
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Data Sheet: JN5168-001-Myy JenNet, ZigBee PRO and IEEE802.15.4 Module JN-DS-JN5168-001-Myy © NXP Laboratories UK 2012 Features: Module • 2.4GHz IEEE 802.15.4, JenNet-IP, ZigBee Light Link, ZigBee Smart Energy and RF4CE compatible • JN5168-001-M00/03 up to 1km range (Ext antenna) M00: integral antenna 16x30mm M03: uFl connector 16x21mm o TX power +2.5dBm o Receiver sensitivity –95dBm o TX current 15mA o RX current 17.5mA o 2.0-3.6V operation • JN5168-001-M05 up to 2km range (Ext 2dBi Antenna) o 9.5 dBm TX Power o Receiver sensitivity -96dBm o uFl connector o TX current 35mA o RX current 22mA o 16x30mm o 2.0-3.6V operation • JN5168-001-M06 up to 6km range (Ext 2 dBi Antenna) o 22dBm TX Power o Receiver sensitivity -100dBm o uFl connector o TX current 175mA o RX current 22mA o 16x30mm o 2.0-3.6V operation Features: Microcontroller • 32-bit RISC CPU, up to 32MIPs with low power • Data EEPROM with guaranteed 100k write operations • RF4CE, JenNet-IP, ZigBee Smart Energy stacks • JTAG debug interface • 4-input 10-bit ADC, 1 comparator • 5 x PWM (4 x timer, 1 x timer/counter) • 2 UARTs • SPI Master & Slave port with 3 selects • 2-wire serial interface • Battery and Temperature Sensor • Watchdog timer and BOR • Up to 20 DIO Industrial temp (-40°C to +85°C) Lead-free and RoHS compliant Overview The JN5168-001-Myy family is a range of ultra low power, high performance surface mount modules targeted at IEEE 802.15.4, JenNet-IP, ZigBee Light Link, ZigBee Smart Energy and RF4CE networking applications, enabling users to realise products 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 NXP’s JN5168 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. Four module variants are available: JN5168-001-M00 with an integrated antenna, JN5168-001- M03 with an antenna connector and the JN5168-001-M05 and M06 with an antenna connector, power amplifier and LNA for extended range. The JN5168-001-M05 output power has been optimised for use in Europe and Asia. Module Block Diagram Benefits • Microminiature module solutions • Ready to use in products • Minimises product development time • No RF test required for systems • Compliant with o FCC 47CFR Part 15C o IC Canada RSS 210 Issue 8 - Annex 8, o ETSI EN 300-328 V1.7.1 o EN 301-489-17 V2.1.1 o EN60950-1-2006 +A1, A11, A12 Applications • Robust and secure low power wireless applications • ZigBee and JenNet-IP networks • Home and commercial building automation • Utilities metering (e.g. AMR) • Location Aware services (e.g. Asset Tracking) • Toys and gaming peripherals • Industrial systems • Telemetry • Remote Control 4xPWM + Timers 2x UART 4 Chan 10-bit ADC Battery and Temp Sensor 2-Wire Serial (Master/Slave) SPI Master & Slave RAM 8/32K 128-bit AES Encryption Accelerator 2.4GHz Radio Including Diversity Flash 64/160/256K 32 -Bit RISC CPU Power Management XTAL O-QPSK Modem IEEE802.15.4 MAC Accelerator Power Matching uFl Connector Matching Integrated Antenna Matching uFl Connector PA / LNA External Antenna M00 Option M03 Option M05/M06 Option 20 DIO Sleep Counter 4kB EEPROM Watchdog Timer Voltage Brownout ii JN-DS-JN5168-001-Myy 1v0 © NXP Laboratories UK 2012 Contents 1. Introduction 3 1.1. Variants 3 1.2. Regulatory Approvals 3 2. Specifications 4 2.1. JN5168 Single Chip Wireless Microcontroller 5 3. Pin Configurations 6 3.1. Pin Assignment 7 3.2. Pin Descriptions 8 3.2.1 Power Supplies 8 4. Electrical Characteristics 9 4.1. Maximum Ratings 9 4.2. Operating Conditions 9 Appendix A Additional Information 10 A.1 Outline Drawing 10 A.2 Module PCB Footprint 13 A.3 Optimal PCB placement of the JN5168-001-M00 Module 14 A.4 JN5168-001-M00 Antenna Radiation Pattern 15 A.5 Manufacturing 18 A.5.1 Reflow Profile 18 A.5.2 Soldering Paste and Cleaning 19 A.6 Ordering Information 19 A.7 Related Documents 20 A.8 Federal Communication Commission Interference Statement 20 A.8.1 Antennas approved by FCC for use