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VNR-S31SM-V4-002.4GHz IEEE802.15.4 compliant single chip radio transceiver

Atmel Germany GmbH
2.4GHz IEEE802.15.4 compliant single chip radio transceiver - FCC ID VNR-S31SM-V4-00 - Atmel Germany GmbH
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Oct 14, 2010
Application Purpose
Original Equipment
Date of Application
Oct 14, 2010
Equipment Note
2.4GHz IEEE802.15.4 compliant single chip radio transceiver
Frequency Range
2405.00000000 - 2480.00000000
Company
Atmel Germany GmbH
Country
Germany

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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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

AVR2044: RCB128RFA1 - Hardware User Manual Features • Stand alone operable Radio Controller Board (RCB) • The design is based on the single chip ATmega128RFA1 to support IEEE 802.15.4™, ZigBee™, 6LoWPAN, RF4CE, SP100, WirelessHART™ and ISM Applications • FCC-ID: VNR-S31SM-V4-00 • Japan TELEC: 005WWCA0425 • SMA RF connector • Simple user interface with button and LED’s • Board Information EEPROM containing - MAC Address - Board identification, features and serial number - Crystal calibration values • 2xAAA batteries for stand alone operation • 60 pin extension connector to interface with application specific hardware 1 Introduction The RCB128RFA1 user manual describes the usage, design, and layout of the ATmega128RFA1 radio controller board. Figure 1-1. RCB128RFA1 PCB Photo Application Note Rev. 8339A-AVR-09/10 2 AVR2044 8339A-AVR-09/10 2 Disclaimer Typical values contained in this application note are based on simulations and testing of individual examples. Any information about third party materials or parts is included into this document for convenience. The vendor may have changed the information in between. Check the individual part information for latest changes. 3 Overview The RCB128RFA1 is designed to provide a reference design for the single chip microcontroller and radio transceiver ATmega128RFA1 [1]. The IC integrates a powerful 8-bit AVR RISC microcontroller, an IEEE802.15.4-compliant transceiver and additional periphery. The built-in radio transceiver supports the worldwide accessible 2.4 GHz ISM band. The system is designed to demonstrate standard based applications like ZigBee/IEEE 802.15.4, ZigBee RF4CE, and 6LoWPAN as well as high data rate ISM applications. The SMA antenna connector allows either operation with the antenna provided together with the RCB or to perform conducted RF performance measurements. The RF section has been shielded to eliminate interference from external sources to the ATmega128RFA1. To investigate the reference design area, the shield can be opened by removing the snap-in cover while the RCB is not in operation. Most peripheral features of the ATmega128RFA1 where made available through two expansion connectors (EXT0/1). There is a variety of base boards available for the RCB family. Figure 3-1. RCB128RFA1 with Removed Snap-In Cover 4 Mechanical Description RCB’s, demonstrating radio transceiver and microcontroller capabilities, are equipped with two 50 mil, 30 pin connectors (ETX0/1), separated 22 mm from each other to interface to various port extension boards (base boards). The RCB128RFA1 has no on-board antenna, so that a board separation into an electronic and an antenna section is not required. When used with a quarter wave AVR2044 3 8339A-AVR-09/10 antenna, mounted at the SMA connector, the board will act as a ground plane for this antenna. This design with RF shield is implementing one M2.5 mounting hole (see Figure 4-1). In consequence, one mounting bolt has to be removed on several base boards types to mount the RCB128RFA1 in a correct position. The other mounting hole is reserved for a battery holder. If battery operation is required, base boards should not make use of this mount. 4.1.1 Mechanical Dimensions Figure 4-1 shows the EXT0/1 interface connector position referred to pin1, since most of the CAD tools using this pin as a placement reference. Please pay attention to the connector key location at pin 30 and the mirrored placement of a male counterpart connector when designing a new base board. The connector pin 1 is marked using a rectangular pad. See Figure 4-2 and Figure 8-5 also. The PCB is standard 1.5 mm FR4 material with 2 copper layers. Due to panelization and cutting process, the dimension of the outer board edge may vary up to +0,1mm. Figure 4-1. RCB128RFA1 – Mechanical Drawing (Dimensions in mm) 4 AVR2044 8339A-AVR-09/10 4.1.2 Interface Connector Specification Figure 4-2. RCB128RFA1 – Interface Connector Drawing The base board interface connector EXT0/1, mounted on the RCB, is a 30 pin, 50 mil type from SAMTEC. The detailed part number is: SFM-115-L2-S-D-LC. L2 is the low insertion force (LIF) variant to allow easy mounting. The drawing shown in Figure 4-2 is a copy taken from a SAMTEC datasheet. Check the latest datasheet for possible updates and changes. AVR2044 5 8339A-AVR-09/10 4.1.3 Application (Base) Board Connectors Figure 4-3. Application Board Connector Drawing The drawing in Figure 4-3 shows the connector to be used on a base board to interface the RCB EXT0/1 connectors. The detailed SAMTEC part number is: TFM-115-02-S-D. Alternatively a Tyco part can be used: Tyco 5-104655-4 Note: The Tyco part requires a different footprint design! The drawing shown in Figure 4-3 is a copy taken from a SAMTEC datasheet. Check the latest datasheet for possible updates and changes. 5 Functional Description Figure 5-1 illustrates the RCB setup in general. It mainly consists of an ATmega128RFA1 and some periphery. An ID-EEPROM stores MAC address and additional board information. This information is stored in a separate EEPROM to avoid accidental data erase during microcontroller firmware development. 6 AVR2044 8339A-AVR-09/10 Figure 5-1. Radio Controller Board - Block Diagram The radio transceiver incorporates MAC hardware accelerators to handle all actions concerning RF modulation/demodulation, signal processing, frame reception and transmission. Further information about the radio transceiver and the microcontroller are provided in the datasheet, see reference [1]. The RF front-end implementation was kept minimal by using a balun with integrated filter. An antenna, provided with the RCB, has to be connected to the SMA connector. All components are placed on one PCB side to demonstrate a low cost manufacturing solution. 5.1 Power Supply The RCB is powered by a single supply voltage in the range of 1.8 V – 3.6 V, which makes it possible to use 1.5 V alkaline cells. Optionally, the power can be supplied from a base board. In this c…

