8922.06 20QPSK100022.3522.3722.1720QPSK100022.0522.0122.08 2016QAM1022.2122.4022.392016QAM1022.1922.0621.97 2016QAM14922.2322.3622.402016QAM14922.0122.1621.99 2016QAM19922.3122.2222.242016QAM19922.1322.0322.30 2016QAM50021.3321.3921.402016QAM50021.0421.0620.99 2016QAM502421.2521.3521.332016QAM502421.0121.1021.06 2016QAM505021.2221.3621.212016QAM505021.1220.9421.20 2016QAM100021.2721.2521.262016QAM100020.9420.8721.00 2064QAM1021.2821.2321.312064QAM1021.0221.1121.27 2064QAM14921.3821.2321.242064QAM14921.2121.0520.88 2064QAM19921.3421.3821.322064QAM19921.0320.9621.08 2064QAM50020.3520.2320.362064QAM50019.9620.0720.12 2064QAM502420.2120.4020.372064QAM502420.0020.0120.14 2064QAM505020.1620.2920.212064QAM505020.1020.1320.10 2064QAM1000 20.3120.2720.292064QAM100020.0320.2019.91 186751890019125200252017520325 1857.518801902.51717.51732.51747.5 15QPSK1023.0923.1023.0215QPSK1022.7622.8222.74 15QPSK13723.0323.0323.0515QPSK13722.8022.7922.75 15QPSK17422.9023.0022.8715QPSK17422.6622.7222.64 15QPSK36022.1722.3722.1515QPSK36021.6722.0622.00 15QPSK362022.0622.2121.9815QPSK362021.9221.9021.88 15QPSK363921.9822.1022.1215QPSK363921.9721.8422.00 15QPSK75022.2722.2922.0815QPSK75021.9921.9622.05 1516QAM1022.3322.3222.301516QAM1022.1322.0121.91 1516QAM13722.3522.2822.311516QAM13721.9522.1121.93 1516QAM17422.2322.3422.351516QAM17422.0721.9822.24 1516QAM36021.2521.3121.311516QAM36020.9821.0120.93 1516QAM362021.1721.2721.241516QAM362020.9521.0521.00 1516QAM363921.1421.2821.321516QAM363921.0620.8921.14 1516QAM75021.1921.1721.171516QAM75020.8820.8220.94 1564QAM1021.4021.3521.221564QAM1020.9621.0621.21 1564QAM13721.3021.3521.351564QAM13721.1521.0020.82 1564QAM17421.2621.3021.231564QAM17420.9720.9121.02 1564QAM36020.2720.3520.271564QAM36019.9020.0220.06 1564QAM362020.1320.3220.281564QAM362019.9419.9620.08 1564QAM363920.0820.2120.321564QAM363920.0420.0820.04 1564QAM75020.2320.1920.201564QAM75019.9720.1519.85 186501890019150200002017520350 18551880190517151732.51750 10QPSK1023.1023.1223.0410QPSK1022.81 22.8622.79 10QPSK12523.0423.0523.0710QPSK12522.8522.8322.80 10QPSK14922.9123.0222.8910QPSK14922.7122.7622.69 10QPSK25022.1822.3922.1710QPSK25021.7222.1022.05 10QPSK251222.0722.2322.0010QPSK251221.9721.9421.93 10QPSK252521.9922.1222.1410QPSK252522.0…

Text truncated - open the document above for the full version.

RF Exposure Info

MORLAB Shenzhen Morlab Communications Technology Co., Ltd. FL1-3, Building A, FeiYang Science Park, No.8 LongChang Road, Block67, BaoAn District, ShenZhen , GuangDong Province, P. R. China Tel: 86-755-36698555 Fax: 86-755-36698525 Http://www.morlab.cn E-mail: [email protected] REPORT No.:SZ21120041S01 Annex F DASY Calibration Certificate

