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IMRMPCIDE1Orinoco Mini PCI-3A

Agere Systems Nederland B.V.
Orinoco Mini PCI-3A - FCC ID IMRMPCIDE1 - Agere Systems Nederland B.V.
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Feb 08, 2001
Application Purpose
Original Equipment
Date of Application
Dec 18, 2000
Equipment Note
Orinoco Mini PCI-3A
Frequency Range
2412.00000000 - 2462.00000000
Company
Agere Systems Nederland B.V.
Country
Netherlands

Documents & Files

Select a file to view

Users Manual

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Attestation Statements

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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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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

Information to the User Wireless Interoperability The Dell TrueMobile 1150 Series products are designed to be inter-operable with any wireless LAN product that is based on Direct Sequence Spread Spectrum (DSSS) radio technology, and is compliant to:  The IEEE 802.11 Standard on Wireless LANs (Revision B), as defined and approved by the Institute of Electrical and Electronics Engineers.  The Wireless Fidelity (WiFi) certification as defined by the WECA Wireless Ethernet Compatibility Alliance. Dell TrueMobile 1150 Series and your Health Dell TrueMobile 1150 Series, like other radio devices, emit radio frequency electromagnetic energy. The level of energy emitted by ORiNOCO devices however is far much less than the electromagnetic energy emitted by wireless devices like for example mobile phones. Because Dell TrueMobile 1150 Series operates within the guidelines found in radio frequency safety standards and recommendations, Dell believes it is safe for use by consumers. These standards and recommendations reflect the consensus of the scientific community and result from deliberations of panels and committees of scientists who continually review and interpret the extensive research literature. In some situations or environments, the use of Dell TrueMobile 1150 Series may be restricted by the proprietor of the building or responsible representatives of the organization. These situations may for example include:  Using the Dell TrueMobile 1150 Series equipment on board of airplanes, or  In any other environment where the risk of interference to other devices or services is perceived or identified as harmful. If you are uncertain of the policy that applies on the use of wireless devices in a specific organization or environment (e.g. airports), you are encouraged to ask for authorization to use the Dell TrueMobile 1150 Series device prior to turning on the equipment. Regulatory Informat ion This Dell TrueMobile 1150 Series wireless network device must be installed and used in strict accordance with the manufacturer's instructions as described in the user documentation that comes with the product. For country-specific approvals, please consult the section “ Radio Approvals” on the last page of this flyer. Dell Computer Corporation is not responsible for any radio or television interference caused by unauthorized modification of the devices included with this Dell TrueMobile 1150 Series Kit, or the substitution or attachment of connecting cables and equipment other than specified by Dell Computer Corporation. The correction of interference caused by such unaut horized modification, substitution or attachment will be the responsibility of the user. Dell Computer Corporation and its authorized resellers or distributors are not liable for any damage or violation of government regulations that may arise from failing to comply with these guidelines. Canada - Industry Canada (IC) This device complies with RSS 210 of Industry Canada. Europe - EU Declaration of Conformity Hereby, Lucent Technologies, declares that this Dell TrueMobile 1150 Series wireless device is in compliance with the essential requirements and other relevant provision of Directive 1999/5/EC France: Restricted frequency band: When operating this device on French territory, you may only do so, using the channels 10 and 11 (2457 MHz and 2462 MHz respectively). It is not allowed to operate the device at any other channel as supported by the device. License required for every indoor installation (please contact ART for procedure to follow.). Use outdoors is not allowed. Bande de fréquence restreinte : seuls les canaux 10 à 11 (2457 et 2462 MHz respectivement) doivent être utilisés en France. Toute utilisation, qu'elle soit intérieure ou extérieure, est soumise à autorisation. Vous pouvez contacter l'Autorité de Régulation des Télécommuniations (http://www.art-telecom.fr) pour la procédure à suivre. Italia:License required for indoor use. Use with outdoor installations not allowed E' necessaria la concessione ministeriale anche per l'uso interno. Verificare con i rivenditori la procedura da seguire. L'uso per installazione in esterni non e' permessa. USA - Federal Communications Commission (FCC) This device complies with Part 15 of FCC Rules. Operation of the device is subject to the following two conditions:  This device may not cause harmful interference.  This device must accept any interference that may cause undesired operation. Caution: Exposure to Radio Frequency Radiation. The radiated output power of this Dell TrueMobile 1150 Series wireless network device is far below the FCC radio frequency exposure limits. Nevertheless, the Dell TrueMobile 1150 Series wireless network device shall be used in such a manner that the potential for human contact during normal operation is minimized. When connecting an external antenna to the wireless network device the antenna shall be placed in such a manner to minimize the potential for human contact during normal operation. In order to avoid the possibility of exceeding the FCC radio frequency exposure limits, human proximity to the antenna shall not be less than 20 cm (8 inches) during normal operation. Interference Statement This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses, and can radiate radio frequency energy. If not installed and used in accordance with the instructions, it may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try and correct the interference by one or more of the followin…

