
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
8F, 150, Chien-I Road, Chung Ho City, Taipei Hsien, Taiwan, R.O.C. TEL: 886-2-8226-5088 FAX: 886-2-8226-5077 E-mail: [email protected] Inform Letter Dear Customer, According to FCC’s regulation, the following Declaration of Conformity has to be made by a company located in USA. They are: This device has been confirmed to be in compliance with the requirements of ANSI C63.4 & FCC part 15 regulations. The test result has been shown in the ADT test report with number RF910304R01. And this compliance is subject to the following two conditions: (1) This device may not cause harmful interference and, (2) This device must accept any interference received, including interference that may cause undesired operation. This declaration can be a separate sheet and be sure that the following message will be also included in this declaration: 1) Product name, model name and trade name. 2) Company name, and address of the one who is responsible for this declaration. 3) Name, title, telephone and fax number as well as the signature of the contact person. Thanks for your attention. Technologies, Inc.
User’s Guide BT-0030H Bluetooth USB Dongle Ver 1.0 2 REGULATION INFORMATION The Bluetooth USB Dongle must be installed and used in strict accordance with the manufacturer’s instructions. This device complies with the following radio frequency and safety standards. FCC (Federal Communications Commission) This device complies with Part 15 of FCC Rules. Operation is subject to the following two conditions: 1. This device may not cause harmful interference. 2. This device must accept any interference that may cause undesired operation. FCC Radiation Exposure Statement This equipment complies with FCC radiation exposure limits set forth for an uncontrolled environment. This equipment should be installed and operated with minimum distance 20cm between the radiator & your body. This transmitter must not be co-located or operating in conjunction with any other antenna or transmitter. The 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 and, if not installed and used in accordance with the instruction, may cause harmful interference to radio communication. However, there is no grantee that interference will not occur in a particular installation. If this equipment dose 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 to correct the interference by one or more of the following measures: --Reorient or relocate the receiving antenna. --Increase the separation between the equipment and receiver. --Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. --Consult the dealer or an experienced radio/TV technician for help. Notice: The Part 15 radio device operates on a non-interference basis with other devices operating at this frequency. Any changes or modification not expressly approved by the party responsible could void the user’s authority to operate the device. 3 R&TTE Directive This device complies with the specifications listed below: • ETS 301-489 -1&-17 General EMC requirements for Radio equipment. • ETS 300-328 Technical requirements for Radio equipment. • EN60950 Safety Requirements for Radio equipment 4 Table of Contents REGULATION INFORMATION.............................................. 2 1. Introduction....................................................................... 5 1.1 Bluetooth TM Technology................................................... 5 1.2 Bluetooth USB Dongle.................................................... 5 2. Software Installation............................................................ 6 2.1 System Requirements..................................................... 7 2.2 Before Installing............................................................. 7 2.3 Install Widcomm Bluetooth software................................... 8 3. Hardware Installation........................................................... 15 4. Using Software................................................................... 16 4.1 Local Device services..................................................... 17 4.2 Bluetooth Neighborhood services...................................... 17 5. Bluetooth of windows Console............................................... 