
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
1 H960 Operation Manual Shanghai Huace Navigation Technology Co., Ltd. 2 Table of Contents I. H960 Product Structure Description........................................................................ 4 - 1.1 Appearance....................................................................................................4 - 1.2 Internal..........................................................................................................4 II. H960 Installation Scheme.......................................................................................6 - 2.1 Pole Installation............................................................................................6 - 2.1.1 Hoop Fixing...........................................................................................6 - 2.1.2 Screw Fixing..........................................................................................6 - 2.2 Wall Installation............................................................................................7 - 2.3 Cabinet Installation.......................................................................................7 III. H960 Power Supply Scheme.................................................................................7 - 3.1 Solar Panel + Built-in Lithium Battery Wiring.............................................7 - 3.2 Solar Panel + External Battery Wiring..........................................................7 - 3.3 AC Mains Power Supply Wiring...................................................................8 IV. H960 Universal Debugging....................................................................................8 - 4.1 Upper Computer Universal Debugging.........................................................8 - 4.1.1 H960 Serial Port Connection to Computer.............................................8 - 4.1.2 H960 Routine Parameter Query and Configuration...............................9 - 4.1.3 H960 Channel Setting............................................................................10 - 4.1.4 H960 Network Setting............................................................................12 -4.1.5 H960 Other Parameter Query and Configuration (Generally Not Required).....................................................................................................................13 V. Sensor Debugging and Data Access........................................................................14 - 5.1 Debugging and Access of Vibrating String Sensors......................................15 - 5.1.1 Vibrating String Piezometer....................................................................15 - 5.1.2 Joint Gauge.............................................................................................17 - 5.2 RS485 Devices...............................................................................................18 - 5.2.1 Inclinometer - BMW426 / Inclinometer - BMW826..............................18 - 5.2.2 Fixed Inclinometer..................................................................................19 3 - 5.3 Switching Devices.........................................................................................21 - 5.3.1 Rain Gauge.............................................................................................22 VI. Product Package List.............................................................................................22 4 I. H960 Product Structure Description 1.1 Appearance The shell is marked with device SN, device PN, product name๏ผModel and other information. 1.2 Internal (1) H960 supports 3 power supply schemes: โ Vac input: 100-240Vac, 50-60Hz; โก External battery and solar panel; No matter which power supply method is used, the red and black power supply wires of 960 should be connected. 