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CJ6PS460WLWireless LAN

Dynabook Inc.
Wireless LAN - FCC ID CJ6PS460WL - Dynabook Inc.
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Nov 08, 2000
Application Purpose
Original Equipment
Date of Application
Nov 08, 2000
Equipment Note
Wireless LAN
Frequency Range
2412.00000000 - 2472.00000000
Company
Dynabook Inc.
Country
Japan

Documents & Files

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Users Manual

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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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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 Toshiba Wireless LAN Mini PCI Card products are designed to be interoperable 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. Wireless LAN and your Health Wireless LAN products, like other radio devices, emit radio frequency electromagnetic energy. The level of energy emitted by Wireless LAN devices however is far much less than the electromagnetic energy emitted by wireless devices like for example mobile phones. Because Wireless LAN products operate within the guidelines found in radio frequency safety standards and recommendations, Toshiba believes Wireless LAN 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 Wireless LAN may be restricted by the proprietor of the building or responsible representatives of the organization. These situations may for example include: ¦ Using the Wireless LAN 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 Wireless LAN device prior to turning on the equipment. Regulatory Information The Toshiba Wireless LAN Mini PCI Card must be installed and used in strict accordance with the manufacturer’s instructions as described in the user documentation that comes with the product. This device complies with the following radio frequency and safety standards. Canada – Industry Canada (IC) This device complies with RSS 210 of Industry Canada. Operation is subject to the following two conditions: (1) this device may not cause interference , and (2) this device must accept any interference, including interference that may cause undesired operation of this device.” L ‘ utilisation de ce dispositif est autorisée seulement aux conditions suivantes : (1) il ne doit pas produire de brouillage et (2) l’ utilisateur du dispositif doit étre prét à accepter tout brouillage radioélectrique reçu, même si ce brouillage est susceptible de compromettre le fonctionnement du dispositif. Europe – EU Declaration of Conformity This device complies with the essential requirements of the R&TTE Directive 1999/5/EC with essential test suites as per standards: ¦ EN 60950 Safety of Information Technology equipment ¦ ETS 300 328 Technical requirements for radio equipment ¦ ETS 300 826 General EMC requirements for radio equipment. For outdoor usage only channel 10 (2457 MHz) and 11 (2462 MHz) is allowed. For private usage outside buildings across public grounds over less than 300m no special registration with IBPT/BIPT is required. Registration to IBPT/BIPT is required for private usage outside buildings across public grounds over more than 300m. An IBPT/BIPT license is required for public usage outside building. For registration and license please contact IBPT/BIPT. Gebruik buiten gebouw alleen op kanalen 10 (2457 MHz) en 11 (2462 MHz). Voor privé-gebruik buiten gebouw over publieke groud over afstand kleiner dan 300m geen registratie bij BIPT/IBPT nodig; voor gebruik over afstand groter dan 300m is wel registratie bij BIPT/IBPT nodig. Voor publiek gebruik buiten gebouwen is licentie van BIPT/IBPT verplicht. Voor registratie of licentie kunt u contact opnemen met BIPT. België/ Belgique: L’utilisation en extérieur est autorisé sur le canal 10 (2457 MHz) et 11 (2462 MHz). Dans le cas d’une utilisation privée, à l’extérieur d’un bâtiment, au-dessus d’un espace public, aucun enregistrement n’est nécessaire pour une distance de moins de 300m. Pour une distance supérieure à 300m un enregistrement auprès de I’IBPT est requise. Pour une utilisation publique à I’extérieur de bâtiments, une licence de I’IBPT est requise. Pour les enregistrements et licences, veuillez contacter I’IBPT. License required for outdoor installations. Check with reseller for procedure to followDeutschland : Anmeldung im Outdoor-Bereich notwendig, aber nicht genehmigungspflichtig. Bitte mit Händler die Vorgehensweise abstimmen. Restricted frequency band: only channels 10 and 11 (2457 MHz and 2462 MHz respectively) may be used in France. License required for every installation, indoor and outdoor installations. Please contact ART for procedure to follow. France: 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 I’Autorité de Régulation des Télécommuniations (http://www.art-telecom.fr) pour la procédure à suivre. License required for indoor use. Use with outdoor installations not allowedItalia: 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. License required for outdoor installations. Check with reseller for procedure to followNederland Licentie verplicht voor gebruik met buitenantennes. Neem contact op met verkoper voor juiste procedure USA-Federal Communications Commission(FCC) This device complies with Part 15 of FCC Rules. Operation of the devices in a Wireless LAN System is subject to the following two conditions: ¦ This device may not cause harmful interference. ¦ This device must accept any interference t…

