
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
V221110-gga GAMMA NXLD (LongDistance) Programmable UHF Tranceiver 868/915 MHz NXs LD US/EMEA Ansonic Funk- und Antriebstechnik GmbH • Deilbachtal 23 – 25 • 45257 Essen Tel: 0201-848090 • Fax: 0201-485385 • eMail: [email protected] - www.ansonic.de t:\vt-entw\katalog\katalog_funk\10. module\produktvorstellung\nxld.docx - 10.11.2022 2 The NXLD RF module is a completely new design. The footprint is very small, but the logic & I/O capabilities remain compatible to our flagship NX1. The RF part is designed for the 868/915MHz area with up to 22dBm output power and LongRange DSSS coding. The higher power compensates for the loss of penetration properties of twice the frequency compared to 434MHz. Furthermore, the use of long-range coding methods results in an additional gain in range. One challenge compared to our 434MHz solutions is the current consumption of up to 130mA, which effects especially small battery driven devices. Therefore, these modules target larger size transmitters with according battery power and/or less frequent transmission events. This module is FCC certified under part15-modular approach and can be used as-is (together with one of the two certified antennas) at 915MHz in the US without any new certification process. Customer only has to fill a so-called SDoC (self-declaration, pointing on the FCC number of that module). Another option is to use the module in EMEA in the 868MHz range, where the module operates in a slot which is allowed to operate at 22dBm output power. Customers need to order the frequency range area according to their needs. NXs LD US/EMEA Ansonic Funk- und Antriebstechnik GmbH • Deilbachtal 23 – 25 • 45257 Essen Tel: 0201-848090 • Fax: 0201-485385 • eMail: [email protected] - www.ansonic.de t:\vt-entw\katalog\katalog_funk\10. module\produktvorstellung\nxld.docx - 10.11.2022 3 This module shall be operated in packet mode only, operated by the UART connection. Stamp-Landing NXs LD US/EMEA Ansonic Funk- und Antriebstechnik GmbH • Deilbachtal 23 – 25 • 45257 Essen Tel: 0201-848090 • Fax: 0201-485385 • eMail: [email protected] - www.ansonic.de t:\vt-entw\katalog\katalog_funk\10. module\produktvorstellung\nxld.docx - 10.11.2022 4 NX1 -adapter/carrier:. Mechanical compatibility to our NX1-modules can be achieved easily with these carrier boards. Using it makes this module a 1:1 replacement to NX1 (packet mode only) Module placed on NX1-Adapter: NXs LD US/EMEA Ansonic Funk- und Antriebstechnik GmbH • Deilbachtal 23 – 25 • 45257 Essen Tel: 0201-848090 • Fax: 0201-485385 • eMail: [email protected] - www.ansonic.de t:\vt-entw\katalog\katalog_funk\10. module\produktvorstellung\nxld.docx - 10.11.2022 5 Antenna VR5_915: Antenna LINX FLEX: LNNC_S_A00112909 94_1-2551064.pdf NXs LD US/EMEA Ansonic Funk- und Antriebstechnik GmbH • Deilbachtal 23 – 25 • 45257 Essen Tel: 0201-848090 • Fax: 0201-485385 • eMail: [email protected] - www.ansonic.de t:\vt-entw\katalog\katalog_funk\10. module\produktvorstellung\nxld.docx - 10.11.2022 6 Regulations: Integration instructions for host product manufacturers 2.2 List of applicable FCC rules FCC 47 CFR Part 15C ‘modular transmitters’ 2.3 Specific operational use conditions Usage is only allowed if the validated antennas, described in this manual, are used. Any other usage requires new FCC certification 2.4 Limited module procedures Not applicable 2.5 Trace antenna designs Not applicable 2.6 RF exposure considerations LORA module max. output: 22dBm Antenna gain: -3dBm ➔ Resulting max e.i.r.p. :19dBm = 0.08W E.i.r.p. is less than the RF exposure evaluation exempted power. So RF exposure evaluation is not required. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not transmit simultaneously or operated in conjunction with any other antenna or transmitter within a device. End-users, installers and OEM integrators must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance 2.7 Antennas Applicable antennas are described in this document. Those are part of the FCC certification. 