
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
COMPUTER RADIO CONTROL SYSTEM ® COMPLEX RADIO CONTROL SYSTEM User Manual ... 01User Manual ... 01User Manual ... 01 Bedienungsanleitung ... 30Bedienungsanleitung ... 30Bedienungsanleitung ... 30 EN DE FW 1.14FW 1.14 Receivers REX FW 1.14 Empfänger REXEmpfänger REX FW 1.14FW 1.14 Empfänger REX FW 1.14 COMPUTER RADIO CONTROL SYSTEM 2 COMPUTER RADIO CONTROL SYSTEM 1. Introduction ......................................................................................... 05 2. Technical data ...................................................................................... 06 2.1 Receivers 2.4 GHz ........................................................................ 06 2.2 Receivers 900 MHz ...................................................................... 07 3. Installation ........................................................................................... 07 3.1 Voltage Supply ........................................................................... 07 3.2 Operation ..................................................................................... 08 3.3 Binding .......................................................................................... 08 4. Real Time Telemetry ........................................................................... 10 4.1 EX Telemetry ................................................................................. 10 4.2 - 1st Generation ........................................................................... 10 5. Receiver setup ..................................................................................... 11 5.1 Receiver Setup via the JETIBOX ................................................ 11 EN ENGLISH 3 Ver. 2020-10 COMPUTER RADIO CONTROL SYSTEM 5.1.1 Direct connection between a JETIBOX and the receiver ............................................................................... 11 5.1.2 Wireless connection between a JETIBOX with transmitter or DC/DS transmitter and the receiver ..... 11 5.2. Receiver set-up via the DC/DS transmitter ............................ 12 6. Receiver Menu ......................................................................................... 13 6.1 Overview of receiver data items ............................................ 13 6.2 Measure ....................................................................................... 11 6.3 Main setting ................................................................................. 14 6.4 Out pin set .................................................................................... 17 6.5 Auto set ......................................................................................... 20 7. Receiver Rsat 900 NG (Next Generation)......................................... 21 7.1 General Settings .......................................................................... 21 7.2 Alternative Pin Config ................................................................ 22 8. Receiver update ...................................................................................... 23 9. Examples of Rx setup ........................................................................... 24 4 EN COMPUTER RADIO CONTROL SYSTEM JETI Duplex receivers are designated for use with the DC/DS transmitters or the JETI transmitter modules in the 2.4 GHz frequency band. The system is continuously improved. Thanks to online updates the improvements are easily accessible to users from any part of the world. From the very beginning bidirectional transmission has been a distinctive feature of the Duplex system, this not only handles telemetry data, but it also helps to ensure secure primarily transmission safety between the transmitter and receiver. The Duplex EX telemetry system uses an open protocol. This gives the advantage of compatibility with a large number of telemetry sensors from both JETI model and third party producers. For the display of telemetry data you can use purposely designed equipment like the JETIBOX profi and DC/DS transmitters or you can display the data on PCs. Although our development of the Duplex system seems to be very fast, we make the extra effort to keep backward compatibility with REX Receivers 1 Introduction ENGLISH FW. ver. 1.14 5 EN COMPUTER RADIO CONTROL SYSTEM earlier Duplex versions. By design, users are not forced to continually buy new equipment to take advantage of the latest improvements. The JETI model company portfolio contains a diverse offering of electronic modelling equipment like voltage regulators, motor speed controllers, telemetry data display equipment, telemetry sensors and, last but not least, DC/DS transmitters. The JETI model product manfacturing policy is to constantly produce the highest quality product possible. 