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

Block Diagram

dresden elektronik Tel.: 0351 – 31 85 00 Seite 1 von 1 ingenieurtechnik gmbh Fax: 0351 – 3 18 50 10 Enno-Heidebroek-Str. 12 [email protected] 01237 Dresden www.dresden-elektronik.de agent: dresden elektronik ingenieurtechnik gmbh client: Atmel Automotive GmbH FCC ID: VNR-S31SM-V4-00 FCC Part 15 Certification Exhibit: Oscillator block diagram MCU Transceiver SoC ATmega128RFA1 Q1 32,768 kHz Q2 16,0 MHz Exhibit: Oscillator block diagram Onboard Q1: Timer/Counter Oscillator Q2: Transceiver Crystal Oscillator

External Photos

dresden elektronik Tel.: 0351 – 31 85 00 Seite 1 von 1 ingenieurtechnik gmbh Fax: 0351 – 3 18 50 10 Enno-Heidebroek-Str. 12 [email protected] 01237 Dresden www.dresden-elektronik.de agent: dresden elektronik ingenieurtechnik gmbh client: Atmel Automotive GmbH FCC ID: VNR-S31SM-V4-00 FCC Part 15 Certification Exhibit: External Photo

ID Label/Location Info

dresden elektronik Tel.: 0351 – 31 85 00 Seite 1 von 1 ingenieurtechnik gmbh Fax: 0351 – 3 18 50 10 Enno-Heidebroek-Str. 12 [email protected] 01237 Dresden www.dresden-elektronik.de agent: dresden elektronik ingenieurtechnik gmbh client: Atmel Automotive GmbH FCC ID: VNR-S31SM-V4-00 FCC Part 15 Certification Exhibit: Label Sample Information: • Article number • MAC adress • FCC-ID • Serial Number (bar code) • CE sign

Internal Photos

dresden elektronik Tel.: 0351 – 31 85 00 Seite 1 von 2 ingenieurtechnik gmbh Fax: 0351 – 3 18 50 10 Enno-Heidebroek-Str. 12 [email protected] 01237 Dresden www.dresden-elektronik.de agent: dresden elektronik ingenieurtechnik gmbh client: Atmel Automotive GmbH FCC ID: VNR-S31SM-V4-00 FCC Part 15 Certification Exhibit: Internal Photo Top View: 2010-08-30 Seite 2 von 2 Bottom View: (with approved antenna)