2.8 Label and compliance information This module falls into the FCC 47 CFR Part 15C ‘modular transmitters’. Operation in US-FCC is permitted due to according certification. Import to US is allowed if customers product refer to ‘contains FCC ID: 2A28Q-NXLD’ and according use. 2.9 Information on test modes and additional testing requirements not applicable 2.10 Additional testing, Part 15 Subpart B disclaimer The modular transmitter is only FCC authorized for the specific rule parts listed on the grant. The host product manufacturer is responsible for compliance to any other FCC rules that apply to the host not covered by the modular transmitter grant of certification. 15.21 Changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment. 15.19(a)(1) 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. NXs LD US/EMEA Ansonic Funk- und Antriebstechnik GmbH • Deilbachtal 23 – 25 • 45257 Essen Tel: 0201-848090 • Fax: 0201-485385 • eMail: [email protected] - www.ansonic.de t:\vt-entw\katalog\katalog_funk\10. module\produktvorstellung\nxld.docx - 10.11.2022 7 Modul Characteristics Absolute Maximum Ratings Parameter Min Typ Max Unit Condition Supply Voltage Vdd-Pin -0.3 15 V 1) Supply Voltage 3.3V-Pin -0.3 3.9 V 2) Input / RF-Level dBm 1) GND_LDO & GND connected 2) only allowed if GND_LDO is not connected ! Electrical Characteristics Parameter Min Typ Max Unit Condition Supply Voltage Vdd-Pin 2.1 5 12 V 1) 3) Supply Voltage Vdd-Pin 5.8 V 1) 4) Supply Voltage 3.3V-Pin 1.8 3.3 3.6 V 2) 1) GND_LDO & GND connected 3) single-packet-mode (…
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ExtFotos RF Tranceiver SRD G0M-2208-1620
FCC ID: 2A28Q-NXLD RF Transceiver SRD G0M‐2208‐1620
Test Report No.: G0M-2208-1620-TFC091MP-V02 Eurofins Product Service GmbH Storkower Str. 38c, D-15526 Reichenwalde, Germany Page 1 of 13 RF-EXPOSURE REPORT FCC 47 CFR Part 2.1091 Maximum permissible exposure Report Reference No G0M-2208-1620-TFC091MP-V02 Testing Laboratory Eurofins Product Service GmbH Address Storkower Str. 38c 15526 Reichenwalde Germany Accreditation A2LA Accredited Testing Laboratory, Certificate No.: 1983.01 FCC Test Firm Designation Number: DE0008 ISED Testing Laboratory site: 3470A-2 Applicant ansonic Funk- und Antriebstechnik GmbH Address Deilbachtal 23-25 45257 Essen GERMANY Test Specification According to FCC rules Standard FCC 47 CFR 2.1091 Non-Standard Test Method None Equipment under Test (EUT): Product Description RF Tranceiver SRD Model(s) NXLD Additional Model(s) None Brand Name(s) None Hardware Version(s) 1.2 Software Version(s) 1.2 FCC-ID 2A28Q-NXLD Test Result PASSED Test Report No.: G0M-2208-1620-TFC091MP-V02 Eurofins Product Service GmbH Storkower Str. 38c, D-15526 Reichenwalde, Germany Page 3 of 13 VERSION HISTORY Version History Version Issue Date Remarks Revised By 01 2022-12-21 Initial Release O. Qawasmeh 02 2023-01-24 Replaced document: G0M-2208-1620-TFC091MP-V01 Replaced by: G0M-2208-1620-TFC091MP-V02 Reason: Reference report G0M-2208-1620-TFC247DT- V01 has been replaced by G0M-2208-1620- TFC247DT-V02 Correction of antenna gains Test Report No.: G0M-2208-1620-TFC091MP-V02 Eurofins Product Service GmbH Storkower Str. 38c, D-15526 Reichenwalde, Germany Page 4 of 13 ABBREVIATIONS AND ACRONYMS Acronyms Acronym Description EIRP Equivalent Isotropic Radiated Power EUT Equipment Under Test MPE Maximum Permissible Exposure Test Report No.: G0M-2208-1620-TFC091MP-V02 Eurofins Product Service GmbH Storkower Str. 38c, D-15526 Reichenwalde, Germany Page 5 of 13 REPORT INDEX 1 Equipment (Test Item) Under Test................................................................................................... 6 1.1 Reference Documents ................................................................................................................................... 7 1.2 Power density radiation sources.................................................................................................................... 