with JN5168 modules 21 A.8.2 High Power Module usage limitation 21 A.8.3 FCC End Product Labelling 21 A.9 Industry Canada Statement 22 A.9.1 Industry Canada End Product Labelling 22 A.10 European R & TTE Directive 1999/5/EC Statement 22 A.11 RoHS Compliance 23 A.12 Status Information 23 A.13 Disclaimers 23 Version Control 24 © NXP Laboratories UK 2012 JN-DS-JN5168-001-Myy 1v0 3 1. Introduction The JN5168-001-Myy 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 2.4-2.5GHz ISM frequency band [1], including JenNet-IP and ZigBee Smart Energy, and can be quickly and easily included in product designs. The modules integrate 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 modules use NXP’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. Four variants are available: JN5168-001-M00, JN5168-0 01-M03, JN5168-001-M05 and JN5168-001-M06. All modules have FCC and Industry Canada modular approvals. All modules other than the JN5168-001-M06 are also CE compliant and subject to a Notified Body Opinion. The variants available are described below. 1.1. Variants 1.2. Regulatory Approvals The JN5168-001-M00, M03 and M05 have been tested against the requirements of the following European s…
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TRaC Global 100 Frobisher Business Park, Leigh Sinton Road Malvern, Worcestershire, WR14 1BX, UK Date 21 st , December, 2012 Letter of Agency To Whom It May Concern: We certify that we are not subject to denial of federal 5301 of the Anti-Drug Abuse ACT of 1988, U.S.C. 862. Further, no party, as defined in 47 CFR 1.2002(b), to the application, is subject to denial of federal benefits, that includes FCC benefits. Thank you for your attention to these matters. Yours faithfully Full Name Mr Conrad V Farlow NXP Laboratories (UK) Ltd We certify that we are not subject to denial of federal benefits that includes FCC benefits, pursuant to Section Drug Abuse ACT of 1988, U.S.C. 862. Further, no party, as defined in 47 CFR 1.2002(b), to the al of federal benefits, that includes FCC benefits. Thank you for your attention to these matters. includes FCC benefits, pursuant to Section Drug Abuse ACT of 1988, U.S.C. 862. Further, no party, as defined in 47 CFR 1.2002(b), to the
NXP Laboratories (UK) Ltd, Furnival Street, Sheffield, Tel: +00 44 114 281 2655, Fax: +00 44 114 281 2951, www.nxp.com TRaC Global 100 Frobisher Business Park, Leigh Sinton Road Malvern, Worcestershire, WR14 1BX, UK Date 18 th December, 2012 TYOJN5168M5 – Operational Description Radio The figure below shows the single ended radio architecture and frequency generating scheme used in the JN5168 chip: Switch TX 2.405 RX 2.4036875 Figure 1: Radio Architecture The radio comprises a low-IF receive path and a direct modulation transmit path, which converge at the TX/RX switch. The switch connects to the external single ended matchin network, which consists of two inductors and a capacitor, this arrangement creates a 50 port and removes the need for a balun. A 50 directly to this port. NXP Laboratories (UK) Ltd, Furnival Street, Sheffield, South Yorkshire, S1 4QT, UK 114 281 2951, www.nxp.com Operational Description The figure below shows the single ended radio architecture and frequency generating scheme used in the JN5168 chip: I L R Lim1Lim2Lim3Lim4 ADC CalibrationMux VCO Synth Sigma Delta 405 – 2.480 GHz 4036875 – 2.4813125 GHz IF 1.3125 MHz XO – 32.000000 MHz IF receive path and a direct modulation transmit path, which converge at the TX/RX switch. The switch connects to the external single ended matchin network, which consists of two inductors and a capacitor, this arrangement creates a 50 removes the need for a balun. A 50Ω single ended antenna can be connected The figure below shows the single ended radio architecture and frequency generating D-Type ADC IF receive path and a direct modulation transmit path, which converge at the TX/RX switch. The switch connects to the external single