Operational Description

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ø∞∞ƱøΩ∏ æø≠ªº ±≤ ≠ª™ªÆø¥ ≠ ̈øΩμ ≥±º ́¥ª≠ ø≤º ø∞∞¥∑Ωø ̈∑±≤≠Ú ⁄∑π ́ƪ ÓÛÔ ≠∏±©≠ ̈∏ª ≠ ̈øΩμé≠ øÆΩ∏∑ ̈ªΩ ̈ ́ÆªÚ Ã∏ª ≠ ̈øΩμ ≥±º ́¥ª≠ øÆª ∫Ʊ≥ ̈∏ª æ± ̈ ̈±≥ ́∞Ê i –¥ø ̈∫±Æ≥ flæ≠ ̈ÆøΩ ̈∑±≤ ‘øßªÆ ̄–fl‘ ̃ ̄≠ªª ≠ªΩ ̈∑±≤ ÓÚÔÚÔ ̃ i ÃÆø≤≠Ωª∑™ªÆ flæ≠ ̈ÆøΩ ̈∑±≤ ‘øßªÆ ̄Ãfl‘ ̃ ̄≠ªª ≠ªΩ ̈∑±≤ ÓÚÔÚÓ ̃ ø≤º ÃÆø≤≠Ωª∑™ªÆ ⁄ªø ̈ ́ƪ flΩΩª≠≠ ̄Ã⁄fl ̃ ̄≠ªª ≠ªΩ ̈∑±≤ ÓÚÓÚÏ ̃ i ”fl› ∑≤Ω¥ ́º∑≤π ”fl› ›±Æª ‘øßªÆ ø≤º ”fl›Ûfl–◊ ̄≠ªª ≠ªΩ ̈∑±≤ ÓÚÔÚÌ ̃ i ÕªΩ ́Æ∑ ̈ß flæ≠ ̈ÆøΩ ̈∑±≤ ‘øßªÆ ̄Õfl‘ ̃ ø≤º ÕªΩ ́Æ∑ ̈ß Ã±±¥æ±® ̄ÕÃfi ̃ ̄≠ªª ≠ªΩ ̈∑±≤ ÓÚÓÚÓ ø≤º ÓÚÓÚÌ ̃ i Œª≠± ́ÆΩª ”ø≤øπª≥ª≤ ̈ ∑≤Ω¥ ́º∑≤π fi ́∫∫ªÆ ø≤º œ ́ª ́ª ”ø≤øπª≥ª≤ ̈ ̄fi”” ø≤º œ”” ̃ ̄≠ªª ≠ªΩ ̈∑±≤ ÓÚÓÚÔ ̃ i fl¥ ̈ªÆ≤ø ̈∑™¥ß ̈∏ª Ã∑≤ßÛÃfl‘ ©∑ ̈∏ ¥ª≠≠ ∫±± ̈∞Æ∑≤ ̈ Ωø≤ æª ́≠ªº ∫±Æ ≠∑≥∞¥ª ø∞∞¥∑Ωø ̈∑±≤≠ ÆªØ ́∑Æ∑≤𠥪≠≠ ∫ ́≤Ω ̈∑±≤ø¥∑ ̈ß ̄≠ªª ≠ªΩ ̈∑±≤ ÓÚÓÚÎ ̃ ⁄∑π ́ƪ ÓÛÔÚ ”fl› flÆΩ∏∑ ̈ªΩ ̈ ́ƪ Ã–Õ ÿøÆº©øÆª –¥ø ̈∫±Æ≥ ̄∑ÚªÚ ”∑ΩƱΩ±≤ ̈Ʊ¥¥ªÆÙ fi±øÆºÙ ›±≤∫∑π ́Æø ̈∑±≤ ̃ –fl‘ ̄ÃŒ» flΩΩª≠≠Ù Ã∑≥ªÆ≠Ù Ÿ–◊—Ù ◊ŒœÙ Õ ̈ƪø≥ ◊Ò— ̃ flæ≠ ̈ÆøΩ ̈∑±≤ ±∫ ± ̈∏ªÆ –ªÆ∑∞∏ªÆø¥≠ Ã⁄flÃfl‘ ”fl› ̄”›‘ ∑≤Ω¥Ú ”fl› fl–◊ ̃ Õfl‘ ÕÃfi Œª≠± ́ÆΩª ”ø≤øπª≥ª≤ ̈ ̄fi””Ù œ”” ̃ fl∞∞¥∑Ωø ̈∑±≤ Ã◊“«¡Ãfl‘ ⁄±Æ ø Ω±≥∞¥ª ̈ª ºª≠ΩÆ∑∞ ̈∑±≤ ±∫ ̈∏ª fl–◊ ±∫ ªøΩ∏ ¥øßªÆ ø≤º Ω±≥∞±≤ª≤ ̈ ∞¥ªø≠ª ƪ∫ªÆ ̈± ̈∏ª çfl ŒÓÓÎ ◊¤¤¤ ËÓÚÔÎÚÏ ”fl› Œª∫ªÆª≤Ωª ”ø≤ ́ø¥å ̄”fl›¡Æªøº≥ªÚ∏ ̈≥¥ ̃ ¥±Ωø ̈ªº ∑≤ ̈∏ª fl ŒÓÓÎ ̈±∞ º∑ƪΩ ̈±ÆßÚ ÓÚÔ ”ø∑≤ Õ ̈øΩμ ‘øßªÆ≠ Ã∏ª ≥ø∑≤ ”fl› ≠ ̈øΩμ ≠±∫ ̈©øÆª Ω±≤≠∑≠ ̈≠ ±∫ ̈∏ƪª ¥øßªÆ≠ ≠ ̈øÆ ̈∑≤π ∫Ʊ≥ ̈∏ª æ± ̈ ̈±≥ ́∞Ê i –¥ø ̈∫±Æ≥ flæ≠ ̈ÆøΩ ̈∑±≤ ‘øßªÆ Û –fl‘ i ÃÆø≤≠Ωª∑™ªÆ flæ≠ ̈ÆøΩ ̈∑±≤ ‘øßªÆ Û Ãfl‘ i ”fl› ›±Æª ¥øßªÆ ä ”›‘ Ì ÓÓÎÿÛ”›À ...∑ƪ¥ª≠≠ÛËÒÔ fl ŒÓÓÎ ⁄±Æ ± ̈∏ªÆ ≠ ̈øΩμ ¥øßªÆ≠ ∞¥ªø≠ª ƪ∫ªÆ ̈± ≠ªΩ ̈∑±≤ ÓÚÓÚ ÓÚÔÚÔ –¥ø ̈∫±Æ≥ flæ≠ ̈ÆøΩ ̈∑±≤ ‘øßªÆ ̄–fl‘ ̃ Ã∏ª –¥ø ̈∫±Æ≥ flæ≠ ̈ÆøΩ ̈∑±≤ ‘øßªÆ ̄–fl‘ ̃ Ω±≤ ̈ø∑≤≠ ø¥¥ ∞¥ø ̈∫±Æ≥ ̄∑ÚªÚ ”›À ø≤º æ±øÆº ̃ ≠∞ªΩ∑∫∑Ω ∫ ́≤Ω ̈∑±≤ø¥∑ ̈ß ̄ÆªØ ́∑ƪº æß ̈∏ª ”fl› ≠±∫ ̈©øÆª ∞øΩμøπª≠ ̃ ø≤º ∞Ʊ™∑ºª≠ ∑≤ ̈ªÆ∫øΩª≠ ̈± ̈∏ª ́∞∞ªÆ ≥±º ́¥ª≠Ú Ã∏ªÆª∫±ÆªÙ ø¥¥ ́∞∞ªÆ ≥±º ́¥ª≠ øÆª ∑≤ºª∞ª≤ºª≤ ̈ ∫Ʊ≥ ̈∏ª ́≤ºªÆ¥ß∑≤π ∞¥ø ̈∫±Æ≥Ú Õ∑≤Ωª ≠±≥ª Ω±≥∞±≤ª≤ ̈≠ ±∫ ̈∏ª –fl‘ ≥øßæª ºª∞ª≤ºª≤ ̈ ±≤ ̈∏ª øΩ ̈ ́ø¥ ∞¥ø ̈∫±Æ≥Òæ±øÆºÙ ꦒ ̈ø∑≤ ∫ ́≤Ω ̈∑±≤ø¥∑ ̈ß ©∑ ̈∏∑≤ ̈∏ª –fl‘ ∏ø≠ ̈± æª ∑≥∞¥ª≥ª≤ ̈ªº ∫±Æ ªøΩ∏ ≠ª ̈ ́∞Ù ¥∑μª ‘¤‹≠ ø≤º æ ́ ̈ ̈±≤≠Ú ⁄±Æ ªøΩ∏ ≥∑ΩƱΩ±≤ ̈Ʊ¥¥ªÆ ø ≠ª∞øÆø ̈ª ∑≥∞¥ª≥ª≤ ̈ø ̈∑±≤ ª®∑≠ ̈≠ ©∑ ̈∏∑≤ ̈∏ª –fl‘ ¥øßªÆ≠Ú Ã∏ª æ±øÆº ø≤º ø∞∞¥∑Ωø ̈∑±≤ ≤ªªº≠ øÆª øºø∞ ̈ªº ™∑ø ø æ±øÆº Ω±≤∫∑π ́Æø ̈∑±≤ ∫∑¥ª ̄∞ø¥¡Ω±≤∫∑πÚ∏ ̃Ú Ã∏∑≠ æ±øÆº Ω±≤∫∑π ́Æø ̈∑±≤ ∫∑¥ª ª®∑≠ ̈≠ ª®øΩ ̈¥ß ±≤Ωª ∫±Æ ªøΩ∏ ≠ ́∞∞±Æ ̈ªº ∏øÆº©øÆª ∞¥ø ̈∫±Æ≥Ú Ã∏ª –fl‘ ∞Ʊ™∑ºª≠ ∑≤ ̈ªÆ∫øΩª≠ ̈± ̈∏ª ∫±¥¥±©∑≤π Ω±≥∞±≤ª≤ ̈≠Ê i ÃÆø≤≠Ωª∑™ªÆ øΩΩª≠≠ ∫ ́≤Ω ̈∑±≤ø¥∑ ̈ßÙ ∑ÚªÚ ™∑ø Õ–◊ ±Æ º∑ƪΩ ̈ ≥ª≥±Æß øΩΩª≠≠ i Ÿ–◊— Ω±≤ ̈Ʊ¥ ̄øΩΩª≠≠ ∫Ʊ≥ ≥∑ΩƱΩ±≤ ̈Ʊ¥¥ªÆ ̈± ̈∏ª Ÿ–◊— ∞∑≤≠ Ω±≤≤ªΩ ̈ªº ̈± ̈∏ª ̈Æø≤≠Ωª∑™ªÆ ̃ i ‘±©Û¥ª™ª¥ ∑≤ ̈ªÆÆ ́∞ ̈ ∏ø≤º¥∑≤π i Ã∑≥ªÆ≠ ̄∏∑π∏Û∞Æ∑±Æ∑ ̈ß ø≤º ≠±∫ ̈©øÆª ̈∑≥ªÆ≠ ̃ i ÕªÆ∑ø¥ ≠ ̈ƪø≥ ◊Ò— ≠ ́∞∞±Æ ̈ ̄™∑ø ÀÕfi ±Æ ÀflŒÃ ̃ i flΩΩª≠≠ ̈± ∞ªÆ≠∑≠ ̈ª≤ ̈ ≠ ̈±Æøπª ̄ªÚπÚ ¤¤–Œ—” ̃ i ‘¤‹ Ω±≤ ̈Ʊ¥ ±Æ æ ́ ̈ ̈±≤ øΩΩª≠≠ ≠ ́∞∞±Æ ̈ Ã∏ª≠ª Ω±≥∞±≤ª≤ ̈≠ øÆª ∑≥∞¥ª≥ª≤ ̈ªº ø≠ ≠±∫ ̈©øÆª 楱Ωμ≠ ø≤º øÆª ∞±Æ ̈ªº æø≠ªº ±≤ ̈∏ª ̈øÆπª ̈ ≥∑ΩƱΩ±≤ ̈Ʊ¥¥ªÆÚ Ã∏ª ̈Æø≤≠Ωª∑™ªÆ øΩΩª≠≠ ≥±º ́¥ª ∞Ʊ™∑ºª≠ ∑≤ ̈ªÆ∫øΩª ̈± ̈∏ª ƪπ∑≠ ̈ªÆ≠ ø≤º ∫Æø≥ª æ ́∫∫ªÆ ±∫ ̈∏ª ̈Æø≤≠Ωª∑™ªÆÚ Ã∏ª ̈∑≥ªÆ ≥±º ́¥ª ∑≥∞¥ª≥ª≤ ̈≠ ≠±∫ ̈©øÆª ̈∑≥ªÆ ∫ ́≤Ω ̈∑±≤ø¥∑ ̈ß ́≠ªº æß ̈∏ª ”fl›Ù Ãfl‘Ù ø≤º ø∞∞¥∑Ωø ̈∑±≤ ¥øßªÆÚ Ã∏ª ≠ªÆ∑ø¥ ≠ ̈ƪø≥ ◊Ò— ≥±º ́¥ª ∞Ʊ™∑ºª≠ Ω±≥≥ ́≤∑Ωø ̈∑±≤ ≠ªÆ™∑Ωª≠ ∫±Æ ̈Æø≤≠≥∑≠≠∑±≤ ø≤º ƪΩª∞ ̈∑±≤ ±∫ ≠ªÆ∑ø¥ ºø ̈øÙ ªÚπÚ ÀflŒÃÒÀÕfi Ω±≥≥ ́≤∑Ωø ̈∑±≤Ú Ã∏ª Ÿ–◊— ≥±º ́¥ª Ω±≤ ̈Ʊ¥≠ ̈∏ª πª≤ªÆø¥ ∞ ́Æ∞±≠ª ◊Ò— ∞∑≤≠ ±∫ ̈∏ª ≥∑ΩƱΩ±≤ ̈Ʊ¥¥ªÆÚ Ã∏ª ∑≤ ̈ªÆÆ ́∞ ̈ ≥±º ́¥ª ∏ø≤º¥ª≠ ̈∏ª ̈Æø≤≠Ωª∑™ªÆ ∑≤ ̈ªÆÆ ́∞ ̈ ̄≠ ̃Ú ÿøÆº©øÆª ̈∑≥ªÆ ∑≤ ̈ªÆÆ ́∞ ̈≠ ø≤º ± ̈∏ªÆ ∑≤ ̈ªÆÆ ́∞ ̈≠ øÆª ∏ø≤º¥ªº ∑≤ ̈ªÆ≤ø¥¥ß æß ̈∏ª –fl‘Ú Ã∏ª ∫ ́≤Ω ̈∑±≤ ∞Ʊ ̈± ̈ß∞ª≠ ∫±Æ ø¥¥ –fl‘ fl–◊ ∫ ́≤Ω ̈∑±≤≠ øÆª ∑≤Ω¥ ́ºªº ∑≤ ∫∑¥ª –fl‘Ò◊≤ΩÒ∞ø¥Ú∏Ú ÓÚÔÚÓ ÃÆø≤≠Ωª∑™ªÆ flæ≠ ̈ÆøΩ ̈∑±≤ ‘øßªÆ ̄Ãfl‘ ̃ Ã∏ª ÃÆø≤≠Ωª∑™ªÆ flæ≠ ̈ÆøΩ ̈∑±≤ ‘øßªÆ ̄Ãfl‘ ̃ Ω±≤ ̈ø∑≤≠ ̈∏ª ̈Æø≤≠Ωª∑™ªÆ ≠∞ªΩ∑∫∑Ω ∫ ́≤Ω ̈∑±≤ø¥∑ ̈ß ́≠ªº ∫±Æ ̈∏ª ËÓÚÔÎÚÏ ”fl› ≠ ́∞∞±Æ ̈ ø≤º ∞Ʊ™∑ºª≠ ∑≤ ̈ªÆ∫øΩª≠ ̈± ̈∏ª ”fl› ›±Æª ‘øßªÆ ©∏∑Ω∏ ∑≠ ∑≤ºª∞ª≤ºª≤ ̈ ∫Ʊ≥ ̈∏ª ́≤ºªÆ¥ß∑≤π ̈Æø≤≠Ωª∑™ªÆÚ fiª≠∑ºª≠ ̈∏ø ̈Ù ̈∏ª …

