
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
User Manual and Technical Guide The O'Neil microFlash Series of Printers By O'Neil Product Development ii • Introduction User Manual and Technical Guide The O'Neil microFlash Series of Printers O’Neil Product Development, Inc. 8 Mason Irvine, CA 92618 949.458.0500 • Fax 949.458.0708 www.oneil-pdi.com Version 7.1, 12/13/2002 Declaration of Conformity Application of Council Directives: 89/336/EEC, 73/23/EEC Manufacturer’s Name: O’Neil Product Development Inc. Manufacturer’s Address: 8 Mason, Irvine, CA, 92618, USA Importer’s Name: O’Neil Product Development Importer’s Address: Witan Court, 285 Upper Forth Street Witan Gate West, Centeral Milton Keys United Kingdom, MK9 1EH Type Of Equipment: Printers (Information Technology Equipment) Equipment Class: Commercial and Light Industry Models: Year Mfg.: Conforms to the following standards: MicroFlash2 1997- EN55022 (1987), EN50082-1 (1992), EN60950 (1992) A1,A2,A3 MicroFlash3 1997- EN55022 (1987), EN50082-1 (1992), EN60950 (1992) A1,A2,A3 MicroFlash4t 1999- EN55022 (1995), EN50082-1 (1997), EN60950 (1992) A1,A2,A3,A4,A5 (A11) MicroFlash4tCR 1999- EN55022 (1995), EN50082-1 (1997), EN60950 (1992) A1,A2,A3,A4,A5 (A11) 2t 1998- EN55022 (1987), EN50082-1 (1992), EN60950 (1992) A1,A2,A3,A4 2tCR 1998- EN55022 (1995), EN50082-1 (1997), EN60950 (1992) A1,A2,A3,A4 2I 1998- EN55022 (1987), EN50082-1 (1992), EN60950 (1992) A1,A2,A3,A4 8I 1997- EN55022 (1987), EN50082-1 (1992), EN60950 (1992) A1,A2,A3 I the undersigned, hereby declare that the equipment specified above conforms to the above directives(s) and standards(s). Place: Orange County, CA USA Date: August 4, 1999 Full Name: Kenneth Carlson Position: Director of Electrical Engineering iv • Introduction User Manual and Technical Guide The O'Neil microFlash Series of Printers FCC Notice 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 and, 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 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 to 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. This equipment has been certified to comply with the limits for class B computing device, Pursuant to FCC Rules. Operation with non-approved equipment is likely to result in interference to radio and TV reception. The user is cautioned that changes and modifications made to the equipment without the approval of manufacturer could void the user’s authority to operate this equipment. Industry Canada Requirement This Class B digital apparatus meets all requirements of the Canadian Interference-Causing Equipment Regulations. Bluetooth Module This device and its antenna(s) must not be co-located or operated in conjunction with any other antenna or transmitter within 20 centimeters. Warranty Limited Warranty The microFlash 2/3 printer is warranted by O’Neil Product Development, Inc. to the original purchaser, to be free from defects in materials and workmanship for one (1) year from the date of original purchase. The microFlash 2t/ 2tCR/ 2I/ 2iCR/ 4t/ 4tCR printer is warranted by O’Neil Product Development, Inc. to the original purchaser, to be free from defects in materials and workmanship for (1) year from the date of original purchase (OEM’s 90 days from the date of purchase). O’Neil makes no other warranties, expressed or implied, including implied warranties of merchantability and fitness for purpose. During the warranty period, if a component is proved to be defective, O’Neil will repair or replace it, at its option, with no charge for parts or labor, when returned to O’Neil or an O’Neil Authorized Service Center with dated proof of purchase. This warranty does not apply to appearance items, batteries or to any component which has been misused, defaced, altered or modified, or which has been serviced or repaired by other than an O’Neil Authorized Service Center. This manual and any examples herein are provided ‘as is’ and are subject to change without notice. O’Neil Product Development, Inc. makes no warranty of any kind with regard to this manual, including, but not limited to, implied warranties of merchantability and fitness for a particular purpose. Acceptance of the microFlash Printer is conditional on the acceptance of this warranty. If the buyer does not accept the terms of this warranty, he is to return the product in its original condition within 10 days of receipt and O’Neil Product Development, Inc. will refund any money advanced by the buyer toward its purchase. No Liability for Negligent Use In no event shall O’Neil Product Development, Inc. be held liable for any damages whatsoever (including, without limitations, damages for loss of profits, business interruption, loss of information, or other pecuniary loss) arising out of negligence in use and care of the microFlash Printer. If you try to repair, disassemble, or change the microFlash in any way, or use parts not provided by O’Neil without prior, written authorization, all warranties are void. Returns / Repair Unauthorized return of printers will not be accepted. Call O’Neil Product Development, Inc. at 949-458-0500 for return repair authorization. Radio Frequency Interference This equipment generates…
