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TYOJN5168IT00JN5168-RD6040-IoT Gateway

NXP Laboratories UK Ltd
JN5168-RD6040-IoT Gateway - FCC ID TYOJN5168IT00 - NXP Laboratories UK Ltd
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Oct 22, 2013
Application Purpose
Original Equipment
Date of Application
Oct 22, 2013
Equipment Note
JN5168-RD6040-IoT Gateway
Frequency Range
2405.86300000 - 2479.13800000
Company
NXP Laboratories UK Ltd
Country
United Kingdom

Documents & Files

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Users Manual

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Attestation Statements

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Block Diagram

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External Photos

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ID Label/Location Info

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Internal Photos

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Operational Description

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Parts List/Tune Up Info

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RF Exposure Info

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Schematics

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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

JN-UG-3096 v1.1 © NXP Laboratories UK 2013 JN5168-RD6040 IoT Gateway Kit Getting Started Introduction The NXP ‘Internet of Things’ (IoT) Gateway enables the control of wireless nodes in a WPAN from IP-connected devices in a LAN or WAN (e.g. smart phones, tablets and laptops). It is used with a conventional IP router (which acts as a DHCP server) to provide an interface between the LAN/WAN and WPAN domains. The gateway is designed around the NXP LPC3240 microcontroller and NXP JN5168 wireless microcontroller. The LPC3240 device provides a Linux-ca pable processing platform for the LAN/WAN interface. The JN5168 device provides the processing platform for the WPAN interface as well as 2.4GHz radio communication with the WPAN. Kit Contents Check the contents of the kit, which are listed below. • IoT Gateway unit * • Universal 12V DC power supply unit ** • Swivel SMA antenna • 1-metre RJ45 Ethernet cable Before using the IoT Gateway, make sure you attach the supplied antenna to the SMA connector on the unit. * RF information: IEEE 802.15.4 Tx/Rx, frequency range 2400–2483.5 MHz, 2 dBm Operating temperature: 0ºC to 40ºC (32ºF to 104ºF) Operating humidity: 10% to 85% relative humidity (non-condensing) ** Mass Power SFF1200100U1BA or Stontronic T5148RW Using the IoT Gateway The IoT Gateway is supplied pre-programmed with the JenNet-IP Border-Router software, which is described in the Border-Router Application Note (JN-AN-1110) available from the NXP Wireless Connectivity TechZone (web address over-page). This allows the gateway to be used with the JenNet-IP Smart Home Demonstration that is pre-programmed into the components of the NXP JN516x-EK001 Evaluation Kit. This kit and demonstration are fully described in the JN516x-EK001 Evaluation Kit User Guide (JN-UG-3093), also available from the TechZone. JN-UG-3096 v1.1 © NXP Laboratories UK 2013 The Smart Home Demonstration represents a typical JenNet-IP system in which a WPAN of lights can be controlled from a PC located in a LAN or WAN. Normally, the interface between the WPAN and LAN/WAN domains is provided by a Linksys router and a JN5168 USB Dongle (both supplied in the evaluation kit). The IoT Gateway can replace the USB dongle in this demonstration, with the gateway providing the processing platform for the JenNet-IP LAN/WAN and WPAN stacks as well as radio communication with the WPAN. The Linksys router must be connected to the IoT Gateway via an Ethernet cable (supplied in this kit). The resulting system is shown below. IoT Gateway PC Issues control commands via http interface Ethernet LAN (IP) JenNet-IP WPAN (IEEE 802.15.4) Carrier Board Light Co-ordinator Ethernet Standard Router Carrier Board Light Carrier Board Light NXP Light Carrier Board Remote Control Unit In setting up and using the above demonstration system, the instructions provided in the JN516x-EK001 Evaluation Kit User Guide remain valid with the exception of the references to the JN5168 USB Dongle and the IPv4 address of the Border- Router. In the instructions, the IPv4 address 192.168.11.1 must be replaced with the dynamically assigned (DHCP) IPv4 address of the IoT Gateway. Note: Any standard IP router can be used as the DHCP server instead of the Linksys router (the JenNet-IP firmware in the Linksys router is no longer required). For online support resources, Declarations of Conformity and other compliance information for this and other JN516x products, visit the NXP Wireless Connectivity TechZone: www.nxp.com/techzones/wireless-connectivity NXP Laboratories UK Ltd, Furnival Street, Sheffield, S1 4QT, United Kingdom