20 5.1 Bluetooth Configuration................................................... 22 6. Specification...................................................................... 23 Product names mentioned herein may be trademarks and/or registered trademarks of their respective companies. 5 1. Introduction 1.1 Bluetooth TM Technology The Bluetooth TM wireless technology is a short-range radio technology being developing by Ericsson, Intel, 3Com, Nokia, Toshiba, and other well-known companies. The Bluetooth TM wireless technology, based on a low-cost and short-range radio link, helped to get rid of the cables that were used in the home and office to connect devices together: desktops, laptops, telephones, printers, PDAs, fax machines, keyboards, and other similar digital products. Meanwhile, it can easily simplify both communication and synchronization between devices. Any digital device that utilizes the Bluetooth TM wireless technology will be able to take advantage of the technology. 1.2 Bluetooth USB Dongle The Bluetooth USB Dongle built-in Bluetooth TM wireless technology allows a computer with a USB port to communicate with other Bluetooth-enabled devices. The Bluetooth USB Dongle bundles a Bluetooth software driver for performing wireless network applications such as file transfer, network access, dial-up networking and so on. 6 2. Software Installation Through simplified installation of the Bluetooth TM software, you can easily establish wireless communication among all Bluetooth TM -enabled devices. In the Bluetooth Neighborhood window as figure 2.1.1, you can clearly see all Bluetooth TM devices surround you and easily gain further diverse functions with them. Furthermore, you can get rid of those awkward cables from now on. Figure 2.1.1 Bluetooth Neighborhood window Note: Please close other running applications before the installation of Bluetooth software. 7 2.1 System Requirements It is necessary to install corresponding application software before starting to use Bluetooth USB Dongle. Therefore, please check your system in advance and ensure it meets in the minimum requirements as described below. - Processor: Intel Celeron / Pentium III / Pentium IV; AMD Duron / Athlon - Operating System: Microsoft Windows 98SE / ME / 2000 / XP - System memory: 32MB at least - Hard Drive Free Space: 11.5MB 2.2 Before Installing To prevent potential problem during intstalling the software, please do not plug the Bluetooth USB Don…
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8F, 150, Chien-I Road, Chung Ho City, Taipei Hsien, Taiwan, R.O.C. TEL: 886-2-8226-5088 FAX: 886-2-8226-5077 E-mail: [email protected] Design Description Letter FCC ID: PANBT0030H This device is a BlueTooth compatible product. The chip solution BC01 provided by CSR has been integrated into this product. The chip solution BC01 has been qualified by WECA as a standard BlueTooth one in which the hopping nature fulfill the BlueTooth protocal. This chip solution has included the mixer, PN code generator and decoder, modulation stage etc. CC&C integrate this chip with their own-designed LNA, PA and also the USB inteferface circuit. This chip solution, BC01, has been certified under FCC ID: O2Z-BT2. Technologies, Inc.
Page 1 ANNEX PHOTOGRAPHS OF EUT Page 2
FCC ID : PANBT0030H Bluetooth USB Dongle Power Rating : 5V MAC: 000272F00001 29 mm 19 mm Tested to Complywith FCC Standards FOR HOME OR OFFICE USE Made In Taiwan BT-0030H Front SideBack Side Technologies,Inc. Bluetooth USB Dongle Confidential Product Label
FCC ID : PANBT0030H Bluetooth USB Dongle Power Rating : 5V MAC: 000272F00001 29 mm 19 mm Tested to Complywith FCC Standards FOR HOME OR OFFICE USE Made In Taiwan BT-0030H Front SideBack Side Technologies,Inc. Bluetooth USB Dongle Confidential Product Label
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FCC ID: PANBT0030H ADT No.910304R01 Operational Description The transmitter of the EUT is powered by host equipment from USB port. The antenna is printed antenna, and there is no antenna connector. Under normal use condition, the user has to keep at least 20cm separation distance between radiator and the body of the user. The other instruction, please have a look at the users manual. This device is a Frequency Hopping device with 79 hopping frequencies. The declared output power is only +10dBm.