ended matching network, which consists of two inductors and a capacitor, this arrangement creates a 50Ω single ended antenna can be connected The 32MHz crystal oscillator feeds a divider, which provid reference frequency. The synthesiser contains programmable feedback dividers, phase detector, charge pump and internal Voltage Controlled Oscillator (VCO). The VCO has no external components, and includes calibration ci internal component values due to process and temperature variations. The VCO is controlled by a Phase Locked Loop (PLL) that has an internal loop filter. A programmable charge pump is also used to tune the loop ch The receiver chain starts with the low noise amplifier/mixer combination whose outputs are passed to a low pass filter, which provides the channel definition. The signal is then passed to a series of amplifier blocks forming a limiting strip signal before being passed to the Modem. The gain control for the RX path is derived in the automatic gain control (AGC) block within the Modem, which samples the signal level at various points down the RX chain. T consumption, automatic calibration is applied to various blocks in the RX path. In the transmit direction, the digital stream from the Modem is passed to a digital modulator which controls the feedba The VCO frequency now tracks the applied modulation. then passed to the RF Power Amplifier (PA), whose power control can be selected from one of three settings. The output of the PA drives an external Skyworks Front End Module which houses an LNA, PA and necessary RF switching as shown in figure 2 the module block diagram. Matching uFl Connector Matching Integrated Antenna uFl Connector PA External Antenna M The 32MHz crystal oscillator feeds a divider, which provides the frequency synthesiser with a reference frequency. The synthesiser contains programmable feedback dividers, phase detector, charge pump and internal Voltage Controlled Oscillator (VCO). The VCO has no external components, and includes calibration circuitry to compensate for differences in internal component values due to process and temperature variations. The VCO is controlled by a Phase Locked Loop (PLL) that has an internal loop filter. A programmable charge pump is also used to tune the loop characteristic. The receiver chain starts with the low noise amplifier/mixer combination whose outputs are passed to a low pass filter, which provides the channel definition. The signal is then passed to a series of amplifier blocks forming a limiting strip. The signal is converted to a digital signal before being passed to the Modem. The gain control for the RX path is derived in the automatic gain control (AGC) block within the Modem, which samples the signal level at various points down the RX chain. To improve the performance and reduce current consumption, automatic calibration is applied to various blocks in the RX path. In the transmit direction, the digital stream from the Modem is passed to a digital modulator which controls the feedback dividers in the synthesiser, (dual point modulation). The VCO frequency now tracks the applied modulation. The 2.4 GHz signal from the VCO is then passed to the RF Power Amplifier (PA), whose power control can be selected from one The output of the PA drives an external Skyworks Front End Module which houses an LNA, PA and necessary RF switching as shown in figure 2 the module block RAM 8/32K 128-bit AES Encryption Accelerator 2.4GHz Radio Including Diversity Flash 64/160/256K 32 -Bit RISC CPU Power Management XTAL O-QPSK Modem IEEE802.15.4 MAC Accelerator Matching Matching MatchingPA / LNA M00 Option M03 Option M05/M06 Option 4kB EEPROM Watchdog Timer Voltage Brownout es the frequency synthesiser with a reference frequency. The synthesiser contains programmable feedback dividers, phase detector, charge pump and internal Voltage Controlled Oscillator (VCO). The VCO has no rcuitry to compensate for differences in internal component values due to process and temperature variations. The VCO is controlled by a Phase Locked Loop (PLL) that has an internal loop filter. A programmable charge pump The receiver chain starts with the low noise amplifier/mixer combination whose outputs are passed to a low pass filter, which provides the channel defini…
