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VW4A091745ATZB-X0-256-4-0-CN ZigBit ATxmega256A3U+RF212B

Microchip Technology Inc.
ATZB-X0-256-4-0-CN ZigBit ATxmega256A3U+RF212B - FCC ID VW4A091745 - Microchip Technology Inc.
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Dec 18, 2013
Application Purpose
Original Equipment
Date of Application
Dec 10, 2013
Equipment Note
ATZB-X0-256-4-0-CN ZigBit ATxmega256A3U+RF212B
Frequency Range
906.00000000 - 924.00000000
Company
Microchip Technology Inc.
Country
United States

Documents & Files

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Users Manual

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Block Diagram

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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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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

ZIGBIT 900 MHZ WIRELESS MODULES ATZB-X0-256-4-0-CN DATASHEET Features  Compact size (38.5 x 20.0 mm)  High RX sensitivity (-103 dBm)  Outperforming link budget (up to +112 dB)  Up to +9.0 dBm output power  Very low power consumption:  8.7 mA in RX mode (1)  34.8 mA in TX mode (1)  0.6 μA in sleep mode (2)  Ample memory resources (256K Bytes In-System, Self-Programmable Flash memory, 4K Bytes EEPROM, 16K Bytes SRAM)  Wide range of interfaces (both analog and digital)  4- wire SPI, TWI  ISP, JTAG  2 Analog comparator Input  UART, USART  Timer, PWM  4 ADC lines  External Clock Input, Internal Clock Output  Upto 32 lines configurable as GPIO  Preassigned Atmel ® MAC address that can be used on end product  Capability to use MAC address into the internal EEPROM  IEEE ® 802.15.4 compliant Transceiver  900MHz ISM band  Serial bootloader  High Performance Low power AVR XMEGA 8/16-bit Microcontroller  Rapid design-in with built-in Chip Antenna  RF Test point using MS-147 RF connector  Small physical footprint and low profile for optimum fit in very small application boards  Mesh networking capability  Easy-to-use low cost development kit  Single source of support for HW and SW  Worldwide license-free operation ATZB-X0-256-4-0-C [ZigBit 900 MHz Wireless Modules] 2 Note: 1. MCU is in active state with 3V Supply, CPU clock @ 16MHz, RX RPC enabled (for RX current), PHY_TX_PWR=0x0 (for TX current), All digital outputs pulled high. Note: 2. Controller Sleep Mode – SLEEP_MODE_PWR_DOWN Table of Contents 1. Introduction ........................................................................................ 3 1.1 Summary ........................................................................................................... 3 1.2 Applications ....................................................................................................... 3 1.3 Abbreviations and acronyms ............................................................................. 3 1.4 Related documents ........................................................................................... 4 2. ZigBit Module Overview ..................................................................... 6 2.1 Overview ........................................................................................................... 6 3. Specification....................................................................................... 8 3.1 Electrical Characteristics ................................................................................... 8 3.1.1 Absolute Maximum Ratings ................................................................ 8 3.1.2 Power Supply ...................................................................................... 8 3.1.3 RF Characteristics .............................................................................. 9 3.1.4 ATXMEGA256A3U Microcontroller Characteristics .......................... 10 3.1.5 Module Interfaces Characteristics ..................................................... 10 3.2 Physical/environmental characteristics and outline ......................................... 10 3.3 Pin configuration ............................................................................................. 11 3.4 Antenna Orientation Recommendation ........................................................... 12 3.5 Mounting information ....................................................................................... 12 3.6 Soldering profile .............................................................................................. 12 3.7 Antenna reference designs ............................................................................. 13 4. Section 4 .......................................................................................... 13 4.1.1 General recommendations ................................................................ 13 5. Persistence Memory ........................................................................ 14 Ordering information .................................................................................................. 15 6. Agency Certifications ....................................................................... 16 6.1 United States (FCC) ........................................................................................ 16 6.2 Industry Canada (IC) Compliance statements ................................................ 16 Appendix A. Revision history ........................................................... 18 ATZB-X0-256-4-0-C [ZigBit 900 MHz Wireless Modules] 3 1. Introduction 1.1 Summary ATZB-X0-256-4-0-CN ZigBit ® is an ultra-compact and low-power 900 MHz IEEE 802.15.4/ZigBee ® OEM module from Atmel ® . Based on the innovative mixed-signal hardware platform from Atmel, this module uses the ATXMEGA256A3U [1] Microcontroller and AT86RF212B [5] 700/800/900 MHz ISM band Transceiver. The radio transceiver provides high data rates from 20 kb/s up to 1 Mb/s, frame handling, outstanding receiver sensitivity and high transmit output power enabling a very robust wireless communication. The module is designed for wireless sensing, monitoring, control, data acquisition applications, to name a few. This ZigBit module eliminates the need for costly and time-consuming RF development, and shortens time-to-market for wireless applications. The module has an MS-147 RF connector that can be used as an RF test port. The built-in chip antenna is designed and tuned for the ZigBit design to enable quick integration of the ZigBit into any application. 1.2 Applications The ZigBit module is compatible with robust IEEE 802.15.4/ZigBee stack that supports a self-healing, self-organizing mesh network, while optimizing network traffic and minimizing power consumption. For detailed Software support information, please visit www.atmel.com/wireless The applications include, but are not limited to:  Building automation & monitoring o Lighting controls o…