5 (2) H960 is equipped with a built-in network port and RS485 port (the RS485 port can be debugged and expanded for output, and no sensor is connected) and a 12V long-term power supply port (providing 12V long-term power supply for sensors). (3) H960 sensor access supports vibrating string, RS485, switching quantity, current/voltage, differential resistance, resistance, etc. Sensor wiring is carried out in the sensor channel. The channel names are CH01-CH08, representing channels 1-8 in turn. (4) Status light: normally green on; when there is no external power supply, the built-in battery voltage is lower than 5.5V or the data collection of a connected sensor is abnormal, the indicator light flashes slowly within 1s; when the device is upgraded or the channel status is modified, the channel sensor data is erased and the indicator light flashes quickly within 0.25s. Network light: orange on when successfully connected to any one of the 6 servers (3 network channels in total). Power light: when the built-in lithium battery is fully charged, the red light is always on when powered on; when the battery is charging, it flashes at 1s interval. (5) The RS232 debug port requires CHCNAV's special 7-core cable, which needs to be ordered by the company and is not a universal interface at present; The RS485 debug port can be connected with a USB to RS485 serial port cable. II. H960 Installation Scheme No matter which installation scheme is adopted, the device must be protected against lightning and grounded after installation. The diameter of the grounding wire is not less than 2.5mmยฒ. Strong and weak electricity should be routed separately. For example, The wiring of sensors and power supply lines should not be routed together, and network cables and power supply lines should not be routed together. 2.1 Pole Installation 2.1.1 Hoop Fixing First, fix the backplane to the H960 host with 5 M5ร10 countersunk head 7 screws, and then fix the upper and lower sides of the backplane with 2 stainless steel hoops or hose clamps to fix it on the pole. 2.1.2 Screw Fixing The opening diameter of the 6 holes on the upper and lower sides of H960 is 8mm, and it is fiโฆ
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Page 66 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(H) Channel Bandwidth: 1.4MHz Test Mode: LTE Band 26(H) Channel Bandwidth: 3MHz QPSK QPSK 16-QAM 16-QAM Page 67 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(H) Channel Bandwidth: 5MHz Test Mode: LTE Band 26(H) Channel Bandwidth: 10MHz QPSK QPSK 16-QAM 16-QAM Page 68 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(H) Channel Bandwidth: 15MHz / / QPSK / / 16-QAM / Page 69 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 41 Channel Bandwidth: 5MHz Test Mode: LTE Band 41 Channel Bandwidth: 10MHz QPSK QPSK 16-QAM 16-QAM Page 70 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 41 Channel Bandwidth: 15MHz Test Mode: LTE Band 41 Channel Bandwidth: 20MHz QPSK QPSK 16-QAM 16-QAM Note: All bandwidth and modulation are tested, only the worst results are reported. Page 71 of 332 Report No.: A2506411-C04-R02 4.6 MODULATION CHARACTERISTIC According to FCC ยง 2.1047(d), Part 24E & Part 27 there is no specific requirement for digital modulation, therefore modulation characteristic is not presented. Page 72 of 332 Report No.: A2506411-C04-R02 4.7 Out of band emission at antenna terminals Test Requirement: Part 2.1051 Part 22.917 Part 24.238 Part 27.53(c)(f) Part 27.53(g) Part 27.53(h) Part 27.53(m) Part 90.691 Test Method: ANSI C63.26:2015 Limit: โค -13dBm(LTE Band 5,26(824-849MHz)) โค -13dBm(LTE Band 2,25) โค -13dBm(LTE Band 12, 13) โค -13dBm(LTE Band 4) โค -25dBm(LTE Band 7, 41) โค -13dBm(LTE Band 26(814-824MHz)) For LTE Band 26(814-824MHz): (1) For any frequency removed from the EA licensee's frequency block by up toand including 37 5 kHz, the power of any emission shall be attenuated belowthe transmitter power (P)in watts by atleast 116 Log10(f/6.1) decibels or 50 +10 Log10(P) decibels or 80 decibels, whichever is the lesser attenuation,wheref is the frequency removed from the center of the outer channel in the block inkilohertz and where fis greater than 12.5 kHz. (2)For any frequency removed from the EAlicensee's frequency block greaterthan 37.5 kHz, the power of any emission shall be attenuated below thetransmitter power (P)in watts by at least 43 + 10L9g10(P)decibels or 80decibels, whichever is the lesser attenuation, where fis the frequency removedfrom the center of the outer channel in the block in kilohertz and where f isgreater than 37 5 kHz. Test setup: Test Procedure: 1 The RF output of the transceiver was connected to a spectrum analyzer through appropriate attenuation. 