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Cover Letter(s)

Exhibit 13: Cover Letters November 9, 2000 FEDERAL COMMUNICATIONS COMMISSION Equipment Authorization Division 7435 Oakland Mills Road Columbia, MD 21046 To Whom It May Concern: Enclosed is the documentation for a spread spectrum transmitter operating under FCC Part 15, Subpart C, Section 15.247. This application was certified by Communication Certification Laboratory (CCL) under the TCB (Scope A4) program. The applicant, model number and FCC ID are listed below: Applicant:Toshiba Corporation, Product Safety Group Model:Satellite Pro 4600 FCC ID:CJ6PS460WL Please let me know if I can be of further assistance. Sincerely yours, COMMUNICATION CERTIFICATION LABORATORY Joseph W. Jackson V.P. Marketing

ID Label/Location Info

Regulatory Label

Operational Description

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 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 refoscand load osc load Amp PFB 352MHz saw D A D A MAC SRAM 128k x 8 32k x 8 70ns 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 BlockdiagrammLucent 2.4GHz WaveLAN

RF Exposure Info

Exhibit 11: RF Exposure/Environmental Evaluation Section 15.247 (b)(4) Requirement: Spread spectrum devices shall be operated in a manner that ensures that the public in not exposed to radio frequency energy levels in excess of the Commission’s guidelines. See § 1.1307(b)(1) and 2.1093 of this chapter. All equipment shall be considered to operate in a “general population/uncontrolled” environment. Applications for equipment authorization of devices operating under this section must contain a statement confirming compliance with these requirements for both fundamental emissions and unwanted emissions. Technical information showing the basis for this statement must be submitted to the Commission upon request. Demonstration of Compliance: The Satellite Pro 4600 is classified as a portable device, which is designed so that a minimum separation distance of 5.0 centimeters is maintained between the transmitter’s radiating structure and the body of the user or nearby persons, and it does not operate in the one of the services listed in § 2.1093(c). Therefore, the Satellite Pro 4600 is categorically excluded from routine environmental evaluation for RF exposure as per § 2.1093(c). The user’s manual contains a warning statement that instructs the user that the 5.0 centimeter separation distance must be maintained in order to comply with the RF exposure requirement. Sample of RF Exposure Statement: Caution: Exposure to Radio Frequency Radiation. The radiated output power of the Toshiba Wireless LAN Mini PCI Card is far below the FCC radio frequency exposure limits. Nevertheless, the Toshiba Wireless LAN Mini PCI Card shall be used in such a manner that the potential for human contact during normal operation is minimized. When using this device in combination with Wireless LAN Outdoor Antenna products, a certain separation distance between antenna and nearby persons has to be kept to ensure RF exposure compliance. The distance between the antennas and the user should not be less than 5 cm. Refer to the Regulatory Statements as identified in the documentation that comes with those products for additional information. The Toshiba Wireless LAN Mini PCI Card is far below the FCC radio frequency exposure limits. Nevertheless, it is advised to use the Toshiba Wireless LAN Mini PCI Card in such a manner that human contact during normal operation is minimized.