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ROK 104 001 2 ROK 104 001 3 Block diagram Figure 1. Block diagram. Absolute maximum ratings Parameter Symbol Min Typ Max Unit Temperature Storage temperature T Stg -40 +100 °C Operating temperature T Amb -20 +75 °C Power supply V DD with respect to GND V DD -0.3 6.5 V V DD_IO with respect to GND V DD_IO -0.8 3.6 V Digital inputs Input low voltage V IL -0.5 V Input high voltage V IH V DD_IO +0.3 V Antenna port Input RF power In-band 15 dBm Out of band 15 dBm ��� ����� ����� ���� ��� ����� ������� ������ ������� ������ ���� ������ ����� ������ ����� ������� ������� ���������� ��������� �������� �������� �������� �������� ����� ����� ��� ��� ������ ��������� �������� ������� ��� ������ �������� �������� �������� �������� �� ������ �� ������ ����� ������ ����� ������� ��������� ���������� ������ ������ ������������� ������ ������ ������ ������ ������ ��������� �������� ������ ������� ��� �� ����� ������ ���
From: Joe Dichoso [[email protected]] Sent: Thursday, January 16, 2003 1:31 PM To: [email protected] Cc: Rich Fabina Subject: Re: 2dB power Tolerance permitted by the Commission Hi Mike, We will provide tolerance guidelines in the near future. Hopefully. I don't know if we will allow 2 dB accross the board. It is not that critical for a 1 mW device. 1.67 mW versus 2.67 mW. However a 2 dB tolerance for a 1 Watt device is very significant. 1000 mW versus 1585 mW. We'll let you know as soon as possible. Regards, Joe >>> Mike Kuo 01/15/03 09:18PM >>> Hi Joe: The following information is new to me so I would like to confirm with you. Per the Test lab, FCC allows 2dB power tolerance for Frequency Hopping ( Bluetooth) Device. So if the measured RF conducted output power is -6dBm, the test lab can request the output power to be listed as 1.4dBm ( -0.6dBm + 2dB). Please allow me to attach the document from the test lab for your reference. Best Regards <<2_dB_Tolerance_Info.pdf>> Mike Kuo Compliance Certification Services 561F Monterey Road Morgan Hill, CA 95037 *Tel:(408)463-0885 x:105 *Fax:(408)463-0888 *:[email protected] http:\\www.ccsemc.com
11-18-2002 Request for a modular approval - FCC ID: LGYBT260136 Dear Application Examiner, the O’Neil Product Development Bluetooth Module BT260136 is seeking FCC authorization as a modular transmitter. The requirement of the FCC Public notice DA00-1407 are met. The following requirements are fulfilled: 1. The modular transmitter must have its own RF shielding The radio portion of the module is contained in its own RF shielding. See the external photos. (See Ericsson Module ROK104001) 2. The modular transmitter must have buffered modulation/data inputs The module has a memory management unit inside of the IC. It buffers the data inputs from UART and USB terminal. (See Ericsson Module ROK104001) 3. The modular transmitter must have its own power supply regulation The IC contains an own voltage regulation. In case of changes in the supply voltage VCC (for example caused by temperature changes or other effects), the internal voltage will be stabilized. (See Ericsson Module ROK104001) 4. The modular transmitter must comply with the antenna requirements of Section 15.203 and 15.204c The transmitter shall only be used with the tested integral antenna or with an antenna that has less antenna gain. Requirements for the use of external antennas are specified in the antenna information exhibit. (See Mitsubishi Antenna AHD1403- 244ST61) 5. The modular transmitter must be tested in a stand-alone configuration The EUT was tested in a stand-alone configuration. The module was fixed in test/programming board during the test. See also the test report and Test setup photos. 6. The modular transmitter must be labeled with its own FCC ID number The EUT will be labeled with its own FCC ID number. If the module is installed inside of an end-product, the label will not be visible. In this case the OEM customer will be instructed to how to apply the exterior label. 7. The modular transmitter must comply with any specific rule or operating requirements applicable to the transmitter and the manufacturer must provide adequate instructions along with the module to explain any such requirements. The EUT is compliant with all applicable FCC rules. Detail instructions are given in the Users Guide. 11-18-2002 8. The modular transmitter must comply with any applicable RF exposure requirements. The maximum measured power output is –0.60 dBm (0.87 mW), the maximum antenna gain is –4.7 dBd (-2.55 dBi) = numeric gain 0.556 The maximum permissible exposure is defined in 47 CFR 1.1310 as 1 mW/cm². The distance from the EUT's transmitting antenna where the exposure level reaches the maximum permitted level is calculated using the general equation: S = P*G / 4pR² Smax = 1mW/cm², P = 0.87 mW, linear power gain relative to the isotropic radiator = -2.55 dBi = 0.556 (numeric gain), R = distance in cm Solving for R, the 1mW/cm² limit is reached in a distance of 0.196 cm to the transmitting antenna. The module has to be integrated in a way that the minimum distance of 0.19 cm is ensured so a statement in the users manual is not necessary. Please contact us if you have any additional questions. Best Regards Ken Carlson Director of Electrical Engineering O’Neil Product Development Inc. 8 Mason Irvine CA 92618 949-458-0500 Fax 949-206-6980