ADT No: 910304R01 1 FCC TEST REPORT REPORT NO.: RF910304R01 MODEL NO.: BT-0030H BT007 ACCORDING: FCC Guidelines for Human Exposure IEEE C95.1 APPLICANT:CC&C TECHNOLOGIES, INC. ADDRESS: 8F, N0. 150, CHIEN I ROAD, CHUNG HO CITY, Taiwan, R.O.C. ISSUED BY:Advance Data Technology Corporation LAB LOCATION:47 14th Lin, Chiapau Tsun, Linko, Taipei, Taiwan, R.O.C. 0528 ILAC MRA Lab Code: 200102-0 ADT No: 910304R01 2 RF Exposure Measurement 1. Introduction 2.4 GHz frequency band is regarded specially as a dangerous band for its heating harmfulness to the human body. That’s why microwave oven is operating in this frequency band. The manufacturer whose product is working in this frequency band is obligatory to prove the harmfulness of his product. In this document, we try to prove the safety of radiation harmfulness to the human body for our product. The limit for Maximum Permissible Exposure (MPE) specified in FCC 1.1310 is followed. The Gain of the antenna used in this product is measured in a Fully Anechoic Chamber (FAC) calibrated for antenna measurement in ADT, and also the maximum total power input to the antenna is measured. Through the Friis transmission formula and the maximum gain of the antenna, we can calculate the distance, away from the product, where the limit of MPE is reached. Although the Friis transmission formula is a far field assumption, the calculated result of that is an over-prediction for near field power density. We will take that as the worst case to specify the safety range. 2. RF Exposure Limit According to FCC 1.1310: The criteria listed in the following table shall be used to evaluate the environmental impact of human exposure to radio-frequency (RF) radiation as specified in 1.1307(b) LIMITS FOR MAXIMUM PERMISSIBLE EXPOSURE (MPE) Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (A/m) Power Density (mW/cm 2 ) Average Time (minutes) (A)Limits For Occupational / Control Exposures 300-1500......F/3006 1500-100,000......56 (B)Limits For General Population / Uncontrolled Exposure 300-1500......F/15006 1500-100,000......1.030 F = Frequency in MHz ADT No: 910304R01 3 3. Friis Formula Friis transmission formula : Pd = (Pout*G) / (4*pi*r 2 ) where Pd = power density in mW/cm 2 Pout = output power to antenna in mW G = gain of antenna in linear scale Pi = 3.1416 R = distance between observation point and center of the radiator in cm Pd is the limit of MPE, 1 mW/cm 2 . If we know the maximum Gain of the antenna and the total power input to the antenna, through the calculation, we will know the distance r where the MPE limit is reached. Ref. : David K. Cheng, Field and Wave Electromagnetics, Second Edition, Page 640, Eq. (11-133). 4 EUT Operating condition The software provided by Manufacturer enabled the EUT to transmit and receive data at lowest, middle and highest channel individually. 5 Climate Condition The temperature and related humidity: 20 deg. C and 50 % RH 6. Classification This device is not fixed inside the host equipment, it is connected with host through wire. So it is easy to be re-located in the place where at least 20 cm far away from the body of the user. Warning statement to the user for keeping at least 20cm or more separation distance with the antenna should be included in users manual. So, this device is classified as Mobile Device. ADT No: 910304R01 4 7 Test Results 7.1 Antenna Gain The maximum Gain measured in Fully Anechoic Chamber is 3.5dBi or 2.24 (numeric). 7.2 Output Power Into Antenna & RF Exposure Distance : CHANNEL CHANNEL FREQUENCY (MHz) OUTPUT POWER TO ANTENNA (mW) MINIMUM ALLOWABLE DISTANCE ( r ) FROM SKIN (Centi-Meter) 124129.641.31 6243710.021.34 1124629.751.32 The minimum allowable distance is very close to the enclosure of the antenna. So, the user has no need to worry about the harmfulness of radiation. But it is recommended to always keep, at least, 20 cm separation distance with the antenna.