Users Manual

规 格 承 认 书 SPECIFICATION FOR APPROVAL 客 戶 CUSTOMER: 客 戶 料 号 CUSTOMER NO: 品 名 PART NAME: 2.4GHz 2dBi RF Antenna (SMA/Black) 供 方 料 号 SUPPLIER NO: SLA-100020108 送样日期Date: 2011.11.01 送样数量Q’TY: 5 PCS 客户确认 CUSTOMER APPROVED BY APPROVAL CHIEF SUPERVISOR 供方确认SUPPLIER SIGNATURE APPROVAL CHECK DESIGN 刘长兴 陈燕金 承认书项目表 Spec Item NO. 内容(Contents) 页数 (Number of Page) 页码 (Page Code) 1 承认书封面(Spec Cover) 1 1 2 承认书项目表(Spec Item ) 1 2 3 工程成品图(Drawing) 1 3 4 电性测试报告(Test Reports ) 1 4 5 S参数测试(S Parameter ) 1 5 6 增益测试(Gain Test ) 1 6 7 样品检验记录(Sample inspection)1 7 8 材质证明(Material Certificate) 10 8 ~17 9 * * 10 * * 电性测试报告 Test Reports Electrical Properties Frequency 2.4~2.5GHz Impedance 50 0hm Nominal V.S.W.R <= 1.92 Return Loss -10 dB Max Radiation Omni-directional Gain (Peak) 2 dBi Polarization Linear, Vertical Admitted Power 2 W Connector SMA P/S Physical Properties Antenna Material TPE/PC/PBT Antenna Color . Black Cable Type RG-178 Transparency Brown Operating Temp -10 ~ +60 ̊C Storage Temp -10 ~ +70 ̊C S参数测试 SParameterTest 增益测试 Gain Test 數量 日期 12345678910 1 ±2 108.00 108.30 108.80 108.75 108.60 a 2 ±2 82.50 82.55 82.50 82.80 82.75 a 3 ±0.1 9.32 9.33 9.35 9.35 9.33 a 4 ±0.1 7.78 7.79 7.80 7.80 7.80 a 56781 样品或规格 目视 2 样品或规格 目视 3 样品或规格 目视 4 样品或规格 目视 1 <= 1.92 NA 2 S11 S22 NA 3 2dBi chamber 零件组 配性 样品或规格 材料选用确认 □OK □NG 样品检验记录表 东莞市森岭实业有限公司 料号 SLA-100020108 5PCS 检验项目 Item 公差 2011.11.01 判定 样品编号 量测工具 品名/規格 2.4GHz 2dBi RF Antenna(SMA/Black) 108.0 82.5 Φ9.35Φ7.80 Gain 各零件组配 性狀況 尺寸外观 咬花配色印刷 亮雾度 ■OK □NG■OK □NG VSWR 尺寸检验:标注在附图Mark表示 1.39 1.98dBi 是否依照成品图之材料 ■OK □NG□OK □NG■OK □NG ※量测工具: a游标卡尺 b钢尺 c塞规 d深度规 e工具显微镜 f厚薄规 g分厘卡 h扭力計 i拉拔测试机 j组配 电气特性 备注: ■OK □NG□OK □NG■OK □NG 核 准 : ______________ 审 核 : 刘长兴 工 程 师 : 陈燕金 ■ OK □NG ■OK □NG■OK □NG■OK □NG□OK □NG□OK □NG□OK □NG■OK □NG ®shenyucable.com Structure Inner conductor ømm Dielectric ø Braid conductor Jacket ø Electrical Characteristics Capacitance(pF/m) Impedance(ohm) Velocity(%) Bending radius(mm) Max.oper.voltage(VMS) Max.oper.frequency(MHz) Operating Temp( ) Attenuation(Typical)(dB/m) 1 GHz 2 GHz 3 GHz 4 GHz 5 GHz 6 GHz Application 178 NOV-12-2007 12 : 1 ?PM FRQYTA I WAN YOSON t886 4 23501800 T-218 P.006 F-078 Fax : (067)680-6070 TO I : ( 061 1ti~o-1 S~Q . 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'I Date of Iswe Shore Hardness ASTM 02240 stye-D I 59.0-84.. 0 60.9 1 I Shlpment No. Flexural Modulus 3270 C 211 -0717.0 213.4 Yield strength YIE HEREBY CERT l FY THAT ABOVE-MENT I ONED TEST FIESULTS AqE CORRECT AND MEET OUR SPEC IF I CAT IONS. - a- . - - - YMSU SPECIALTY POLYMERS PLANT O.A. MANAGER 'ASTM I3338 250 mmlmln I E:g / crn* 180-240 189                 ! 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Users Manual