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Schematics

1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 DD CC BB AA 1Germany3 RCB128RFA1 6.3.1 03.03.200916:50:46 T:\Design_projects\bua\zlink_platform\Ph7_MegaRF_RCB\RCB128RFA1\V6.3.1_SMA\RCB128RFA1_V6.3.1.sch Title Size:Number: Date: File: Revision: SheetofTime: A3 C12 100n C19 100n C3 22p C5 22p R1 10k 12 34 56 78 910 1112 1314 1516 1718 1920 2122 2324 2526 2728 2930 EXT1 SFM-115-L2-S-D-LC 12 34 56 78 910 1112 1314 1516 1718 1920 2122 2324 2526 2728 2930 EXT0 SFM-115-L2-S-D-LC D2 rot D3 rot D4 rot T1 ITT KSR211GLFS R7 470 R6 470 R5 470 Batt1 AAAx2 L1 Wuerth74279266 SW1 Eao09.10201.02 (32kHz ) C2 10n Q1 CFPX-157 Plug1 AMP 2-331677-2 A 2 K 1 D1 n.i. C4 1uF 1 3 2 4 Q2 16MHz / CL=10pF C10 10p C6 10p C16 47uF/6V RFNRFP DGND DGND DGND DGND C7 1uF DGND DGND PE0 PE1 PE2 PE3 PE6 PE7 PF0 PF1 PF2 PF3 PF4 PF5 PF6 PF7 V_RCB RSTN DGND PB0 PB1 PB2 PB3 PB4 PB5 PB6 PB7 PD0 PD1 PD2 PD3 PD4 PD5 PD6 PD7 C18 100n C9 100n PG3 PG4 PG5 DGNDDGND DGND V_RCB DGND V_RCBV_RCB Plug2 AMP 2-331677-2 DGND V_RCB DGND DGND DGND DGND DGND PB1 PD0PD1 PD2PD3 PD4PD5 PD6PD7 PE0PE1 PE2PE3 PE6PE7 PF0PF1 PF2PF3 PF4PF5 PF6PF7 DGNDDGNDDGND V_RCB AREF V_RCB PB0PB1 PB2PB3 PB4PB5 PB6PB7 AREF RSTN DGND DGND MetalMount 1 M1 Mounting Hole DGND PF2:ADC2:DIG2 1 PF3:ADC3:DIG4 2 PF4:ADC4:TCK 3 PF5:ADC5:TMS 4 PF6:ADC6:TDO 5 PF7:ADC7:TDI 6 PF1:ADC1 64 PF0:ADC0 63 PB0:SSN:PCINT0 36 PB1:SCK:PCINT1 37 PB2:MOSI:PCINT2 38 PB3:MISO:PCINT3 39 PB4:OC2:PCINT4 40 PB5:OC1A:PCINT5 41 PB6:OC1B:PCINT6 42 PB7:OC0A:OC1C:PCINT7 43 PD0:SCL:INT0 25 PD1:SDA:INT1 26 PD2:RXD1:INT2 27 PD3:TXD1:INT3 28 PD4:ICP1 29 PD5:XCK1 30 PD6:T1 31 PD7:T0 32 PE0:RXD0:PDI:PCINT8 46 PE1:TXD0 :PDO 4 7 PE2:XCK0:AIN0 48 PE3:OC3A:AIN1 49 PE4:OC3B:INT4 50 PE5:OC3C:INT5 51 PE6:T3 :INT6 52 PE7:ICP3:INT7:CLKO 5 3 PG0 :DIG3 1 4 PG1 :DIG1 1 5 PG2 / AMR 16 PG3:TOSC2 17 PG4:TOSC1 18 PG5:OC0B 19 DEVDD 23 DEVDD 34 DEVDD 44 DEVDD 54 DVSS 24 DVSS 35 DVSS 45 DVSS 55 AVSS_RFP 7 RF P 8 RF N 9 A V SS_RFN 10 AVSS 58 AVSS:ASVSS 61 EVDD 59 AVDD 60 DVDD 21 DVDD 22 DVSS:DSVSS 20 XTAL2 56 XTAL1 57 AREF 62 CLKI 3 3 Pad dle 65 TST 11 RSTN 12 RSTON 13 U3ATmega128RFA1 DGND C13 100n C14 100n C15 100n DGND V_RCB unbalanced 1 D C_G N D 2 Ba lanced P1 3 Ba lanced P2 4 G N D 5 nc 6 Johanson 2450FB15L0001E Alternativ: Würth 748421245; de19256 B1 Balun+Filter_SMD DGNDDGND DGNDDGND CLKI CLKI PD4PD5 PD6PD7 ALE ALE #WR#RD #CS 1 SO 2 #WP 3 GND 4 SI 5 SCK 6 #HOLD 7 VCC 8 AT25010A U2 AT25010A R3 10kC11 100n #WR #RD PE4 PE5 TST TST PB1 PB2 PB3 Configure PB0:SSN as OUT when accessing the board information EEPROM DGND DGND PG5 R4 0 R2 n.i. V_RCBV_RCBV_RCB PG0 PG1 PG0PG1 RSTON RSTON 1 SH1 Shield_BMIS DGND C8 100n 1 2.12.2 2.32.4 X1 SMA Vertical DGNDDGND DGNDDGND C1 22p R8 10k R9 10k DGNDDGND CL KI TST R10 470 D5 rot RSTON DGND RF1 REF1 TOP RF2 REF2 TOP B ackward C o mp atib ility R C B 2 x x| P in| R C B 1 2 8 R F A1 ------------------------------------------------------------ P A0EXT1 . 2 3P B 0 P A1EXT1 . 2 4P B 1 P A2EXT1 . 2 5P B 2 P A3EXT1 . 2 6P B 3 P A4EXT1 . 