FCC ID: PANBT0030H Report No.: RF910304R01 27 Issued: March 11, 2002 4.4 CHANNEL BANDWIDTH 4.4.1 LIMITS OF CHANNEL BANDWIDTH For frequency hopping system operating in the 2400-2483.5 MHz and 5725-5850 MHz bands, the maximum 20 dB bandwidth of the hopping channel is 1 MHz. 4.4.2 TEST INSTRUMENTS Description & ManufacturerModel No.Serial No.Calibrated Until SPECTRUM ANALYZERFSEK30100049July 17, 2002 NOTES: 1.The measurement uncertainty is less than +/- 2.6dB, which is calculated as per the NAMAS document NIS81. 2.The calibration interval of the above test instruments is 12 months. And the calibrations are traceable to NML/ROC and NIST/USA. FCC ID: PANBT0030H Report No.: RF910304R01 28 Issued: March 11, 2002 4.4.3 TEST PROCEDURE 1. Check the calibration of the measuring instrument using either an internal calibrator or a known signal from an external generator. 2. Turn on the EUT and connect it to measurement instrument. Then set it to any one convenient frequency within its operating range. Set a reference level on the measuring instrument equal to the highest peak value. 3. Measure the frequency difference of two frequencies that were attenuated 20dB from the reference level. Record the frequency difference as the emission bandwidth. 4. Repeat above procedures until all frequencies measured were complete. 4.4.4 TEST SETUP 4.4.5 EUT OPERATING CONDITION The software provided by client enabled the EUT to transmit and receive data at lowest, middle and highest channel frequencies individually. EUT SPECTRUM ANALYZER FCC ID: PANBT0030H Report No.: RF910304R01 29 Issued: March 11, 2002 4.4.6 TEST RESULTS CHANNEL CHANNEL FREQUENCY (MHz) 20 dB BANDWIDTH (kHz) MAXIMUM LIMIT (MHz) PASS/FAIL 02402881.761PASS 392441901.801PASS 782480926.851PASS FCC ID: PANBT0030H Report No.: RF910304R01 30 Issued: March 11, 2002 Channel 0 FCC ID: PANBT0030H Report No.: RF910304R01 31 Issued: March 11, 2002 Channel 39 FCC ID: PANBT0030H Report No.: RF910304R01 32 Issued: March 11, 2002 Channel 78 FCC ID: PANBT0030H Report No.: RF910304R01 33 Issued: March 11, 2002 4.5 HOPPING CHANNEL SEPARATION 4.5.1 LIMIT OF HOPPING CHANNEL SEPARATION At least 25KHz or 20dB bandwidth (whichever is greater). 4.5.2 TEST INSTRUMENTS Description & ManufacturerModel No.Serial No.Calibrated Until SPECTRUM ANALYZERFSEK30100049July 17, 2002 NOTES: 1.The measurement uncertainty is less than +/- 2.6dB, which is calculated as per the NAMAS document NIS81. 2.The calibration interval of the above test instruments is 12 months. And the calibrations are traceable to NML/ROC and NIST/USA. FCC ID: PANBT0030H Report No.: RF910304R01 34 Issued: March 11, 2002 4.5.3 TEST PROCEDURES 1. Check the calibration of the measuring instrument using either an internal calibrator or a known signal from an external generator. 2. Turn on the EUT and connect it to measurement instrument. Then set it to any one convenient frequency within its operating range. 3. By using the MaxHold function record the separation of two adjacent channels. 4. Measure the frequency difference of these two adjacent channels by SA MARK function. And then plot the result on SA screen. 5. Repeat above procedures until all frequencies measured were complete. 4.5.4 TEST SETUP 4.5.5 TEST RESULTS Channel Frequency (MHz) Adjacent Channel Separation Minimum Limit (kHz) Pass / Fail 024021MHz881.76PASS 3924411MHz901.80PASS 7824801MHz926.85PASS The minimum limit is 20dB bandwidth. Test results please refer to next three pages. EUT SPECTRUM ANALYZER FCC ID: PANBT0030H Report No.: RF910304R01 35 Issued: March 11, 2002 Channel 0 FCC ID: PANBT0030H Report No.: RF910304R01 36 Issued: March 11, 2002 Channel 39 FCC ID: PANBT0030H Report No.: RF910304R01 37 Issued: March 11, 2002 Channel 78 FCC ID: PANBT0030H Report No.: RF910304R01 38 Issued: March 11, 2002 4.6 MAXIMUM PEAK OUTPUT POWER 4.6.1 LIMITS OF MAXIMUM PEAK OUTPUT POWER MEASUREMENT The Limit of Maximum Peak Output Power Measurement is 30dBm. 4.6.2 INSTRUMENTS Description & ManufacturerModel No.Serial No.Calibrated Until SPECTRUM ANALYZERFSEK30100049July 17, 2002 NOTES: 1.The measurement uncertainty is less than +/- 2.6dB, which is calculated as per the NAMAS document NIS81. 