
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Preliminary Data Sheet – JN5121-xxx-Myy IEEE802.15.4/ZigBee Module Family Preliminary - JN-DS-JN5121-xxx-Myy v1.21 © Jennic 2006 Features: Module • 2.4GHz IEEE802.15.4 compliant • 2.7-3.6V operation • Sleep current (with active sleep timer) < 14μA • JN5121-xxx-M00/01/03 Standard module, 0dBm power M00: on board antenna or M01: SMA connector, M03: RP-SMA connector > 400m range o Receiver sensitivity -90dBm o TX current < 45mA o RX current < 50mA o 18x30mm • JN5121-xxx-M02/04 18.5dBm power with LNA and SMA connector, > 4km range Receiver sensitivity -93dBm o TX current < 120mA o RX current < 55mA o 18x40mm Features: Microcontroller • 16MHz 32-bit RISC CPU • 96kB RAM, 64kB ROM • 4-input 12-bit ADC, 2 11-bit DACs, comparator, temperature sensor • 2 Application timer/counters, 3 system timers • 2 UARTs (one for in-system debug) • SPI port with 5 selects • 2-wire serial interface • 21 GPIO • Evaluation kits available with full, unlimited, Software Development Kit Industrial temperature range (-20°C to +70°C) Lead-free and RoHS compliant Overview Overview The JN5121-xxx-Myy is a family of surface mounted modules that enable users to implement IEEE802.15.4 or ZigBee compliant systems with minimum time to market and at the lowest cost. They remove the need for expensive and lengthy development of custom RF board designs and test suites. The modules use Jennic’s JN5121 wireless microcontroller to provide a comprehensive solution, including all RF components. All that is required to develop and manufacture wireless control or sensing products is to connect a power supply and peripherals such as switches, actuators, sensors, considerably simplifying product development. The JN5121-xxx-Myy is a family of surface mounted modules that enable users to implement IEEE802.15.4 or ZigBee compliant systems with minimum time to market and at the lowest cost. They remove the need for expensive and lengthy development of custom RF board designs and test suites. The modules use Jennic’s JN5121 wireless microcontroller to provide a comprehensive solution, including all RF components. All that is required to develop and manufacture wireless control or sensing products is to connect a power supply and peripherals such as switches, actuators, sensors, considerably simplifying product development. Three basic hardware module variants are available: JN5121-xxx-M00 with an integrated antenna, JN5121-xxx-M01/M03 with an antenna connector and JN5121-xxx-M02/M04 with a power amplifier and LNA for extended range. Each of these can be provided pre-programmed with a ZigBee network stack (JN5121-Z01-Myy) or with customer-specific software. Three basic hardware module variants are available: JN5121-xxx-M00 with an integrated antenna, JN5121-xxx-M01/M03 with an antenna connector and JN5121-xxx-M02/M04 with a power amplifier and LNA for extended range. Each of these can be provided pre-programmed with a ZigBee network stack (JN5121-Z01-Myy) or with customer-specific software. Block Diagram Block Diagram Timers UARTs 12-bit ADC, comparator 11-bi t DACs, temp sensor 2-wire serial SPI RAM 96kB 128-bit AES Encrypti on Accelerator 2.4GHz Radi o ROM 64kB RI SC CPU Power Management XTAL O-QPSK Modem IEEE802.15.4 MAC Accelerator 128kB Serial Flash Memory JN5121 chip Power Bal un SMA Connector Bal un Cer ami c Ant enna Bal un SMA Connector PA / LNA External Antenna MO00 Option M01/03 Option M02/04 Option Benefits • Microminiature module solutions • Ready to use in products • Minimises product development time • No RF test required for systems • Compliant with FCC part 15 rules, ETSI ETS 300-328 and Japan ARIB STD-T66 • Production volumes supplied pre-programmed with application software Applications • Robust and secure low power wireless applications • Wireless sensor networks, particularly IEEE802.15.4 / ZigBee systems • Home and commercial building automation • Home networks • Toys and gaming peripherals • Industrial systems • Telemetry and utilities (e.g. AMR) Jennic Contents 1. Introduction 1 1.1. Variants 1 1.2. Regulatory Approvals 1 2. Specifications 2 3. Product Development 3 3.1. JN5121 Single Chip Wireless Microcontroller 3 4. Pin Configurations 4 4.1. Pin Assignment 5 4.2. Pin Descriptions 6 4.3. Power Supplies 6 4.4. SPI Memory Connections 6 5. Electrical Characteristics 7 5.1. Maximum Ratings 7 5.2. Operating Conditions 7 Appendix A