FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. Atmel Germany GmbH/
  3. VNR-E31ED-X5B-00

VNR-E31ED-X5B-002.4GHz IEEE802.15.4 compliant antenna diversity radio transceiver

Atmel Germany GmbH
2.4GHz IEEE802.15.4 compliant antenna diversity radio transceiver - FCC ID VNR-E31ED-X5B-00 - Atmel Germany GmbH
Click to zoom

Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Feb 09, 2011
Application Purpose
Original Equipment
Date of Application
Jan 17, 2011
Equipment Note
2.4GHz IEEE802.15.4 compliant antenna diversity radio transceiver
Frequency Range
2405.00000000 - 2480.00000000
Company
Atmel Germany GmbH
Country
Germany

Documents & Files

Select a file to view

Users Manual

↗
↗
↗

Block Diagram

↗

Cover Letter(s)

↗
↗
↗
↗

External Photos

↗

ID Label/Location Info

Internal Photos

↗

Operational Description

↗

RF Exposure Info

↗

Schematics

↗
↗

Test Report

↗

Test Setup Photos

↗

Document Text

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

Users Manual

Ô ÓÓÎÿÛ”›À ...∑ƪ¥ª≠≠ÛËÒÔ fl ŒÓÓÎ fl ŒÓÓÎÊ ◊¤¤¤ ËÓÚÔÎÚÏ ”fl› Õ±∫ ̈©øÆª –øΩμøπª Û À≠ªÆ Ÿ ́∑ºª Û ⁄ªø ̈ ́ƪ≠ ã –±Æ ̈øæ¥ª ø≤º ∏∑π∏¥ß Ω±≤∫∑π ́Æøæ¥ª ”fl› ≠ ̈øΩμ æø≠ªº ±≤ ◊¤¤¤ ËÓÚÔÎÚÏ ã fl ̈≥ª¥ ”fl› øÆΩ∏∑ ̈ªΩ ̈ ́ƪ ø≤º ∑≥∞¥ª≥ª≤ ̈ø ̈∑±≤ ∑≤ ̈Ʊº ́Ω ̈∑±≤ ã Õ ́∞∞±Æ ̈ ±∫ ≠ª™ªÆø¥ ≥∑ΩƱΩ±≤ ̈Ʊ¥¥ªÆ ∫ø≥∑¥∑ª≠ ã Õ ́∞∞±Æ ̈ ±∫ ø¥¥ fl ̈≥ª¥ ◊¤¤¤ ËÓÚÔÎÚÏ ̈Æø≤≠Ωª∑™ªÆ≠ ø≤º ≠∑≤𥪠Ω∏∑∞≠Ù ∑ÚªÚ flÃ≥ªπøÔÓËŒ⁄flÔÙ flÃËÍŒ⁄ÓÔÓÙ flÃËÍŒ⁄ÓÌÔÙ ø≤º flÃËÍŒ⁄ÓÌ ã ¤®ø≥∞¥ª ø∞∞¥∑Ωø ̈∑±≤ ºª≠ΩÆ∑∞ ̈∑±≤ Ô ◊≤ ̈Ʊº ́Ω ̈∑±≤ Ã∏∑≠ º±Ω ́≥ª≤ ̈ ∑≠ ̈∏ª ́≠ªÆ π ́∑ºª ∫±Æ ̈∏ª fl ̈≥ª¥ ”fl› ≠±∫ ̈©øÆª ∫±Æ ◊¤¤¤ ËÓÚÔÎÚÏ ̈Æø≤≠Ωª∑™ªÆ≠Ú Ã∏ª ≥ªΩ∏ø≤∑≠≥≠ ø≤º ∫ ́≤Ω ̈∑±≤ø¥∑ ̈ß ±∫ ̈∏ª ◊¤¤¤ ËÓÚÔÎÚÏ ≠ ̈ø≤ºøÆº ∑≠ ̈∏ª æø≠∑≠ ∫±Æ ̈∏ª ª≤ ̈∑ƪ ”fl› ≠±∫ ̈©øÆª ≠ ̈øΩμ ∑≥∞¥ª≥ª≤ ̈ø ̈∑±≤Ú Ã∏ªÆª∫±Æª ∑ ̈ ∑≠ ∏∑π∏¥ß ƪΩ±≥≥ª≤ºªº ̈± ́≠ª ∑ ̈ ø≠ ø ƪ∫ªÆª≤ΩªÚ fiø≠∑Ω Ω±≤Ωª∞ ̈≠ ̈∏ø ̈ øÆª ∑≤ ̈Ʊº ́Ωªº æß ̈∏ª ◊¤¤¤ ≠ ̈ø≤ºøÆº øÆª ø≠≠ ́≥ªº ̈± æª μ≤±©≤ ©∑ ̈∏∑≤ ̈∏∑≠ º±Ω ́≥ª≤ ̈Ú Ã∏ª ́≠ªÆ π ́∑ºª ºª≠ΩÆ∑æª≠ ̈∏ª ”fl› ≠±∫ ̈©øÆª ∞øΩμøπª fl ŒÓÓΠƪ¥ªø≠ª ÓÚÎÚÓÚ Ã∏ª ≠±∫ ̈©øÆª Ω±≤ ̈ø∑≤≠ ̈∏ª Ó ≤º πª≤ªÆø ̈∑±≤ ”fl›Ù ©∏∑Ω∏ i fl¥¥±©≠ ø ∏∑π∏¥ß ∫¥ª®∑楪 ∫∑Æ≥©øÆª Ω±≤∫∑π ́Æø ̈∑±≤ ̈± øºø∞ ̈ ̈± ̈∏ª ø∞∞¥∑Ωø ̈∑±≤ ÆªØ ́∑ƪ≥ª≤ ̈≠ i Õ ́∞∞±Æ ̈≠ º∑∫∫ªÆª≤ ̈ ≥∑ΩƱΩ±≤ ̈Ʊ¥¥ªÆ≠ ø≤º ∞¥ø ̈∫±Æ≥≠Òæ±øÆº≠ i Õ ́∞∞±Æ ̈≠ º∑∫∫ªÆª≤ ̈ ËÓÚÔÎÚÏ æø≠ªº ̈Æø≤≠Ωª∑™ªÆ≠ ø≤º ≠∑≤𥪠Ω∏∑∞≠ i fl¥¥±©≠ ªø≠ß ø≤º Ø ́∑Ωμ ∞¥ø ̈∫±Æ≥ ∞±Æ ̈∑≤π i –Ʊ™∑ºª≠ ∞Ʊ∂ªΩ ̈ ∫∑¥ª≠ ∫±Æ ̈©± ≠ ́∞∞±Æ ̈ªº ◊‹¤≠ ̄◊flŒ ¤≥檺ºªº ...±Æμæª≤Ω∏Ù fl Œ Õ ̈ ́º∑± Ò ...∑≤fl Œ ̃ i Õ ́∞∞±Æ ̈≠ ≠ ̈øÆ ≤ª ̈©±Æμ≠ ø≤º ∞ªªÆÛ ̈±Û∞ªªÆ Ω±≥≥ ́≤∑Ωø ̈∑±≤ i Õ ́∞∞±Æ ̈≠ ≤±≤æªøΩ±≤ ø≤º æªøΩ±≤Ûª≤øæ¥ªº ≤ª ̈©±Æμ≠ Ã∏ª ”fl› ≠±∫ ̈©øÆª ∞øΩμøπª ∑≠ ø ƪ∫ªÆª≤Ωª ∑≥∞¥ª≥ª≤ ̈ø ̈∑±≤ ºª≥±≤≠ ̈Æø ̈∑≤π ̈∏ª ́≠ª ±∫ fl ̈≥ª¥é≠ ◊¤¤¤ ËÓÚÔÎÚÏ ̈Æø≤≠Ωª∑™ªÆ≠Ú ◊ ̈ ∫±¥¥±©≠ ø πª≤ªÆ∑Ω ø∞∞ƱøΩ∏ ø≤º ∑≠ ≤± ̈ ±∞ ̈∑≥∑¶ªº ̈± ø≤ß ≠∞ªΩ∑∫∑Ω ø∞∞¥∑Ωø ̈∑±≤ ÆªØ ́∑ƪ≥ª≤ ̈Ú Ã∏ª ́≠ªÆ ≤ªªº≠ Ωø≤ æª øºø∞ ̈ªº ̈± ∑ ̈≠ ≠∞ªΩ∑∫∑Ω ø∞∞¥∑Ωø ̈∑±≤ ÆªØ ́∑ƪ≥ª≤ ̈≠Ú ”›À ...∑ƪ¥ª≠≠ Õ±¥ ́ ̈∑±≤≠ fl∞∞¥∑Ωø ̈∑±≤ “± ̈ª –ƪ¥∑≥∑≤øÆß Œª™Ú ÓÓÎÿÛ”›À ...∑ƪ¥ª≠≠ÛËÒÔ Ó ÓÓÎÿÛ”›À ...∑ƪ¥ª≠≠ÛËÒÔ fl ŒÓÓÎ Ó Ÿª≤ªÆø¥ flÆΩ∏∑ ̈ªΩ ̈ ́ƪ Ã∏ª ”fl› ≠±∫ ̈©øÆª ∞øΩμøπª ∫±¥¥±©≠ ø ¥øßªÆªº 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 …