2.The calibration interval of the above test instruments is 12 months. And the calibrations are traceable to NML/ROC and NIST/USA. FCC ID: PANBT0030H Report No.: RF910304R01 39 Issued: March 11, 2002 4.6.3 TEST PROCEDURES 1. Check the calibration of the measuring instrument using either an internal calibrator or a known signal from an external generator. 2. Turn on the EUT and connect it to measurement instrument. Then set it to any one convenient frequency within its operating range. Set a reference level on the measuring instrument equal to the highest peak value. 3. The center frequency of the spectrum analyzer is set to the fundamental frequency and using 2 MHz RBW and 3 MHz VBW. 4. Measure the frequency difference of two frequencies that were attenuated 20dB from the reference level. Record the frequency difference as the emission bandwidth. 5. Repeat above procedures until all frequencies measured were complete. 4.6.4 TEST SETUP For the actual test configuration, please refer to the related Item – Photographs of the Test Configuration. 4.6.5 EUT OPERATING CONDITION The software provided by client enabled the EUT to transmit and receive data at lowest, middle and highest channel frequencies individually. EUT SPECTRUM ANALYZER FCC ID: PANBT0030H Report No.: RF910304R01 40 Issued: March 11, 2002 4.6.6 TEST RESULTS Output Power Into Antenna: CHANNEL CHANNEL FREQUENCY (MHz) PEAK POWER OUTPUT (dBm) PEAK POWER LIMIT (dBm) PASS/FAIL 024029.8430PASS 39244110.0130PASS 7824809.8930PASS FCC ID: PANBT0030H Report No.: RF910304R01 41 Issued: March 11, 2002 Channel 0 FCC ID: PANBT0030H Report No.: RF910304R01 42 Issued: March 11, 2002 Channel 39 FCC ID: PANBT0030H Report No.: RF910304R01 43 Issued: March 11, 2002 Channel 78
The information contained in this letter is intended for the named recipients only. It may contain privileged and confidential information and, if you are not an intended recipient, you must not copy, distribute, or take any action in reliance on it. If you have received this letter in error, please notify the sender immediately by reverse charge telephone call to 01223 692000 and return the original by post. We will reimburse you the postage. Registered Number: 3665875 England VAT Registration Number: 731 9856 07 Cambridge Silicon Radio Limited Cambridge Science Park, Milton Road Cambridge CB4 0WH England Telephone: +44 (0)1223 692000 Fax: +44 (0)1223 692001 http://www.csr.com PROCESS GAIN MEASUREMENTS EXHIBIT. For product FCC ID:- PIWBCES301199-1, this is exhibit K. For product FCC ID:- 02Z-BT2, this is exhibit BB. Page 1 of 11 PG Results 23 March 2001 Filename: BlueCore01_BC01b_PG_Results_v2.1 MEMORANDUM Distribution:Peter Flittner, Robert Young, James Collier cc: Prepared By:Alex Busteed Subject:Results of Processing Gain Tests for FCC Qualification 1 INTRODUCTION This memo presents the results of the Processing Gain (PG) tests carried out for FCC qualification of the Cambridge Silicon Radio BC01B Bluetooth chip. The FCC states that the PG from a hybrid Bluetooth receiver must be greater than 17 dB when measured in accordance with the Continuous Wave (CW) jamming margin method. Testing of the BC01b has found the PG due to the DS section to be approximately 5 dB and the PG due to the FH part to be approximately 15 dB. It is therefore concluded that the BC01B complies with the FCC PG requirements for radio communication systems. The rest of this paper outlines the PG measurement technique and discusses the test results. Appendix A contains a list of test equipment and Appendix B contains a printout of the measurement results. 2 METHOD 2.1 PG Definition The Processing Gain from a frequency hopping communication system is derived from two parts, the FH section and the DS section. The PG due to FH is given by a simple equation and is constant. However measurement of the PG due to DS is a little more complex. One technique is to use the CW jamming margin method. This method measures PG due to DS using the following algorithm: A CW signal generator is stepped in 50kHz increments across the passband of the system, recording at each point the generator level required to produce the 0.1% Packet Error Rate (PER). This is the jammer level. This level is then referenced to the output power of the intended Bluetooth signal and the Jammer to Signal Ratio JSR is thus calculated. The worst 4 Page 2 of 11 PG Results 23 March 2001 JSR measurements are discarded and the worst remaining JSR is used to calculate the PG due to DS as follows: sysp LJSRSNRG++= min where G p = the processing gain of the system, SNR = the signal to noise ratio required for 0.1% BER, JSR min = minimum J/S ratio and L sys = system losses. 