Text truncated - open the document above for the full version.

Block Diagram

www.tuv.com Appendix 5 Prüfbericht - Nr.: Test Report No. 19660043 001 Seite 1 von 2 Page 1 of 2 Block Diagram www.tuv.com Appendix 5 Prüfbericht - Nr.: Test Report No. 19660043 001 Seite 2 von 2 Page 2 of 2 Internal Block diagram of AT86RF212B RF Transceiver IC

Cover Letter(s)

Atmel Norway AS Vestre Rosten 79 7075 Tiller NORWAY T: (+47) 72 88 43 88 F: (+47) 72 88 43 99 www.atmel.com Applicant/Grantee Atmel Norway AS FCC ID: VW4A091745 Section 15.212 Modular Transmitters Request for Single Modular Approval Request for Limited Single Modular approval SI. No Requirements EUT Conditions Comply (Y/N) 0 1 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 The Module has its own shielding. Y Y 0 2 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 All Modulation and data input(s) are buffered. Refer block diagram and schematic diagram. Y Y 0 3 The modular transmitter must have its Own power supply regulation. The AT86RF212B IC has internal power supply regulator of 1.8V, that is used to power the Radio core Y Y 0 4 The modular transmitter must comply with the antenna and transmission system requirements of Sections 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 Section 15.203 is not applicable to modules but can apply to limited Modular approvals under paragraph (b) of this section. The Antenna for the module is Built-in Chip Antenna Y Y 0 5 The modular transmitter must be tested in a stand-alone configuration, i.e., the module must not be inside another device during testing for compliance With Part 15 requirements. Unless the transmitter module will be battery powered, it must comply with the AC line conducted requirements found in Section 15.207. AC or DC power lines and data input/output lines connected to the module must not contain ferrites, unless they will be marketed with the Module (see Section 15.27(a)). The length of these lines shall be the length typical of actual use or, if that length is unknown, at least 10 centimeters to insure that there is no coupling between Y Y Atmel Norway AS Vestre Rosten 79 7075 Tiller NORWAY T: (+47) 72 88 43 88 F: (+47) 72 88 43 99 www.atmel.com the case of the module and supporting Equipment. Any accessories, peripherals, or support equipment connected to the module during testing shall be Unmodified and commercially available (see Section 15.31(i)). 0 6 The modular transmitter must be equipped with either a permanently affixed label or must be capable of electronically displaying its FCC Identification number. (A) If using a permanently affixed label, the modular transmitter must be labeled with its own FCC identification number, and, if the FCC identification number is not visible when the module is installed inside another device, then the outside of the device into which the module is Installed must also display a label referring to The enclosed module. This exterior label can use wording such as the following: “Contains Transmitter Module FCC ID: XYZMODEL1” or “Contains FCC ID: XYZMODEL1.” Any similar wording That expresses the same meaning may be used. The Grantee may either provide such a label, an example of which must be included in the application for equipment authorization, or, must provide adequate Instructions along with the module which explain This requirement. In the latter case, a copy of these instructions must be included in the Application for equipment authorization. (B) If the modular transmitter uses an electronic display of the FCC identification number, the information must be readily accessible and visible on the modular transmitter or on the Device in which it is installed. If the module is installed inside another device, then the outside of the device into which the module is installed must display a label referring to the enclosed Module. This exterior label can use wording such as the following: “Contains FCC certified transmitter module(s).” Any similar wording that expresses the same Meaning may be used. The user manual must include instructions on how to access the Electronic display. A copy of these instructions Must be included in the application for equipment authorization. Refer Zigbit XMega+RF212B User Manual document. Y Y Atmel Norway AS Vestre Rosten 79 7075 Tiller NORWAY T: (+47) 72 88 43 88 F: (+47) 72 88 43 99 www.atmel.com 0 7 The modular transmitter must comply with any specific rules or operating requirements that ordinarily apply to a complete transmitter and the manufacturer must provide adequate instructions along with the module to explain any such Requirements. A copy of these Instructions must be included in the application for equipment authorization. . Refer Zigbit Xmega+RF212B User Manual document. Y Y 0 8 The modular transmitter must comply with any applicable RF exposure requirements in its final configuration Y Y A limited modular approval may be granted for single or split modular transmitters that do not comply with all of the above requirements, e.g., shielding, minimum signaling amplitude, buffered modulation/data inputs, or power supply regulation, if the manufacturer can demonstrate by alternative means in the application for equipment authorization that the modular transmitter meets all the applicable Part 15 requirements under the operating conditions in which the transmitter will be used. Limited modular approval also may be granted in those instances where compliance with RF exposure rules is demonstrated only for particular product configurations. The applicant for certification must state how control of the end product into which the module will be installed will be maintained such that full compliance of the end product is always ensured Sincerely, Saravanakumar Marudhachalam Manager, Tools HW development