Test Report

CETECOM ICT Services GmbH Radio Satelite Communication Untertürkheimer Straße 6-10 . D-66117 SaarbrückenTelefon: +49 (0)681 598-9100Telefax: -9075 RSC14issue test report consist of 93 PagesPage 1 (93) Test report no.: 2-2275-A/00 FCC Part 15.247 Toshiba Notebook Satellite Pro 4600 Accredited Testing Laboratory DAR-Registration number: TTI-P-G 166/98-00 CETECOM ICT Services GmbH Test report nr.:2-2275-A/00Issue date:28.09.2000Page 2 (93) Table of Contents 1 General information 1.1 Notes 1.2 Testing laboratory 1.3 Details of applicant 1.4 Application details 1.5 Test item 1.6 Test standards 2 Technical test 2.1 Summary of test results 2.2 Test report 1 General information 1.1 Notes The test results of this test report relate exclusively to the test item specified in 1.5. The CETECOM ICT Services GmbH does not assume responsibility for any conclusions and generalisations drawn from the test results with regard to other specimens or samples of the type of the equipment represented by the test item. The test report may only be reproduced or published in full. Reproduction or publication of extracts from the report requires the prior written approval of the CETECOM ICT Services GmbH. 1.2Testing laboratory CETECOM ICT Services GmbH 66117 Saarbrücken Untertürkheimer Straße 6 - 10 Deutschland Telefone: + 49 681 598 - 9100 Telefax : + 49 681 598 - 9075 E-mail: [email protected] Internet: www.cetecom.de Accredited testing laboratory DAR-registration number : TTI-P-G 166/98-00 CETECOM ICT Services GmbH Test report nr.:2-2275-A/00Issue date:28.09.2000Page 3 (93) 1.3Details of applicant Name :Toshiba Corp., Digital Media Network Co. Product Safety Group, Technology and Quality Management Division Street :1-1 Shibaura 1-Chome City :Minarto-ku, Tokyo 105-8001, Country :Japan Telephone:+81 (3) 3457 2565 Telefax :+81 (3) 5444 9404 Contact :Mr. K.Inada Telephone:+81 (3) 3457 2565 1.4Application details Date of receipt of application : 21.09.00 Date of receipt of test item : 21.09.00 Date of test : 28.09.00 1.5Test item Type of equipment : Notebook with integrated RLAN Type designation: Toshiba Satellite Pro 4600 Manufacturer:applicant Street: City: Country: Serial number: Additional informations:: Frequency:2400 – 2483.5 MHz Type of modulation:22M0P7D (DSSS) Number of channels :13 Antenna:integral antenna Power supply:5V DC powered by PC / Laptop Output power:max. 20 mW Type of equipment:Temperature range : -10°C - +55°C 1.6Test standards: FCC Part 15 §15.247 CETECOM ICT Services GmbH Test report nr.:2-2275-A/00Issue date:28.09.2000Page 4 (93) 2 Technical test 2.1Summary of test results No deviations from the technical specification(s) were ascertained in the course of the tests performed. Technical responsibility for area of testing : 09.11.00RSC 8412Hausknecht DateSectionNameSignature Technical responsibility for area of testing : 09.11.00RSC8414Ames DateSectionNameSignature CETECOM ICT Services GmbH Test report nr.:2-2275-A/00Issue date:28.09.2000Page 5 (93) 2.2Testreport TEST REPORT Testreport no. : 2-2275-A/00 CETECOM ICT Services GmbH Test report nr.:2-2275-A/00Issue date:28.09.2000Page 6 (93) TEST REPORT REFERENCE LIST OF MEASUREMENTS ParagraphPARAMETER TO BE MEASUREDPAGE Transmitter parameters § 15.247 (a)(2)Spectrum Bandwith of a DSSS System 7 § 15.247 (b)(1)Maximum peak output power11 § 15.247 (c)(1)Emission limitations 13 § 15.247 (d)Power Spectral Density24 § 15.247 (e)Processing Gain of DSSS System28 § 15.107Conducted emissions36 Receiver parameters § 15.209Spurious radiations - Radiated38 Test equipment listing42 Photographs of the equipment44 Annex 1-4Measuring results processing gain47 CETECOM ICT Services GmbH Test report nr..:2-2275-A/00Issue Date: 28.09.2000Page 7 (93) Equipment under test : Satellite Pro 4600 Ambient temperature: 20°C Relative humidity : 51% REFERENCE NUMBER(S) OF TEST EQUIPMENT USED (for reference numbers see test equipment listing) 64 SPECTRUM BANDWITH OF DSSS-SYSTEMSUBCLAUSE § 15.247 (a)(2) TEST CONDITIONS6 dB BANDWIDTH ( kHz ) Frequency (MHz)241224422472 T nom ( 20 )°C V nom ( 5.0 )V104501048010500 Measurement uncertainty±3dB LIMIT SUBCLAUSE §15.247(a) (2) The minimum 6dB bandwith shall shall be at least 500 KHz CETECOM ICT Services GmbH Test report nr..:2-2275-A/00Issue Date: 28.09.2000Page 8 (93) Equipment under test : Satellite Pro 4600 Ambient temperature: 20°C Relative humidity : 51% REFERENCE NUMBER(S) OF TEST EQUIPMENT USED (for reference numbers see test equipment listing) 64 SPECTRUM BANDWITH OF DSSS-SYSTEMSUBCLAUSE § 15.247 (a)(2) 2412 MHz SWT 1 s A UnitdBm RF Att 20 dB Ref Lvl 10 dBm Ref Lvl 10 dBm RBW 100 kHz VBW 1 MHz 2.5 MHz/Center2.412 GHzSpan25 MHz 1VIEW1MA -90 -80 -70 -60 -50 -40 -30 -20 -10 0 10 1 Marker 1 [T1] 3.36 dBm 2.41357816 GHz REF 3.36 dBm TH -2.64 dBm F1 F2 Date: 28.SEP.2000 16:12:52 LIMIT SUBCLAUSE §15.247(a) (2) The minimum 6dB bandwith shall shall be at least 500 KHz , here 10.45 MHz CETECOM ICT Services GmbH Test report nr..:2-2275-A/00Issue Date: 28.09.2000Page 9 (93) Equipment under test : Satellite Pro 4600 Ambient temperature: 20°C Relative humidity : 51% REFERENCE NUMBER(S) OF TEST EQUIPMENT USED (for reference numbers see test equipment listing) 64 SPECTRUM BANDWITH OF DSSS-SYSTEMSUBCLAUSE § 15.247 (a)(2) 2442 MHz SWT 1 s A UnitdBm RF Att 20 dB Ref Lvl 10 dBm Ref Lvl 10 dBm RBW 100 kHz VBW 1 MHz 2.5 MHz/Center2.442 GHzSpan25 MHz 1VIEW1MA -90 -80 -70 -60 -50 -40 -30 -20 -10 0 10 1 Marker 1 [T1] 3.38 dBm 2.44357816 GHz REF 3.38 dBm TH -2.62 dBm F1 F2 Date: 28.SEP.2000 16:30:50 LIMIT SUBCLAUSE §15.247(a) (2) The minimum 6dB bandwith shall shall be at least 500 KHz , here 10.48 MHz CETECOM ICT Services GmbH Test report nr..:2-2275-A/00Issue Date: 28.09.2000Page 10 (93) Equipment under test : Satellite Pro 4600 Ambient temperature: 20°C Relative humidity : 51% REFERENCE NUMBER(S) OF TEST EQUIPMENT USED (for reference numbers see test equipment listing) 64 SPECTRUM BANDWITH OF DSSS-SYSTEMSUBCLAUSE § 15.247 (a)(2) 2472 MHz SWT 1…