JN5168-RD6040 Compliance Statements Reference Manual JN-RM-2067 Revision 1.0 10-Oct-2013 Draft JN5168-RD6040 Compliance Statements Reference Manual 2 © NXP Laboratories UK 2013 JN-RM-2067 v1.0 JN5168-RD6040 Compliance Statements Reference Manual Draft JN-RM-2067 v1.0 © NXP Laboratories UK 2013 3 Contents About this Manual 4 Organisation 4 1 Introduction 5 2 European R&TTE Directive 1999/5/EC Statement 6 3 FCC Compliance 7 3.1.1 FCC Interference Statement 7 3.1.2 Antennas Approved by FCC for use with JN5168-RD6040 7 3.1.3 FCC ID and Product Labelling 8 4 Industry Canada Compliance 9 4.1 Industry Canada Statement 9 4.2 Industry Canada End Product Labelling 9 A1: R&TTE Notified Body Opinion 10 A2: FCC Declaration of Conformity 11 A 2.1: FCC Grant 12 A3: Industry Canada Grant 13 Draft JN5168-RD6040 Compliance Statements Reference Manual 4 © NXP Laboratories UK 2013 JN-RM-2067 v1.0 About this Manual This manual is exclusively concerned with the JN5168-RD6040 IoT Gateway and contains compliance documentation, declarations, statements and grants for the FCC and Industry Canada in North America as well as an R&TTE declaration and Notified Body Opinion for Europe. Organisation This manual consists of 4 chapters, as follows:  Chapter 1 Lists the standards applicable to this document and device  Chapter 2 Contains details of the standards applied for the EU region  Chapter 3 Contains details of the standards applied and statements required for use in the USA  Chapter 4 Contains details of the standards applied and statements required for use in Canada JN5168-RD6040 Compliance Statements Reference Manual Draft JN-RM-2067 v1.0 © NXP Laboratories UK 2013 5 1 Introduction This document contains mandatory statements and declarations for the standards below: 1. The JN5168-RD6040 has been tested against the requirements 1.1 European R&TTE Directive 1999/5/EC. 2. The JN5168-RD6040 IoT Gateway is compliant with CFR 47 FCC part 15B & CFR 47 FCC part 15C regulations and in accordance to FCC Public notice DA00-1407. This document contains details on the conditions applying to this FCC grant and also contains the FCC Declaration of Conformity. 3. The JN5168-RD6040 is compliant with Industry Canada RSS210 (Issue 8, Annex 8) and Industry Canada ICES-003 for Class B devices The JN5168-RD6040 has Industry Canada approval. Draft JN5168-RD6040 Compliance Statements Reference Manual 6 © NXP Laboratories UK 2013 JN-RM-2067 v1.0 2 European R&TTE Directive 1999/5/EC Statement The JN5168-RD6040 has been tested to and is compliant with the following standards:  Radio EN 300 328 v1.8.1.  EMC, EN 301 489-17 v2.1.1  Basic Safety Assessment (BSA) EN 60950-1:2006 The product is subject to a Notified Body Opinion which may be found in Appendix A1. The JN5168-RD6040 was tested and approved for use with the supplied 2dBi antenna. Brand Model Number Description Gain (dBi) Connector type 1 Aveslink Technology, Inc E-2410-GC Vertical - swivel 2 RP-SMA 2 Aveslink Technology, Inc E-2820-GC Vertical - swivel 2 RP-SMA 3 Embedded Antenna Design FBKR35068-RS-KR Vertical - knuckle antenna 2 RP-SMA 4 Sunlight Technology SLA-100020108 Vertical - swivel 2 RP-SMA Table 1: Approved Antennas ! Alternative vertical antennas may be used provided that the gain of the replacement antenna does not exceed 2dBi. JN5168-RD6040 Compliance Statements Reference Manual Draft JN-RM-2067 v1.0 © NXP Laboratories UK 2013 7 3 FCC Compliance The JN5168-RD6040 IoT Gateway is compliant with CFR 47 FCC part 15B & CFR 47 FCC part 15C regulations and in accordance to FCC Public notice DA00-1407. 3.1.1 FCC Interference Statement This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one of the following measures:  Reorient or relocate the receiving antenna.  Increase the separation between the equipment and receiver.  Connect the equipment into an outlet on a circuit different from that to which the receiver is connected.  Consult the dealer or an experienced radio/TV technician for help. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. FCC Caution: Any changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate this equipment. 3.1.2 Antennas Approved by FCC for use with JN5168-RD6040 This device has been designed to operate with the antennas listed in Table 1, and having a maximum gain of 2 dBi. Alternative vertical antennas may be used provided that the gain does not exceed 2 dBi. Antennas having a gain greater than 2 dBi are strictly prohibited for use with this FCC ID. The required antenna impedance is 50 ohms. ! Alternative vertical antennas may be used provided that the gain of the replacement antenna does not exceed 2dBi. Draft JN5168-RD6040 Compliance Statements Reference Manual 8 © NXP Laboratories UK 2013 JN-RM-2067 v1.0 3.1.3 FCC ID and Product Labelling The FCC ID for the JN5168-RD6040 IoT Gateway is TYOJN5168IT00 This is clearly labelled as shown in Figure 1 Figure 1: JN5168-RD6040 Label JN5168-RD6040 Compliance Statements Reference Manual Draft JN-RM-2067 v1.0 © NXP Laboratories UK 2013 9 4 Industry Canada Compliance 4.1 In…