External Photos

www.tuv.com Appendix 2 Prüfbericht - Nr.: Test Report No. 19660043 001 Seite 1 von 2 Page 1 of 2 EUT Top View EUT Bottom View www.tuv.com Appendix 2 Prüfbericht - Nr.: Test Report No. 19660043 001 Seite 2 von 2 Page 2 of 2 EUT Dimensional View

ID Label/Location Info

www.tuv.com Appendix 4 Prüfbericht - Nr.: Test Report No. 19660043 001 Seite 1 von 1 Page 1 of 1 Label Diagram Label Location

Internal Photos

www.tuv.com Appendix 3 Prüfbericht - Nr.: Test Report No. 19660043 001 Seite 1 von 1 Page 1 of 1 Module- Shielding Removed

Operational Description

Atmel Norway AS Vestre Rosten 79 7075 Tiller NORWAY T: (+47) 72 88 43 88 F: (+47) 72 88 43 99 www.atmel.com 04-Nov-2013 Theory of Operation/Technical Description – FCC ID: VW4A091745 - RF circuit function: The IEEE 802.15.4 compliant transceiver inside the product generates a modulated carrier wave at 905 MHz - 925 MHz with 10 IEEE 802.15.4 channels. This transceiver circuit is used by applications as a physical layer for ZigBee applications. - RF signal flow: The Transceiver IC outputs a differential RF signal- RFP & RFN which then passes through the RF path till the antenna and gets radiated or vice versa during reception - Description of Antenna system: The Balun in the RF path converts the differential RF signal into a single ended 50 ohm side where it is fed to the Antenna connector after passing through tuning elements present to ensure compliance. - Compliance with 15.203 antenna requirements: FCC 15.203 requirements for this design are tested and verified during FCC compliance testing. - Description of all modulation schemes used in the product: Module uses BPSK and O-QPSK with pulse shaping. Saravanakumar Marudhachalam Manager, Tools HW Development

Operational Description

www.tuv.com Appendix 6 Prüfbericht - Nr.: Test Report No. 19660043 001 Seite 1 von 1 Page 1 of 1 Specifications of EUT Operating Frequency 902 - 928 MHz No. of channel 10 Channel Spacing 2 MHz Modulation DSSS [BPSK] Transmitted Power 10.54dBm Data Rate 250 kbps Antenna Type Ceramic Chip Antenna Number of antenna One Antenna Gain 0dBi Supply Voltage 1.8VDC – 3.6VDC Dimensions 20mm x 38.5mm Environmental -20 to +85 degrees C