Subj: Cellular Modems and Bluetooth Date: 3/5/01 11:32:18 AM Pacific Standard Time From: [email protected] (Frank Coperich) To: [email protected] CC: [email protected] (Joe Dichoso), [email protected] (Rich Fabina) In response to your question(s) below: 3.) The Bluetooth approval procedures are listed below: BLUETOOTH APPROVALS For all devices, the following items, 1-12, are common to all Bluetooth devices and will not vary from one device to another. The list can be copied and pasted into the filing. 1 Output power and channel separation of a Bluetooth device in the different operating modes: The different operating modes (data-mode, acquisition-mode) of a Bluetooth device don*t influence the output power and the channel spacing. There is only one transmitter which is driven by identical input parameters concerning these two parameters. Only a different hopping sequence will be used. For this reason the check of these RF parameters in one op-mode is sufficient. 2 Frequency range of a Bluetooth device: Hereby we declare that the maximum frequency of this device is: 2402 * 2480 MHZ. This is according the Bluetooth Core Specification V 1.0B (+ critical errata) for devices which will be operated in the USA. This was checked during the Bluetooth Qualification tests (Test Case: TRM/CA/04-E). Other frequency ranges ( e.g. for Spain, France, Japan) which are allowed according the Core Specification are not supported by this device. 3 Co-ordination of the hopping sequence in data mode to avoid simultaneous occupancy by multiple transmitters: Bluetooth units which want to communicate with other units must be organized in a structure called piconet. This piconet consist of max. 8 Bluetooth units. One unit is the master the other seven are the slaves. The master co-ordinates frequency occupation in this piconet for all units. As the master hop sequence is derived from it*s BD address which is unique for every Bluetooth device, additional masters intending to establish new piconets will always use different hop sequences. 4 Example of a hopping sequence in data mode: Example of a 79 hopping sequence in data mode: 40, 21, 44, 23, 42, 53, 46, 55, 48, 33, 52, 35, 50, 65, 54, 67, 56, 37, 60, 39, 58, 69, 62, 71, 64, 25, 68, 27, 66, 57, 70, 59, 72, 29, 76, 31, 74, 61, 78, 63, 01, 41, 05, 43, 03, 73, 07, 75, 09, 45, 13, 47, 11, 77, 15, 00, 64, 49, 66, 53, 68, 02, 70, 06, 01, 51, 03, 55, 05, 04 5 Equally average use of frequencies in data mode and behavior for short transmissions: The generation of the hopping sequence in connection mode depends essentially on two input values: 1. LAP/UAP of the master of the connection 2. Internal master clock The LAP (lower address part) are the 24 LSB*s of the 48 BD_ADDRESS. The BD_ADDRESS is an unambiguous number of every Bluetooth unit. The UAP (upper address part) are the 24 MSB*s of the 48 BD_ADDRESS. The internal clock of a Bluetooth unit is derived from a free running clock which is never adjusted and is never turned off. For synchronization with other units only offset are used. It has no relation to the time of the day. Its resolution is at least half the RX/TX slot length of 312.5 μs. The clock has a cycle of about one day (23h30). In most case it is implemented as 28 bit counter. For the deriving of the hopping sequence the entire LAP (24 bits), 4 LSB*s (4 bits) (Input 1) and the 27 MSB*s of the clock (Input 2) are used. With this input values different mathematical procedures (permutations, additions, XOR-operations) are performed to generate the sequence. This will be done at the beginning of every new transmission. Regarding short transmissions the Bluetooth system has the following behavior: The first connection between the two devices is established, a hopping sequence was generated. For transmitting the wanted data the complete hopping sequence was not used. The connection ended. The second connection will be established. A new hopping sequence is generated. Due to the fact that the Bluetooth clock has a different value, because the period between the two transmission is longer (and it cannot be shorter) than the minimum resolution of the clock (312.5 μs). The hopping sequence will always differ from the first one. 6 Receiver input bandwidth and behavior for repeated single or multiple packets: The input bandwidth of the receiver is 1 MHZ. In every connection one Bluetooth device