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Block Diagram

U\D MIXER VCO PLL D A D A I Q RX/TX SWITCH DIG SIG PROC BANDPASS FILTER LNA/ AGC UP MIXER DOWN MIXER RFCONNECTOR(S) & DIVERSITY SWITCH AUTOMATIC GAIN CONTROL ANTENNA DIVERSITY CONTROL 2.4-2.5GHz 2.05-2.15GHz I Q PLL VCO RX/TX SWITCH RX/TX SWITCH BANDPASS FILTER ref osc and load osc load Amp PFB 352MHz saw D A D A MAC SRAM 128k x 8 32k x 8 70 ns 3.3 V Xtal BANDPASS FILTER 704 MHz 352MHz saw 200nS 3.3 V FLASH ROM H E R M E S T H E S E U S miniPCI bridge bus 1 2 3 22 6 7 8 19 9 10 11 15 14 12 13 18 16 21 20 4 5 17 22MHz 25 26 27 9 Block diagramm Lucent 2.4 GHz WaveLAN

Block Diagram

DESCRIPTION OF THE Orinoco 2.4 GHz BLOCKDIAGRAM The various parts of the Blockdiagram are numbered and an explanation is given of these blocks. First the transmitter will be described: A) Digital Signal Processor. (22) Function : Generate spreaded signal with an Barker sequence of 11, the original raw data rate of two Megabits is transformed to a symbol rate of one MegaBaud and multiplied with eleven and modulated with a DQPSK ( Differential Quadrature Phase Shift Keying ) Modulation. The unfiltered data comes out of I and Q and goes to the up/down mixer (6) B) The above signals are mixed in (6) in a so called quadrature modulator with the Intermediate Frequency ( IF) of 352 MHz. C) The upmixer is fed by the VCO of 704 MHz, which is divided by 2 to 352 MHz. D) The SAW ( 8 ) filters all unwanted mixing products, such that only the 352 MHz band remains. E) This signal goes into the RF upmixer ( 9) SA2420 were it is mixed with the RF VCO with a range of 2050 to 2150 MHz. F) The Rx/Tx switch (17) brings the signal to the variable attenuator (10 ), where the output level is controlled. G) The signal is fed through a 2.4- 2.5 GHz bandpass filter (11) to remove all unwanted mixer products, and thus to get a clean signal for further processing. H) The signal is amplified in (12), with approx 23 dB to an output level of approx. 15 dBm I) This signal goes to the special connector. J) The output power is controlled with a so called power feed back loop (15) in which the output power is compared with a DAC value from (10) Receiver functions. K) The receive signal enters the antenna passes the RX/TX switch (14) and (13) this is set to RX mode. L) The signal goes through the 2.4 GHz filter (16) to remove all unwanted spectral components in order to deliver a clean signal for the receiver. M) A Low Noise Amplifiers (LNA) (in 9) is used to amplify the weak signal to a level fitted for down mixing. N) The AGC (27) can amplify or attenuate the signal according to the Digital signal processor required input with a step size of 26 dB. O) Again the Rx/Tx switch in the Rx mode is passed and also the same filter as in transmit mode ( 18). P) The down mixer (9) mixes the 2.4 GHz with the 2.1 GHz to the 352 MHz IF. Q) The signal of 352 MHz is amplified again (9) and filtered by a SAW filter (19) to give a clean signal for the second mixer. R) The Downmixer (6) mixes the 352 MHz signal down to the I and Q signals, also the auto gain control can increase the level to the required level via line 20. S) The very low amplitude baseband I and Q signal is amplified in the AMPs (6) to a level fitted for the Analog to Digital converters (22), which make it a proper signal for the digital signal processor. T) The digital signal processor (22) removes the spreading as present on the signal with a so called autocorrelation function. The resulting output of the processor is a received data rate of 2 Megabits. VCO , PLL and OSC. U) These three form one entity to generate a single tone signal for down mixing. There are two of these blocks available, one for the IF LO (7 and 6 ) (352MHz ) and one for the RF LO (25 and 26) of 2050 to 2150 MHz. V) All the PLL’s and the processor (2) have one reference Crystal of 22 MHz (4) with an accuracy of 25 ppm. General circuits: W) Antenna Diversity. Depending on the signal strength and signal quality the Digital processor (22) can select between two antenna’s which gives the best signal. This is done initial during the training sequence in the received signal. X) Automatic Gain control. Depending on the signal strength and signal quality the Digital processor (22) can choose to increase or decrease the signal level at the digital input, this is done by reducing or increasing the gain in the receiver via the LNA-AGC (in 9). Y) The Signal processor (22) can read via the MAC (2) the registers for programming all Z) The MAC is used to do the handshaking with the miniPCI bridge chip bus (1 ) and handling the IEEE protocol. Also used to load the PLL frequencies and dividers, also used to interface to the Eeprom which contains all parameters for the PLL’s and the Callcode Blockdiagram description of the Lucent 2.4 GHz Orinoco, miniPCI card Guus Jansen Aug 16, 2000