Operational Description

915 MHz AntennaP/N 0915AT43A0026 Detail Specification: 07/26/2010 Page 1 of 3 Recommended Application ISM General Specifications Part Number0915AT43A0026Operating Temperature-40 to +85°C Frequency Range902 - 928 Storage Temperature+5~+35°C, Peak Gain-1.0 dBi typ. (XZ-total) RangeHumidity 45~75%RH Average Gain-4.0 dBi typ. (XZ-total)Reel Quanity1,000 Return Loss8.5 dB min. Impedance50 Ω Input Power2W max.No.FunctionTerminal Configuration 1 2 Mechanical Dimensions Inmm L±± W±± T a±± Mounting Considerations Mount these devices with brown mark facing up. Units: mm * Line width should be designed to provide 50 Ω impedance matching characteristics. With Matching Circuit **matching circuit and component values will depend on PCB layout, thickness, material, etc. Johanson Technology, Inc. reserves the right to make design changes without notice. All sales are subject to Johanson Technology, Inc. terms and conditions. www.johansontechnology.com 4001 Calle Tecate • Camarillo, CA 93012 • TEL 805.389.1166 FAX 805.389.1821 2010 Johanson Technology, Inc. All Rights Reserved "High Frequency Ceramic Solutions" 0.0080.2767.000.20 0.80 0.0200.012 +0.1/-0.2 0.079 0.031 2.00 +.004/-.008 0.008 Feeding Point NC 0.20 0.500.30 GND Plane GND Plane 1 2 L W a T JTI P/N for Matching Circuit:** Inductor (4.7nH):L-07C4N7SV6T Inductor (10nH): L-07C10NJV6T Cap (0.5pF): 500R07S0R5BV4T 2.0 5.5 8.0 1.0 5.0 7.0 2.5 0.5 0.5 pF 10 nH 4.7 nH Matching circuits** * 915 MHz AntennaP/N 0915AT43A0026 Detail Specification: 07/26/2010 Page 2 of 3 Recommended Application ISM Mounting Considerations Test Board Johanson Technology, Inc. reserves the right to make design changes without notice. All sales are subject to Johanson Technology, Inc. terms and conditions. www.johansontechnology.com 4001 Calle Tecate • Camarillo, CA 93012 • TEL 805.389.1166 FAX 805.389.1821 2010 Johanson Technology, Inc. All Rights Reserved "High Frequency Ceramic Solutions" ) ) ) ) ) ) ) ) ) Antenna Ground 20mm 40mm9.5mm 50Ω Feed Line Return Loss (with matching) Antenna No Ground Ground 20mm 19mm 40mm 9.5mm 50Ω Feed Line 0.60.70.80.91.01.11.20.51.3 -40 -35 -30 -25 -20 -15 -10 -5 -45 0 freq, GHz dB(S(1,1)) m1 m2 m3 m1 freq= dB(S(1,1))=-11.21 7 902.0MHz m2 freq= dB(S(1,1))=-11.80 7 928.0MHz m3 freq= dB(S(1,1))=-43.25 7 915.0MHz 915 MHz AntennaP/N 0915AT43A0026 Detail Specification: 07/26/2010 Page 3 or 3 Recommended Application ISM Johanson Technology, Inc. reserves the right to make design changes without notice. All sales are subject to Johanson Technology, Inc. terms and conditions. www.johansontechnology.com 4001 Calle Tecate • Camarillo, CA 93012 • TEL 805.389.1166 FAX 805.389.1821 2010 Johanson Technology, Inc. All Rights Reserved "High Frequency Ceramic Solutions" ) ) ) ) ) ) ) ) ) Typical Radiation Patterns ) ) ) ) ) ) ) ) ) XY-V/XY-H 180° 270° 0° 90° X Z Y XY-cut scanning direction XY cut @915MHz Vertical Horizontal XZ-V/XZ-H YZ-V/YZ-H 180° 270° 0° 90° X Z Y XZ-cut scanning direction 180° 270° 0° 90° X Z Y YZ-cut scanning direction YZ cut @915MHz Vertical Horizontal XZ cut @915MHz Vertical Horizontal

Parts List/Tune Up Info

ProjectXmega 212B Model NameATZB-X0-256-4-0-CN FCC ID: VW4A091745 IC ID: 11019A-091745 DesignatorQuantityMPNManufacturer A110915AT43A0026Johanson Technology B110896FB15A0100Johanson Technology C1, C2, C6, C740603YD105KAT2AAVX C31CBR02C229C9GACKemet C51Johanson Technology C8, C11, C200, C2074GRM0335C1E100JA01DMurata C121500R07S5R6CV4T Johanson Technology C2011T491A475K010ATKemet C202, C203, C204, C205, C206, C2086C0201C104K9PACTUKemet J11CL358-150-5-01HIROSE L31L-05B1N8SV6TJohanson Technology L200, L2012BLM15BB221SN1Murata LABEL11505494ACT Logimark AS PCB2001 Q11TSX-3225 16.0000MF09Z-AC3Epson Toyocom R11RC0201JR-07680RLYAGEO CORP R2001RC0201JR-07100KLYAGEO CORP U11AT86RF212B-ZUATMEL U2001ATxmega256A3U-MHATMEL XC2001FC-135 32.768 kHzEpson Toyocom Z2001ATZB-X-0-256-4-0-CNATMEL Z2011 ValueDescriptionComment 0915AT43A0026Sub 1GHz Chip AntennaANT_SUB_GHZ 0896FB15A0100868/900MHz FilterBalun, SMD 1.25x2.0mm (de26948)FilterBalun_NoFeed 1uFCAP CER 1UF 16V 10% X5R 0603CAP-NONPOL 2.2 pFCAP CER 2.2PF 6.3V NP0 0201CAP-NONPOL 68pFCAP CER 68PF 25V 5% NP0 0201CAP-NONPOL 10 pFCeramic capacitor, SMD 0201, C0G, 25V, +-0.25pFreplacement for A01-0315 5.6pFCAP CER 5.6PF 25V NP0 0201CAP-NONPOL 4.7uF/10VSMD tantalum capacitor, ESR = 5, 3216-18 (EIA) 1206, polarizedCAP-POL 100nCAP CER 0.1UF 6.3V 10% X5R 0201CAP-NONPOL MS147Interface RF Connector with Switch,50 per reel 1.8nHceramic chip inductor, 1.8nH,0201RF tuning part (cheaper version) BLM15BB221SN1SMD RF inductor 0402. Z=220Ohm (@100MHz), Max R(dc)=0.80Ohm, Max current=200mAINDUCTOR Label ZigBit ShieldZigBit Identification label. 15x10mm fireproof label w/blue Atmel logoHT_PCBA_LABEL ZigBit Xmega Sub-GHz board PCBZigBit Xmega Sub-GHz board PCBPCB 16.0MHz16MHz uXtal, 3.2 x 2.5 mm SMD, CL=9pF, 15PPM, ESR=80ohm(Max.TSX-3225 680RRES 680 OHM 1/20W 5% 0201 SMDRES 680 OHM 1/20W 5% 0201 SMD 100KRES 100K OHM 1/20W 5% 0201 SMDR2 AT86RF212B-ZULow Power 700/800/900 MHz Transceiver for IEEE 802.15.4, ZigBee, 6LoWPAN, and ISM Applications (de34572)Rev.A ATxmega256A3U-MHAVR xmega device with USBQFN version FC-135 32.768 kHzFC-135 32.768 kHz 20ppm 12.5pfFLoad CapAlternate part for A07-0041 ATZB-X-0-256-4-0-CNXmega SubGHz ZigBit for North American BandATZB-X-0-256-4-0-C for North American band EMI ShieldEMI ShieldEMI_SHIELD