2 7P B 4 P A5EXT1 . 2 8P B 5 P A6EXT1 . 2 9P B 6 P A7EXT1 . 3 0P B 7 P E4EXT1 . 6R S TON P E5EXT1 . 5TS T B ackward C o mp atib ility R C B 2 x x| P in| R C B 1 2 8 R F A1 ------------------------------------------------------------ P C 4EXT0 . 2 5P D4 P C 5EXT0 . 2 6P D5 P C 6EXT0 . 2 7P D6 P C 7EXT0 . 2 8P D7 P G0EXT0 . 1 7P E4 P G1EXT0 . 1 8P E5 P B 6EXT0 . 1P G0 P B 7EXT0 . 2P G1 XTAL1EXT0 . 7C LKI PIB101PIB102 PIB103PIB104 PIB105 PIB106 COB1 PIBatt101 PIBatt102 COBatt1 PIC101PIC102 COC1 PIC201PIC202 COC2 PIC301PIC302 COC3 PIC401PIC402 COC4 PIC501PIC502 COC5 PIC601PIC602 COC6 PIC701PIC702 COC7 PIC801 PIC802 COC8 PIC901PIC902 COC9 PIC1001PIC1002 COC10 PIC1101 PIC1102 COC11 PIC1201 PIC1202 COC12 PIC1301 PIC1302 COC13 PIC1401 PIC1402 COC14 PIC1501 PIC1502 COC15 PIC1601 PIC1602 COC16 PIC1801 PIC1802 COC18 PIC1901 PIC1902 COC19 PID101 PID102 COD1 PID20APID20K COD2 PID30APID30K COD3 PID40APID40K COD4 PID50APID50K COD5 PIEXT001PIEXT002 PIEXT003PIEXT004 PIEXT005PIEXT006 PIEXT007PIEXT008 PIEXT009PIEXT0010 PIEXT0011PIEXT0012 PIEXT0013PIEXT0014 PIEXT0015PIEXT0016 PIEXT0017PIEXT0018 PIEXT0019PIEXT0020 PIEXT0021PIEXT0022 PIEXT0023PIEXT0024 PIEXT0025PIEXT0026 PIEXT0027PIEXT0028 PIEXT0029PIEXT0030 COEXT0 PIEXT101PIEXT102 PIEXT103PIEXT104 PIEXT105PIEXT106 PIEXT107PIEXT108 PIEXT109PIEXT1010 PIEXT1011PIEXT1012 PIEXT1013PIEXT1014 PIEXT1015PIEXT1016 PIEXT1017PIEXT1018 PIEXT1019PIEXT1020 PIEXT1021PIEXT1022 PIEXT1023PIEXT1024 PIEXT1025PIEXT1026 PIEXT1027PIEXT1028 PIEXT1029PIEXT1030 COEXT1 PIL101PIL102 COL1 PIM101 COM1 PIPlug101 COPlug1 PIPlug201 COPlug2 PIQ101 PIQ102 COQ1 PIQ201 PIQ202 PIQ203 PIQ204 COQ2 PIR101 PIR102 COR1 PIR201 PIR202 COR2 PIR301 PIR302 COR3 PIR401PIR402 COR4 PIR501PIR502 COR5 PIR601PIR602 COR6 PIR701PIR702 COR7 PIR801 PIR802 COR8 PIR901 PIR902 COR9 PIR1001PIR1002 COR10 CORF1CORF2 PISH101 COSH1 PISW101 PISW102 PISW103 COSW1 PIT101PIT102 COT1 PIU201 PIU202 PIU203 PIU204PIU205 PIU206 PIU207 PIU208 COU2 PIU301 PIU302 PIU303 PIU304 PIU305 PIU306 PIU307PIU308PIU309PIU3010 PIU3011 PIU3012 PIU3013 PIU3014 PIU3015 PIU3016 PIU3017 PIU3018 PIU3019 PIU3020 PIU3021 PIU3022 PIU3023 PIU3024 PIU3025 PIU3026 PIU3027 PIU3028 PIU3029 PIU3030 PIU3031 PIU3032 PIU3033 PIU3034 PIU3035 PIU3036 PIU3037 PIU3038 PIU3039 PIU3040 PIU3041 PIU3042 PIU3043 PIU3044 PIU3045 PIU3046 PIU3047 PIU3048 PIU3049 PIU3050 PIU3051 PIU3052 PIU3053 PIU3054 PIU3055 PIU3056 PIU3057 PIU3058 PIU3059 PIU3060 PIU3061 PIU3062 PIU3063 PIU3064 PIU3065 COU3 PIX101 PIX10201PIX10202 PIX10203PIX10204 COX1 PIEXT0018 PIT101 PIU3051 NL#RD PIEXT0017 PIR502 PIU3050 NL#WR PIEXT0030 PIU3016 NLALE PIEXT1012 PIU3062 NLAREF PIEXT007 PIR802 PIU3033 NLCLKI PIB105 PIB106 PIBatt102 PIC102 PIC201 PIC302 PIC402 PIC502 PIC602 PIC702 PIC802 PIC902PIC1002 PIC1102 PIC1202PIC1302PIC1402PIC1502 PIC1602 PIC1802PIC1901 PIEXT005 PIEXT008 PIEXT0019PIEXT0020 PIEXT0021PIEXT0022 PIEXT0023PIEXT0024 PIEXT0029 PIEXT102 PIEXT1011 PIEXT1022 PIM101 PIPlug201 PIQ202 PIQ204 PIR801PIR901 PISH101 PIT102 PIU204 PIU307PIU3010 PIU3020 PIU3024 PIU3035 PIU3045 PIU3055 PIU3058 PIU3061 P…