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Attestation Statements

TRaC Global 100 Frobisher Business Park, Leigh Sinton Road Malvern, Worcestershire, WR14 1BX, UK Date 4 th October, 2013 Letter of Agency To Whom It May Concern: We certify that we are not subject to denial of federal benefits that includes FCC benefits, pursuant to Section 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

Block Diagram

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 TraC Global 100 Frobisher Business Park, Leigh Sinton Road Malvern, Worcestershire, WR14 1BX, UK 24t September, 2013 TYOJN5168IT00 – Radio Operational Description Radio The figure below shows the single ended radio architecture and frequency generating scheme used in the JN5168 chip: I L R L i m 1 L i m 2 L i m 3 L i m 4 D - T y p e ADC C a l i b r a t i o n Mux VCO Synth Sigma Delta Switch TX 2.405 – 2.480 GHz RX 2.4036875 – 2.4813125 GHz IF 1.3125 MHz XO – 32.000000 MHz 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 matching network, which consists of two inductors and a capacitor, this arrangement creates a 50 port and removes the need for a balun. A 50 single ended antenna can be connected directly to this port. 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 sigma-delta 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 of three settings. Figure 2: JN5168-RD6040-IoT Gateway Block Diagram

ID Label/Location Info

TYOJN5168TI00 Labelling This document has been generated in support of the FCCID application for the TYOJN5168TI00. It covers the following product: JN5168-RD6040 The following picture shows the final production label. JN5168-RD6040

Operational Description

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 TraC Global 100 Frobisher Business Park, Leigh Sinton Road Malvern, Worcestershire, WR14 1BX, UK 24t September, 2013 TYOJN5168IT00 – Radio Operational Description Radio The figure below shows the single ended radio architecture and frequency generating scheme used in the JN5168 chip: I L R L i m 1 L i m 2 L i m 3 L i m 4 D - T y p e ADC C a l i b r a t i o n Mux VCO Synth Sigma Delta Switch TX 2.405 – 2.480 GHz RX 2.4036875 – 2.4813125 GHz IF 1.3125 MHz XO – 32.000000 MHz 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 matching network, which consists of two inductors and a capacitor, this arrangement creates a 50 port and removes the need for a balun. A 50 single ended antenna can be connected directly to this port. 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 sigma-delta 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 of three settings. Figure 2: JN5168-RD6040-IoT Gateway Block Diagram