RF Exposure Info

www.tuv.com Appendix 10 Prüfbericht - Nr.: Test Report No. 19660043 001 Seite 1 von 2 Page 1 of 2 RF Exposure Report RF Exposure Measurement The limit for Maximum Permissible Exposure (MPE) specified in FCC 1.1310 is followed. The gain of the antennas used in the product is extracted from the Antenna data sheets provided and also the maximum total power input to the antenna is measured. Through the Friis transmission formula and the maximum gain of the antenna, we can calculate the distance, away from the product, where the limit of MPE is reached. Although the Friis Transmission formula is far field assumption, the calculated result of that is an over- prediction for near field power density. It is taken as worst case to specify the safety range. RF Exposure Limit According to FCC 1.1310: The criteria listed in the following table shall be used to evaluate the environmental impact of the human exposure to radio-frequency (RF) radiation as specified in 1.1307 (b) Limits for Maximum Permissible Exposure (MPE) Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (A/m) Power Density (mW/cm²) Limits for Occupational / controlled Exposures 300 - 1500 -- -- F/300 1500 – 100000 -- -- 5.0 Limits for General population / Uncontrolled Exposure 300 - 1500 -- -- F/1500 1500 – 100000 -- -- 1.0 F= Frequency in MHz www.tuv.com Appendix 10 Prüfbericht - Nr.: Test Report No. 19660043 001 Seite 2 von 2 Page 2 of 2 Friss Formula Friss Transmission Formula: Pd = (Pout * G) / (4*pi*r²) Where Pd = power density in mW/cm² Pout = output power to antenna in mW G = gain of antenna in linear scale Pi = 3.1416 R = Distance between observation point and the center of radiator in cm If we know the maximum gain of the antenna and the total output power to the antenna, through calculation, we will know MPE value at distance 20cm. EUT Operation condition EUT was enabled to transmit and receive at lowest, middle and highest channels. Classification The antenna of this product, under normal use condition, is at least 20cm away from the body of the user. Warning statement to the user for keeping at least 20cm or more separation distance from the antenna should be included in the User manual. So, this device is classified as Mobile device. Test Results Highest measured power at 906MHz i.e. 10.54dBm Gain (G) = 0dBi=1(Linear) Channel Frequency (MHz) Output Power to Antenna (mW) Power Density (mW/cm²) Limit (mW/cm²) 906 11.324 0.002253 1.000