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

Users Manual

AVR2042: REB Controller Base Board - Hardware User Manual Features • High-performance, low-power Atmel ® 8/16-bit AVR ® XMEGA ® microcontroller ATxmega256A3 - 256KB in-system, self-programmable flash - 8KB boot code section with independent lock bits - 16KB internal SRAM - 4KB EEPROM • 2Mb serial flash for support of over-the-air (OTA) upgrades • Programming interface • Fully functional wireless node in combination with the Atmel radio extender board (REB) • Powered by two AAA batteries for stand-alone operation 1 Introduction This application note describes the Atmel REB controller base board (REB-CBB). Detailed information about its functionality, its interfaces, the microcontroller programming, and the PCB design is given in the individual sections. The REB-CBB is intended to serve as a microcontroller platform for Atmel’s radio extender board (REB) family. The REB connected to a REB-CBB forms a battery powered, fully functional, and portable wireless node. Figure 1-1. REB controller base board. 8-bit Microcontrollers Application Note Rev. 8334A-AVR-11/10 2 AVR2042 8334A-AVR-11/10 2 Disclaimer Typical values contained in this application note are based on simulations and on testing of individual examples. Any information about third-party materials or parts is included in this document for convenience. The vendor may have changed the information that has been published. Check the individual vendor information for the latest changes. 3 Overview The Atmel REB-CBB is designed to interface directly to a radio extender board. The combination of the two boards form a battery powered, fully functional, portable wireless node. The setup provides an ideal platform to: • Evaluate the outstanding performance of Atmel’s radio transceivers • Test the unique radio transceiver hardware support for the IEEE ® 802.15.4 standard [3] • Test the enhanced radio transceiver feature set • Develop applications capable of hosting a ZigBee ® stack The following table lists the available radio extender boards and related radio transceivers. Table 3-1. Supporte d radio extender boards. Board Name Comment Radio Transceiver REB230 SMA connector AT86RF230 REB231 SMA connector AT86RF231 REB231ED Antenna diversity AT86RF231 REB212 SMA connector AT86RF212 The REB-CBB is assembled with an Atmel 8-bit AVR ATxmega256A3 microcontroller. It offers a connector for programming and debugging, suitable to connect an Atmel JTAGICE mkII programmer. A connector to attach an asynchronous serial interface allows interfacing to a PC host for control and data exchange tasks. Figure 3-1 shows a development and evaluation setup using the REB-CBB in combination with the REB231ED radio extender board. AVR2042 3 8334A-AVR-11/10 Figure 3-1. Atmel REB-CBB connected to an Atmel REB231ED with an RS232 cable plugged in and an Atmel JTAGICE mkII programming interface. 4 Mechanical description The REB-CBB is manufactured using a two-layer printed circuit board (PCB). All active components are mounted on the bottom side, and all connectors and user I/Os are located on the top side using through-hole components. The radio extender board is plugged into the 2 x 20 female header, Expand1, vertically. Figure 4-1. Mechanical outline. 5mm 70mm 18mm 60mm 57mm 4 AVR2042 8334A-AVR-11/10 Table 4-1. REB-CBB mechanical dimensions. Dimension Value Width x 57mm Width y 60mm PCB standoff height 5mm Height without REB 18mm Height with REB231ED plugged in 70mm 5 Functional description The Atmel REB-CBB carries a high-performance Atmel AVR XMEGA microcontroller, which connects to the radio extender board and various peripheral units (see Figure 5-1). It is powered by two AAA batteries or optionall y by applying an external voltage source. Figure 5-1. REB-CBB block diagram. 5.1 Power supply The board is powered by two AAA batteries. The power switch, SW1, disconnects batteries from the entire board. External power is not routed through the power switch. For debugging and test purposes, power can also be supplied at pin header PWR. Note - there is no protection against over voltage. Take care when applying power from an external source. Refer to Section 7.1 fo r allowable input voltage range. Exceeding these limits may destroy the board. In addition, avoid applying reverse currents into batteries by switching SW1 to the off position, or by removing the batteries when using external power. Figure 5-2. Power supply of the REB-CBB. AVR2042 5 8334A-AVR-11/10 5.2 Microcontroller The Atmel XMEGA A3 is a family of low-power, high–performance, and peripheral- rich CMOS 8/16-bit microcontrollers based on the AVR enhanced RISC architecture. By executing powerful instructions in a single clock cycle, the Atmel XMEGA A3 achieves throughputs of up to 1 million instructions per second (MIPS) per MHz, allowing the system designer to optimize power consumption versus processing speed. A detailed description of the Atmel ATxmega256A3 can be found in the datasheet [2]. Table 5-1. ATxmega2 56A3 ordering information. Ordering Code Flash EEPROM SRAM Speed (MHz) Power Supply Package Temp ATxmega256A3-AU 256KB + 8KB 4KB 16KB 32 1.6V – 3.6V 64A TQFP-64 -40°C – 85°C 5.3 Clock sources The XMEGA has a flexible clock system, supporting a large number of clock sources. It incorporates both calibrated integrated oscillators and external crystal oscillators, and resonators. The Atmel AVR XMEGA family allows dynamic switching between the clock sources. Internal clock sources are: • 32kHz RC oscillator • 2MHz RC oscillator • 32MHz RC oscillator The 2/32MHz oscillators can be calibrated using an automatic runtime calibration feature. In addition to the internal clock sources, two different external clock sources are supported: • The 32.768kHz crystal oscillator connected to TOSC1/2 delivers an accurate clock for a real-time counter, or optionally a system clock for XMEGA • The transceiver clock, CLKM, can be used as an accurate clock derived from the 16MHz radio transceiver oscillator. This signal i…