Cover Letter(s)

Nederland B.V. (WCND)_ Zadelstede 1-10 3431 JZ Nieuwegein The Netherlands Phone: +31 30 6097666 Fax: +31 30 6097556 Federal Communications Commission Authorization & Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046, USA Nieuwegein, 12 October 2000 Re: Request for confidentiality, IMR MPCIDE1 Dear Sir/Madam, Pursuant to 47 CFR 0.457(d) and O/459 we hereby request confidentiality status of Lucent Technologies document 014891 schematic drawing used in this application (files named 014891_x.pdf). Sincerely yours, Bert Vos, Certifications Support Encl. cc:

Cover Letter(s)

Nederland B.V. Zadelstede 1-10 3431 JZ Nieuwegein The Netherlands Phone: +31 30 6097666 Fax: +31 30 6097556 Federal Communications Commission EQUIPMENT APPROVAL SERVICES P.O. Box 358315 Pittsburg PA 15251-5315, USA Nieuwegein, 09 February 2001 Re: FCC ID IMRMPCIDE1, 731 Conf. # TC99563 Reaction to letter from FCC dated February 05, 2001, Correspondence Ref. # 1411 Dear Mr. Dayhoff, This letter is to confirm that Lucent Technologies is requested a “Limited Modular Approval” for the mini- pci wireless device, FCC ID: IMRMPCIDE1. The usage of this radio will be limited to the following Dell Computer Corporation models: Latitude C600, Inspiron 4000, Latitude C800 and Inspiron 8000. Sincerely, Sincerely yours, Bert Vos, Certifications Support Encl. cc:

ID Label/Location Info

FILE LOCATION: FILE LOCATION:FILE LOCATION: FILE LOCATION: S:\PERIPHS\COMM\Harrier\Label Tech Sheet\9C727am0.fm DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 0XXXXX A0X P/N 9C727 Rev. A00 December 2000 www.dell.com | support.dell.com Attaching a Dellô Mini PCI Card Regulatory Label NOTICE: Affixing the provided label is a regulatory requirement. Failure to do so may void the userís authority to operate the subject equipment. This document tells you how to attach the enclosed Mini Peripheral Component Interconnect (PCI) card regulatory label onto your computer. Do this after you follow the instructions in "Installing a Mini PCI Card Assembly," which is also enclosed. 1Close the display and turn the computer upside down on a flat, clean work surface. 2Remove the adhesive cover from the back of the regulatory label. 3Depending on your computer, press the regulatory label onto your computer in the location shown in "Placement of the Mini PCI Card Regulatory Label." NOTE: South African residents must also attach the SATRA sticker on top of the Mini PCI card regulatory label, as shown in "Placement of the Mini PCI Modem Regulatory Label." NOTE: Malaysian residents must also attach the SIRIM sticker on top of the Mini PCI card regulatory label, as shown in "Placement of the Mini PCI Modem Regulatory Label." www.dell.com | support.dell.com FILE LOCATION: FILE LOCATION:FILE LOCATION: FILE LOCATION: S:\PERIPHS\COMM\Harrier\Label Tech Sheet\9C727am0.fm DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 Placement of the Mini PCI Card Regulatory Label NOTE: The label shown is a sample only. It may not be representative of characters and words appearing on your enclosed label. OR mini PCI card regulatory label place the SATRA or SIRIM sticker here FILE LOCATION: FILE LOCATION:FILE LOCATION: FILE LOCATION: S:\PERIPHS\COMM\Harrier\Label Tech Sheet\9C727am0.fm DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 www.dell.com | support.dell.com DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 NOTE: The label shown is a sample only. It may not be representative of characters and words appearing on your enclosed label . mini PCI card regulatory label place the SATRA or SIRIM sticker here www.dell.com | support.dell.com FILE LOCATION: FILE LOCATION:FILE LOCATION: FILE LOCATION: S:\PERIPHS\COMM\Harrier\Label Tech Sheet\9C727am0.fm DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 DELL CONFIDENTIAL ñ PRELIMINARY 12/5/00 ____________________ Information in this document is subject to change without notice. © 2000 Dell Computer Corporation. All rights reserved. Printed in the U.S.A. Trademarks used in this text: Dell and the DELL logo are trademarks of Dell Computer Corporation. Other trademarks and trade names may be used in this document to refer to either the entities claiming the marks and names or their products. Dell Computer Corporation disclaims any proprietary interest in trademarks and trade names other than its own.

Operational Description

NEDERLAND B.V. Aug2000 DESCRIPTION ORINOCO MiniPCI Radio Module 2.4 GHz (World) This ORINOCO MiniPCI radio module provides a (WaveLAN compatible) wireless connection for portable and mobile computers in accordance with IEEE standard 802.11 DSSS. It can work at 11, 5.5, 2 or 1 Mbps. The operation is in accordance with IEEE 802.11. The product, one piece of hardware, contains the following blocks: - MiniPCI interface - Wireless Medium Access Control (WMAC); this chip is used for handshaking with the PCI bus and for handling the IEEE protocol; it also does frequency management and interfaces to FlashROM for parameters on frequencies and Call codes. Here also selection for 11, 5.5, 2 or 1 Mbps is handled. - Digital signal processor takes care of all modulation/demodulation for DSSS for all above rates and can do selection out of 2 receiving antennae - Antenna function, provides a connection to external antenna.. Optionally it can be equipped with a factory installable data encryption feature (WEP). Block Diagram MiniPCI Interface Connector The technical specification is as follows on the next page. Antenna Conn . WMAC DIGITAL SIGNAL PROCESSOR NEDERLAND B.V. Aug2000 TECHNICAL SPECIFICATION ORINOCO MiniPCI Radio Module 2.4 GHz (World) Data Signalling Rate:11, 5.5, 2 or 1 Mbit/s Media Access Protocol:According to IEEE 802.11 DSSS, CSMA/CA (Collision Avoidance) Bit Error Rate:Better than 10-8 Base-Band Modulation:- 2 Mbps: Differential Quadrature Phase Shift (before spreading) Keying (DQPSK) 2 bits/symbol - 11 and 5.5 Mbps: Complementary Code Keying Differential Quadrature Phase Shift Keying (DQPSK CCK) Spread Spectrum:Direct Sequence with 11 chips/symbol interval. Pseudo random Barker code sequence: { 1 -1 1 1 -1 1 1 1 -1 -1 -1 } Chipping Rate: 11 Mchips/s Carrier Frequency:Selectable from factory pre-programmed set according to IEEE 802.11: 2412, 2417, 2422, 2427, 2432, 2437, 2442, 2447, 2452, 2457 and 2462 MHz Peak Output Power:< 32 mW rms power (15 dBm)