Schematics

1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 DD CC BB AA * Xmega_212B_Toplevel.SchDoc 1411/4/20131:36:34 PM ATZB-X0-256-4-0-CN ATMEL Chennai Chennai INDIA PAGE:of TITLE: Document number:Revision:5 Date: OJS MSK * a B SPI INTERFACE GPIO/ADC GPIO/ADC/ANALOGCOMP GPIO/ADC/DAC INT/PWM/GPIO JTAG TWI UART/USART PDI/GPIO CONNECTOR Xmega_212B_Connector.SchDoc TRX_I/F SPI INTERFACE GPIO/ADC GPIO/ADC/ANALOGCOMP GPIO/ADC/DAC INT/PWM/GPIO JTAG TWI UART/USART PDI/GPIO XMEGA233 Xmega_212B_MCU.SchDoc TRX_I/F RF Xmega_212B_RF.SchDoc Product number/revision Serial number Label ZigBit Shield LABEL1 ZigBit Xmega Sub-GHz board PCB PCB200 COLABEL1 COPCB200 1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 DD CC BB AA A08-1567 Xmega_212B_RF.SchDoc 2211/4/20131:36:35 PM ATZB-X0-256-4-0-CN ATMEL India RMZ Millenia MGR Road Chennai PAGE:of TITLE: Document number:Revision:5 Date: OJS MSK MSK GND GND RESET_N SLP_TR CLKM DIG3 DIG4 IRQ nSEL MOSI SCLK MISO DIG2 DIG1 GND GND i PCB Rule i PCB Rule AN_VCC_3V3 VCC_3V3 DIG4 2 AVSS 3 RFP 4 RFN 5 AVSS 6 DVSS 7 /RST 8 D I G 1 9 D I G 2 1 0 S L P _ T R 1 1 D V S S 1 2 D V D D 1 3 D V D D 1 4 D E V D D 1 5 D V S S 1 6 CLKM 17 DVSS 18 SCLK 19 MISO 20 DVSS 21 MOSI 22 /SEL 23 IRQ 24 X T A L 2 2 5 X T A L 1 2 6 A V S S 2 7 E V D D 2 8 A V D D 2 9 A V S S 3 0 A V S S 3 1 A V S S 3 2 DIG3 1 P A D 3 3 AT86RF212B-ZU U1 GND 50Ohm 1 G N D 2 Bal 3 Bal 4 G N D 5 G N D 6 0896FB15A0100B1 GND 0R R2 0R R3 1uFC6 1uFC7 1uF C1 1uF C2 2.2 pFC3 10 pF C8 10 pF C11 680R R1 RF_N RF_P FEED POINT 1 NC 2 0915AT43A0026A1 RF_IN 1 RF_OUT 2 G N D 3 G N D 4 MS147J1 3 . 3 n H L 2 GND_RF GND_RFGND_RF GND_RF GND_RF GND_RF GND_RFGND_RFGND_RF 1 3 2 4 16.0MHz Q1 68pFC5 GND_RFGND_RF IRQ nSEL MOSI SCLK MISO SLP_TR RESET_N DIG2 TRX_I/F TRX_nSEL TRX_SCK TRX_MOSI TRX_MISO TRX_nRST TRX_IRQ TRX_DIG2 SLP_TR CLKM TRX_I/F CLKM 1.8nHL3 5 . 6 p F C 1 2 tune the values for Antenna matching Place de-coupling closer to TRX Place de-coupling closer to TRX Place xtal circuit closer to TRX . Isolate from digital signals. BoM Varients for Antenna: Japanese/North American Band 0915AT43A0026 European Band 0868AT43A0020 Chinese Band 0783AT43A0008 BoM Varients: Japanese/North American Band DNI-R2, DNI-R3 European Band Mount-R2, DNI-R3 Chinese Band Mount-R2, Mount-R3 Layout: Maintain two ground planes and two power planes BoM varients for Balun: Jap/NA Band 0896FB15A0100 European Band 0896FB15A0100 Chinese Band 0783FB15A0100 1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 DD CC BB AA A08-1567 Xmega_212B_Connector.SchDoc 2411/4/20131:36:35 PM ATZB-X0-256-4-0-CN ATMEL Norway Vestre Rosten 79 N-7075 TILLER NORWAY PAGE:of TITLE: Document number:Revision:5 Date: OJS MSK * PA3_ADC3_INT PB6_TCK_INT PB7_TDO_INT PB5_TDI_INT PB4_TMS_INT PB3 PB2 PA6 PA0_ADC0_INT PA1_ADC1_INT PA2_ADC2_INT PF1_OC0B_INT_XCK0 PA5 PA4 PA7 VCC_3V3 GNDGND PD4_SS PD5_MOSI_XCK1 USBD_P USBD_N GND VCC_3V3 GND GND GND PF2_OC0C_INT_RXD0 PF3_OC0D_INT_TXD0 PD4 PD5 PD6 PD7 SPI INTERFACE PA0 PA1 PA2 PA3 PA6 PA7 AREF GPIO/ADC PB2 PB3 GPIO/ADC/DAC PF1 