2.2 PG Measurement Technique Figure 1 provides an overview of the PG measurement technique. The measurement is performed in two parts, measurement of the system SNR and measurement of JSR min . Figure 1: PG Measurement Technique The system SNR is calculated using the following algorithm. Generate Bluetooth PRBS-9 packets using a BC01B emulator (1) and a Vector Signal Generator (2). Combine this signal with white noise of a constant level, which is generated using a noise source (4) and a CW Signal Generator (3). Then vary the level of the Bluetooth signal until the BER measured by the BC01B (7) is 0.1%. The resulting SNR is the signal level divided by the Noise level. Page 3 of 11 PG Results 23 March 2001 The JSR for a given jamming frequency is calculated using the following algorithm. Generate Bluetooth PRBS-9 packets using the BC01B emulator (1) and the Vector Signal Generator (2). Combine this signal with a constant CW tone at the jamming frequency using a CW Signal Generator (5) and a combiner (6). Then vary the level of the Bluetooth signal until the PER measured by the Casira Bluetooth Module (7) is 0.1%. The resulting JSR is the signal level divided by the jamming level. 3 RESULTS 3.1 Overview The measurements found that the PG due to DS caused by the access code in page and inquiry mode is found to be approximately 5dB when the access code is a relatively random mixture of 1's and 0's. A random access code causes the most Inter Symbol Interference (ISI) and hence the worst PG for a hybrid system. Therefore only the results for this access code are used in the PG calculation. The PG due to FH is given as PG FH = 10 log 10 (number of frequency hops) The number of hops in a Bluetooth system is 32, therefore the PG due to FH is approximately 15 dB. When this is added to the PG due to DS, the total PG for the BC01B is approximately 20 dB, above the minimum PG requirement for FCC qualification. 3.2 Detailed Results Test Date:17/11/00 Sample Time: 30 seconds Access Code: c6967e Signal Frequency:2.432GHz Receiver Sensitivity: -88.7 dBm Jammer Signal Level:-85.7 dBm Measured SNR: 18.8dB System Losses: 2dB To calculate processing gain, ignore the worst 20% of data points and then apply the following formula: Page 4 of 11 PG Results 23 March 2001 sysp LJSRSNRG++= min Where G p = Processing Gain of the module SNR = signal to noise ratio of the module JS min = minimum J/S ratio after the worst 20% of J/S samples have been discarded L sys = System losses A total of 20 samples were taken by stepping the jamming signal frequency offsets in 50kHz increments over the bandwidth of the receiver. The worst 4 samples were found at –500kHz, -450kHz, -400kHz and 500kHz and were discarded. The remaining minimum J/S ratio was found to be -15.4dB at an offset of +350kHz Thus, the processing gain due to direct sequence spreading in page and inquiry mode is dBG p 4.524.158.18=+−= -500-400-300-200-1000100200300400500 -30 -25 -20 -15 -10 -5 0 5 Jamming Frequency Offset (kHz) J/S (dBs) J/S ratio performance for Proce…
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FCC ID: PANBT0030H Report No.: RF910304R01 1 Issued: March 11, 2002 FCC TEST REPORT REPORT NO.: RF910304R01 MODEL NO.: BT-0030H BT007 RECEIVED: Mar. 4, 2002 TESTED: Mar. 5 ~ Mar. 6, 2002 APPLICANT:CC&C TECHNOLOGIES INC. ADDRESS: 8F, NO. 150, CHIEN 1 ROAD, CHUNG HO CITY, TAIPEI, TAIWAN, R.O.C. ISSUED BY:Advance Data Technology Corporation LAB LOCATION:47 14th Lin, Chiapau Tsun, Linko, Taipei, Taiwan, R.O.C. This test report consists of 59 pages in total. It may be duplicated completely for legal use with the approval of the applicant. It should not be reproduced except in full, without the written approval of our laboratory. The client should not use it to claim product endorsement by CNLA, NVLAP or any government agencies. The test results in the report only apply to the tested sample. 