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

Users Manual

AVR2043: REB231ED - Hardware User Manual Features • High-performance, 2.4GHz, RF-CMOS AT86RF231 radio transceiver targeted for IEEE ® 802.15.4, ZigBee ® , and ISM applications - Industry leading 104dB link budget - Ultra-low current consumption - Ultra-low supply voltage (1.8V to 3.6V) • Hardware supported antenna diversity • RF reference design and high-performance evaluation platform • Interfaces to several of Atmel’s microcontroller development platforms • Board information EEPROM - MAC address - Board identification, features, and serial number - Crystal calibration values 1 Introduction This manual describes the REB231ED radio extender board supporting antenna diversity in combination with the Atmel ® AT86RF231 radio transceiver. Detailed information is given in the individual sections about the board functionality, the board interfaces, and the board design. The REB231ED connects directly to the REB controller base board (REB-CBB), or can be used as an RF interface in combination with one of Atmel’s microcontroller development platforms. The REB231ED together with a microcontroller forms a fully functional wireless node. Figure 1-1. Top and bottom views of the REB231ED. 8-bit Microcontrollers Hardware User Manual Rev. 8345A-AVR-11/10 2 AVR2043 8345A-AVR-11/10 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 was included in this document for convenience. The vendor may have changed the information that has been published. Check the individual vendor information for the latest changes. 3 Overview The radio extender board is assembled with an Atmel AT86RF231 radio transceiver [1] and two ceramic antennas, and demonstrates the unrivaled hardware-based antenna diversity feature, which significantly improves radio link robustness in harsh environments. The radio extender board was designed to interface to Atmel’s microcontroller development or evolution platforms. The microcontroller platform in combination with the REB provides an ideal way to: • Evaluate the outstanding radio transceiver performance, such as the excellent receiver sensitivity achieved at ultra-low current consumption • Test the radio transceiver’s comprehensive hardware support of the IEEE 802.15.4 standard • Test the radio transceiver’s enhanced feature set, which includes antenna diversity, AES, high data rate modes and other functions The photograph in Figure 3-1 shows a development and evaluation setup using the REB controller base board (REB-CBB) [2] in combination with th e REB231ED radio extender board. Figure 3-1. The REB231ED connected to an REB-CBB. AVR2043 3 8345A-AVR-11/10 4 Functional description The block diagram of the REB231ED radio extender board is shown in Figure 4-1. The power supply pins and all digital I/Os of the radio transceiver are routed to the 2 x 20-pin expansion connector to interface to a power supply and a microcontroller. The Atmel AT86RF231 antenna diversity (AD) feature supports the control of two antennas (ANT0/ANT1). A digital control pin (DIG1) is used to control an external RF switch selecting one of the two antennas. During the RX listening period, the radio transceiver switches between the two antennas autonomously, without the need for microcontroller interaction, if the AD algorithm is enabled. Once an IEEE 802.15.4 synchronization header is detected, an antenna providing sufficient signal quality is selected to receive the remaining frame. This ensures reliability and robustness, especially in harsh environments with strong multipath fading effects. Board-specific information such as board identifier, the node MAC address, and production calibration values are stored in an ID EEPROM. The SPI bus of the EEPROM is shared with the radio transceiver’s interface. Figure 4-1. REB231ED block diagram. 4.1 Interface connector specification The REB is equipped with a 2 x 20-pin, 100mil expansion connector. The pin assignment enables a direct interface to the REB-CBB [2]. Further, the i nterface connects to the Atmel STK500/501 microcontroller development platform to enable support for various Atmel 8-bit AVR ® microcontrollers. The REB is preconfigured to interface to an STK501 with an Atmel ATmega1281. If an Atmel ATmega644 is used as the microcontroller, the 0Ω resistors R10 through R18 must be removed and re-installed on the board manually as resistors R20 through R28 (see Exhibit A.1). Other mi crocontroller development platforms need to be interfaced using a special adapter board. 4 AVR2043 8345A-AVR-11/10 4.1.1 ATmega1281 configuration Table 4-1. Default expansion connector mapping (ATmega1281 configuration). Pin# Function Pin# Function 1 GND 2 GND 3 n.c. 4 n.c. 5 n.c. 6 n.c. 7 n.c. 8 n.c. 9 n.c. 10 n.c. 11 n.c. 12 n.c. 13 n.c. 14 n.c. 15 n.c. 16 n.c. 17 XT1 (MCLK) 18 n.c. 19 Vcc 20 Vcc 21 GND 22 GND 23 PB7 (open) 24 PB6 (open) 25 PB5 (RSTN) 26 PB4 (SLPTR) 27 PB3 (MISO) 28 PB2 (MOSI) 29 PB1 (SCLK) 30 PB0 (SEL) 31 PD7 (TP1) 32 PD6 (MCLK) 33 PD5 (TP2) 34 PD4 (DIG2) 35 PD3 (TP3) 36 PD2 (open) 37 PD1 (TP4) 38 PD0 (IRQ) 39 GND 40 EE#WP (write protect EEPROM) 4.1.2 ATmega644 configuration Table 4-2. Expansion connector mapping when assembled for ATmega644. Pin# Function Pin# Function 1 GND 2 GND 3 n.c. 4 n.c. 5 n.c. 6 n.c. 7 n.c. 8 n.c. 9 n.c. 10 n.c. 11 n.c. 12 n.c. 13 n.c. 14 n.c. 15 n.c. 16 n.c. 17 XT1 (MCLK) 18 n.c. 19 Vcc 20 Vcc 21 GND 22 GND 23 PB7 (SCLK) 24 PB6 (MISO) 25 PB5 (MOSI) 26 PB4 (SEL) AVR2043 5 8345A-AVR-11/10 Pin# Function Pin# Function 27 PB3 (open) 28 PB2 (RSTN) 29 PB1 (MCLK) 30 PB0 (open) 31 PD7 (SLPTR) 32 PD6 (DIG2) 33 PD5 (TP2) 34 PD4 (open) 35 PD3 (TP3) 36 PD2 (IRQ) 37 PD1 (TP4) 38 PD0 (open) 39 GND 40 EE#WP (write protect EEPROM) 4.2 ID EEPROM To identify the board type by software, an optional identification (ID) EEPROM is populated. Information about the board, the node MAC address, and production calibration values are stored here. …