2 The resolution bandwidth of the spectrum analyzer was set at 1MHz, sufficient scans were taken to show the out of band Emissions if any up to 10th harmonic. 3 For the out of band: Set the RBW=1MHz, VBW = 3MHz, Start=30MHz, Stop= 10th harmonic. 4 Band Edge Requirements: In the 1 MHz bands immediately outside and adjacent to the frequency block, a resolution bandwidth of at least 1 percent of the emission bandwidth of the fundamental emission of the transmitter may be employed to measure the out of band Emissions. Page 73 of 332 Report No.: A2506411-C04-R02 Test Instruments: Refer to section 3 for details Test mode: Refer to section 4.1 for details Test results: Pass Test plot as follows: Conducted Spurious Emission: Test Mode: LTE Band 2 / 1.4MHz /1RB Test Mode: LTE Band 2 / 1.4MHz /6 RB Lowest channel Middle channel Highest channel Page 74 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 2 / 3MHz /1RB Test Mode: LTE Band 2 / 3MHz /15RB Lowest channel Middle channel Highest channel Page 75 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 2 / 5MHz /1RB Test Mode: LTE Band 2 / 5MHz /25RB Lowest channel Middle channel Highest channel Page 76 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 2 / 10MHz /1RB Test Mode: LTE Band 2 / 10MHz /50RB Lowest channel Middle channel Highest channel Page 77 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 2 / 15MHz /1RB Test Mode: LTE Band 2 / 15MHz /75RB Lowest channel Middle channel Highest channel Page 78 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 2 / 20MHz /1RB Test Mode: LTE Band 2 / 20MHz /100RB Lowest channel Middle channel Highest channel
FCC ID: SY4-A02073 1.1. Photos of Radiated emission
Page 310 of 332 Report No.: A2506411-C04-R02 Test mode: LTE Band 41(5MHz) Test channel: Lowest Frequency (MHz) Spurious Emission Limit (dBm) Result Polarization Level (dBm) 4991.67 V -38.48 -25.00 Pass 7487.81 V -36.89 9983.83 V -35.79 12479.93 V -32.90 14975.71 V -30.82 4991.73 H -39.40 -25.00 Pass 7488.18 H -36.88 9983.95 H -35.39 12479.94 H -32.98 14975.76 H -30.53 Test mode: LTE Band 41(5MHz) Test channel: Middle Frequency (MHz) Spurious Emission Limit (dBm) Result Polarization Level (dBm) 5185.82 V -38.48 -25.00 Pass 7778.76 V -36.79 10371.61 V -35.64 12965.08 V -32.73 15557.93 V -30.94 5185.86 H -39.28 -25.00 Pass 7778.68 H -36.62 10372.17 H -35.52 12964.99 H -32.78 15557.88 H -30.33 Test mode: LTE Band 41(5MHz) Test channel: Highest Frequency (MHz) Spurious Emission Limit (dBm) Result Polarization Level (dBm) 5379.63 V -38.56 -25.00 Pass 8069.64 V -36.71 10759.75 V -35.72 13450.19 V -32.92 16139.75 V -30.98 5379.69 H -39.23 -25.00 Pass 8069.70 H -36.78 10760.09 H -35.57 13450.08 H -32.65 16139.67 H -30.39 Remark๏ผ 1 The emission behaviour belongs to narrowband spurious emission, all modes investigated and only worst case is reported. 2 Remarkโ---โ means that the emission level is too low (20dB lower than the limit) to be measured 3 The emission levels of below 1 GHz are very lower (20dB lower than the limit) than the limit and not show in test report. 4 All modes have been tested, and only worst data was listed in this report.(5MHz) Page 311 of 332 Report No.: A2506411-C04-R02 16 QAM Mode: Test mode: LTE Band 2 (1.4MHz) Test channel: Lowest Frequency (MHz) Spurious Emission Limit (dBm) Result Polarization Level (dBm) 3699.70 V -38.89 -13.00 Pass 5550.14 V -36.69 7400.10 V -35.76 9250.17 V -32.60 11099.82 V -30.82 3699.90 H -39.13 -13.00 Pass 5550.03 H -36.75 7400.14 H -35.39 9250.00 H -32.92 11099.81 H -30.45 Test mode: LTE Band 2 (1.4MHz) Test channel: Middle Frequency (MHz) Spurious Emission Limit (dBm) Result Polarization Level (dBm) 3760.02 V -38.70 -13.00 Pass 5639.92 V -37.08 7519.64 V -35.46 9399.66 V -33.03 11280.08 V -31.11 3759.75 H -39.47 -13.00 Pass 5639.96 H -36.52 7519.86 H -35.43 9399.84 H -32.66 11279.69 H -30.19 Test mode: LTE Band 2 (1.4MHz) Test channel: Highest Frequency (MHz) Spurious Emission Limit (dBm) Result Polarization Level (dBm) 3819.81 V -38.73 -13.00 Pass 5729.67 V -36.75 7639.93 V -35.35 9549.95 V -32.92 11459.84 V -31.11 3819.61 H -39.07 -13.00 Pass 5729.80 H -36.89 7639.88 H -35.37 9549.74 H -32.73 11459.98 H -30.19 Remark๏ผ 1 The emission behaviour belongs to narrowband spurious emission, all modes investigated and only worst case is reported. 