0528 ILAC MRA Lab Code: 200102-0 FCC ID: PANBT0030H Report No.: RF910304R01 2 Issued: March 11, 2002 TABLE OF CONTENTS 1CERTIFICATION.........................................................................................................4 2SUMMARY OF TEST RESULTS ................................................................................5 3GENERAL INFORMATION .........................................................................................6 3.1GENERAL DESCRIPTION OF EUT ...........................................................................6 3.2DESCRIPTION OF TEST MODES .............................................................................7 3.3GENERAL DESCRIPTION OF APPLIED STANDARDS .............................................7 3.4DESCRIPTION OF SUPPORT UNITS........................................................................8 4TEST PROCEDURES AND RESULTS .......................................................................9 4.1CONDUCTED EMISSION MEASUREMENT ..............................................................9 4.1.1LIMITS OF CONDUCTED EMISSION MEASUREMENT ............................9 4.1.2TEST INSTRUMENTS ................................................................................9 4.1.3TEST PROCEDURES ...............................................................................10 4.1.4TEST SETUP ............................................................................................10 4.1.5TEST RESULTS ........................................................................................ 11 4.2NUMBER OF HOPPING FREQUENCY USED .........................................................17 4.2.1LIMIT OF HOPPING FREQUENCY USED ...............................................17 4.2.2TEST INSTRUMENTS ..............................................................................17 4.2.3TEST PROCEDURES ...............................................................................18 4.2.4TEST SETUP ............................................................................................18 4.2.5TEST RESULTS ........................................................................................18 4.3DWELL TIME ON EACH CHANNEL.........................................................................21 4.3.1LIMIT OF DWELL TIME USED .................................................................21 4.3.2TEST INSTRUMENTS ..............................................................................21 4.3.3TEST PROCEDURES ...............................................................................22 4.3.4TEST SETUP ............................................................................................22 4.3.5TEST RESULTS ........................................................................................23 4.4CHANNEL BANDWIDTH ..........................................................................................27 4.4.1LIMITS OF CHANNEL BANDWIDTH ........................................................27 4.4.2TEST INSTRUMENTS ..............................................................................27 4.4.3TEST PROCEDURE .................................................................................28 4.4.4TEST SETUP ............................................................................................28 4.4.5EUT OPERATING CONDITION ................................................................28 4.4.6TEST RESULTS ........................................................................................29 4.5HOPPING CHANNEL SEPARATION ........................................................................33 FCC ID: PANBT0030H Report No.: RF910304R01 3 Issued: March 11, 2002 4.5.1LIMIT OF HOPPING CHANNEL SEPARATION ........................................33 4.5.2TEST INSTRUMENTS ..............................................................................33 4.5.3TEST PROCEDURES ...............................................................................34 4.5.4TEST SETUP ............................................................................................34 4.5.5TEST RESULTS ........................................................................................34 4.6MAXIMUM PEAK OUTPUT POWER ........................................................................38 4.6.1LIMITS OF MAXIMUM PEAK OUTPUT POWER MEASUREMENT .........38 4.6.2INSTRUMENTS.............................…
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13-1 Lane19, WenShan 3rd., St. · Taoyuan · Taiwan
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 10.00 mW |

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