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-E31ED-X5B-00 FCC Part 15 Certification Exhibit: Oscillator block diagram ATxmega256A3 Q2 32,768 kHz Q3 16,0 MHz Exhibit: Oscillator block diagram Onboard Q1: Timer/Counter Oscillator Q2: Timer/Counter Oscillator Q3: Transceiver Crystal Oscillator Q1 3.768 kHz ATmega1281 AT86RF231 REB CBB REB231ED

External Photos

dresden elektronik Tel.: 0351 – 31 85 00 Seite 1 von 5 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-E31ED-X5B-00 FCC Part 15 Certification Exhibit: Photo Front View 2010-08-23 Seite 2 von 5 Back View 2010-08-23 Seite 3 von 5 Top View 2010-08-23 Seite 4 von 5 Bottom View 2010-08-23 Seite 5 von 5 Side View

Internal Photos

dresden elektronik Tel.: 0351 – 31 85 00 Seite 1 von 5 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-E31ED-X5B-00 FCC Part 15 Certification Exhibit: Photo Front View 2010-08-23 Seite 2 von 5 Back View 2010-08-23 Seite 3 von 5 Top View 2010-08-23 Seite 4 von 5 Bottom View 2010-08-23 Seite 5 von 5 Side View

Operational Description

Ô ÓÓÎÿÛ”›À ...∑ƪ¥ª≠≠ÛËÒÔ fl ŒÓÓÎ fl ŒÓÓÎÊ ◊¤¤¤ ËÓÚÔÎÚÏ ”fl› Õ±∫ ̈©øÆª –øΩμøπª Û À≠ªÆ Ÿ ́∑ºª Û ⁄ªø ̈ ́ƪ≠ ã –±Æ ̈øæ¥ª ø≤º ∏∑π∏¥ß Ω±≤∫∑π ́Æøæ¥ª ”fl› ≠ ̈øΩμ æø≠ªº ±≤ ◊¤¤¤ ËÓÚÔÎÚÏ ã fl ̈≥ª¥ ”fl› øÆΩ∏∑ ̈ªΩ ̈ ́ƪ ø≤º ∑≥∞¥ª≥ª≤ ̈ø ̈∑±≤ ∑≤ ̈Ʊº ́Ω ̈∑±≤ ã Õ ́∞∞±Æ ̈ ±∫ ≠ª™ªÆø¥ ≥∑ΩƱΩ±≤ ̈Ʊ¥¥ªÆ ∫ø≥∑¥∑ª≠ ã Õ ́∞∞±Æ ̈ ±∫ ø¥¥ fl ̈≥ª¥ ◊¤¤¤ ËÓÚÔÎÚÏ ̈Æø≤≠Ωª∑™ªÆ≠ ø≤º ≠∑≤𥪠Ω∏∑∞≠Ù ∑ÚªÚ flÃ≥ªπøÔÓËŒ⁄flÔÙ flÃËÍŒ⁄ÓÔÓÙ flÃËÍŒ⁄ÓÌÔÙ ø≤º flÃËÍŒ⁄ÓÌ ã ¤®ø≥∞¥ª ø∞∞¥∑Ωø ̈∑±≤ ºª≠ΩÆ∑∞ ̈∑±≤ Ô ◊≤ ̈Ʊº ́Ω ̈∑±≤ Ã∏∑≠ º±Ω ́≥ª≤ ̈ ∑≠ ̈∏ª ́≠ªÆ π ́∑ºª ∫±Æ ̈∏ª fl ̈≥ª¥ ”fl› ≠±∫ ̈©øÆª ∫±Æ ◊¤¤¤ ËÓÚÔÎÚÏ ̈Æø≤≠Ωª∑™ªÆ≠Ú Ã∏ª ≥ªΩ∏ø≤∑≠≥≠ ø≤º ∫ ́≤Ω ̈∑±≤ø¥∑ ̈ß ±∫ ̈∏ª ◊¤¤¤ ËÓÚÔÎÚÏ ≠ ̈ø≤ºøÆº ∑≠ ̈∏ª æø≠∑≠ ∫±Æ ̈∏ª ª≤ ̈∑ƪ ”fl› ≠±∫ ̈©øÆª ≠ ̈øΩμ ∑≥∞¥ª≥ª≤ ̈ø ̈∑±≤Ú Ã∏ªÆª∫±Æª ∑ ̈ ∑≠ ∏∑π∏¥ß ƪΩ±≥≥ª≤ºªº ̈± ́≠ª ∑ ̈ ø≠ ø ƪ∫ªÆª≤ΩªÚ fiø≠∑Ω Ω±≤Ωª∞ ̈≠ ̈∏ø ̈ øÆª ∑≤ ̈Ʊº ́Ωªº æß ̈∏ª ◊¤¤¤ ≠ ̈ø≤ºøÆº øÆª ø≠≠ ́≥ªº ̈± æª μ≤±©≤ ©∑ ̈∏∑≤ ̈∏∑≠ º±Ω ́≥ª≤ ̈Ú Ã∏ª ́≠ªÆ π ́∑ºª ºª≠ΩÆ∑æª≠ ̈∏ª ”fl› ≠±∫ ̈©øÆª ∞øΩμøπª fl ŒÓÓΠƪ¥ªø≠ª ÓÚÎÚÓÚ Ã∏ª ≠±∫ ̈©øÆª Ω±≤ ̈ø∑≤≠ ̈∏ª Ó ≤º πª≤ªÆø ̈∑±≤ ”fl›Ù ©∏∑Ω∏ i fl¥¥±©≠ ø ∏∑π∏¥ß ∫¥ª®∑楪 ∫∑Æ≥©øÆª Ω±≤∫∑π ́Æø ̈∑±≤ ̈± øºø∞ ̈ ̈± ̈∏ª ø∞∞¥∑Ωø ̈∑±≤ ÆªØ ́∑ƪ≥ª≤ ̈≠ i Õ ́∞∞±Æ ̈≠ º∑∫∫ªÆª≤ ̈ ≥∑ΩƱΩ±≤ ̈Ʊ¥¥ªÆ≠ ø≤º ∞¥ø ̈∫±Æ≥≠Òæ±øÆº≠ i Õ ́∞∞±Æ ̈≠ º∑∫∫ªÆª≤ ̈ ËÓÚÔÎÚÏ æø≠ªº ̈Æø≤≠Ωª∑™ªÆ≠ ø≤º ≠∑≤𥪠Ω∏∑∞≠ i fl¥¥±©≠ ªø≠ß ø≤º Ø ́∑Ωμ ∞¥ø ̈∫±Æ≥ ∞±Æ ̈∑≤π i –Ʊ™∑ºª≠ ∞Ʊ∂ªΩ ̈ ∫∑¥ª≠ ∫±Æ ̈©± ≠ ́∞∞±Æ ̈ªº ◊‹¤≠ ̄◊flŒ ¤≥檺ºªº ...±Æμæª≤Ω∏Ù fl Œ Õ ̈ ́º∑± Ò ...∑≤fl Œ ̃ i Õ ́∞∞±Æ ̈≠ ≠ ̈øÆ ≤ª ̈©±Æμ≠ ø≤º ∞ªªÆÛ ̈±Û∞ªªÆ Ω±≥≥ ́≤∑Ωø ̈∑±≤ i Õ ́∞∞±Æ ̈≠ ≤±≤æªøΩ±≤ ø≤º æªøΩ±≤Ûª≤øæ¥ªº ≤ª ̈©±Æμ≠ Ã∏ª ”fl› ≠±∫ ̈©øÆª ∞øΩμøπª ∑≠ ø ƪ∫ªÆª≤Ωª ∑≥∞¥ª≥ª≤ ̈ø ̈∑±≤ ºª≥±≤≠ ̈Æø ̈∑≤π ̈∏ª ́≠ª ±∫ fl ̈≥ª¥é≠ ◊¤¤¤ ËÓÚÔÎÚÏ ̈Æø≤≠Ωª∑™ªÆ≠Ú ◊ ̈ ∫±¥¥±©≠ ø πª≤ªÆ∑Ω ø∞∞ƱøΩ∏ ø≤º ∑≠ ≤± ̈ ±∞ ̈∑≥∑¶ªº ̈± ø≤ß ≠∞ªΩ∑∫∑Ω ø∞∞¥∑Ωø ̈∑±≤ ÆªØ ́∑ƪ≥ª≤ ̈Ú Ã∏ª ́≠ªÆ ≤ªªº≠ Ωø≤ æª øºø∞ ̈ªº ̈± ∑ ̈≠ ≠∞ªΩ∑∫∑Ω ø∞∞¥∑Ωø ̈∑±≤ ÆªØ ́∑ƪ≥ª≤ ̈≠Ú ”›À ...∑ƪ¥ª≠≠ Õ±¥ ́ ̈∑±≤≠ fl∞∞¥∑Ωø ̈∑±≤ “± ̈ª –ƪ¥∑≥∑≤øÆß Œª™Ú ÓÓÎÿÛ”›À ...∑ƪ¥ª≠≠ÛËÒÔ Ó ÓÓÎÿÛ”›À ...∑ƪ¥ª≠≠ÛËÒÔ fl ŒÓÓÎ Ó Ÿª≤ªÆø¥ flÆΩ∏∑ ̈ªΩ ̈ ́ƪ Ã∏ª ”fl› ≠±∫ ̈©øÆª ∞øΩμøπª ∫±¥¥±©≠ ø ¥øßªÆªº 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 …