Parts List/Tune Up Info

Partlist exported from c:/A_HW/Eagle/projects/IpBridge/Redesign-V1.1/IpBridge.sch at 4/15/2013 8:11:38 AM QtyValueDevicePackagePartsFarnellVendorDescription 1M50-3600542M50-3600542127_2R10_SMTJTAG1022310Neltron Industrialconnector, 10-way 1M50-3601042M50-3601042127_2R20_SMTEXT1022311Neltron IndustrialFabrikant: HARWIN, ordercode: 1022311, Fabrikantnummer: M50-3601042 1BG055-06A-1-0450-0530-0350-L-DPINHD-1X06_2.54-SMD1X06SMDUART51798988Neltron IndustrialPIN HEADER 1BD075-06-A-1-L-DBD075-06-A-1-L-DBD075-06-A-1-L-DJ_UART11798817Neltron IndustrialBOARD-BOARD CONNECTOR SOCKET, 6WAY, 1ROW 1ASEMPC-50.000MHZ-LR-TASEMPC-50.000MHZ-LR-TASEQ2011960717Abracon CorporationPERFORMANCE PLASTIC PACKAGE ULTRA MINIATURE 1B3S1000B3S-1000B3XSPROG177807Seeplus6.2 X 6.5mm TACT Switch (SMD) 1132136RPBU-SMA-VBU-SMA-VRF2144525AMPHENOL CONNEXAMPHENOL CONNEX - 132136RP - JACK, RP-SMA, R/A, 50OHM, Through hole, SOLDER 40100n0402B104K160CTC0402 C1, C9, C13, C16, C25, C26, C29, C34, C35, C36, C37, C40, C43, C44, C45, C46, C47, C48, C49, C51, Walsin 0402B104K160CTCAPACITOR, European symbol 6100n/X7R0402B104K160CTC0402C108, C109, C111, C114, C115, C116Walsin 0402B104K160CTCAPACITOR, European symbol 1710n0402B103K500CTC0402C12, C15, C17, C18, C31, C32, C33, C39, C41, C50, C52, C54, C56, C58, C67, C78, C791828887Walsin 0402B103K500CTCAPACITOR, European symbol 110n/X7R0402B103K500CTC0402C1121828887Walsin 0402B103K500CTCAPACITOR, European symbol 110n/NP00603B103K500CTC0603C211457729Walsin 0603B103K500CTCAPACITOR, European symbol 112p0402N120J500LTC0402C21758943Walsin 0402N120J500LTCAPACITOR, European symbol 1150p0402B151K500CTC0402C651758975Walsin 0402B151K500CTCAPACITOR, European symbol 215p0402N150J500LTC0402C103, C1061758945Walsin 0402N150J500LTCAPACITOR, European symbol 61n0402B102K500CTC0402C69, C70, C71, C72, C73, C1261758991Walsin 0402B102K500CTCAPACITOR, European symbol 31u0402X105K6R3CTC0402C125, C134, C1351759381Walsin 0402X105K6R3CTCAPACITOR, European symbol 1220n0402X224K100CTC0402C1281758880Walsin 0402X224K100CTCAPACITOR, European symbol 222n0402B223K160CTC0402C104, C1051828888Walsin 0402B223K160CTCAPACITOR, European symbol 422p0402N220J500LTC0402C60, C61, C62, C631758951Walsin 0402N220J500LTCAPACITOR, European symbol 12u20402X225M6R3CTC0402C1382118127Walsin 0402X225M6R3CTCAPACITOR, European symbol 13n90402B392K500CTC0402C641758999Walsin 0402B392K500CTCAPACITOR, European symbol 247p/NPO0402N470J500LTC0402C113, C1171758959Walsin 0402N470J500LTCAPACITOR, European symbol 9naC-EUC0402C0402 C19, C74, C75, C76, C77, C88, C89, C90, C91 WalsinCAPACITOR, European symbol 2470n0603F474Z160CTC0603C10, C1191856338Walsin 0603F474Z160CTCAPACITOR, European symbol 1470n/X7RGRM188R71C474KA88DC0603C851856338Walsin 0603F474Z160CTCAPACITOR, European symbol 610u/X7RGRM21BR71A106KE51LC0805C14, C30, C38, C42, C83, C1101828828Walsin 0805B106K100CTCAPACITOR, European symbol 134u7/X7R (0805)GRM21BR71C475KA73LC0603 C3, C5, C8, C84, C86, C87, C92, C94, C95, C96, C97, 1657937MURATA