Parts List/Tune Up Info

The content of this document is "LUCENT TECHNOLOGIES’ intellectual property" and is the property of LUCENT TECHNOLOGIES. It is to be treated as strictly confidential and is not to be disclosed, reproduced or used, except as authorised in writing by LUCENT TECHNOLOGIES in connection with the manufacture, maintenance and use of the LUCENT TECHNOLOGIES equipment to which it pertains. Copyright © 2000 LUCENT TECHNOLOGIES . CHANGES:NEXT ASSY (A) New SHEET234567891011 12 13 14 15 SIZEA4A4 A4 A3 A3 REV. A AAAA ADR0389907/00 REVDR-NUMBERINIT.DATE LUCENT TECHNOLOGIES NEDERLAND B.V. / WCND DESIGNER:Jan WielsmaDATE:UNIT: ORINOCO MiniPCI-3a SUPSD.BY:SUPSDS:NAME: BOARD ASSY SA8026 SHEET:1 OF 6 PageTotal SCALE: ITEMPART/DWGREQ'DNAME AND DESCRIPTIONNOTES LUCENT TECHNOLOGIES NEDERLAND B.V. / WCND014890 UNIT: ORINOCO MiniPCI-3a SCALE:REV. A NAME : BOARD ASSY SA8026 SHEET 2 OF 6 COMCODE:DOC. NO.: 014890 ITEMPART/DWGREQ'DNAME AND DESCRIPTIONNOTES LUCENT TECHNOLOGIES NEDERLAND B.V. / WCND014890 UNIT: ORINOCO MiniPCI-3a SCALE:REV. A NAME : BOARD ASSY SA8026 SHEET 3 OF 6 10008453CAP, 10uF, MURATA, GRM230Y5V106Z10C5 C34 C43 20017482CAP, 1uF, MURATA, GRM40X5R105K10C2 C201 30017491CAP, 2.2uF, MURATA, GRM40Y5V225Z10C7 40019064IND, 10uH, MURATA, LQG21C100N00L201 L202 L203 L204 50020522RES, 1.00, KOA, RK73H1JT1R00FR4 R16 60022361RES, 82.5, KOA, RK73H1JT82R5FR236 70027372CAP, 22nF, MURATA, GRM39X7R223K25C11 C261 80028512IND, 1.8nH, COILCRAFT, 0603CS-1N8XKBCL206 L208 90028611IND, 39nH, COILCRAFT, 0603CS-39NXJBCL13 100028823IND, 12nH, TOKO, LL1608-FH12NJL3 L6 L210 110028852IND, 22nH, TOKO, LL1608-FH22NJL4 L9 120028862IND, 27nH, TOKO, LL1608-FH27NJL10 L15 130028872IND, 33nH, TOKO, LL1608-FH33NJL7 L8 140028892IND, 47nH, TOKO, LL1608-FH47NJL1 L14 150028911IND, 68nH, TOKO, LL1608-FH68NJL205 160028931IND, 100nH, TOKO, LL1608-FHR10JL5 170032443RES, 100, KOA, RK73H1ETP1000FR239 R244 R257 180032831RES, 255, KOA, RK73H1ETP2550FR8 190032904RES, 301, KOA, RK73H1ETP3010FR37 R38 R323 R324 200032961RES, 348, KOA, RK73H1ETP3480FR10 210033024RES, 402, KOA, RK73H1ETP4020FR222 R223 R224 R225 220033113RES, 499, KOA, RK73H1ETP4990FR18 R207 R211 230033342RES, 866, KOA, RK73H1ETP8660FR214 R226 240033406RES, 1.00k, KOA, RK73H1ETP1001FR13 R14 R22 R40 R203 R208 250033461RES, 1.15k, KOA, RK73H1ETP1151FR212 260033573RES, 1.50k, KOA, RK73H1ETP1501FR12 R241 R242 270033698RES, 2.00k, KOA, RK73H1ETP2001FR17 R19 R32 R227 R230 R249 R311 R312 280033961RES, 3.83k, KOA, RK73H1ETP3831FR252 290034021RES, 4.42k, KOA, RK73H1ETP4421FR6 300034051RES, 4.75k, KOA, RK73H1ETP4751FR218 310034311RES, 8.87k, KOA, RK73H1ETP8871FR254 3200343611RES, 10.0k, KOA, RK73H1ETP1002FR11 R15 R205 R206 R213 R228 R235 R246 R258 R325 R328 330034531RES, 15.0k, KOA, RK73H1ETP1502FR245 340034657RES, 20.0k, KOA, RK73H1ETP2002FR215 R229 R256 R259 R260 R261 R262 350034856RES, 32.4k, KOA, RK73H1ETP3242FR1 R20 R204 R219 R231 R233 360034931RES, 39.2k, KOA, RK73H1ETP3922FR238 3700349611RES, 42.2k, KOA, RK73H1ETP4222FR3 R21 R28 R29 R30 R31 