8 1.3 Field strength radiation sources .................................................................................................................... 8 1.4 Concurrent Sources ...................................................................................................................................... 8 2 Result Summary ................................................................................................................................. 9 3 RF-Exposure classification ............................................................................................................ 10 4 RF-Exposure limits .......................................................................................................................... 11 5 RF-Exposure Evaluation ................................................................................................................. 12 6 Single Source Evaluation Results - FCC ...................................................................................... 13 Test Report No.: G0M-2208-1620-TFC091MP-V02 Eurofins Product Service GmbH Storkower Str. 38c, D-15526 Reichenwalde, Germany Page 6 of 13 1 Equipment (Test Item) Under Test Description RF Tranceiver SRD Model NXLD Additional Model(s) None Brand Name(s) None Serial Number(s) Prototype Hardware Version(s) 1.2 Software Version(s) 1.2 FCC ID 2A28Q-NXLD Equipment type End Product Environment General public Test Report No.: G0M-2208-1620-TFC091MP-V02 Eurofins Product Service GmbH Storkower Str. 38c, D-15526 Reichenwalde, Germany Page 7 of 13 1.1 Reference Documents Document Type Document No. Issued by Date Radio Test Report FCC 47 CFR Part 15C G0M-2208-1620- TFC247DT-V02 Eurofins Product Service GmbH 2023-01-19 Test Report No.: G0M-2208-1620-TFC091MP-V02 Eurofins Product Service GmbH Storkower Str. 38c, D-15526 Reichenwalde, Germany Page 8 of 13 1.2 Power density radiation sources Mode Operating Frequency [MHz] Maximum conducted power [dBm] Maximum radiated power [dBm EIRP] Maximum duty cycle [%] Maximum antenna gain [dBi] Maximum antenna diameter [cm] SRD 915 MHz (VR5_915) 903 21.5 26.5 27 5 N/A SRD 915 MHz (ANT-8/9-FPC- UFL) 903 21.5 18.5 27 -3 N/A Comment: 1.3 Field strength radiation sources None 1.4 Concurrent Sources No concurrent radiation sources Test Report No.: G0M-2208-1620-TFC091MP-V02 Eurofins Product Service GmbH Storkower Str. 38c, D-15526 Reichenwalde, Germany Page 9 of 13 2 Result Summary FCC MPE Evaluation - Single radiation sources Product Standard Reference Requirement Reference Method Mode Distance [m] Verdict 47 CFR 2.1091 Maximum permissible exposure FCC KDB 447498 SRD 915 MHz (VR5_915) 0.20 PASS 47 CFR 2.1091 Maximum permissible exposure FCC KDB 447498 SRD 915 MHz (ANT-8/9-FPC- UFL) 0.20 PASS Comment: Test Report No.: G0M-2208-1620-TFC091MP-V02 Eurofins Product Service GmbH Storkower Str. 38c, D-15526 Reichenwalde, Germany Page 10 of 13 3 RF-Exposure classification RF-Exposure Categories Fixed A fixed device is defined as a device physically secured at one fixed location and cannot be easily re-located. Mobile A mobile device is defined as a transmitting device designed to be used in other than fixed locations and to generally be used in such a way that a separation distance of at least 20 centimeters is normally maintained between the transmitter's radiating structure(s) and the body of the user or nearby persons. Portable A portable device is defined as a transmitting device designed to be used so that the radiating structure(s) of the device is/are within 20 centimeters of the body of the user. RF-Exposure Categories Occupational / Controlled Limits apply in situations in which persons are exposed as a consequence of t…
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Test Report No.: G0M-2208-1620-TFC247DT-V02 Eurofins Product Service GmbH Storkower Str. 38c, D-15526 Reichenwalde, Germany Page 1 of 108 RADIO REPORT FCC 47 CFR Part 15C Digital transmission systems operating within the 902.0 MHz - 928.0 MHz band Report Reference No G0M-2208-1620-TFC247DT-V02 Testing Laboratory Eurofins Product Service GmbH Address Storkower Str. 38c 15526 Reichenwalde Germany Accreditation DAkkS - Registration number : D-PL-12092-01-03 (ISED) ISED Testing Laboratory site: 3470A DAkkS - Registration number : D-PL-12092-01-04 (FCC) FCC Filed Test Laboratory, Reg.-No.: 96970 Applicant ansonic Funk- und Antriebstechnik GmbH Address Deilbachtal 23-25 45257 Essen GERMANY Test Specification 47 CFR Part 15C Non-Standard Test Method None Equipment under Test (EUT): Product Description RF Tranceiver SRD Model(s) NXLD Additional Model(s) None Brand Name(s) None Hardware Version(s) 1.2 Software Version(s) 1.2 FCC ID 2A28Q-NXLD IC -/- Test Result PASSED Test Report No.: G0M-2208-1620-TFC247DT-V02 Eurofins Product Service GmbH Storkower Str. 38c, D-15526 Reichenwalde, Germany Page 3 of 108 VERSION HISTORY Version History Version Issue Date Remarks Revised By 01 2022-12-18 Initial Release O. Qawasmeh 02 2023-01-19 Replaced document: G0M-2208-1620-TFC247DT-V01 Replaced by: G0M-2208-1620-TFC247DT-V02 Reason: Correction of antenna gain Photos added in section 1.1 Correction of test equipment table and headline in section 3.3 for test case “Maximum average conducted output power” Test Report No.: G0M-2208-1620-TFC247DT-V02 Eurofins Product Service GmbH Storkower Str. 38c, D-15526 Reichenwalde, Germany Page 4 of 108 ABBREVIATIONS AND ACRONYMS Acronyms Acronym Description EUT Equipment Under Test FCC Federal Communications Commission ISED Innovation, Science and Economic Development Canada RBW Resolution bandwidth RMS Root mean square VBW Video bandwidth V NOM Nominal supply voltage Test Report No.: G0M-2208-1620-TFC247DT-V02 Eurofins Product Service GmbH Storkower Str. 38c, D-15526 Reichenwalde, Germany Page 5 of 108 REPORT INDEX 1 Equipment (Test Item) Under Test................................................................................................... 6 1.1 Photos – Equipment External & Internal ........................................................................................................ 7 1.2 Support Equipment ...................................................................................................................................... 11 1.3 Test mode duty cycle .................................................................................................................................. 12 1.4 Test Modes ................................................................................................................................................. 15 1.5 Test Frequencies ......................................................................................................................................... 16 1.6 Sample emission level calculation ............................................................................................................... 17 2 Result Summary ............................................................................................................................... 18 3 Test Conditions and Results .......................................................................................................... 19 3.1 Test Conditions and Results - Occupied bandwidth .................................................................................... 19 3.2 Test Conditions and Results - 6 dB bandwidth ............................................................................................ 25 3.3 Test Conditions and Results - Maximum average conducted output power ................................................ 31 3.4 Test Conditions and Results - Power spectral density ................................................................................ 33 3.5 Test Conditions and Results - AC powerline conducted emissions ............................................................. 39 3.6 Test Conditions and Results - Band-edge compliance ................................................................................ 