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NXP Laboratories (UK) Ltd, Furnival Street, Sheffield, South Tel: +00 44 114 281 2655, Fax: +00 44 114 281 2951, www.nxp.com TRaC Global 100 Frobisher Business Park, Leigh Sinton Road Malvern, Worcestershire, WR14 1BX, UK Date 21 st , 2012 RE: FCC Modular Approval FCC ID: To whomever it may concern. The below statements are made by NXP Laboratories (UK) Ltd as a request for modular approval: 1. The Modular transmitter has its own RF shielding. The shielding provided by the 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 f is reflected in the RN ELECTRONICS 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 th 2. The modular transmitter has buffered modulation/data inputs ensuring compliance with Part 15. 3. The TYOJN5168M6 module uses a removable antenna, the module employs a unique antenna coupler and only antennas that have been approv 4. The TYOJN5168M6 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 RN ELECTRONICS Part 15 test report. 5. The module is labelled with its own FCC ID. The ID is device the host device will always have the following wording on the outside of the host. TYOJN5168M6. 6. The TYOJN5168M6 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 TYOJN5168M6 user manual. authorization. 7. The TYOJN5168M6 module transmitter must comply with applicable RF exposure NXP Laboratories (UK) Ltd, Furnival Street, Sheffield, South Yorkshire, S1 4QT, UK 114 281 2951, www.nxp.com dular Approval FCC ID: TYOJN5168M6 The below statements are made by NXP Laboratories (UK) Ltd as a request for modular approval: The Modular transmitter has its own RF shielding. The shielding provided by the TYO 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 RN ELECTRONICS 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. The modular transmitter has buffered modulation/data inputs ensuring compliance with Part 15. module uses a removable antenna, the module employs a unique antenna coupler and only antennas that have been approved with the module are to be used. 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 host in which the module will be installed into. Evidence showing that the module was assessed in a standalone configuration is provided in the RN ELECTRONICS Part 15 test report. The module is labelled with its own FCC ID. The ID is TYOJN5168M6. When the module is installed into a host device the host device will always have the following wording on the outside of the host. 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 user manual. Copies of these instructions are included in this application for equipment module transmitter must comply with applicable RF exposure requirements. The below statements are made by NXP Laboratories (UK) Ltd as a request for modular approval: TYOJN5168M6 module ensures that the module does not have to rely on shielding provided by external devices. A picture showing the or FCC registration. The shielding complies with the Part 15 limits this is reflected in the RN ELECTRONICS FCC Part 15.247 test report. The shielding prevents coupling between the e module is installed into. The modular transmitter has buffered modulation/data inputs ensuring compliance with Part 15. module uses a removable antenna, the module employs a unique antenna coupler and 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 host in which the module will be installed into. Evidence showing that the module was assessed in a 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: 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 included in this application