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Test Setup Photos

CETECOM ICT Services GmbH Test report nr..:2-2275-A/00Issue Date: 28.09.2000Page 48 (97) Test site RADIATED EMISSIONS Picture 1: CETECOM ICT Services GmbH Test report nr..:2-2275-A/00Issue Date: 28.09.2000Page 49 (97) Test site RADIATED EMISSIONS Picture 2: CETECOM ICT Services GmbH Test report nr..:2-2275-A/00Issue Date: 28.09.2000Page 50 (97) Test site RADIATED EMISSIONS Picture 3:

Contact Information

Applicant

Ryuichi Kamimura(Senior Manager)
[email protected]81-50-5357-9251Fax: 81-42-534-1175

Technical Contact

CETECOM ICT Services GmbHGerardo Medina
[email protected]49(0)681 598-9100

66117 Saarbrucken · Deutschland · Germany

Test Firm

Cetecom ICT Services GmbHRalf Hoehn
[email protected]49-681-598-8455Fax: 49-681-598-8475

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.47 GHz20.00 mW
Confidentiality
Long Term
Grant Notes
The antenna used for this transmitter must be installed to provide a seperation distance of at least 5 cm from all persons and must not be co-located or operating in conjuction with any other antenna or transmitter. End-users must be provided with specific operating instructions for satisfying RF exposure compliance. Power output listed is peak conducted ERP.

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