57 3.7 Test Conditions and Results - Conducted spurious emissions .................................................................... 61 3.8 Test Conditions and Results - Transmitter radiated emissions ................................................................... 67 ANNEX A Transmitter spurious emissions ....................................................................................................... 76 Test Report No.: G0M-2208-1620-TFC247DT-V02 Eurofins Product Service GmbH Storkower Str. 38c, D-15526 Reichenwalde, Germany Page 6 of 108 1 Equipment (Test Item) Under Test Description RF Tranceiver SRD Model NXLD Additional Model(s) None Brand Name(s) None Serial Number(s) Prototype Test Sample Id(s) EUT: 42093 Fixed Wire antenna: 41526 Flex Antenna: 41525 Hardware Version(s) 1.2 Software Version(s) 1.2 FCC ID 2A28Q-NXLD Equipment type End Product Radio type Transceiver Assigned frequency bands 902.0 MHz - 928.0 MHz Radio technology Digital Modulation Modulation CSS Number of antenna ports 1 Antenna 1 Type Integrated Model ANT-8/9-FPC-UFL Manufacturer LINX Gain -3 dBi Antenna 2 Type External Model VR5_915 Manufacturer Ansonic Gain 5 dBi Supply Voltage V NOM 3.5 VDC Operating Temperature T NOM 20 °C AC/DC-Adaptor None Manufacturer ansonic Funk- und Antriebstechnik GmbH Deilbachtal 23-25 45257 Essen GERMANY Test Report No.: G0M-2208-1620-TFC247DT-V02 Eurofins Product Service GmbH Storkower Str. 38c, D-15526 Reichenwalde, Germany Page 7 of 108 1.1 Photos – Equipment External & Internal PCB Module Top View PCB Module Bottom View Test Report No.: G0M-2208-1620-TFC247DT-V02 Eurofins Product Service GmbH Storkower Str. 38c, D-15526 Reichenwalde, Germany Page 8 of 108 PCB Module Bottom View (without lab…
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Datasheet ANT-8/9-FPC-UFL-100 Flexible Embedded LPWA 868/915 MHz Antenna Ordering Information Part NumberDescription ANT-8/9-FPC-UFL-100 LPWA antenna with 100 mm of 1.13 mm coaxial cable and U.FL-type plug (female socket) Available from Linx Technologies and select distributors and representatives. Applications • Low-power, wide-area (LPWA) applications ―LoRaWAN ® ―Sigfox ® ―WiFi HaLow™ (802.11ah) • Remote control, monitoring and sensing • Internet of Things (IoT) devices • ISM applications Features • Performance at 902 MHz to 930 MHz ―VSWR: ≤ 1.6 ―Peak Gain: -7.4 dBi ―Efficiency: 19% • Ground plane independent dipole antenna • Compact, low-profile ―39.0 mm x 15.0 mm x 0.2 mm • U.FL-type plug (female socket) Compatible with MHF1, AMC, UMCC • Flexible to fit in challenging enclosures • Adhesive backing permanently adheres to non- metal enclosures using 3M 300LSE™ adhesive The 8/9-FPC antenna is a flexible embedded multiband antenna designed for use in 868 MHz and 915 MHz frequency bands for low- power, wide-area (LPWA) applications such as LoRaWAN ® , Sigfox ® and WiFi HaLow™ as well as other ISM and remote control applications. The 8/9-FPC provides a ground plane independent dipole embedded antenna solution comparable in performance to an external antenna. The 8/9-FPC’s flexibility and adhesive backing makes it easy to mount in unique and custom enclosures, while enabling an environmentally sealed enclosure and protection from tampering or accidental antenna damage. Connection is made to the radio via a 100 mm long, 1.13 mm coaxial cable terminated in a U.FL- type plug (female socket). 2 DatasheetANT-8/9-FPC-UFL-100 Electrical Specifications ANT-8/9-FPC-UFL868 MHz915 MHz Frequency Range 862 MHz to 876 MHz902 MHz to 930 MHz VSWR (max.) 2.01.6 Peak Gain (dBi) -3.2-3.0 Average Gain (dBi) -8.4-7.4 Efficiency (%) 1519 Polarization Linear Radiation Omnidirectional Max Power 2 W Wavelength 1/2-wave Electrical Type Dipole Impedance 50 Ω Connection U.FL-type plug (female socket) on 100 mm (3.94 in) of 1.13 mm coaxial cable. Weight 0.6 g (0.02 oz) Dimensions 39.0 mm x 15.0 mm x 0.2 mm (1.54 in x 0.59 in x 0.01 in) Operating Temp. Range -40 °C to +85 °C Product Dimensions 39.0 mm (1.54 in) Adhesive Side 15.0 mm (0.59 in) 0.2 mm (0.01 in) 3.0 mm (0.12 in) Ø1.13 mm (0.04 in) 9.0 mm (0.35 in) 2.1 mm (0.08 in) Figure 1. ANT-8/9-FPC-UFL Dimensions Antenna Mounting The ANT-8/9-FPC-UFL-100 is a flexible, adhesive backed antenna that allows it to be permanently installed onto non-metallic surfaces. The adhesive backing is 3M 300LSE™, which provides excellent adhesion to high and low surface energy plastics. 3M 300LSE™ adhesive is resistant to solvents, humidity and moisture, as well as heat up to 121 °C (250 °F) for short periods. The antenna should never be bent to the point of creating a crease or allowing the angle of the bend to fall below 90 degrees (i.e. become acute) as this will impair function and may cause permanent damage. 3 DatasheetANT-8/9-FPC-UFL-100 VSWR Figure 2 provides the voltage standing wave ratio (VSWR) across the antenna bandwidth. VSWR describes the power reflected from the antenna back to the radio. A lower VSWR value indicates better antenna performance at a given frequency. Reflected power is also shown on the right-side vertical axis as a gauge of the percentage of transmitter power reflected back from the antenna. 862876902930 0 10 20 30 40 1 2 3 4 5 850860870880890900910920930940950 Reflected Power (%) VSWR Frequency (MHz) Figure 2. 8/9-FPC Antenna VSWR with Frequency Band Highlights Return Loss Return loss (Figure 3), represents the loss in power at the antenna due to reflected signals. Like VSWR, a lower return loss value indicates better antenna performance at a given frequency. 862876902930 -20 -18 -16 -14 -12 -10 -8 -6 -4 -2 0 850860870880890900910920930940950 Return Loss (dB) Frequency (MHz) Figure 3. 8/9-FPC Antenna Return Loss with Frequency Band Highlights 4 DatasheetANT-8/9-FPC-UFL-100 Peak Gain The peak gain across the antenna bandwidth is shown in Figure 4. Peak gain represents the maximum antenna input power concentration across 3-dimensional space, and therefore peak performance, at a given frequency, but does not consider any directionality in the gain pattern. 862876902930 -20 -15 -10 -5 0 5 850860870880890900910920930940950 Peak Gain (dBi) Frequency (MHz) Figure 4. 8/9-FPC Antenna Peak Gain with Frequency Band Highlights Average Gain Average gain (Figure 5), is the average of all antenna gain in 3-dimensional space at each frequency, providing an indication of overall performance without expressing antenna directionality. 862876902930 -20 -15 -10 -5 0 5 850860870880890900910920930940950 Average Gain (dBi) Frequency (MHz) Figure 5. 8/9-FPC Antenna Average Gain with Frequency Band Highlights 5 DatasheetANT-8/9-FPC-UFL-100 Radiation Efficiency Radiation efficiency (Figure 6), shows the ratio of power delivered to the antenna relative to the power radiated at the antenna, expressed as a percentage, where a higher percentage indicates better performance at a given frequency. 862876902930 0 10 20 30 40 50 60 70 80 90 100 850860870880890900910920930940950 Efficiency (%) Frequency (MHz) Figure 6. 8/9-FPC Antenna Radiation Efficiency with Frequency Band Highlights 6 DatasheetANT-8/9-FPC-UFL-100 Radiation Patterns Radiation patterns provide information about the directionality and 3-dimensional gain performance of the antenna by plotting gain at specific frequencies in three orthogonal planes. Antenna radiation patterns (Figure 7), are shown using polar plots covering 360 degrees. The antenna graphic above the plots provides reference to the plane of the column of plots below it. Note: when viewed with typical PDF viewing software, zooming into radiation patterns is possible to reveal fine detail. XZ-Plane GainYZ-Plane GainXY-Plane Gain 902 MHz to 930 MHz (915 MHz) -50 -45 -40 -35 -30 -25 -20 -15 -10 -5 0 5 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 …
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TestSetUpPhotos G0M-2208-1620 TestSetUpPhotos G0M-2208-1620 TestSetUpPhotos G0M-2208-1620 TestSetUpPhotos G0M-2208-1620 TestSetUpPhotos G0M-2208-1620
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 903 MHz - 927 MHz | 140.00 mW |