for equipment requirements. NXP Laboratories (UK) Ltd, Furnival Street, Sheffield, South Yorkshire, S1 4QT, UK Tel: +00 44 114 281 2655, Fax: +00 44 114 281 2951, www.nxp.com FCC Rules in Sections 2.1091, 2.1093 and specific Sections of Part 15, including 15.319(i), 15.407(f), 1 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. Yours Sincerely Conrad V Farlow NXP Laboratories (UK) Ltd Street, Sheffield, South Yorkshire, S1 4QT, UK 114 281 2951, www.nxp.com FCC Rules in Sections 2.1091, 2.1093 and specific Sections of Part 15, including 15.319(i), 15.407(f), 1 and 15.255(g), Section 15.247(b)(4). Information addressing RF Exposure concerns are provided in the installation and o…
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TYOJN5168M6 Module Labelling This document has been generated in support of the FCCID application for the TYOJN5148M6 Module. It covers the following product: JN5148-ØØ1-M06 The following picture shows an example of NXP’s module labelling JN5168-001-M06 Subsequent to being granted an FCC-ID the following label will be used for JN5168- 001-M06. Line Content Format Options Sample 1 NXP Logo B&W outline logo 2 Part ID JN5168-001-M0x x is module type, 0, 3, 5 or 6 3 Z SSMC S APK D RoHs Compliant Y Year WW Week 3 Serial No. NNNNN Serial number from test 5 FCC ID FCCID:TYOJN5168Mx x is module type 0,3,5 or 6 6 IC ID IC:7438A- CYO5168Mx x is module type 0,3,5 or 6
NXP Laboratories (UK) Ltd, Furnival Street, Sheffield, Tel: +00 44 114 281 2655, Fax: +00 44 114 281 2951, www.nxp.com TRaC Global 100 Frobisher Business Park, Leigh Sinton Road Malvern, Worcestershire, WR14 1BX, UK Date 18 th December, 2012 TYOJN5168M5 – Operational Description Radio The figure below shows the single ended radio architecture and frequency generating scheme used in the JN5168 chip: Switch TX 2.405 RX 2.4036875 Figure 1: Radio Architecture The radio comprises a low-IF receive path and a direct modulation transmit path, which converge at the TX/RX switch. The switch connects to the external single ended matchin network, which consists of two inductors and a capacitor, this arrangement creates a 50 port and removes the need for a balun. A 50 directly to this port. NXP Laboratories (UK) Ltd, Furnival Street, Sheffield, South Yorkshire, S1 4QT, UK 114 281 2951, www.nxp.com Operational Description The figure below shows the single ended radio architecture and frequency generating scheme used in the JN5168 chip: I L R Lim1Lim2Lim3Lim4 ADC CalibrationMux VCO Synth Sigma Delta 405 – 2.480 GHz 4036875 – 2.4813125 GHz IF 1.3125 MHz XO – 32.000000 MHz IF receive path and a direct modulation transmit path, which converge at the TX/RX switch. The switch connects to the external single ended matchin network, which consists of two inductors and a capacitor, this arrangement creates a 50 removes the need for a balun. A 50Ω single ended antenna can be connected The figure below shows the single ended radio architecture and frequency generating D-Type ADC IF receive path and a direct modulation transmit path, which converge at the TX/RX switch. The switch connects to the external single ended matching network, which consists of two inductors and a capacitor, this arrangement creates a 50Ω single ended antenna can be connected The 32MHz crystal oscillator feeds a divider, which provid reference frequency. The synthesiser contains programmable feedback dividers, phase detector, charge pump and internal Voltage Controlled Oscillator (VCO). The VCO has no external components, and includes calibration ci internal component values due to process and temperature variations. The VCO is controlled by a Phase Locked Loop (PLL) that has an internal loop filter. A programmable charge pump is also used to tune the loop ch The receiver chain starts with the low noise amplifier/mixer combination whose outputs are passed to a low pass filter, which provides the channel definition. The signal is then passed