PF2 PF3 INT/PWM/GPIO PA4 PA5 GPIO/ADC/ANALOG COMP PB5 PB4 PB6 PB7 nRST JTAG PD4_SS PD5_MOSI_XCK1 USBD_N USBD_P PA0_ADC0_INT PA1_ADC1_INT PA2_ADC2_INT PA3_ADC3_INT PA6 PA7 PB2 PB3 PA4 PA5 PB4_TMS_INT PB5_TDI_INT PB6_TCK_INT PB7_TDO_INT PF1_OC0B_INT_XCK0 PF2_OC0C_INT_RXD0 PF3_OC0D_INT_TXD0 GPIO/ADC/ANALOGCOMP GPIO/ADC/DAC GPIO/ADC SPI INTERFACE JTAG INT/PWM/GPIO nRST nRST PB0_AREF_INT PB0_AREF_INT PE4_SYNC_OC1A PE5_OC1B_INT PDI_DATA PF0 1234 EMI Shield Z201 GND 1 GND 2 VDD 3 VDD 4 RSET/PDI_CLOCK 5 PD4/SS 6 PD5/MOSI/XCK1 7 PD6/MISO/RXD1/D- 8 PD7/SCK/TXD1/D+ 9 PA5 10 PA4 11 GND 12 PD2/RXD0 13 PD3/TXD0 14 PD1/XCK0 15 PDI_DATA 16 PA6 17 PA7 18 PB3 19 PB2 20 PF1/OC0B/INT/XCK0 21 PF2/OC0C/INT/RXD0 22 PF3/OC0D/INT/TXD0 23 PB0/IAREF/INT 24 PA0/ADC0/INT 25 PA1/ADC1/INT 26 PA2/ADC2/INT 27 PA3/ADC3/INT 28 PB6/TCK/INT 30 PB4/TMS/INT 31 PB7/TDO/INT 32 PB5/TDI/INT 33 PE3 34 PE2/ASYNC 35 PE1/SCL 36 PE0/SDA 37 PE5/OC1B/INT 38 GND 41 GND 29 PE4/SYNC/OC1A 39 GND 42 PF0 40 ATZB-X-0-256-4-0-CN Z200 PE2 PE1 PE3 PE0 TWI PE1_SCL PE2_ASYNC PE3_GPIO TWI PE0_SDA PD2 PD1 PD3 UART/USART PD1_XCK0 PD2_RXD0 PD3_TXD0 UART/USART PE4_SYNC_OC1A PE5_OC1B_INT PF0 PDI_DATA PF0 PDI PE4 PE5 PDI/GPIO PDI/GPIO PD1_XCK0 PD2_RXD0 PD3_TXD0 PE0_SDA PE1_SCL PE2_ASYNC PE3_GPIO PIZ20001 PIZ20002 PIZ20003 PIZ20004 PIZ20005 PIZ20006 PIZ20007 PIZ20008 PIZ20009 PIZ200010 PIZ200011 PIZ200012 PIZ200013 PIZ200014 PIZ200015 PIZ200016 PIZ200017 PIZ200018 PIZ200019 PIZ200020 PIZ200021PIZ200022 PIZ200023 PIZ200024 PIZ200025 PIZ200026 PIZ200027 PIZ200028 PIZ200029 PIZ200030 PIZ200031 PIZ200032 PIZ200033 PIZ200034 PIZ200035 PIZ200036 PIZ200037 PIZ200038 PIZ200039 PIZ200040 PIZ200041 PIZ200042 COZ200 PIZ20101PIZ20102PIZ20103PIZ20104 COZ201 PIZ20001 PIZ20002 PIZ200012 PIZ200029 PIZ200041 PIZ200042 PIZ20101PIZ20102PIZ20103PIZ20104 PIZ20005 NLnRST POJTAG PIZ200025 NLPA00ADC00INT POGPIO0ADC PIZ200026 NLPA10ADC10INT POGPIO0ADC PIZ200027 NLPA20ADC20INT POGPIO0ADC PIZ200028 NLPA30ADC30INT POGPIO0ADC PIZ200011 NLPA4 POGPIO0ADC0ANALOGCOMP PIZ200010 NLPA5 POGPIO0ADC0ANALOGCOMP PIZ200017 NLPA6 POGPIO0ADC PIZ200018 NLPA7 POGPIO0ADC PIZ200024 NLPB00AREF0INT POGPIO0ADC PIZ200020 NLPB2 POGPIO0ADC0DAC PIZ200019 NLPB3 POGPIO0ADC0DAC PIZ200031 NLPB40TMS0INT POJTAG PIZ200033 NLPB50TDI0INT POJTAG PIZ200030 NLPB60TCK0INT POJTAG PIZ200032 NLPB70TDO0INT POJTAG PIZ200015 NLPD10XCK0 POUART0USART PIZ200013 NLPD20RXD0 POUART0USART PIZ200014 NLPD30TXD0 POUART0USART PIZ20006 NLPD40SS POSPI INTERFACE PIZ20007 NLPD50MOSI0XCK1 POSPI INTERFACE PIZ200016 NLPDI0DATA POPDI0GPIO PIZ200037 NLPE00SDA POTWI PIZ200036 NLPE10SCL POTWI PIZ200035 NLPE20ASYNC POTWI PIZ200034 NLPE30GPIO POTWI PIZ200039 NLPE40SYNC0OC1A POPDI0GPIO PIZ200038 NLPE50OC1B0INT POPDI0GPIO PIZ200040 NLPF0 POPDI0GPIO PIZ200021 NLPF10OC0B0INT0XCK0 POINT0PWM0GPIO PIZ200022 NLPF20OC0C0INT0RXD0 POINT0PWM0GPIO PIZ200023 NLPF30OC0D0INT0TXD0 POINT0PWM0GPIO PIZ20008 NLUSBD0N POSPI INTERFACE PIZ20009 NLUSBD0P POSPI INTERFACE PIZ20003 PIZ20004 POGPIO0ADCPOGPIO0ADC0AREFPOGPIO0ADC0PA0POGPIO0ADC0PA1POGPIO0ADC0PA2POGPIO0ADC0PA3POGPI…