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

Schematics

1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 DD CC BB AA * * * * * * * ReB_ControllerBaseBoard * 16.03.2010 ReB_ControllerBaseBoard.SchDoc Title Size:Project: Date: File: Revision:Sheetof A3 1 ReB_ControllerBaseBoard.PrjPCB 20049 SW1 GND GND 1989 12 34 56 78 910 1112 1314 1516 1718 1920 2122 2324 2526 2728 2930 3132 3334 3536 3738 3940 Expand1 4 PA3 1 PA4 2 PA5 3 PA6 4 PA7 5 PB0 6 PB1 7 PB2 8 PB3 9 PB4 10 PB5 11 PB6 12 PB7 13 GND 14 VCC 15 PC0 16 PC1 17 PC2 18 PC3 19 PC4 20 PC5 21 PC6 22 PC7 23 GND 24 VCC 25 PD0 26 PD1 27 PD2 28 PD3 29 PD4 30 PD5 31 PD6 32 PD7 33 GND 34 VCC 35 PE0 36 PE1 37 PE2 38 PE3 39 PE4 40 PE5 41 PE6 42 PE7 43 GND 44 VCC 45 PF0 46 PF1 47 PF2 48 PF3 49 PF4 50 PF5 51 PF6 54 PF7 55 GND 52 VCC 53 PDI 56 RESET 57 PRO 58 PR1 59 GND 60 AVCC 61 PA0 62 PA1 63 PA2 64 ATxmega256A3 29645 U1 24 GNDGND GNDGND VTGVTG GNDGND RSTN SLPTR MISO MOSI SCK SELN IRQ DIG2 RSTNSLPTR MISOMOSI SCKSELN IRQ DIG2 CLKM CLKM TXCW TXCW PA0 PA1 PA2 PA3 PA4 PA5 PA6 PA7 PA0PA1 PA2PA3 PA4PA5 PA6PA7 VTGGND PE0 PE1 PE2 PE3 PE4 PE5 TOSC2 TOSC1 PE0PE1 PE2PE3 PE4PE5 VTGGND 5352 12 34 56 78 910 PORTF 9PF0 PF1 PF2 PF3 PF4 PF5 PF6 PF7 PF0PF1 PF2PF3 PF4PF5 PF6PF7 VTGGND TCK TDO TDI TMS GND VTG uCRST TCK TDO TDI TMS VTG GND TxD0 RxD0 D1 D2 D3 T1 GND VTGVTG GNDGND 3572 13 2 DBGSEL PDI uCRST uCRST PDI TOSC2 TOSC1 GND low-active LEDs connected to ADC pins to enable software-based production test D1 D2 D3 T1 XT1 #CS 1 SO 2 #WP 3 GND 4 SI 5 SCK 6 #HOLD 7 VCC 8 AT25DF021 29646 U2 23 2M_SCK 2M_SI 2M_SO 2M_nCS VTG GND VTG 2M_SO 2M_nCS 2M_SCK 2M_SI XT1 GND GND VTG 4428 1 2 PWR 7 5352 12 34 56 78 910 PORTE 9 5352 12 34 56 78 910 PORTA 9 5352 12 34 56 78 910 DBG 9 25289 T1 100n 7777 C5 470R 17632 R3 1785 D4 3 VTG GND 10n 18002 C2 18454 12 34 56 USARTD0 16 RXD0 TXD0 VTG GND uCRST 20365 AAAx2 BT1 VTG GND 3.768 kHz 6130 Q1 3027 red D3 15833 L1 3027 red D2 3027 red D1 470R 17632 R2 470R 17632 R1 25289 RST 100n 7777 C6 100n 7777 C7 100n 7777 C8 100n 7777 C9 100n 7777 C10 22p 19015 C3 22p 19015 C4 100n 7777 C11 GND 10u 19441 C15 10u 19441 C12 10u 19441 C13 10u 19441 C14 JTAGICE MKII debug port selection 1-2 : PDI access 2-3: JTAG access für RS232 Pegelwander de Art.Nr. 28560 8854 10k R4 8mm Z10 8mm Z11 8mm Z12 8mm Z13 8mm Z14 4521 Mutter Z1 5252 M2,5x8 Z2 DIN125 5138 Z3 5 449 36 00.250.00 29647 Z4 UP1 RF200 RF201 PIBT101 PIBT102 COBT1 PIC201 PIC202 COC2 PIC301PIC302 COC3 PIC401PIC402 COC4 PIC501 PIC502 COC5 PIC601 PIC602 COC6 PIC701 PIC702 COC7 PIC801 PIC802 COC8 PIC901 PIC902 COC9 PIC1001 PIC1002 COC10 PIC1101 PIC1102 COC11 PIC1201 PIC1202 COC12 PIC1301 PIC1302 COC13 PIC1401 PIC1402 COC14 PIC1501 PIC1502 COC15 PID10APID10K COD1 PID20APID20K COD2 PID30APID30K COD3 PID401 PID403 COD4 PIDBG01PIDBG02 PIDBG03PIDBG04 PIDBG05PIDBG06 PIDBG07PIDBG08 PIDBG09PIDBG010 CODBG PIDBGSEL01 PIDBGSEL02 PIDBGSEL03 CODBGSEL PIExpand101PIExpand102 PIExpand103PIExpand104 PIExpand105PIExpand106 PIExpand107PIExpand108 PIExpand109PIExpand1010 PIExpand1011PIExpand1012 PIExpand1013PIExpand1014 PIExpand1015PIExpand1016 PIExpand1017PIExpand1018 PIExpand1019PIExpand1020 PIExpand1021PIExpand1022 PIExpand1023PIExpand1024 PIExpand1025PIExpand1026 PIExpand1027PIExpand1028 PIExpand1029PIExpand1030 PIExpand1031PIExpand1032 PIExpand1033PIExpand1034 PIExpand1035PIExpand1036 PIExpand1037PIExpand1038 PIExpand1039PIExpand1040 COExpand1 PIL101 PIL102 COL1 PIPORTA01PIPORTA02 PIPORTA03PIPORTA04 PIPORTA05PIPORTA06 PIPORTA07PIPORTA08 PIPORTA09PIPORTA010 COPORTA PIPORTE01PIPORTE02 PIPORTE03PIPORTE04 PIPORTE05PIPORTE06 PIPORTE07PIPORTE08 PIPORTE09PIPORTE010 COPORTE PIPORTF01PIPORTF02 PIPORTF03PIPORTF04 PIPORTF05PIPORTF06 PIPORTF07PIPORTF08 PIPORTF09PIPORTF010 COPORTF PIPWR01 PIPWR02 COPWR PIQ101 PIQ102 COQ1 PIR101PIR102 COR1 PIR201PIR202 COR2 PIR301PIR302 COR3 PIR401 PIR402 COR4 PIRST01PIRST02PIRST03PIRST04 CORST PISW101 PISW102 PISW103 COSW1 PIT101PIT102PIT103PIT104 COT1 PIU101 PIU102 PIU103 PIU104 PIU105 PIU106 PIU107 PIU108 PIU109 PIU1010 PIU1011 PIU1012 PIU1013 PIU1014 PIU1015 PIU1016 PIU1017 PIU1018 PIU1019 PIU1020 PIU1021 PIU1022 PIU1023 PIU1024 PIU1025 PIU1026 PIU1027 PIU1028 PIU1029 PIU1030 PIU1031 PIU1032 PIU1033 PIU1034 PIU1035 PIU1036 PIU1037 PIU1038 PIU1039 PIU1040 PIU1041 PIU1042 PIU1043 PIU1044 PIU1045 PIU1046 PIU1047 PIU1048 PIU1049 PIU1050 PIU1051 PIU1052 PIU1053 PIU1054 PIU1055 PIU1056 PIU1057 PIU1058 PIU1059 PIU1060 PIU1061 PIU1062 PIU1063 PIU1064 COU1 PIU201 PIU202 PIU203 PIU204PIU205 PIU206 PIU207 PIU208 COU2 COUP1 PIUSARTD001PIUSARTD002 PIUSARTD003P…