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Test Report

CE-Prüfstelle 0494 GS-Prüfstelle DAT-P-205/97-02 KBA-P 00030-01 NCB, CBTL i. IECEE Messstelle nach BImSchG §§26/28 DKD-Kalibrierstelle 07301 Zertifizierungsstelle für QMS Benannte Stelle gem. EMV-RL SLG Prüf- und Zertifizierungs GmbH Burgstädter Straße 20 D – 09232 Hartmannsdorf Test report Radio module [Funkeinheit] RCB128RFA1 v6.3.1 (2,4 GHz) Test plan of customer FCC rules Partial radio test 1228-09-EE-10-PB005 Testing is a confidential matter DAT-P-205/97-02 KBA-P 00030-01 Test report no. [Prüfbericht- Nr.]: 1228-09-EE-10-PB005 Date [Datum]: 2010-09-01 Revised by [geprüft]: Tested by [gemessen]: Svadlenka Puder Head of EMC laboratory [Leiter EMV-Labor] EMC laboratory [EMV-Labor] SLG Prüf- und Zertifizierungs GmbH Burgstädter Straße 20 D-09232 Hartmannsdorf EMC laboratory Phone: +49 (0) 37 22 / 73 23 - 760 Fax: +49 (0) 37 22 / 73 23 - 899 e-mail: [email protected] http://www.slg.de.com This report consists of [Dieser Bericht besteht aus]: 54 Pages [Seiten] Customer [Auftraggeber] Atmel Automotive GmbH, Design Center Dresden Represented by [vertreten durch] Königsbrücker Straße 61 Mr. [Herr] Beyer, Sascha 01099 Dresden, Deutschland Order [Auftrag] Dated [vom] 2009-09-09 Order no. [Auftragsnr.]: K4500251563 H54 Aim of test [Zweck der Prüfung] Verification of conformity to the requirements according to customer’s test plan [Nachweis der Einhaltung der Anforderungen nach Prüfplan des Auftraggebers] Partial tests of customer’s test plan [Teilprüfungen nach Prüfplan des Auftraggebers] Product [Erzeugnis] Radio module [Funkeinheit] Type [Typ] RCB128RFA1 v6.3.1 (2,4 GHz) Manufacturer [Hersteller] dresden elektronik ingenieurtechnik gmbh Enno-Heidebroek-Straße 12 01237 Dresden, Germany [Deutschland] Date of test [Prüfzeitraum] 2009-10-06 - 2009-10-20 2010-06-07 - 2010-06-09 Location of test [Prüfungsort] Accredited EMC laboratory of the SLG Prüf- und Zertifizierungs GmbH Hartmannsdorf [akkreditiertes EMV-Labor der SLG Prüf- und Zertifizierungs GmbH Hartmannsdorf] Test according to [Prüfung nach] Customer’s specifications / test plan 1228-09-EE, version 0.4; dated 2009-08-28 [Lastenheft / Prüfplan des Auftraggebers 1228-09-EE, Version 0.4; vom 2009-08-28] Test base [Prüfgrundlage] CFR 47 FCC Part 15 (10-1-09 Edition) Test result [Prüfergebnis] The sample tested fulfills the requirements according to customer’s test plan. [Der vorgestellte Prüfling erfüllt die Anforderungen nach Prüfplan des Auftraggebers.] The test results refer to the tested samples only. Authorisation for the copying of details of this report must be obtained from the SLG Prüf- und Zertifizierungs GmbH. [Die Prüfergebnisse beziehen sich ausschließlich auf die in diesem Bericht genannten Prüfungsgegenstände. Die auszugsweise Ver- vielfältigung dieses Berichtes für Dritte ist nur mit schriftlicher Genehmigung der SLG Prüf- und Zertifizierungs GmbH gestattet.] Test report no. [Prüfbericht-Nr.]: 1228-09-EE-10-PB005 Page [Seite] 3 Details of accreditation / recognition status [Einzelheiten zu Akkreditierungen / Anerkennungen] The SLG EMC laboratory is accredited by the German Accreditation Body Technology (DATech) e.V. [Das SLG EMV-Labor ist akkreditiert durch die Deutsche Akkreditierungsstelle Technik (DATech) e.V.] DAR registration number [DAR-Registriernummer]: DAT-P-205/97-02 The SLG EMC laboratory is accredited by the Federal Motor Transport Authority (KBA) [Das SLG EMV-Labor ist akkreditiert durch das Kraftfahrt-Bundesamt (KBA)] DAR registration number [DAR-Registriernummer]: KBA-P 00030-01 The Notified Body according to EMC directive is recognized by the Federal Network Agency for Electricity, Gas, Telecommunications, Post and Railway [Die Benannte Stelle nach EMV-Richtlinie ist anerkannt durch die Bundesnetzagentur für Elektrizität, Gas, Telekommunikation, Post und Eisenbahn (Bundesnetzagentur)] BNetzA registration number [Registriernummer]: BnetzA-bS EMV-07/61-13 The SLG EMC laboratory is recognized by the Federal Railway Authority (EBA) [Das SLG EMV-Labor ist anerkannt durch das Eisenbahn-Bundesamt (EBA)] Number of identification [Identifikationsnummer]: EBA - 28 / 08 / 05 The SLG EMC laboratory is listed by the Federal Communications Commission (FCC) [Das SLG EMV-Labor ist gelistet bei der Federal Communications Commission (FCC)] Registration number [Registrierungsnummer]: 883849 The SLG EMC laboratory is listed by the Industry Canada Certification and Engineering Bureau [Das SLG EMV-Labor ist gelistet beim Industry Canada Certification and Engineering Bureau] Company number [Firmennummer]: 6114A Test report no. [Prüfbericht-Nr.]: 1228-09-EE-10-PB005 Page [Seite] 4 Contents [Inhalt] 1 General information [Allgemeines] ................................................................................................. 5 1.1 Report chronology [Berichtschronologie] ............................................................................... 5 1.2 Declaration concerning the translation German / English [Erklärung zur Übersetzung Deutsch / Englisch] .................................................................... 5 1.3 General test conditions [Allgemeine Prüfbedingungen] ......................................................... 5 2 Summary of radio test results [Übersicht über die Funk-Prüfergebnisse] ................................. 7 3 Description of the test sample [Angaben zum Prüfling] ............................................................... 8 4 Emission tests [Störaussendungsprüfungen] ............................................................................. 11 4.1 Measurement of conducted output power [leitungsgeführte Messung der Sendeausgangsleistung] .................................................... 11 4.2 Measurement of power spectral density conducted [leitungsgeführte Messung der spektralen Leistungsdichte] ................................................ 16 4.3 Measurement of the spectrum bandwidth [Messung der Kanalbandbreite] ......................... 18 4.4 Duty cycle [Tastgrad] .............…

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Test Setup Photos

Page [Seite] 1 Figure 1: Measurement set-up for conducted measurement acc. to following sections of the report 1228-09-EE-10-PB005: 4.1.1; 4.1.2; 4.2; 4.3 and 4.4.3 Page [Seite] 2 Figure 2: Measurement set-up for radiated measurement < 1 GHz acc. following sections of the report 1228-09-EE-10-PB005: 4.4.1 and 4.5.1 Page [Seite] 3 Figure 3: Measurement set-up for radiated measurement > 1 GHz acc. following sections of the report 1228-09-EE-10-PB005: 4.4.2 and 4.5.2 Page [Seite] 4 Figure 4: Measurement set-up for radiated measurement < 30 MHz acc. following sections of the report 1228-09-EE-10-PB005: 4.6 Page [Seite] 5 Figure 5: Plan view of EUT (acc. Test report 1228-09-EE-10-PB005) Figure 6: Back view of EUT with used λ/4 antenna (acc. Test report 1228-09-EE-10-PB005)

Contact Information

Applicant

Sascha Beyer
[email protected]+493516523Fax: +4935165235410

Test Firm

SLG Pruef- und Zertifizierungs GmbHRonald Svadlenka
[email protected]49-3722-732360Fax: 49-3722-631376

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz12.00 mW
Modular Type
Limited Single Modular Approval
Grant Notes
Power output listed is peak conducted. This device must be professionally installed, using only the antennas detailed in this filing. This device and its antenna(s) must not be co-located or operating in conjunction with any other antenna or transmitter. End-users must be provided with specific operating instructions for satisfying RF exposure compliance.

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