RF Exposure Info

NOTE: This document is issued by Shenzhen Morlab Communications Technology Co., the test report shall not be reproduced except in full without prior written permission of the company. The test results apply only to the particular sample(s) tested and to the specific tests carried out which is available on request for validation and information confirmed at our website. MORLAB Shenzhen Morlab Communications Technology Co., Ltd. FL1-3, Building A, FeiYang Science Park, No.8 LongChang Road, Block67, BaoAn District, ShenZh en , GuangDong Province, P. R. China Tel: 86-755-36698555 Fax: 86-755-36698525 Http://www.morlab.cn E-mail: [email protected] REPORT No.:SZ21120041S01 Page 1 of 74 TEST REPORT APPLICANT : Hot Pepper Mobile Inc. PRODUCT NAME : Smart Phone MODEL NAME : HPPL60A BRAND NAME : Hot Pepper FCC ID : 2A33N-L60A STANDARD(S) : FCC 47 CFR Part 2(2.1093) IEEE 1528-2013 RECEIPT DATE : 2021-12-31 TEST DATE : 2022-03-03 to 2022-04-10 ISSUE DATE : 2022-05-19 Edited by : Xie Yiyun (Rapporteur) Approved by: Shen Junsheng (Supervisor) MORLAB Shenzhen Morlab Communications Technology Co., Ltd. FL1-3, Building A, FeiYang Science Park, No.8 LongChang Road, Block67, BaoAn District, ShenZhen , GuangDong Province, P. R. China Tel: 86-755-36698555 Fax: 86-755-36698525 Http://www.morlab.cn E-mail: [email protected] REPORT No.:SZ21120041S01 Page 2 of 74 DIRECTORY 1. SAR Results Summary βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 5 2. Technical Information βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 6 2.1. Applicant and Manufacturer Information βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 6 2.2. Equipment under Test (EUT) Description βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 6 2.3. Environment of Test Site/Conditions βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 7 3. Specific Absorption Rate (SAR) βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 9 3.1. Introductionβˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 9 3.2. SAR Definition βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 9 4. RF Exposure Limits βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 10 4.1. Uncontrolled Environment βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 10 4.2. Controlled Environment βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 10 5. Applied Reference Documents βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 11 6. SAR Measurement System βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 12 6.1. E-Field Probe βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 13 6.2. Data Acquisition Electronics (DAE) βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 14 6.3. Robot βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 14 6.4. Measurement Server βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 15 6.5. Light Beam Unit βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 15 6.6. Phantom βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 15 6.7. Device Holder βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™ 16 6.8. Data Storage and Evaluation βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™βˆ™β€¦

Text truncated - open the document above for the full version.

Contact Information

Applicant

Shawn Sun(CEO)
[email protected]619-341-9501Fax: N/A

Test Firm

Shenzhen Morlab Communications Technology Co. Ltd.Mr. Su Feng
[email protected]+86 755 36698566

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
299815.5 MHz - 822.5 MHz106.00 mW2M70W7D0.063 ppm
Confidentiality
Long Term
Grant Notes
Output power listed for GSM/GPRS/EGPRS 850, WCDMA/HSDPA/HSUPA/HSPA+ Band 5, LTE Band 5/12/26/71 are maximum ERP. Output power listed for GSMGPRSEGPRS 1900, WCDMA/HSDPA/HSUPA/HSPA+ Band 2/4, LTE Band 2/4/25/41/66 are maximum EIRP.<br> It supports GSM, WCDMA, LTE (QPSK, 16QAM, 64QAM)<br> Channel Bandwidth (1.4/3/5/10 MHz) for LTE B5, B12,<br> Channel Bandwidth (1.4/3/5/10/15/20 MHz) for LTE B2, B4, B25, B66<br> Channel Bandwidth (1.4/3/5/10/15 MHz) for LTE B26<br> Channel Bandwidth (5/10/15/20 MHz) for LTE B41, B71<br> This device contains functions that are not operational in U.S. Territories; this filing is only applicable for U.S. operations. This device has integrated DTS, DSS, NII, and PCE transmitters certified under the same FCC ID. <br>SAR compliance for body-carry configurations is limited to provision at least 1.5 cm separation between the device and the user's body. The highest reported SAR values for the Head, body-worn, Hotspot and simultaneous transmission use conditions are 1.10 W/kg, 0.76 W/kg, 0.76 W/kg, and 1.57 W/kg at 1g tissues, respectively.<br> HAC compliant for VoLTE service. HAC Rating is M4T3-2011.

Other Applications from Hot Pepper Mobile Inc.

Smart Phone - FCC ID 2A33N-L61B - Hot Pepper Mobile Inc.
2A33N-L61B

Smart Phone

Apr 20, 2026

Equipment Class

NII - Unlicensed National Information Infrastructure TX
Smart Phone - FCC ID 2A33N-L61A - Hot Pepper Mobile Inc.
2A33N-L61A

Smart Phone

Jan 16, 2026

Equipment Class

DSS - Part 15 Spread Spectrum Transmitter
Smart Phone - FCC ID 2A33N-L65A - Hot Pepper Mobile Inc.
2A33N-L65A

Smart Phone

Aug 12, 2024

Equipment Class

NII - Unlicensed National Information Infrastructure TX
Smart Phone - FCC ID 2A33N-L63A - Hot Pepper Mobile Inc.
2A33N-L63A

Smart Phone

Jun 26, 2024

Equipment Class

NII - Unlicensed National Information Infrastructure TX
2A33N-AP33

Tablet

Jan 29, 2024

Equipment Class

DSS - Part 15 Spread Spectrum Transmitter