2 Remarkโ---โ means that the emission level is too low (20dB lower than the limit) to be measured 3 The emission levels of below 1 GHz are very lower (20dB lower than the limit) than the limit and not show in test report. 4 All modes have been tested, and only worst data was listed in this report.(1.4MHz) Page 312 of 332 Report No.: A2506411-C04-R02 Test mode: LTE Band 4(1.4MHz) Test channel: Lowest Frequency (MHz) Spurious Emission Limit (dBm) Result Polarization Level (dBm) 3420.04 V -38.89 -13.00 Pass 5130.19 V -36.69 6839.69 V -35.68 8549.88 V -32.75 10260.18 V -30.76 3419.62 H -39.07 -13.00 Pass 5129.78 H -36.50 6839.88 H -35.50 8549.70 H -32.62 10260.05 H -30.64 Test mode: LTE Band 4(1.4MHz) Test channel: Middle Frequency (MHz) Spurious Emission Limit (dBm) Result Polarization Level (dBm) 3464.74 V -38.55 -13.00 Pass 5197.34 V -36.66 6929.67 V -35.68 8662.55 V -32.75 10395.05 V -31.21 3464.97 H -39.28 -13.00 Pass 5197.29 H -36.53 6929.78 H -35.14 8662.53 H -32.97 10394.65 H -30.33 Test mode: LTE Band 4(1.4MHz) Test channel: Highest Frequency (MHz) Spurious Emission Limit (dBm) Result Polarization Level (dBm) 3509.85 V -38.69 -13.00 Pass 5265.13 V -36.81 7019.89 V -35.44 8775.06 V -32.84 10529.71 V -31.16 3509.95 H -39.08 -13.00 Pass 5265.07 H -36.63 7019.78 H -35.53 8775.18 H -32.99 10529.97 H -30.44 Remark๏ผ 1 The emission behaviour belongs to narrowband spurious emission, all modes investigated and only worst case is reported. 2 Remarkโ---โ means that the emission level is too low (20dB lower than the limit) to be measured 3 The emission levels of below 1 GHz are very lower (20dB lower than the limit) than the limit and not show in test report. 4 All modes have been tested, and only worst data was listed in this report.(1.4MHz) Page 313 of 332 Report No.: A2506411-C04-R02 Test mode: LTE Band 5(1.4MHz) Test channel: Lowest Frequency (MHz) Spurious Emission Limit (dBm) Result Polarization Level (dBm) 1648.01 V -38.72 -13.00 Pass 2472.18 V -37.01 3295.78 V -35.80 4119.91 V -32.68 4944.14 V -30.79 1647.76 H -39.44 -13.00 Pass 2472.19 H -36.97 3296.11 H -35.58 4120.20 H -32.80 4943.90 H -30.52 Test mode: LTE Band 5(1.4MHz) Test channel: Middle Frequency (MHz) Spurious Emission Limit (dBm) Result Polarization Level (dBm) 1673.03 V -38.47 -13.00 Pass 2509.20 V -36.76 3346.19 V -35.62 4182.13 V -32.73 5019.02 V -31.03 1673.14 H -39.28 -13.00 Pass 2509.46 H -36.77 3345.94 H -35.58 4182.23 H -32.98 5018.66 H -30.47 Test mode: LTE Band 5(1.4MHz) Test channel: Highest Frequency (MHz) Spurious Emission Limit (dBm) Result Polarization Level (dBm) 1697.94 V -38.60 -13.00 Pass 2546.74 V -37.01 3396.00 V -35.46 4244.62 V -32.93 5093.80 V -31.06 1697.94 H -39.47 -13.00 Pass 2547.15 H -36.82 3395.63 H -35.38 4244.79 H -32.93 5093.83 H -30.47 Remark๏ผ 1 The emission behaviour belongs to narrowband spurious emission, all modes investigated and only worst case is reported. 2 Remarkโ---โ means that the emission level is too low (20dB lower than the limit) to be measured 3 The emission levels of below 1 GHz are very lower (20dB lower than the limit) than the limit and not show in test report. 4 All modes have been tested, and only worst data was listed in this report.(1.4MHz) Page 314 of 332 Report No.: A2506411-C04-R02 Test mode: LTE Band 7(5MHz) Test channel: Lowest Frequency (MHz) Spurious Emission Limit (dBm) Result Polariโฆ