to a series of amplifier blocks forming a limiting strip signal before being passed to the Modem. The gain control for the RX path is derived in the automatic gain control (AGC) block within the Modem, which samples the signal level at various points down the RX chain. T consumption, automatic calibration is applied to various blocks in the RX path. In the transmit direction, the digital stream from the Modem is passed to a digital modulator which controls the feedba The VCO frequency now tracks the applied modulation. then passed to the RF Power Amplifier (PA), whose power control can be selected from one of three settings. The output of the PA drives an external Skyworks Front End Module which houses an LNA, PA and necessary RF switching as shown in figure 2 the module block diagram. Matching uFl Connector Matching Integrated Antenna uFl Connector PA External Antenna M The 32MHz crystal oscillator feeds a divider, which provides the frequency synthesiser with a reference frequency. The synthesiser contains programmable feedback dividers, phase detector, charge pump and internal Voltage Controlled Oscillator (VCO). The VCO has no external components, and includes calibration circuitry to compensate for differences in internal component values due to process and temperature variations. The VCO is controlled by a Phase Locked Loop (PLL) that has an internal loop filter. A programmable charge pump is also used to tune the loop characteristic. The receiver chain starts with the low noise amplifier/mixer combination whose outputs are passed to a low pass filter, which provides the channel definition. The signal is then passed to a series of amplifier blocks forming a limiting strip. The signal is converted to a digital signal before being passed to the Modem. The gain control for the RX path is derived in the automatic gain control (AGC) block within the Modem, which samples the signal level at various points down the RX chain. To improve the performance and reduce current consumption, automatic calibration is applied to various blocks in the RX path. In the transmit direction, the digital stream from the Modem is passed to a digital modulator which controls the feedback dividers in the synthesiser, (dual point modulation). The VCO frequency now tracks the applied modulation. The 2.4 GHz signal from the VCO is then passed to the RF Power Amplifier (PA), whose power control can be selected from one The output of the PA drives an external Skyworks Front End Module which houses an LNA, PA and necessary RF switching as shown in figure 2 the module block RAM 8/32K 128-bit AES Encryption Accelerator 2.4GHz Radio Including Diversity Flash 64/160/256K 32 -Bit RISC CPU Power Management XTAL O-QPSK Modem IEEE802.15.4 MAC Accelerator Matching Matching MatchingPA / LNA M00 Option M03 Option M05/M06 Option 4kB EEPROM Watchdog Timer Voltage Brownout es the frequency synthesiser with a reference frequency. The synthesiser contains programmable feedback dividers, phase detector, charge pump and internal Voltage Controlled Oscillator (VCO). The VCO has no rcuitry to compensate for differences in internal component values due to process and temperature variations. The VCO is controlled by a Phase Locked Loop (PLL) that has an internal loop filter. A programmable charge pump The receiver chain starts with the low noise amplifier/mixer combination whose outputs are passed to a low pass filter, which provides the channel defini…