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

Contact Information

Applicant

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

Technical Contact

EMCCert DR. RASEK GmbHFrancis Lima
[email protected]+49 9194 72279

St�rnhofer Berg 15 · Unterleinleiter · Germany

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 GHz7.00 mW
Modular Type
Limited Split Modular Approval

Other Applications from Atmel Germany GmbH

REB233SMAD-EK - FCC ID VNR-E33SD-X5B-00 - Atmel Germany GmbH
VNR-E33SD-X5B-00

REB233SMAD-EK

Feb 27, 2014

Equipment Class

DTS - Digital Transmission System
2.4GHz IEEE802.15.4 compliant antenna diversity radio transceiver - FCC ID VNR-E31F2-X5B-00 - Atmel Germany GmbH
VNR-E31F2-X5B-00

2.4GHz IEEE802.15.4 compliant antenna diversity radio transceiver

May 09, 2012

Equipment Class

DTS - Digital Transmission System
2.4GHz IEEE802.15.4 compliant antenna diversity radio transceiver - FCC ID VNR-E32ED-X5B-00 - Atmel Germany GmbH
VNR-E32ED-X5B-00

2.4GHz IEEE802.15.4 compliant antenna diversity radio transceiver

Feb 09, 2012

Equipment Class

DTS - Digital Transmission System
2.4GHz IEEE802.15.4 compliant single chip radio transceiver - FCC ID VNR-S31SM-V4-00 - Atmel Germany GmbH
VNR-S31SM-V4-00

2.4GHz IEEE802.15.4 compliant single chip radio transceiver

Oct 14, 2010

Equipment Class

DTS - Digital Transmission System