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Page 204 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 41 / 5MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 41 / 5MHz / 25RB / 16-QAM Lowest channel Highest channel Page 205 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 41 / 10MHz /1 RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 41 / 10MHz / 50RB / 16-QAM Lowest channel Highest channel Page 206 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 41 / 15MHz /1 RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 41 / 15MHz / 75RB / 16-QAM Lowest channel Highest channel Page 207 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 41 / 20MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 41 / 20MHz / 100RB / 16-QAM Lowest channel Highest channel Note: All bandwidth and modulation are tested, only the worst result is reported. Page 208 of 332 Report No.: A2506411-C04-R02 4.8 ERP, EIRP Measurement Test Requirement: Part 2.1046, Part 22.913(a), Part 24.232(b), Part 27.50(b), Part 27.50(c), Part 27.50(d), Part 27.50(h), Part 90.635 Test Method: ANSI C63.26:2015 Limit: ERPโค 7W(38.45dBm) (LTE Band 5,26(824-849MHz)) EIRPโค 2W(33.00dBm) (LTE Band 2,25) ERPโค 3W(34.77dBm) (LTE Band 13) ERPโค 3W(34.77dBm) (LTE Band 12) EIRPโค 1W(30.00dBm) (LTE Band 4) EIRPโค 2W(33.00dBm) (LTE Band 7, 41) ERPโค 100W(50.00dBm) (LTE Band 26(814-824MHz)) Test setup: Below 1GHz Above 1GHz Substituted method: Page 209 of 332 Report No.: A2506411-C04-R02 Test Procedure: 1. The EUT was placed on an non-conductive turntable using a non- conductive support. The radiated emission at the fundamental frequency was measured at 3 m with a test antenna and EMI spectrum analyzer. 2. During the measurement, the EUT was communication with the station. The highest emission was recorded with the rotation of the turntable and the lowering of the test antenna from 4m to 1m. The reading was recorded and the field strength (E in dBuV/m) was calculated. 3. ERP were measured using a substitution method. The EUT was replaced by dipole antenna connected, the S.G. output was recorded and ERP was calculated asfollows: ERP = S.G. output (dBm) + Antenna Gain (dBd) โ Cable Loss (dB) 4. EIRP were measured using a substitution method. The EUT was replaced by or horn antenna connected, the S.G. output was recorded and EIRP was calculated as follows: EIRP = S.G. output (dBm) + Antenna Gain (dBi) โ Cable Loss (dB) Test Instruments: Refer to section 3 for details Test mode: Refer to section 4.1 for details Test results: Pass Remark: H, E1, E2 mean for EUT polarization of X, Y, Z Page 210 of 332 Report No.: A2506411-C04-R02 Measurement Data EUT mode RB Size RB Offset Channel EUT Pol. Antenna Pol. EIRP (dBm) Limit (dBm) Result LTE Band 2 (1.4MHz) QPSK 6 0 Lowest H V 23.41 33.00 Pass H 23.72 E1 V 23.62 H 23.45 E2 V 23.41 H 23.66 6 0 Middle H V 23.68 33.00 Pass H 23.80 E1 V 23.44 H 23.53 E2 V 23.46 H 23.52 6 0 Highest H V 23.78 33.00 Pass H 23.79 E1 V 23.74 H 23.76 E2 V 23.34 H 23.42 Page 211 of 332 Report No.: A2506411-C04-R02 EUT mode Channel RB Size RB Offset EUT Pol. Antenna Pol. EIRP(dBm) Limit (dBm) Result LTE Band 2 (3MHz) QPSK Lowest 15 0 H V 23.44 33.00 Pass H 23.74 E1 V 23.61 H 23.67 E2 V 23.69 H 23.33 Middle 15 0 H V 23.51 33.00 Pass H 23.76 E1 V 23.32 H 23.78 E2 V 23.49 H 23.48 Highest 15 0 H V 23.36 33.00 Pass H 23.37 E1 V 23.60 H 23.54 E2 V 23.37 H 23.72 Page 212 of 332 Report No.: A2506411-C04-R02 EUT mode Channel RB Size RB Offset EUT Pol. Antenna Pol. EIRP(dBm) Limit (dBm) Result LTE Band 2 (5MHz) QPSK Lowest 25 0 H V 23.58 33.00 Pass H 23.61 E1 V 23.79 H 23.48 E2 V 23.49 H 23.66 Middle 25 0 H V 23.56 33.00 Pass H 23.68 E1 V 23.60 H 23.52 E2 V 23.40 H 23.65 Highest 25 0 H V 23.41 33.00 Pass H 23.52 E1 V 23.33 H 23.65 E2 V 23.59 H 23.39 Page 213 of 332 Report No.: A2506411-C04-R02 EUT mode Channel RB Size RB Offset EUT Pol. Antenna Pol. EIRP(dBm) Limit (dBm) Result LTE Band 2 (10MHz) QPSK Lowest 50 0 H V 23.78 33.00 Pass H 23.42 E1 V 23.65 H 23.74 E2 V 23.41 H 23.32 Middle 50 0 H V 23.60 33.00 Pass H 23.41 E1 V 23.68 H 23.66 E2 V 23.74 H 23.53 Highest 50 0 H V 23.78 33.00 Pass H 23.70 E1 V 23.54 H 23.60 E2 V 23.66 H 23.69 Page 214 of 332 Report No.: A2506411-C04-R02 EUT mode Channel RB Size RB Offset EUT Pol. Antenna Pol. EIRP(dBm) Limit (dBm) Result LTE Band 2 (15MHz) QPSK Lowest 75 0 H V 23.68 33.00 Pass H 23.77 E1 V 23.54 H 23.43 E2 V 23.75 H 23.73 Middle 75 0 H V 23.45 33.00 