Mechanical and Ordering Information 8 A.1 Outline Drawing 8 A.2 Module PCB Footprint 11 A.3 Ordering Information 12 A.4 Accessories 13 A.5 Tape and Reel Information: 14 A.5.1 Tape Orientation and dimensions 14 A.5.2 Cover tape details 14 A.5.3 Leader and Trailer 15 A.5.4 Reel Dimensions: 15 A.6 Related Documents 16 A.7 Federal Communication Commission Interference Statement 16 A.8 Disclaimers 18 A.9 Version Control 18 A.10 Contact Details 19 ii Preliminary - JN-DS-JN5121-xxx-Myy v1.21 © Jennic 2006 Jennic 1. Introduction The JN5121-xxx-Myy module family provides designers with a ready made component which allows IEEE802.15.4 [1] wireless applications, including ZigBee, to be quickly and easily included in product designs. The modules integrate all of the RF components, removing the need to perform expensive RF design and test. Products can be designed by simply connecting sensors and switches to the module IO pins. The modules use Jennic’s single chip IEEE802.15.4 Wireless Microcontroller, allowing designers to make use of the extensive chip development support material. Hence, this range of modules allows designers to bring wireless applications to market in the minimum time with significantly reduced development effort and cost. Three basic modules are available: JN5121-xxx-M00 (standard module with on board ceramic antenna), JN5121-xxx- M01 (standard module with SMA connector for use with external antennae) and JN5121-xxx-M02 (high RF power, improved sensitivity module for extended range applications). Each of these modules can be supplied with a range of protocol stacks, including a simple IE…
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KTL is the trading name of Laboratory Accreditation Solutions Ltd. ver: a18/10 Registered Office: Saxon House, Saxon Way, Priory Park West, Hull, HU13 9PB, UK. Reg No: 5579538 England. KTL Saxon Way Priory Park West Hull HU13 9PB UK Tel +44 (0) 1482 801801 Fax +44 (0) 1482 801806 Email [email protected] To whomever it may concern. The below statements have been made by Jennic Ltd as a request for modular approval: 1. The Modular transmitter has it’s own RF shielding. The shielding provided by the TYOJN5121M0 module ensures that the module does not have to rely on shielding provided by external devices. A picture showing the shielding is provided with this application for FCC registration. The shielding complies with the Part 15 limits this is reflected in the KTL FCC Part 15.247 test report. The shielding prevents coupling between the RF circuitry of the module and any wires/circuits of any device in which the module is installed into. 2. The modular transmitter has buffered modulation/data inputs ensuring compliance with Part 15. 3. The modular transmitter has it’s own power supply regulation ensuring compliance with Part 15. 4. The TYOJN5121M0 module uses a fixed installed antenna on the module and therefore complies with Section 15.203 and 15.204(c). Only 1 antenna type is used and therefore the antenna is approved with the module. 5. The TYOJN5121M0 module has been tested in a standalone configuration ensuring compliance with the Part 15 emission limits. This allows the module to be compliant with the Part 15 emission requirements regardless of the host in which the module will be installed into. Evidence showing that the module was assessed in a standalone configuration is provided in the KTL Part 15 test report. 6. The module is labelled with it’s own FCC ID. The ID is TYOJN5121M0. When the module is installed into a host device the host device will always have the following wording on the outside of the host. Contains FCC ID: TYOJN5121M0. 7. The TYOJN5121M0 module transmitter complies with the specific rules / operating requirements applicable to the transmitter. Adequate instructions along with the module to explain the requirements are provided in the TYOJN5121M0 user manual. A copy of these instructions are included in this application for equipment authorization. 8. The TYOJN5121M0 module transmitter must comply with applicable RF exposure requirements.: FCC Rules in Sections 2.1091, 2.1093 and specific Sections of Part 15, including 15.319(i), 15.407(f), 15.253(f) and 15.255(g), Section 15.247(b)(4). Information addressing RF Exposure concerns are provided in the installation and operating instructions for users, installers and other interested parties. KTL acting as agents on behalf of Jennic.