2 Technical data Basic Data REX3REX6REX7REX10REX12* Dimensions [mm] 40x22x738x25x11 42x28x11 51x28x1151x28x11 Weight [g] 711131624 Antenna length [mm] 2x100 2x100 2x200 2x2002x400 # of channel outputs 3671012 Temperature range [°C] -10 to +85-10 to +85 -10 to +85-10 to +85 -10 to +85 Supply voltage [V] 3.5 – 8.43.5 – 8.4 3.5 – 8.43.5 – 8.4 3.5 – 8.4 Average current [mA] 70 75 757575 Real time transmission of telemetry data Yes Yes Yes YesYes Programming DC/DS /JETIBOX DC/DS /JETIBOX DC/DS /JETIBOX DC/DS /JETIBOX DC/DS /JETIBOX Support satellite receiver Rsat YesYesYesYesYes Power output [dBm] 15 15 15 15 15 Receiver sensitivity [dBm] -106 -106 -106 -106 -106 Frequency [Mhz] 2400 - 2483 2400 - 24832400 - 24832400 - 24832400 - 2483 * xternal ower onnector EPC 2.1 Receivers 2.4 GHz 6 EN COMPUTER RADIO CONTROL SYSTEM 3.1 Voltage supply When designing the on-board wiring for your project, always pay attention to the voltage input range of your receivers and servos. You can connect supply voltage to the Duplex receivers as follows: - directly from the batteries - via a BEC voltage regulator (either contained in speed controllers or self contained) 3 Installation Basic Data Rsat900Rsat900 NG Dimensions [mm] 40x22x7…
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JETI model s.r.o Receiver RSat900NG External photos Overall view JETI model s.r.o Receiver RSat900NG Top view Bottom view JETI model s.r.o Receiver RSat900NG Right view Left view Front view Rear view
JETI model s.r.o Receiver RSat900NG Internal photos Top view JETI model s.r.o Receiver RSat900NG Bottom view
TÜV SÜD America 5610 West Sligh Ave., Suite 100 Tampa, FL 33634 Phone: 813-284-2715 www.tuv-sud-america.com TÜV SÜD Certification Exhibit FCC ID: ONTJETIR900NGUS FCC Rule Part: 47 CFR Part 2.1091 TÜV SÜD Project Number: 72163756 Manufacturer: Esprit Model Inc. Model: JETIR900NGUS RF Exposure Model: JETIR900NGUS FCC ID: ONTJETIR900NGUS Project: 72163756 TÜV SÜD America Inc. Page 2 General Information: Applicant: Esprit Model Inc. Device Category: Mobile Environment: General Population/Uncontrolled Exposure Technical Information: Antenna Type: Whip Antenna Gain: 3 dBi Maximum Transmitter Conducted Power: 12.71 dBm, 18.6638 mW Maximum System EIRP: 15.71 dBm, 37.2392 mW Exposure Conditions: 20 centimeters or greater MPE Calculation The Power Density (mW/cm 2 ) is calculated as follows: S = 2 4R PG π Where: S = power density (in appropriate units, e.g. mW/cm2) P = power input to the antenna (in appropriate units, e.g., mW) G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna (appropriate units, e.g., cm) Table 1: MPE Calculation Transmit Frequency (MHz) Radio Power (dBm) Power Density Limit (mW/Cm2) Radio Power (mW) Antenna Gain (dBi) Antenna Gain (mW eq.) Distance (cm) Power Density (mW/cm^2) 902.5 12.71 0.60 18.66 3 1.995 20 0.007
TÜV SÜD America 5610 West Sligh Ave., Suite 100 Tampa, FL 33634 Phone: 813-284-2715 www.tuv-sud-america.com TÜV SÜD RESPONSIBLE FOR NAME DATE SIGNATURE Authorized Signatory Peter Walsh 2021 -February-18 Testing Thierry Jean-Charles 2021-February-08 Signatures in this approval box have checked this document in line with the requirements of TÜV SÜD Product Service document control rules. FCC Accreditation Designation Number US1063 Tampa, FL Test Laboratory Innovation, Science, and Economic Development Canada Accreditation Site Number 2087A-2 Tampa, FL Test Laboratory EXECUTIVE SUMMARY Samples of this product were tested and found to be in compliance with 15.247 and ISED Canada’s RSS-247 A2LA Cert. No. 2955.15 DISCLAIMER AND COPYRIGHT This non-binding report has been prepared by TÜV SÜD America with all reasonable skill and care. The document is confidential to the potential Client and TÜV SÜD America. No part of this document may be reproduced without the prior written approval of TÜV SÜD America. © TÜV SÜD. DISCLAIMER AND COPYRIGHT Our A2LA Accreditation does not cover opinions and interpretations and any expressed are outside the scope of our A2LA Accreditation. Results of test not covered by our A2LA Accreditation Schedule are marked NUA (Not A2LA Accredited). FCC and ISED Canada Testing of the Esprit Model Inc. JETIR900NGUS In accordance with FCC 47 CFR part 15.247 and ISED Canada’s Radio Standards Specifications RSS-247 Prepared for: Esprit Model Inc. 1240 Clearmont st. NW Palm Bay, FL 32905 FCC ID: ONTJETIR900NGUS IC: 10491A-JETR900NGUS COMMERCIAL-IN-CONFIDENCE Document Number: TP72163756.100| Version Number: 01 Document Number: TP72163756.100 | Version Number: 01 COMMERCIAL-IN-CONFIDENCE Page 2 of 95 Contents 1Report Summary .........................................................................................................................3 1.1Report Modification Record ...........................................................................................................3 1.2Introduction ....................................................................................................................................3 1.3Brief Summary of Results .............................................................................................................5 1.4Product Information .......................................................................................................................6 1.5Deviations from the Standard ........................................................................................................8 1.6EUT Modification Record ..............................................................................................................9 1.7Test Location .................................................................................................................................9 2Test Details ............................................................................................................................... 