GRM21BR71C475KA73LCAPACITOR, European symbol 110u/tantaliumTAJA106K010RNJC1206C1331190107AVX TAJA106K010RNJCAPACITOR, European symbol 422u/X7RGRM31CR71A226KE15LC1206C4, C6, C11, C1212118135Walsin 1206B226K160CTCAPACITOR, European symbol 247u/16vGRM32ER61C476KE15LC1210C129, C1301907527MURATA GRM32ER61C476KE15LCAPACITOR, European symbol 1OVS-0803(B)OVS-0803(B)CHIPLED_0805LED11716765EverlightChip LED 0805 1OVS-0804(G)OVS-0804(G)CHIPLED_0805LED41716766EverlightChip LED 0805 2OVS-0806(Y)OVS-0806(Y)CHIPLED_0805LED2, LED51716767EverlightChip LED 0805 2OVS-0808(R)OVS-0808(R)CHIPLED_0805LED3, LED61716768EverlightChip LED 0805 3VLF3010AT-2R2M1R0COIL2.8MMCOIL2.8MML3, L4, L71670118TDKCoil radial, 2.8 mm 2SLF7045, 3.3uHCOIL70X70COIL7070L14, L162215723TDK 1CR1225 FH-LFCR1225HCR1225HB11319726Renata BatteriesRENATA - CR1225 FH-LF - CELL, LITHIUM, BUTTON, 2PIN, 3V 15-20pC-TRIMMCTZ3CTRIMCTZ3C209528652WalsinTrimm capacitor 1DC10AJACK-PLUGBIGHOLESDC_BIGHOLESDC-IN224960Cliff ElectronicDC POWER JACK 1LT3971EDD-3.3LT3971EDD-3.3DFN10-3X3IC122068054Linear Technology38V, 1.2A, 2MHz 1LT3971EDD-5LT3971EDD-5DFN10-3X3IC52068055Linear Technology38V, 1.2A, 2MHz 222EEXB18V220JXEXB18VRN9, RN102060117VishayArray Chip Resistor 1H5MS5162EFRH5MS5162EFRFBGA60-6X10IC102147277HYNIX SEMICONDUCTORHYNIX SEMICONDUCTOR - H5MS5162EFR-J3M - SDRAM, MOBILE DDR, 512MB (X16), 60FBGA 1STOTG04ESTOTG04EHVQFN24-4X4IC13STMicroelectronicsUSB-OTG Full-speed Transceiver 1naJP1EJP1J1JUMPER 1naLIGHTPIPE6LIGHTPIPE6U$13245251Mentor Graphics 1TE CONNECTIVITY - 5-6605758-1JACK8LED_RHMODULARJACK8_LETH1630005TE CONNECTIVITY 1DP83848-2MSQDP83848-2MSQMVER_ETHERNET_LLP40U2011602446Texas InstrumentsDP83848 (40-LLP) - Single Port 10/100 Ethernet Transceiver 13n9H, LQP15MN3N9B02LQP15MN3N9B02P0603L12MurataInductor 15n1H, LQP15MN5N1B02LQP15MN5N1B02P0603L13MurataInductor 1BK1608HS220BK1608HS220P0603L15Taiyo YudenInductor 4BLM18AG601SBLM18AG601SPACKAGE0603L5, L6, L8, L171515679Murata 160EWR04X000 PTLR0402 R16, R17, R26, R31, R46, R48, R49, R52, R53, R54, R79, R82, R84, R89, R90, R92 1357983 Walsin WR04X000 PTL RESISTOR, European symbol 3100EWR04X101 JTLR0402R136, R137, R1381358015 Walsin WR04X101 JTL RESISTOR, European symbol 3100kWR04X104 JTLR0402R35, R94, R1491358096 Walsin WR04X104 JTL RESISTOR, European symbol 1310kWR04X103 JTLR0402 R18, R20, R21, R22, R23, R24, R56, R61, R130, R131, R132, R135, R147 1358069 Walsin WR04X103 JTL RESISTOR, European symbol 2120EWR04X121 JTLR0402R25, R271358018 Walsin WR04X121 JTL RESISTOR, European symbol 1120kWR04X124 JTLR0402R551358098 Walsin WR04X124 JTL RESISTOR, European symbol 214kWR04X1402FTLR0402R36, R1411803149 Walsin WR04X143 JTL RESISTOR, European symbol 1150EWR04X151 JTLR0402R21358020 Walsin WR04X151 JTL RESISTOR, European symbol 1180kWR04X184 JTLR0402R141358102 Walsin WR04X184 JTL RESISTOR, European symbol 41kWR04X102 JTLR0402R30, R63, R139, R1481358043 Walsin WR04X102 JTL RESISTOR, European symbol 11k5WR04X152 JTLR0402R681358047 Walsin WR04X152 JTL RESISTOR, European symbol 220EWR04X200 JTLR0…