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ItemQTTYComponent ReferenceDescriptionManufacturerManufacturer PartSupplierSupplier PartNotes 17C3, C6-7, C14-17Capacitor 100nF 0402 X5RBourns YageoCC0402AX5R104KTRFlintCC0402AX5R104KTR. 22C10-11Capacitor 15pF 0402 COGKEMETC0402C150J5GACTUFarnell InOne1414577. 31C13Capacitor 10uF 6.3V 0805 X5RKEMETC0805C106K9PACFarnell InOne922-7814. 42C1, C12Capacitor 47pF 0402 NPOPhyComp(Yageo)223886915479Flint2238-869-15479. 52C8, C21Capacitor 1pF 0402 NPOMurataGRM1555C1H1R0CZ01DFarnell InOne8819530. 62C5, C19Capacitor 10pF 0402 NPOPhyComp(Yageo)2238 869 15109Farnell InOne3019-160. 71C2Capacitor 10nF 0402 X7RPhyComp(Yageo)223878715636Farnell InOne301-9275. 81C22Capacitor 1.2pF 0402 NPOmuRataGRM1555C1H1R2CZ01DDigiKey490-1265-1-ND. 91J1UFL ConnectorHiroseCL331-0471-0-10HiroseCL331-0471-0-10. 102L1, L4Inductor 5.1nHmuRataLQP15MN5N1B02Farnell InOne1515367. 111L2Inductor 3.9nH muRataLQP15MN3N9B02Digikey490-1131-1-ND. 121L3Inductor 2.7nH muRataLQP15MN2N7B02Farnell InOne1404732. 131R1Resistor 43K 0402 1%PhyComp(Yageo)232270674303Farnell InOne145-8795 . 141R2Resistor 1K2_0402 1%PhyComp(Yageo) RC0402FR-071K2LFarnell InOne9239243. 151R3Resistor 1K5 0402 1%PhyComp(Yageo)RC0402FR-071K5LFarnell InOne9239251. 161R4Resistor 47K 0402 1%PhyComp(Yageo)RC0402FR-0747KLFarnell InOne9239430. 171U1JN5168NXPJN5168NXPJN5168. 182U4-574AHC1G32NXP74AHC1G32GW/T1Farnell InOne1085242. 191U6SE2431LSiGe SemiconductorSE2431LSiGe SemiconductorSE2431L. 201Y1Crystal SMD 32 MHzAELX32M000000S039AAELX32M000000S039A. 210C4Parts Not To Be Fitted..... RevisionDateAssemblyDescription 1V003/10/2012DR1191JN5168 HP uFL Module ItemQTTYComponent Reference (Second Source)DescriptionManufacturerManufacturer PartSupplierSupplier PartNotes 17C3, C6-7, C14-17...... 22C10-11...... 31C13...... 42C1, C12...... 52C8, C21...... 62C5, C19...... 71C2...... 81C22...... 91J1...... 102L1, L4...... 111L2...... 121L3...... 131R1...... 141R2...... 151R3...... 161R4...... 171U1...... 182U4-5...... 191U6...... 201Y1Crystal 32 MHz (extended temp)EPSON TOYOCOM X1E000021016700ACALTSX-3225 32MHz. 210C4...... RevisionDateAssemblyDescription 1V003/10/2012DR1191JN5168 HP uFL Module
Prediction of Distance for a specific MPE Limit TYOJN5168M6 Equation from page 18 of OET Bulletin 65, Edition 97-01 S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the centre of radiation of the antenna Max input to antenna terminal 21.93 dBm 1.91 Max Antenna gain 2.2 dBi 1.66 Prediction Freq 2.405 GHz 2.405E+09 MPE limit for uncontrolled exposure at prediction frequency 1 mW/cm 2 Permitted distance at MPE limit (1 mW/cm2) in cm 4.538 S PG R π4 = 2 4R PG S π =
FCC 47CFR part 15C Test Report For DR1191 JN5168 Module JN5168-001-M06 Reference Standard: FCC 47CFR part 15C Manufacturer: NXP Laboratories UK Ltd For type of equipment and serial number, refer to section 3 Report Number: 11-6538-3-12 Issue 02 Supersedes report number 11-6538-3-12 Issue 01 Report Produced by: - R.N. Electronics Ltd. 1 Arnolds Court Arnolds Farm Lane Mountnessing Essex CM13 1UT U.K. www.RNelectronics.com Telephone +44 (0) 1277 352219 Email [email protected] electronics R N 2012 RN ELECTRONICS LIMITED REPORT NUMBER 11-6538-3-12 ISSUE 02 ALL RIGHTS RESERVED File name NXP LABORATORIES UK LTD.6538-3 (FCC RADIO).DOCX The contents of this report, apart from the referenced ANSI C63.4-2003, are beyond the scope of UKAS Testing Laboratory No. 2360 accreditation. QMF21J – 3; 47CFR15.247, RNE ISSUE 01 SEP 2012 PAGE 2 OF 51 Copy No. pdf Arnolds Court, Arnolds Farm Lane, Mountnessing, Brentwood Essex, CM13 1UT Certificate of Test 6538/3 The unit noted below has been tested by R.N. Electronics Limited and, where appropriate, conforms to the relevant subpart of FCC 47CFR Part 15. This is a certificate of test only and should not be confused with an equipment authorisation. Other standards may also apply. Equipment: DR1191 JN5168 Module Model Number: JN5168-001-M06 Proposed FCC ID: TYOJN5168M6 Unique Serial Number: 1 Manufacturer: NXP Laboratories UK Ltd Furnival Street Sheffield S1 4QT Customer Purchase Order Number: GB628200059161 Full measurement results are detailed in Report Number: 11-6538-3-12 Issue 02 Test Standards: FCC 47CFR Part 15.247 effective date October 1 st 2012, Class DTS Intentional Radiator NOTE: Ce…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 156.00 mW |

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