Pass H 23.51 E1 V 23.76 H 23.56 E2 V 23.67 H 23.38 Highest 75 0 H V 23.67 33.00 Pass H 23.56 E1 V 23.48 H 23.41 E2 V 23.68 H 23.59 Page 215 of 332 Report No.: A2506411-C04-R02 EUT mode Channel RB Size RB Offset EUT Pol. Antenna Pol. EIRP(dBm) Limit (dBm) Result LTE Band 2 (20MHz) QPSK Lowest 100 0 H V 23.78 33.00 Pass H 23.45 E1 V 23.68 H 23.53 E2 V 23.73 H 23.59 Middle 100 0 H V 23.57 33.00 Pass H 23.68 E1 V 23.70 H 23.59 E2 V 23.76 H 23.57 Highest 100 0 H V 23.42 33.00 Pass H 23.35 E1 V 23.48 H 23.63 E2 V 23.43 H 23.73 Page 216 of 332 Report No.: A2506411-C04-R02 EUT mode RB Size RB Offset Channel EUT Pol. Antenna Pol. EIRP (dBm) Limit (dBm) Result LTE Band 2 (1.4MHz) 16 QAM 6 0 Lowest H V 23.42 33.00 Pass H 23.53 E1 V 23.69 H 23.53 E2 V 23.49 H 23.44 6 0 Middle H V 23.72 33.00 Pass H 23.67 E1 V 23.57 H 23.52 E2 V 23.79 H 23.32 6 0 Highest H V 23.43 33.00 Pass H 23.72 E1 V 23.45 H 23.73 E2 V 23.51 H 23.68 Page 217 of 332 Report No.: A2506411-C04-R02 EUT mode Channel RB Size RB Offset EUT Pol. Antenna Pol. EIRP(dBm) Limit (dBm) Result LTE Band 2 (3MHz) 16 QAM Lowest 15 0 H V 23.44 33.00 Pass H 23.53 E1 V 23.43 H 23.49 E2 V 23.76 H 23.39 Middle 15 0 H V 23.35 33.00 Pass H 23.72 E1 V 23.48 H 23.68 E2 V 23.52 H 23.44 Highest 15 0 H V 23.77 33.00 Pass H 23.33 E1 V 23.57 H 23.39 E2 V 23.52 H 23.36 Page 218 of 332 Report No.: A2506411-C04-R02 EUT mode Channel RB Size RB Offset EUT Pol. Antenna Pol. EIRP(dBm) Limit (dBm) Result LTE Band 2 (5MHz) 16 QAM Lowest 25 0 H V 23.56 33.00 Pass H 23.75 E1 V 23.78 H 23.78 E2 V 23.45 H 23.79 Middleโฆ
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Page 190 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(H) / 1.4MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 26(H) / 1.4MHz / 6RB / QPSK Lowest channel Highest channel Page 191 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(H) / 3MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 26(H) / 3MHz / 15RB / QPSK Lowest channel Highest channel Page 192 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(H) / 5MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 26(H) / 5MHz / 25RB / QPSK Lowest channel Highest channel Page 193 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(H) / 10MHz /1 RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 26(H) / 10MHz / 50RB / QPSK Lowest channel Highest channel Page 194 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(H) / 15MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 26(H) / 15MHz / 75RB / QPSK Lowest channel Highest channel Page 195 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(H) / 1.4MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 26(H) / 1.4MHz / 6RB /16-QAM Lowest channel Highest channel Page 196 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(H) / 3MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 26(H) / 3MHz / 15RB /16-QAM Lowest channel Highest channel Page 197 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(H) / 5MHz /1 RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 26(H) / 5MHz / 25RB /16-QAM Lowest channel Highest channel Page 198 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(H) / 10MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 26(H) / 10MHz / 50RB /16-QAM Lowest channel Highest channel Page 199 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(H) / 15MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 26(H) / 15MHz / 75RB / 16-QAM Lowest channel Highest channel Page 200 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 41 / 5MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 41 / 5MHz / 25RB / QPSK Lowest channel Highest channel Page 201 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 41 / 10MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 41 / 10MHz / 50RB / QPSK Lowest channel Highest channel Page 202 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 41 / 15MHz /1 RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 41 / 15MHz / 75RB / QPSK Lowest channel Highest channel Page 203 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 41 / 20MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 41 / 20MHz / 100RB / QPSK Lowest channel Highest channel