JN5121-XXX-M00 Module Labelling This document has been generated in support of the FCCID application for the Jennic module JN5121-XXX-M00. It covers JN5121-000-M00 and JN5121-Z01-M00 products. The following picture shows an example of existing module labelling. The location, on top of the metal screening can, is also demonstrated. JN5121-000-M00 Subsequent to being granted an FCC-ID the following label will be used for JN5121- 000-M00. Product Identification Instructions Label line 1: FCC ID Number Label line 2: Part Name Label line 3: Barcode Label line 4: YYWWTNNNNN (see below) Identifier Description Format YY Year 06(example) WW Week 45(example) T Module type 6 NNNNN Serial Number Note, the R suffix on the part name indicates prototype. FCCID: TYOJN5121M0 YYWWTNNNNN JN5121-000-M00R JN5121-Z01-M00 Subsequent to being granted an FCC-ID the following label will be used for JN5121- Z01-M00. Product Identification Instructions Label line 1: FCC ID Number Label line 2: Part Name Label line 3: Barcode Label line 4: YYWWTNNNNN (see below) Identifier Description Format YY Year 06(example) WW Week 45(example) T Module type 7 NNNNN Serial Number Note, the R suffix on the part name indicates prototype. The label material = Polyimide Label adhesive = Acrylic Fibre FCCID: TYOJN5121M0 YYWWTNNNNN JN5121-Z01-M00R
Preliminary Data Sheet – JN5121-xxx-Myy IEEE802.15.4/ZigBee Module Family Preliminary - JN-DS-JN5121-xxx-Myy v1.2 © Jennic 2006 Features: Module 2.4GHz IEEE802.15.4 compliant 2.7-3.6V operation Sleep current (with active sleep timer) < 14μA JN5121-xxx-M00/01/03 Standard module, 0dBm power M00: on board antenna or M01: SMA connector, M03: RP-SMA connector > 400m range o Receiver sensitivity -90dBm o TX current < 45mA o RX current < 50mA o 18x30mm JN5121-xxx-M02/04 18.5dBm power with LNA and SMA connector, > 4km range Receiver sensitivity -93dBm o TX current < 120mA o RX current < 55mA o 18x40mm Features: Microcontroller 16MHz 32-bit RISC CPU 96kB RAM, 64kB ROM 4-input 12-bit ADC, 2 11-bit DACs, comparator, temperature sensor 2 Application timer/counters, 3 system timers 2 UARTs (one for in-system debug) SPI port with 5 selects 2-wire serial interface 21 GPIO Evaluation kits available with full, unlimited, Software Development Kit Industrial temperature range (-20°C to +70°C) Lead-free and RoHS compliant Overview The JN5121-xxx-Myy is a family of surface mounted modules that enable users to implement IEEE802.15.4 or ZigBee compliant systems with minimum time to market and at the lowest cost. They remove the need for expensive and lengthy development of custom RF board designs and test suites. The modules use Jennic’s JN5121 wireless microcontroller to provide a comprehensive solution, including all RF components. All that is required to develop and manufacture wireless control or sensing products is to connect a power supply and peripherals such as switches, actuators, sensors, considerably simplifying product development. Three basic hardware module variants are available: JN5121-xxx-M00 with an integrated antenna, JN5121-xxx-M01/M03 with an antenna connector and JN5121-xxx-M02/M04 with a power amplifier and LNA for extended range. Each of these can be provided pre-programmed with a ZigBee network stack (JN5121-Z01-Myy) or with customer-specific software. Block Diagram Timers UARTs 12-bit ADC, comparator 11-bit DACs, temp sensor 2-wire serial SPI RAM 96kB 128-bit AES Encryption Accelerator 2.4GHz Radio ROM 64kB RISC CPU Power Management XTAL O-QPSK Modem IEEE802.15.4 MAC Accelerator 128kB Serial Flash Memory JN5121 chip Power Balun SMA Connector Balun Ceramic Antenna Balun SMA Connector PA / LNA External Antenna MO00 Option M01/03 Option M02/04 Option Benefits Microminiature module solutions Ready to use in products Minimises product development time No RF test required for systems Compliant with FCC part 15 rules, ETSI ETS 300-328 and Japan ARIB STD-T66 Production volumes supplied pre-programmed with application software Applications Robust and secure low power wireless applications Wireless sensor networks, particularly IEEE802.15.4 / ZigBee systems Home and commercial building automation Home networks Toys and gaming peripherals Industrial systems Telemetry and utilities (e.g. AMR)
DR1023.sch-1 - Thu Aug 31 08:55:22 2006
Total number of pages : 36 grepbl.doc Ver: g01/10 "5G9013GUS3" KTL EMC Test Report:5G9013GUS3 Applicant:Jennic Ltd Apparatus:1023 V3.0 Zigbee Module Authorised by : K J Anderson, Principal EMC and Radio Group Engineer Issue Date: 19 th October 2006 Authorised Copy Number: PDF KTL EMC Test Report: 5G9013GUS3 2 Contents Section 1:Introduction3 1.1General3 1.2Tests Requested By4 1.3Manufacturer4 4Apparatus Assessed4 1.5Test Result Summary5 1.6Notes Relating To The Assessment6 1.7Deviations from Test Standards6 Section 2:Measurement Uncertainty7 2.1Introduction7 2.2Application of Measurement Uncertainty7 2.3Measurement Uncertainty Values7 Section 3:Modifications8 3.1Modifications Performed During Assessment8 Appendix A:Formal Emission Test Results9 A1Radiated Electric Field Emissions10 A36 dB Bandwidth17 A3Conducted carrier power18 A4Antenna Gain19 A5Power Spectral density20 Appendix B:Supporting Graphical