10 2.1Antenna Requirements............................................................................................................... 10 2.2Carrier Frequency Separation .................................................................................................... 11 2.3Number of Hopping Channels .................................................................................................... 15 2.4Channel Dwell Time ................................................................................................................... 19 2.520 dB Bandwidth ........................................................................................................................ 27 2.699% Bandwidth .......................................................................................................................... 36 2.7Peak Output Power .................................................................................................................... 45 2.8Band-Edge Compliance of RF Conducted Emissions ............................................................... 54 2.9RF Conducted Spurious Emissions ........................................................................................... 64 2.10Radiated Spurious Emissions into Restricted Frequency Bands ............................................... 72 2.11Power Spectral Density .............................................................................................................. 76 2.12Power Line Conducted Emissions ............................................................................................. 85 2.13Duty Cycle of Test Mode of Operation ....................................................................................... 86 3Test Equipment Information ................................................................................................... 90 3.1General Test Equipment Used ................................................................................................... 90 4Diagram of Test Set-ups .......................................................................................................... 91 5Measurement Uncertainty ....................................................................................................... 94 6Accreditation, Disclaimers and Copyright............................................................................. 95 Document Number: TP72163756.100 | Version Number: 01 COMMERCIAL-IN-CONFIDENCE Page 3 of 95 1 Report Summary 1.1 Report Modification Record Alterations and additions to this report will be issued to the holders of each copy in the form of a complete document. Issue Description of Change Date of Issue 1 First Issue 2021-February-18 1.2 Introduction The purpose of this report is to demonstrate compliance with Part 15 Subpart C of the FCC’s Code of Federal Regulations Section 15.247 and Innovation Science and Economic Development Canada’s Radio Standards Specification RSS-247…
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TÜV SÜD America 5610 West Sligh Ave., Suite 100 Tampa, FL 33634 Phone: 813-284-2715 www.tuv-sud-america.com TÜV SÜD Certification Exhibit FCC ID: ONTJETIR900NGUS IC: 10491A-JETR900NGUS FCC Rule Part: 15.247 ISED Canada’s Radio Standards Specification: RSS-247 Project: 72163756 Manufacturer: Esprit Model Inc. Model: JETIR900NGUS Test Setup Photos Model: JETIR900NGUS FCC ID: ONTJETIR900NGUS IC: 10491A-JETR900NGUS Project: 72163756 TÜV SÜD America, Inc. Page 2 Figure 1: Radiated Emissions – Front View – Below 1 GHz Model: JETIR900NGUS FCC ID: ONTJETIR900NGUS IC: 10491A-JETR900NGUS Project: 72163756 TÜV SÜD America, Inc. Page 3 Figure 2: Radiated Emissions – Back View – 9 kHz to 30 MHz Model: JETIR900NGUS FCC ID: ONTJETIR900NGUS IC: 10491A-JETR900NGUS Project: 72163756 TÜV SÜD America, Inc. Page 4 Figure 3: Radiated Emissions – Back View – 30 MHz to1 GHz Model: JETIR900NGUS FCC ID: ONTJETIR900NGUS IC: 10491A-JETR900NGUS Project: 72163756 TÜV SÜD America, Inc. Page 5 Figure 4: Radiated Emissions – Front View – above 1 GHz Model: JETIR900NGUS FCC ID: ONTJETIR900NGUS IC: 10491A-JETR900NGUS Project: 72163756 TÜV SÜD America, Inc. Page 6 Figure 5: Radiated Emissions – Back View – above 1 GHz Model: JETIR900NGUS FCC ID: ONTJETIR900NGUS IC: 10491A-JETR900NGUS Project: 72163756 TÜV SÜD America, Inc. Page 7 Figure 6: RF Conducted Emissions
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 902 MHz - 928 MHz | 18.70 mW |

Receiver/transmitter for radio control model toys
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Receiver/Transmitter for Radio Control Model Toys
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Receiver/transmitter for radio control model toys
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Receiver/transmitter for radio control model toys
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Receiver/Transmitter for Radio Control Model Toys
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter