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XXMJN5169M0Wireless microcontroller suitable for Zigbee applications

NXP Semiconductors
Wireless microcontroller suitable for Zigbee applications - FCC ID XXMJN5169M0 - NXP Semiconductors
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Nov 18, 2015
Application Purpose
Original Equipment
Date of Application
Nov 18, 2015
Equipment Note
Wireless microcontroller suitable for Zigbee applications
Frequency Range
2405.00000000 - 2480.00000000
Company
NXP Semiconductors
Country
France

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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Parts List/Tune Up Info

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

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

Users Manual

UM10922 ZigBee PRO and IEEE802.15.4 JN5169-001-M00 module Rev. 1.1 — 15 September 2015User manual Document information InfoContent KeywordsJN5169, Zigbee, module AbstractJN5169-001-M00 module user manual UM10922All information provided in this document is subject to legal disclaimers.© NXP Semiconductors N.V. 2015. All rights reserved. User manualRev. 1.1 — 15 September 2015 2 of 20 Contact information For more information, please visit: http://www.nxp.com For sales office addresses, please send an email to: [email protected] NXP Semiconductors UM10922 ZigBee PRO and IEEE802.15.4 JN5169-001-M00 module Revision history RevDateDescription 1.120150915removed M06 module 1.020150629Initial version UM10922All information provided in this document is subject to legal disclaimers.© NXP Semiconductors N.V. 2015. All rights reserved. User manualRev. 1.1 — 15 September 2015 3 of 20 NXP Semiconductors UM10922 ZigBee PRO and IEEE802.15.4 JN5169-001-M00 module 1. General description The JN5169-001-M00 module family provides designers with a ready-made component that provides a fully integrated solution for applications, using the IEEE802.15.4 standard in the 2.4 GHz - 2.5 GHz ISM frequency band, including ZigBee Smart Energy and Home Automation and can be quickly and easily included in product designs. The module integrates all of the RF components required, 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 module uses NXP’s single chip IEEE802.15.4 wireless microcontroller, allowing designers to make use of the extensive chip development support material. Hence, this module allows designers to bring wireless applications to market in the minimum time with significantly reduced development effort and cost. JN5169-001-M00 module has FCC modular approval. it is also CE compliant and subject to a Notified Body Opinion. 1.1 FCC identification 1.2 Regulatory approvals The JN5169-001-M00 has been tested against the requirements of the following European standards. •Radio EN 300 328 v 1.8.1 •EMC, EN 301 489-17 v 2.2.1, EN 62479 2010, EN 301 489-1 v 1.9.2 •Basic Safety Assessment (BSA) EN 60950-1:2006 A Notified Body statement of opinion for this standard is available on request. Additionally, the module has received FCC “Modular Approval”, in compliance with CFR 47 FCC part 15 regulations and in accordance to FCC public notice DA00-1407. The modular approval notice and test report are available on request. 2. Features and benefits 2.1 Benefits • Microminiature module solutions •Ready to use in products •Minimises product development time •No RF test required for systems •Compliant with: –FCC 47CFR Part 15C –ETSI EN 300-328 V1.8.1 Table 1.FCC identification Module nameDescriptionFCCID JN5169-001-M00Standard power, integrated antennaXXMJN5169M0 UM10922All information provided in this document is subject to legal disclaimers.© NXP Semiconductors N.V. 2015. All rights reserved. User manualRev. 1.1 — 15 September 2015 4 of 20 NXP Semiconductors UM10922 ZigBee PRO and IEEE802.15.4 JN5169-001-M00 module –EN 301-489-17 V2.2.1 –EN60950-1-2006 –Temperature range: 40qC to +85qC –Lead-free and RoHS compliant 2.2 Features: module •2.4GHz IEEE 802.15.4, ZigBee Smart Energy and Home Automation compatible •Integral antenna •16 mmu30 mm PCB size •TX power 8.5 dBm/10 dBm •Receiver sensitivity –96.5 dBm •TX current 25.7 mA at 10 dBm •TX current 23.5 mA at 8.5 dBm •RX current 17.8 mA at maximum input level 10 dBm •RX current 16.7 mA at maximum input level 0 dBm •2.0 V/3.6 V operation 2.3 Features: microcontroller •32-bit RISC CPU; 1 MHz to 32 MHz clock speed •Variable instruction width for high coding efficiency •Multi-stage instruction pipeline •512 kB Flash •32 kB RAM •4 kB EEPROM •Data EEPROM with guaranteed 100 k write operations •ZigBee PRO stack with Home Automation and Smart Energy profiles •2-wire I 2 C-bus compatible serial interface; can operate as either master or slave •5uPWM (4 timers, 1 timer/counter) •2 low-power sleep counters •2UARTs •SPI-bus Master and Slave port, 3 selects •Supply voltage monitor with 8 programmable thresholds •6-input 10-bit ADC, comparator •Battery and temperature sensors •Watchdog and Supply Voltage Monitor (SVM) •Up to 20 Digital IO (DIO) pins UM10922All information provided in this document is subject to legal disclaimers.© NXP Semiconductors N.V. 2015. All rights reserved. User manualRev. 1.1 — 15 September 2015 5 of 20 NXP Semiconductors UM10922 ZigBee PRO and IEEE802.15.4 JN5169-001-M00 module 3. Applications •Robust and secure low-power wireless applications •ZigBee Smart Energy networks •ZigBee Home Automation networks •Toys and gaming peripherals •Energy harvesting - for example, self-powered light switch 4. Overview The JN5169-001-M00 is an ultra-low power, high performance surface mount module targeted at IEEE 802.15.4, ZigBee Smart Energy and Home Automation networking applications, enabling users to realize products with minimum time to market and at the lowest cost. It removes the need for expensive and lengthy development of custom RF board designs and test suites. The module uses NXP’s JN5169 wireless microcontroller to provide a comprehensive solution with large memory, high CPU and radio performance and all RF components included. 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 and sensors, considerably simplifying product development. The module includes an integrated antenna. 5. Marking The JN5169-001-M00 module meets the requirements of Directive 2002/95/EC of the European Parliament and of the Council on the Restriction of Hazardous Substance (RoHS) and of the Chinese RoHS requirements SJ/T11363-2006 which came into force on 1st March 2007. Fig 1.JN5169-001-M00 package marking (top view) Table 2.Marking code Line numberMarking code Line 1NXP Logo: B&W ou…

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Cover Letter(s)

NXP Semiconductors Tel: +33(0)2 31 45 63 08 Mob: +33 (0)6 17 57 69 71 2, Esplanade Anton Philips, Campus Effiscience, Colombelles BP 20 000, 14906 Caen Cedex 9, France 27th August, 2015 Equipment: JN5169-001-M00 MODULAR APPROVAL LETTER Modular Approval Requirement Yes No (i) The radio elements of the modular transmitter must have their own shielding. The physical crystal and tuning capacitors may be located external to the shielded radio elements. X (ii) The modular transmitter must have buffered modulation/data inputs (if such inputs are provided) to ensure that the module will comply with part 15 requirements under conditions of excessive data rates or over-modulation. X (iii) The modular transmitter must have its own power supply regulation. X (iv) The modular transmitter must comply with the antenna and transmission system requirements of §§ 15.203, 15.204(b) and 15.204(c). The antenna must either be permanently attached or employ a ‘‘unique’’ antenna coupler (at all connections between the module and the antenna, including the cable). The ‘‘professional installation’’ provision of § 15.203 is not applicable to modules but can apply to limited modular approvals under paragraph (b) of this section. X (v) The modular transmitter must be tested in a stand-alone configuration X (vi) The modular transmitter must be equipped with either a permanently affixed label or must be capable of electronically displaying its FCC identification number. X (vii) The modular transmitter must comply with any specific rules or operating requirements that ordinarily apply to a complete transmitter and the X

ID Label/Location Info

JN5169-001-M00 marking

Parts List/Tune Up Info

PartTypeValueRefDesPartDecalPinsLayerOrient.XYSMDGlued CAP_JENNIC1,8pFC10402C_JENNIC2Top07.06312.515YesNo CAP_JENNIC10nFC20402C_JENNIC2Top27012.2311.911YesNo CAP_JENNIC100nFC30402C_JENNIC2Top1809.20914.426YesNo CAP_JENNIC1pFC40402C_JENNIC2Top1805.60314.518YesNo CAP_JENNICNCC60402C_JENNIC2Top902.0677.685YesNo CAP_JENNIC100nFC70402C_JENNIC2Top1808.3722.734YesNo CAP_JENNIC12pFC100402C_JENNIC2Top013.2675.012YesNo CAP_JENNIC12pFC110402C_JENNIC2Top18013.45210.125YesNo CAP_JENNIC47pFC120402C_JENNIC2Top2709.7712.844YesNo CAP_JENNIC10uFC130805C_JENNIC2Top012.6622.955YesNo CAP_JENNIC100nFC140402C_JENNIC2Top9011.27511.633YesNo CAP_JENNIC100nFC150402C_JENNIC2Top27013.27811.64YesNo CAP_JENNIC100nFC160402C_JENNIC2Top04.4512.938YesNo EDGE_CON_JENNIC<NONE>EC1PAD_1.0_0.7_JENNIC1Top0012.7NoNo EDGE_CON_JENNIC<NONE>EC2PAD_1.0_0.7_JENNIC1Top0011.43NoNo EDGE_CON_JENNIC<NONE>EC3PAD_1.0_0.7_JENNIC1Top0010.16NoNo EDGE_CON_JENNIC<NONE>EC4PAD_1.0_0.7_JENNIC1Top008.89NoNo EDGE_CON_JENNIC<NONE>EC5PAD_1.0_0.7_JENNIC1Top007.62NoNo EDGE_CON_JENNIC<NONE>EC6PAD_1.0_0.7_JENNIC1Top006.35NoNo EDGE_CON_JENNIC<NONE>EC7PAD_1.0_0.7_JENNIC1Top005.08NoNo EDGE_CON_JENNIC<NONE>EC8PAD_1.0_0.7_JENNIC1Top003.81NoNo EDGE_CON_JENNIC<NONE>EC9PAD_1.0_0.7_JENNIC1Top002.54NoNo EDGE_CON_JENNIC<NONE>EC10PAD_1.0_0.7_JENNIC1Top902.540NoNo EDGE_CON_JENNIC<NONE>EC11PAD_1.0_0.7_JENNIC1Top903.810NoNo EDGE_CON_JENNIC<NONE>EC12PAD_1.0_0.7_JENNIC1Top905.080NoNo EDGE_CON_JENNIC<NONE>EC13PAD_1.0_0.7_JENNIC1Top906.350NoNo EDGE_CON_JENNIC<NONE>EC14PAD_1.0_0.7_JENNIC1Top907.620NoNo EDGE_CON_JENNIC<NONE>EC15PAD_1.0_0.7_JENNIC1Top908.890NoNo EDGE_CON_JENNIC<NONE>EC16PAD_1.0_0.7_JENNIC1Top9010.160NoNo EDGE_CON_JENNIC<NONE>EC17PAD_1.0_0.7_JENNIC1Top9011.430NoNo EDGE_CON_JENNIC<NONE>EC18PAD_1.0_0.7_JENNIC1Top9012.70NoNo EDGE_CON_JENNIC<NONE>EC19PAD_1.0_0.7_JENNIC1Top0162.54NoNo EDGE_CON_JENNIC<NONE>EC20PAD_1.0_0.7_JENNIC1Top180163.81NoNo EDGE_CON_JENNIC<NONE>EC21PAD_1.0_0.7_JENNIC1Top0165.08NoNo EDGE_CON_JENNIC<NONE>EC22PAD_1.0_0.7_JENNIC1Top0166.35NoNo EDGE_CON_JENNIC<NONE>EC23PAD_1.0_0.7_JENNIC1Top0167.62NoNo EDGE_CON_JENNIC<NONE>EC24PAD_1.0_0.7_JENNIC1Top180168.89NoNo EDGE_CON_JENNIC<NONE>EC25PAD_1.0_0.7_JENNIC1Top01610.16NoNo EDGE_CON_JENNIC<NONE>EC26PAD_1.0_0.7_JENNIC1Top01611.43NoNo EDGE_CON_JENNIC<NONE>EC27PAD_1.0_0.7_JENNIC1Top01612.7NoNo PCB_ANTENNA_APPS<NONE>J1PCB_ANT_APPS2Top02.65724.018YesNo SCREEN_LUG2_JENNIC<NONE>J2SCREEN_LUG3_JENNIC2Top9014.5791.456YesNo SCREEN_LUG2_JENNIC<NONE>J3SCREEN_LUG3_JENNIC2Top18014.57914.939YesNo SCREEN_LUG2_JENNIC<NONE>J4SCREEN_LUG3_JENNIC2Top2701.45614.939YesNo SCREEN_LUG2_JENNIC<NONE>J5SCREEN_LUG3_JENNIC2Top01.4561.456YesNo IND4n3HL10402C2Top05.61813.42YesNo IND3nHL20402C2Top908.61912.781YesNo RES_JENNIC43kR10402C_JENNIC2Top18011.82613.709YesNo JN516X_QFN40_JENNICJN516XU1QFN40_JENNIC41Top1806.8327.683YesNo TSX_JENNIC32MHzY1TSX-3225_JENNIC4Top9012.8737.53YesNo

RF Exposure Info

RF EXPOSURE EVALUATION Equipment under test: Microcontroller JN5169-001-M00 with connection ZIGBEE Test report reference: RC-030-PTC-15-100225-2-A MPE calculation These equations are generally accurate in the far field of an antenna but will over predict power density in the near field, where they could be used for making a “worst case” prediction. S = PG/4R² 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 the isotropic radiator R = distance to the centre of radiation of the antenna (appropriate units e.g. cm) Or S = EIRP/4R² Where EIRP = equivalent isotropically radiated power Calculation: (Calculated for max. EIRP) EIRP: 13.15 dBm (20.65 mW) Calculated at distance of 20 cm: Power density = 0.004108 mW/cm² Limit: 1mW/cm² is the reference level for general public exposure according to the OET Bulletin 65. Edition 97-01 Table1 Siège Social : Emitech - 3, rue des Coudriers - Z.A. de l’Observatoire - 78180 MONTIGNY LE BX - France Siret : 344 545 645 00022 - Tél. : 33 (0)1 30 57 55 55 - Fax : 33 (0)1 30 43 74 48 - E-mail : [email protected] - URL : www.emitech.fr S.A. au capital de 1 560 000 € - R.C.S. VERSAILLES 344 545 645 - APE 7112B

Test Report

RC-030-PTC-15-100225-2-A (01) Page 2 out of 47 TEST CERTIFICATION FOR: FCC Certification NAME OF THE EQUIPMENT UNDER TEST: Microcontroller JN5169-001-M00 with connection Zigbee Serial number: M0051694 Reference / model (P/N): JN5169-001-M00 Software version: - NAME OF THE MANUFACTURER: NXP SEMICONDUCTORS ADDRESS OF THE APPLICANT: Company: NXP SEMICONDUCTORS Address: 2 Esplanade Anton Philips Campus Effiscience Colombelles BP 20000 14906 Caen cedex 9 FRANCE Person in charge: Mr. LE TOUSEY DATE OF TESTS: 26/03/2015 TESTS LOCATION: EMITECH laboratory in Montigny Le Bretonneux (78) FRANCE. TESTS OPERATOR: F. LHEUREUX RC-030-PTC-15-100225-2-A (01) Page 3 out of 47 TABLE OF CONTENTS 1. INTRODUCTION ____________________________________________________________________ 4 2. REFERENCE DOCUMENTS ___________________________________________________________ 4 3. PRODUCT DESCRIPTION ____________________________________________________________ 4 4. TESTS AND CONCLUSION ___________________________________________________________ 6 5. DIGITAL MODULATION SYSTEMS _____________________________________________________ 8 6. TRANSMITTER OUTPUT POWER _____________________________________________________ 10 7. PEAK POWER SPECTRAL DENSITY __________________________________________________ 12 8. ADDITIONAL PROVISIONS TO THE GENERAL RADIATED EMISSIONS LIMITATION ___________ 14 9. UNINTENTIONAL RADIATED EMISSIONS AND TRANSMITTER UNWANTED EMISSION IN THE BAND 9 KHZ – 25 GHZ ______________________________________________________________ 16 10. CONDUCTED EMISSION ____________________________________________________________ 20 ANNEX 1: ANTENNA FACTORS, INSERTION LOSSES AND AMPLIFIER VALUES ANNEX 2: EXTERNAL PHOTOGRAPHIES ANNEX 3: TEST SETUP PHOTOGRAPHIES ANNEX 4: 6 DB BANDWIDTH ANNEX 5: BAND EDGE AND DUTY CYCLE ANNEX 6: CALIBRATION DATES RC-030-PTC-15-100225-2-A (01) Page 4 out of 47 1. INTRODUCTION This document presents the results of Electromagnetic Compatibility tests performed on the equipment «Microcontroller JN5169-001-M00 with connection Zigbee» according to reference documents listed below. 2. REFERENCE DOCUMENTS FCC 47 CFR Part 15: 2015 Code of Federal Regulations Title 47- Telecommunication Chapter 1- Federal Communication Commission Part 15- Radio frequency devices ANSI C63.4: 2003 Methods of Measurement of Radio-Noise Emissions from Low Voltage Electrical and Electronics Equipment in the range of 9 kHz to 40 GHz. KDB 558074 D01 DTS Meas Guidance V03r03 Guidance for performing compliance measurement on Digital Transmission Systems (DTS) operating under § 15.247 3. PRODUCT DESCRIPTION Class: B (residential environment) Utilization: Development kits Antenna type and gain: Integral antenna: Not communicated Operating frequency range: from 2405 MHz to 2480 MHz Number of channels: 16 Channel spacing: 5 MHz Modulation: OQPSK Power source: 5 Vdc by USB port Software power setting: Teraterm Modification of the equipment during the tests: No. RC-030-PTC-15-100225-2-A (01) Page 5 out of 47 The DR1174 motherboard allows you to control the module. E.U.T. (JN5169-001-M00) Motherboard (DR1174) RC-030-PTC-15-100225-2-A (01) Page 6 out of 47 4. TESTS AND CONCLUSION The following table summarizes test results of the EUT. Subpart B of the standard FCC part 15 – Unintentional radiators Test procedure Designation of test Test results Comments Pass Fail N.A. N.P. 15.107 Measurement of conducted emission on AC mains ports X 15.109 Radiated emission limits X Subpart C of the standard FCC part 15 – Intentional radiators Test procedure Designation of test Test results Comments Pass Fail N.A. N.P. 15.205 Restricted bands of operation X 15.207 Measurement of conducted emission on AC mains ports X 15.209 Radiated emission limits; general requirements X 15.215 Additional provisions to the general radiated emission limitations (a) Alternative to general radiated emission limits X (b) Unwanted emissions outside of § 15.247 frequency bands X (c) 20 dB bandwidth and band-edge compliance X 15.247 Intentional radiated emissions a) frequency hopping and digitally modulated a) (1) hopping mode X a) (1) (i) frequency hopping in the band 902-928 MHz X a) (1) (ii) frequency hopping in the band 5725– 5850 MHz X a) (1) (iii) frequency hopping in the band 2400– 2483.5 MHz X a) (2) systems using digital modulation in the bands 902–928 MHz, 2400–2483.5 MHz, and 5725–5850 MHz (6 dB bandwith) X b) maximum peak conducted b) (1) frequency hopping in the bands 2400– 2483.5 MHz or 5725–5850 MHz X b) (2) frequency hopping in the band 902-928 MHz X b) (3) systems using digital modulation in the bands 902–928 MHz, 2400–2483.5 MHz, and 5725–5850 MHz X RC-030-PTC-15-100225-2-A (01) Page 7 out of 47 Test procedure Designation of test Test results Comments Pass Fail N.A. N.P. b) (4) maximum peak conducted > 6 dBi b) (4) (i) frequency hopping in the band 2400– 2483.5 MHz X b) (4) (ii) frequency hopping in the band 5725– 5850 MHz X b) (4) (iii) fixed, point-to-point X c) directional antenna > 6 dBi c) (1) fixed, point-to-point operation c) (1) (i) in the band 2400–2483.5 MHz X c) (1) (ii) in the band 5725–5850 MHz X c) (1) (iii) fixed, point-to-point X c) (2) multiple directional beams in the band 2400–2483.5 MHz c) (2) (i) information X c) (2) (ii) sum of the power supplied to all antennas X c) (2) (iii) one antenna for multiple directional beams X c) (2) (iv) single directional beam X d) intentional radiator X e) peak power spectral density X f) hybrid system X g) continuous data stream during the test h) to avoid hopping on occupied channels i) RF exposure compliance X P < 500 mW N.A.: Not Applicable N.P.: Not Performed Conclusion: The tested sample «Microcontroller JN5169-001-M00 with connection Zigbee» submitted to the tests complies with the requirements of the standard:  FCC 47 CFR PART 15 : 2015 according to the limits specified in this report. RC-030-PTC-15-100225-2-A (01) Page 8 out of 47 5. DIGITAL MODULATION SYSTEMS Standard: FCC 47 CFR PART 15 : 2015 Sec…

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Contact Information

Applicant

Saleem Kala-janssen(Systems & Applications Engineer)
[email protected]+33231456053Fax: +33231453880

Test Firm

EMITECH MontignyMaxime Michau
[email protected]33-1-30-57-55-55Fax: 33-1-30-48-00-35

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz21.00 mW
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Single Modular Approval. Power listed is conducted. Approval is limited to OEM installation only. Compliance of this device in all final host configurations is the responsibility of the Grantee. This device is to be used only for mobile and fixed applications. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20cm from all persons and must not transmit simultaneously with any other antenna or transmitter except in accordance with FCC multi-transmitter product procedures. OEM integrators must be provided with antenna installation instructions and labeling requirements for finished products. OEM integrators and end-Users must be provided with transmitter operation conditions for satisfying RF exposure compliance. This grant is valid only when the device is sold to OEM integrators and the OEM integrators are instructed to ensure that the end user has no manual instructions to remove or install the device. Separate approval is required for all other operating configurations, including portable configurations with respect to 2.1093 and different antenna configurations.

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