Page 170 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 25 / 1.4MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 25 / 1.4MHz / 6RB / QPSK Lowest channel Highest channel Page 171 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 25 / 3MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 25 / 3MHz / 15RB / QPSK Lowest channel Highest channel Page 172 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 25 / 5MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 25 / 5MHz / 25RB / QPSK Lowest channel Highest channel Page 173 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 25 / 10MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 25 / 10MHz / 50RB / QPSK Lowest channel Highest channel Page 174 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 25 / 15MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 25 / 15MHz / 75RB / QPSK Lowest channel Highest channel Page 175 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 25 / 20MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 25 / 20MHz / 100RB / QPSK Lowest channel Highest channel Page 176 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 25 / 1.4MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 25 / 1.4MHz / 6RB / 16-QAM Lowest channel Highest channel Page 177 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 25 / 3MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 25 / 3MHz / 15RB / 16-QAM Lowest channel Highest channel Page 178 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 25 / 5MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 25 / 5MHz / 25RB / 16-QAM Lowest channel Highest channel Page 179 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 25 / 10MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 25 / 10MHz / 50RB / 16-QAM Lowest channel Highest channel Page 180 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 25 / 15MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 25 / 15MHz / 75RB / 16-QAM Lowest channel Highest channel Page 181 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 25 / 20MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 25 / 20MHz / 100RB / 16-QAM Lowest channel Highest channel Page 182 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(L) / 1.4MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 26(L) / 1.4MHz / 6RB / QPSK Lowest channel Highest channel Page 183 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(L) / 3MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 26(L) / 3MHz / 15RB / QPSK Lowest channel Highest channel Page 184 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(L) / 5MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 26(L) / 5MHz / 25RB / QPSK Lowest channel Highest channel Page 185 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(L) / 10MHz /1 RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 26(L) / 10MHz / 50RB / QPSK Page 186 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(L) / 1.4MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 26(L) / 1.4MHz / 6RB /16-QAM Lowest channel Highest channel Page 187 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(L) / 3MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 26(L) / 3MHz / 15RB /16-QAM Lowest channel Highest channel Page 188 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(L) / 5MHz /1 RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 26(L) / 5MHz / 25RB /16-QAM Lowest channel Highest channel Page 189 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 26(L) / 10MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 26(L) / 10MHz / 50RB /16-QAM
Page 156 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 7 / 15MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 7 / 15MHz / 75RB / 16-QAM Lowest channel Highest channel Page 157 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 7 / 20MHz / 1RB / 16-QAM Lowest channel Highest channel Test Mode: LTE Band 7 / 20MHz / 100RB / 16-QAM Lowest channel Highest channel Page 158 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 12 / 1.4MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 12 / 1.4MHz / 6RB / QPSK Lowest channel Highest channel Page 159 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 12 / 3MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 12 / 3MHz / 15RB / QPSK Lowest channel Highest channel Page 160 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 12 / 5MHz / 1RB / QPSK Lowest channel Highest channel Test Mode: LTE Band 12 / 5MHz / 25RB / QPSK Lowest channel Highest channel Page 161 of 332 Report No.: A2506411-C04-R02 Test Mode: LTE Band 12 /โฆ
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1545 South 1100 East #1 ยท P.O. Box 84105 ยท Salt Lake City, 84105 ยท United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 22H | 824.2 MHz - 848.8 MHz | 724.44 mW | 246KG7W | 2.5ppm |
| 2 | 22H | 824.2 MHz - 848.8 MHz | 598.41 mW | 239KGXW | 2.5ppm |
| 3 | 24E | 1.85 GHz - 1.91 GHz | 543.25 mW | 241KG7W | 2.5ppm |
| 4 | 24E | 1.85 GHz - 1.91 GHz | 672.98 mW | 245KGXW | 2.5ppm |
| 5 | 22H | 826.4 MHz - 846.6 MHz | 454.99 mW | 4M14F9W | 2.5ppm |
| 6 | 24E | 1.85 GHz - 1.91 GHz | 123.59 mW | 4M13F9W | 2.5ppm |
| 7 | 27 | 1.71 GHz - 1.75 GHz | 169.82 mW | 4M13F9W | 2.5ppm |
| 8 | 24E | 1.85 GHz - 1.91 GHz | 239.88 mW | 1M10G7D | 2.5ppm |
| 9 | 24E | 1.85 GHz - 1.91 GHz | 239.33 mW | 1M10W7D | 2.5ppm |
| 1 | 24E | 1.86 GHz - 1.90 GHz | 238.78 mW | 17M9W7D | 2.5ppm |
| 11 | 24E | 1.86 GHz - 1.90 GHz | 237.68 mW | 17M9W7D | 2.5ppm |
| 12 | 27 | 1.71 GHz - 1.75 GHz | 240.99 mW | 1M09G7D | 2.5ppm |
| 13 | 27 | 1.71 GHz - 1.75 GHz | 236.59 mW | 1M10W7D | 2.5ppm |
| 14 | 27 | 1.72 GHz - 1.75 GHz | 234.42 mW | 17M8G7D | 2.5ppm |
| 15 | 27 | 1.72 GHz - 1.75 GHz | 233.35 mW | 17M8W7D | 2.5ppm |
| 16 | 22H | 824.7 MHz - 848.3 MHz | 233.88 mW | 1M10G7D | 2.5ppm |
| 17 | 22H | 824.7 MHz - 848.3 MHz | 235.50 mW | 1M10W7D | 2.5ppm |
| 18 | 22H | 829 MHz - 844 MHz | 232.81 mW | 8M93G7D | 2.5ppm |
| 19 | 22H | 829 MHz - 844 MHz | 234.42 mW | 8M93W7D | 2.5ppm |
| 2 | 27 | 2.50 GHz - 2.57 GHz | 236.05 mW | 4M51G7D | 2.5ppm |
| 21 | 27 | 2.50 GHz - 2.57 GHz | 234.96 mW | 4M50W7D | 2.5ppm |
| 22 | 27 | 2.51 GHz - 2.56 GHz | 230.14 mW | 17M9G7D | 2.5ppm |
| 23 | 27 | 2.51 GHz - 2.56 GHz | 233.35 mW | 17M9W7D | 2.5ppm |
| 24 | 27 | 699.7 MHz - 715.3 MHz | 237.14 mW | 1M10G7D | 2.5ppm |
| 25 | 27 | 699.7 MHz - 715.3 MHz | 233.35 mW | 1M10W7D | 2.5ppm |
| 26 | 27 | 704 MHz - 711 MHz | 233.88 mW | 8M94G7D | 2.5ppm |
| 27 | 27 | 704 MHz - 711 MHz | 231.21 mW | 8M93W7D | 2.5ppm |
| 28 | 27 | 779.5 MHz - 784.5 MHz | 234.96 mW | 4M51G7D | 2.5ppm |
| 29 | 27 | 779.5 MHz - 784.5 MHz | 230.67 mW | 4M50W7D | 2.5ppm |
| 3 | 27 | 782 MHz - 782 MHz | 232.81 mW | 8M91G7D | 2.5ppm |
| 31 | 27 | 782 MHz - 782 MHz | 228.56 mW | 8M91W7D | 2.5ppm |
| 32 | 24E | 1.85 GHz - 1.91 GHz | 233.35 mW | 1M10G7D | 2.5ppm |
| 33 | 24E | 1.85 GHz - 1.91 GHz | 233.35 mW | 1M10W7D | 2.5ppm |
| 34 | 24E | 1.86 GHz - 1.91 GHz | 229.09 mW | 17M8G7D | 2.5ppm |
| 35 | 24E | 1.86 GHz - 1.91 GHz | 229.09 mW | 17M8W7D | 2.5ppm |
| 36 | 9 | 814.7 MHz - 823.3 MHz | 231.21 mW | 1M10G7D | 2.5ppm |
| 37 | 9 | 814.7 MHz - 823.3 MHz | 230.67 mW | 1M09W7D | 2.5ppm |
| 38 | 9 | 819 MHz - 819 MHz | 229.09 mW | 8M95G7D | 2.5ppm |
| 39 | 9 | 819 MHz - 819 MHz | 226.99 mW | 8M95W7D | 2.5ppm |
| 4 | 22H | 824.7 MHz - 848.3 MHz | 228.56 mW | 1M10G7D | 2.5ppm |
| 41 | 22H | 824.7 MHz - 848.3 MHz | 228.03 mW | 1M10W7D | 2.5ppm |
| 42 | 22H | 829 MHz - 844 MHz | 227.51 mW | 8M94G7D | 2.5ppm |
| 43 | 22H | 829 MHz - 844 MHz | 227.51 mW | 8M94W7D | 2.5ppm |
| 44 | 27 | 2.50 GHz - 2.69 GHz | 232.27 mW | 4M50G7D | 2.5ppm |
| 45 | 27 | 2.50 GHz - 2.69 GHz | 229.09 mW | 4M51W7D | 2.5ppm |
| 46 | 27 | 2.51 GHz - 2.68 GHz | 229.09 mW | 17M9G7D | 2.5ppm |
| 47 | 27 | 2.51 GHz - 2.68 GHz | 228.56 mW | 17M9W7D | 2.5ppm |

GNSS Receiver
Equipment Class
DTS - Digital Transmission SystemHandheld GNSS Data Collector
Equipment Class
PCB - PCS Licensed Transmitter
Surveying System
Equipment Class
NII - Unlicensed National Information Infrastructure TX
Surveying System
Equipment Class
NII - Unlicensed National Information Infrastructure TX
GNSS Data Collector
Equipment Class
NII - Unlicensed National Information Infrastructure TX