Data21 Appendix C:Additional Test and Sample Details32 Appendix D:Additional Information38 Appendix E:Photographs and Figures41 Appendix F:MPE Calculation44 KTL EMC Test Report: 5G9013GUS3 3 Section 1:Introduction 1.1General This report contains an assessment of an apparatus against Electromagnetic Compatibility Standards based upon tests carried out on samples submitted to the Laboratory. Test performed by:KTL Saxon Way Priory Park West Hull HU13 9PB United Kingdom Telephone:+44 (0) 1482 801801 Fax:+44 (0) 1482 801806 Email:[email protected] Web site:www.ktl.com Tests performed by: ,K J Anderson, Principal EMC and Radio Group Engineer Report author:. M E Leach, Senior EMC and Radio Group Engineer This report must not be reproduced except in full without prior written permission from KTL. KTL EMC Test Report: 5G9013GUS3 4 1.2Tests Requested By This testing in this report was requested by: Jennic Ltd Furnival Street, Sheffield, S1 4QT United Kingdom 1.3Manufacturer As above. 4Apparatus Assessed The following apparatus was assessed between 18/8/06 and 23/8/06: Jennic 1023 V3.0 Zigbee Module The above equipment was a wireless sensor module operating in the 2.4GHz band. The EUT was battery operated and tested as ‘portable equipment’. See manufactures declaration in Appendix E. KTL EMC Test Report: 5G9013GUS3 5 1.5Test Result Summary Full details of test results are contained within Appendix A. The following table summarises the results of the assessment. The statements relating to compliance with the standards below apply ONLY as qualified in the notes and deviations stated in sections 1.6 to 1.7 of this test report. Full details of test results are contained within Appendix A. The following table summarises the results of the assessment. Test TypeRegulationMeasurement standardResult REFE Title 47 of the CFR: 2004, Part 15 Subpart (c) 15.247(d) ANSI C63.4: 2003Pass REFE Title 47 of the CFR: 2004, Part 15 Subpart (c) 15.207 ANSI C63.4: 2003Pass 6dB Bandwidth Title 47 of the CFR :2004, Part 15 Subpart (c) 15.247(a)(2) ANSI C63.4: 2003Pass Conducted Carrier Power Title 47 of the CFR :2004, Part 15 Subpart (c) 15.247(b)(3) ANSI C63.4: 2003Pass Antenna Gain Title 47 of the CFR :2004, Part 15 Subpart (c) 15.247(b)(4) ANSI C63.4: 2003Pass Power Spectral Density Title 47 of the CFR :2004, Part 15Subpart (c) 15.247(e) ANSI C63.4: 2003Pass Abbreviations used in the above table: Mod: Modification CFR: Code of Federal RegulationsANSI: American National Standards Institution REFE: Radiated Electric Field Emissions KTL EMC Test Report: 5G9013GUS3 6 1.6Notes Relating To The Assessment With regard to this assessment, the following points should be noted: The results contained in this report relate only to the items tested and were obtained in the period between the date of initial receipt of samples and the dateof issue of the report. The apparatus was set up and exercised using the configurations, modes of operation and arrangements defined in this report only. Particular operating modes, apparatus monitoring methods and performance criteria required by the standards tested to have been performed except where identified in Section 1.7 of this test report (Deviations from Test Standards). For emissions testing, throughout this test report, “Pass” indicates that the results for the sample as tested were below the specified limit (refer also to Section 2, Measurement Uncertainty). Where relevant, the apparatus was only assessed using the monitoring methods and susceptibility criteria defined in this report. All testing with the exception of testing at the Open Area Test Site was performed under the following environmental conditions: Temperature: 17 to 23 ÄC Humidity : 45 to 75 % Barometric Pressure: 86 to 106 kPa All dates used in this report are in the format dd/mm/yy. This assessment has been performed in accordance with the requirements of ISO/IEC 17025. KTL Hull is a listed electromagnetic compatibility Conformance Assessment Body (CAB) for EC access to the US market. (Decision No 3/2000 of the Joint Committee established under the Agreement on Mutual Recognition between the European Community and the United States of America. This decision was effective from 16 th January 2001). FCC Facility Registration number (3m semi anechoic chamber) : 90743 1.7Deviations from Test Standards There were no deviations from the standards tested to. KTL EMC Test Report: 5G9013GUS3 7 Section 2:Measurement Uncertainty 2.1Introduction The standard ISO/IEC 17025 used for laboratory accreditation requires laboratories to estimate measurement uncertainty using accepted methods of analysis. Whererequired, the reported expanded uncertainty is based on a standard uncertainty providing a confidence level of approximately 95%. Measurement uncertainty is calculated using the methods defined in the UKAS document LAB34 Edition 1 August 2002. KTL measurement uncertainty is recorded in the KTL document UNC/RFG/001 Issue 16. 2.2Application of Measurement Uncertainty The following procedure is used when determining the result of a measurement : …
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 1.00 mW |

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