R34 R35 R247 R250 R319 380035323RES, 100k, KOA, RK73H1ETP1003FR209 R210 R220 390036537CAP, 1.0pF, MURATA, GRM36COG1R0C50C23 C24 C33 C45 C50 C255 C283 400036551CAP, 1.5pF, MURATA, GRM36COG1R5C50C46 410036584CAP, 2.2pF, MURATA, GRM36COG2R2C50C47 C48 C56 C247 420036622CAP, 3.9pF, MURATA, GRM36COG3R9C50C58 C271 430036682CAP, 6.8pF, MURATA, GRM36COG6R8C50C241 C242 440036715CAP, 8.2pF, MURATA, GRM36COG8R2C50C14 C17 C28 C266 C286 450036733CAP, 10pF, MURATA, GRM36COG100C50C52 C60 C61 4600367523CAP, 12pF, MURATA, GRM36COG120J50C13 C15 C18 C21 ITEMPART/DWGREQ'DNAME AND DESCRIPTIONNOTES LUCENT TECHNOLOGIES NEDERLAND B.V. / WCND014890 UNIT: ORINOCO MiniPCI-3a SCALE:REV. A NAME : BOARD ASSY SA8026 SHEET 4 OF 6 C26 C27 C32 C35 C49 C55 C221 C222 C238 C246 C249 C250 C254 C257 C259 C265 C284 C285 C290 4700368112CAP, 22pF, MURATA, GRM36COG220J50C53 C258 C263 C267 C269 C270 C275 C276 C278 C279 C280 C281 480036832CAP, 27pF, MURATA, GRM36COG270J50C208 C209 490036892CAP, 47pF, MURATA, GRM36COG470J50C204 C287 500036997CAP, 120pF, MURATA, GRM36COG121J50C39 C54 C216 C264 C268 C272 C288 5100371413CAP, 1nF, MURATA, GRM36X7R102K50C20 C31 C59 C206 C210 C217 C219 C223 C224 C225 C227 C237 C239 520037152CAP, 1.2nF, MURATA, GRM36X7R122K50C274 C277 530037191CAP, 2.7nF, MURATA, GRM36X7R272K50C262 540037211CAP, 3.9nF, MURATA, GRM36X7R392K50C10 550037261CAP, 10nF, MURATA, GRM36X7R103K16C200 560037273CAP, 15nF, MURATA, GRM36Y5V153Z50C215 C231 C232 5700373144CAP, 100nF, MURATA, GRM36Y5V104Z16C12 C9 C3 C6 C16 C22 C25 C29 C30 C40 C42 C44 C51 C57 C202 C203 C205 C207 C211 C212 C213 C214 C218 C220 C226 C228 C229 C230 C233 C234 C235 C236 C240 C243 C244 C245 C248 C251 C252 C253 C256 C260 C273 C282 580038561IND, 2.7nH, TOKO, LL1005-FH2N7SL11 590038591IND, 4.7nH, TOKO, LL1005-FH4N7KL2 600038662IND, 18nH, TOKO, LL1005-FH18NKL12 L207 6100505112RES, 0, KOA, RM73Z1ETDR2 R24 R25 R33 R234 R255 R306 R314 R317 R318 R320 R322 620050765RES, 10, KOA, RM73B1ETP10RJR9 R23 R36 R201 R221 630050832RES, 20, KOA, RM73B1ETP20RJR216 R217 640050901RES, 39, KOA, RM73B1ETP39RJR243 650050931RES, 51, KOA, RM73B1ETP51RJR7 660050961RES, 68, KOA, RM73B1ETP68RJR327 670051071RES, 200k, KOA, RM73B1ETP2003JR200 680051251RES, 1.0, KOA, RK73H2A1R0FR232 690051391RES, 3.9, KOA, RK73H2A3R9FR237 700100011SA2420, AIC, PHILIPS, SA2420U207 710100032BFP420, TRANSISTOR, SIEMENS, Q62702-F1591Q2 Q204 720100091BFP450, TRANSISTOR, SIEMENS, Q62702-F1590Q1 73010004_1MA-LC22.000MHz, AIC, USI, MA-LC22.000MHzU7 740100113BC847BW, TRANSISTOR, PHILIPS, BC847BWQ200 Q203 Q302 750100121BC857BW, TRANSISTOR, PHILIPS, BC857BWQ205 760100162BCV62, TRANSISTOR, PHILIPS, BCV62BQ201 Q202 770100171TLV431ACDBV5, DIODE, TEXAS, TLV431ACDBV5D200 ITEMPART/DWGREQ'DNAME AND DESCRIPTIONNOTES LUCENT TECHNOLOGIES NEDERLAND B.V. / WCND014890 UNIT: ORINOCO MiniPCI-3a SCALE:REV. A NAME : BOARD ASSY SA8026 SHEET 5 OF 6 780100192LFSN30N17C2450B, AIC, MURATA, LFSN30N17C2450BU8 U16 790100211BAR64_03W, DIODE, SIEMENS, BAR64-03WD202 800100231LFJ30_03B2450BA100, AIC, MURATA, LFJ30_03B2450B…