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Test Report

Produkte Products TÜV Rheinland LGA Products GmbH  Tillystraße 2  D - 90431 Nürnberg  Tel.: +49 911 655 5225  Fax: +49 911 655 5226 Mail: [email protected]  Web: www.tuv.com Rev.:1.2 2009-12-29 / approved: M.Jungnitsch Prüfbericht - Nr.: 19660043 001 Seite 1 von 27 Test Report No.: Page 1 of 27 Auftraggeber: Client: ATMEL NORWAY AS VESTRE ROSTEN 79 7075 TILLER TRONDHEIM NORWAY - 7075 Gegenstand der Prüfung: Test item: ZigBit ATxmega256A3U+RF212B Bezeichnung: Identification: ATZB-X0-256-4-0-CN Serien-Nr.: Serial No. Engineering Sample Wareneingangs-Nr.: Receipt No.: 1803001642 Eingangsdatum: Date of receipt: 07.11.2013 Prüfort: Testing location: Refer Page 4 of 27 for test facilities Prüfgrundlage: Test specification: FCC Part 15, Subpart C Prüfergebnis: Test Result: Der Prüfgegenstand entspricht oben genannter Prüfgrundlage(n). The test items passed the test specification(s). Prüflaboratorium: Testing Laboratory: TÜV Rheinland (India) Pvt. Ltd. 82/A, 3rd Main, West Wing, Electronic City Phase 1 Hosur Road, Bangalore – 560 100. India geprüft / tested by: kontrolliert / reviewed by: 07.11.2013 Saibaba Siddapur Test Engineer 08.11.2013 Raghavendra Kulkarni Sr.Manager Datum Date Name/Stellung Name/Position Unterschrift Signature Datum Date Name/Stellung Name/Position Unterschrift Signature Sonstiges /Other Aspects: FCC ID : VW4A091745 Abkürzungen: P(ass) = entspricht Prüfgrundlage F(ail) = entspricht nicht Prüfgrundlage N/A = nicht anwendbar N/T = nicht getestet Abbreviations: P(ass) = passed F(ail) = failed N/A = not applicable N/T = not tested Dieser Prüfbericht bezieht sich nur auf das o.g. Prüfmuster und darf ohne Genehmigung der Prüfstelle nicht auszugsweise vervielfältigt werden. Dieser Bericht berechtigt nicht zur Verwendung eines Prüfzeichens. This test report relates to the a. m. test sample. Without permission of the test center this test …

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Contact Information

Applicant

Steve Caldwell(Vice President, Wireless Solutions Group)
[email protected]+1 480 792 7464Fax: +1 480 792 4112

Test Firm

TUV Rheinland (India) Pvt. Ltd.,B GURUPRASAD
[email protected]91-80-3989-9888Fax: 91-80-3055-4342

Technical Specifications

#Rule PartsFrequency RangePower Output
115C906 MHz - 924 MHz11.32 mW
Modular Type
Single Modular Approval
Grant Notes
Output power listed is conducted. This grant is valid only when the module is sold to OEM integrators and must be installed by the OEM or OEM integrators. This transmitter is restricted for use with the specific antenna(s) tested in this application for Certification and must not be co-located or operating in conjunction with any other antenna or transmitters within a host device, except in accordance with FCC multi-transmitter product procedures.

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