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RF Exposure Info

Prediction of Distance for a specific MPE Limit TYOJN5168IT00 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 1.49 dBm 1.41 Max Antenna gain (integrated antenna) 2 dBi 1.58 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 0.42 S PG R 4  2 4R PG S  

Schematics

6/6/2013 1:10:45 PM c:\A_HW\Eagle\projects\IpBridge\Redesign-V1.1.3\IpBridge.sch (Sheet: 1/6) A B C D E 12345678 A B C D E 12345678 6/6/2013 1:10:45 PM c:\A_HW\Eagle\projects\IpBridge\Redesign-V1.1.3\IpBridge.sch (Sheet: 2/6) MR 3 VCC 4 RESET 2 GND 1 1 24 3 5 HIGHCORE/LCDVD[17] H16 ONSW M15 PLL397_LOOP R14 RESET_N M14 RESOUT_N G4 RTCX_IN P16 RTCX_OUT P17 SYSX_IN T17 SYSX_OUT R15 GPI_00/I2S1RX_SDA C16 GPI_01/SERVICE_N C15 GPI_02/CAP2.0/ENET_RXD3 C14 GPI_03 F4 GPI_04/SPI1_BUSY E13 GPI_05/U3_DCD N16 GPI_06/HSTIM_CAP/ENET_RXD2 C7 GPI_07/CAP4.0/MCABORT D13 GPI_08/KEY_COL6/SPI2_BUSY/ENET_RX_DV B16 GPI_09/KEY_COL7/ENET_COL E12 GPI_19/U4_RX B15 GPI_28/U3_RI N17 GPIO_00 A12 GPIO_01 A11 GPIO_02/KEY_ROW6/ENET_MDC D9 GPIO_03/KEY_ROW7/ENET_MDIO C11 GPIO_04/SSEL1/LCDVD[22] B11 GPIO_05/SSEL0/MCIO E9 GPO_00/TST_CLK1 C3 GPO_01 D4 GPO_02/MAT1.0/LCDVD[0] B14 GPO_03/LCDVD[1] D12 GPO_04 D8 GPO_05 B3 GPO_06/LCDVD[18] A16 GPO_07/LCDVD[2] A15 GPO_08/LCDVD[8] C13 GPO_09/LCDVD[9] C12 GPO_10/MCOB2/LCDPWR E11 GPO_11 E8 GPO_12/MCOA2/LCDLE B12 GPO_13/MCOB1/LCDDCLK B13 GPO_14 D3 GPO_15/MCOA1/LCDFP A14 GPO_16/MCOB0/LCDENAB/LCDM D10 GPO_17 N18 GPO_18/MCOA0/LCDLP D11 GPO_19 C2 GPO_20 B2 GPO_21/U4_TX/LCDVD[3] A13 GPO_22/U7_HRTS/LCDVD[14] E10 GPO_23/U2_HRTS/U3_RTS M16 I2C1_SCL A5 I2C1_SDA B6 I2C2_SCL A3 I2C2_SDA E4 I2S1TX_CLK/MAT3.0 A4 I2S1TX_SDA/MAT3.1 E7 I2S1TX_WS/CAP3.0 B4 P0.0/I2S1RX_CLK B5 P0.1/I2S1RX_WS D7 P0.2/I2S0RX_SDA/LCDVD[4] M17 P0.3/I2S0RX_CLK/LCDVD[5] M18 P0.4/I2S0RX_WS/LCDVD[6] L15 P0.5/I2S0TX_SDA/LCDVD[7] L16 P0.6/I2S0TX_CLK/LCDVD[12] L17 P0.7/I2S0TX_WS/LCDVD[13] L18 PWM_OUT1/LCDVD[16] D14 PWM_OUT2/LCDVD[19] D15 SPI1_CLK/SCK0 C9 SPI1_DATIN/MISO0/GPI_25/MCI1 C10 SPI1_DA…

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Contact Information

Applicant

Conrad Farlow
[email protected]+44 114 281 2655Fax: +44 114 281 2951

Test Firm

R.N. Electronics Ltd.Roger Ray
[email protected]44-1277-352219Fax: 44-1277-352968

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.48 GHz1.41 mW
Grant Notes
Output power is conducted

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