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Test Report

Measurement file output name is: 5mbit.cnd Input command file name is: INPUT.CMD Note: 5.5 Mbit, 6 dB SIR tested for ( 15 dB SNR - 10.4 + 1 impl. losses). Input CW correction level: 6 dB Takes into account 1 dB of implementation loss (allowed 2 dB). Lowcount is: 1000 messages Only RxD errors are taken into account since these need better SIR then preamble at 1 MBit Highcount is: 50000 messages Attention: Input the red cells for correct spreadsheet calculations! total errors 45 out of 280 measurement points. Rx level DUT is: -53 dBm percentage 16.07% Number of received data errors as a function of frequency and interference level OK? =<20%, OK Not measured combinations listed as "-1" HIJKLMN O PQ RS Uncorrected Interference level dialed at CW generator -60 -59 -58 -57 -56 -55 -54 -53 -52 RxD Errors PDA RxD Errors PDA Both error True CW interference level at receiver input (dBm) detected missing detected missing RxD and -66 -65 -64 -63 -62 -61 -60 -59 -58 full test full test up to CW AT CW PDA J/S ratio (dB) -13 #PDA -12 #PDA -11 #PDA -10 #PDA -9 #PDA -8 #PDA -7 #PDA -6 #PDA -5 #PDA range range =< -59 dBm = -59 dBm =< -59 dBm Frequency (Hz) (J/S = -5-1 dB) (J/S = -5-1 dB) time date 2409000000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:53:49 4/15/99 2409050000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:52:18 4/15/99 2409100000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:50:48 4/15/99 2409150000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:49:19 4/15/99 2409200000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:47:48 4/15/99 2409250000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:46:19 4/15/99 2409300000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:44:49 4/15/99 2409350000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:43:18 4/15/99 2409400000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:41:49 4/15/99 2409450000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:40:18 4/15/99 2409500000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:38:48 4/15/99 2409550000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:37:18 4/15/99 2409600000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:35:48 4/15/99 2409650000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:34:18 4/15/99 2409700000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:32:48 4/15/99 2409750000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:31:17 4/15/99 2409800000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:29:47 4/15/99 2409850000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:28:17 4/15/99 2409900000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:26:46 4/15/99 2409950000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:25:16 4/15/99 2410000000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:23:45 4/15/99 2410050000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:22:15 4/15/99 2410100000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:20:45 4/15/99 2410150000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:19:14 4/15/99 2410200000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:17:44 4/15/99 2410250000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:16:14 4/15/99 2410300000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:14:43 4/15/99 2410350000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:13:13 4/15/99 2410400000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:11:42 4/15/99 2410450000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:10:12 4/15/99 2410500000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:08:42 4/15/99 2410550000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:07:12 4/15/99 2410600000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:05:42 4/15/99 2410650000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:04:12 4/15/99 2410700000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:02:42 4/15/99 2410750000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:01:11 4/15/99 2410800000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD …

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Test Report

Nederland B.V. WCND Report No. 015127, Rev. A TEST REPORT Subject: Processing Gain For the ORiNOCO IEEE802…

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Contact Information

Applicant

Maarten Visee(Hardware/Development Manager)
[email protected]31 30 609-7458Fax: 31 30 609-7446

Test Firm

MET LaboratoriesAlvin Ilarina
[email protected]408-919-3774Fax: 1234567890

Technical Specifications

#Rule PartsFrequency RangePower OutputTolerance
115C2.41 GHz - 2.46 GHz1.00 mWppm
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
LMA - Modular device approved for installation exclusively in products listed on the original application.

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