is the master and the other one is the slave. The master determines the hopping sequence (see chapter 5). The slave follows this sequence. Both devices shift between RX and TX time slot according to the clock of the master. Additionally the type of connection (e.g. single or multislot packet) is set up at the beginning of the connection. The master adapts its hopping frequency and its TX/RX timing according to the packet type of the connection. Also the slave of the connection will use these settings. Repeating of a packet has no influence on the hopping sequence. The hopping sequence generated by the master of the connection will be followed in any case. That means, a repeated packet will not be send on the same frequency, it is send on the next frequency of the hopping sequence 7 Dwell time in data mode The dwell time of 0.3797s within a 30 second period in data mode is independent from the packet type (packet length). The calculation for a 30 second period is a follows: Dwell time = time slot length * hop rate / number of hopping channels *30s Example for a DH1 packet (with a maximum length of one time slot) Dwell time = 625 μs * 1600 1/s / 79 * 30s = 0.3797s (in a 30s period) For multislot packet the hopping is reduced according to the length of the packet. Example for a DH5 packet (with a maximum length of five time slots) Dwell time = 5 * 625 μs * 1600 * 1/5 *1/s / 79 * 30s = 0.3797s (in a 30s period) This is according the Bluetooth Core Specification V 1.0B (+ critical errata) for all Bluetooth devices. Therefore all Bluetooth devices comply with the FCC dwell time require…
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Description The Bluetooth System Module ROK 104 001 is a complete FCC & ETSI type approved product for fast implementation, cutting your time-to-market. It is a compact and cost effective radio/baseband module that can be implemented in any kind of electronic device. In standard configuration the module includes a baseband processor with 4-8 MBit Flash memory, a radio solution, interfaces to antenna and application, supporting circuitry, together with basic Bluetooth software for signaling at HCI level (Host Controller Interface). The antenna filter is specially designed for application in GSM environment such as inside a mobile phone. The ROK 104 001 also has a very high threshold for high signal levels in-band, which makes it very suitable to be in an IEEE 802.11b environment. As the ROK 104 001 is a generic product, it can be used for many different types of application that require Bluetooth capability such as • Computers and peripherals • Handheld devices and accessories • Access points and Home base stations • Applications where short time-to-market is required Supported Bluetooth profiles • Generic Access Profile • Service Discovery Application Profile • Serial Port Profiles - Dial-up networking, Fax, Headset • Generic Object Exchange Profiles - File transfer, Object Push, Synchronization ROK 104 001 Bluetooth™ System Module Key features • A small and complete class 2 Bluetooth System • Forms full Bluetooth functionality with only the addition of an antenna • Point to Multipoint, 7 slaves • Power management: PARK, SNIFF & HOLD as well as system power saving • Excellent high signal level performance in-band • Exceptional out-band blocking in all GSM bands. • Multiple interfaces USB, UART, PCM, Bidirectional serial interface/GPIO • Capability of embedded solutions • Pre-qualified to Bluetooth spec. 1.1 • FCC & ETSI type approved
Apr. 09. 2002 NO.TPQ-2D02Z TECHNICAL REPORT SURFACE MOUNTABLE CHIP ANTENNAProduct name: AHD1403-244ST01Item: MITSUBISHI MATERIALS CORPORATION ADVANCED PRODUCTS COMPANY REFERENCE Drawing NoPage Surface mountable chip antenna AHD1403-244ST01 Specification RJC-AP-0003E1/4 Mitsubishi Materials Corporation Type AHD1403-244ST01Date July.26.2001 1. Scope of application The specification is applied to surface mountable chip Antenna AHD1403-244ST01. 2. Part Number System (Ex.) A H D 1 4 0 3 – 2 4 4 ST01 T (1) (2) (3) (3) (4) (5) (1) Series AHD : AHD series (2) Length 14 : Length L=14mm (rounded off to the first digit place). (3) Width 03 :Width W=3mm (rounded off to the first digit place). (4) center frequency 244 : center frequency f0 = 2440MHz (indicated in upper 3digit of center frequency f0[MHz] ) (4) MMC internal code ex) ST01 (5) Packaging form T : Tape package 4000pcs./reel 3. Structure 3-1. material Base material Al 2 O 3 based ceramic Conductor Ag based thick film 3-2. Size and Dimensions See Fig.1. 3-3. Terminal description See Fig.1. 3-4. Visual No major defects that would effect the life or use of the components 3-5. Standard evaluation board and Land pattern See Fig.2. and Fig.3. 4. Operating temperature range -25 ْ C to +85 ْ C 5. Electrical Characteristics Table.1 Electrical characteristics [Note] Electrical characteristics should be measured on our evaluation board Details of evaluation board is shown in Fig.2.and Fig.3. DescriptionValue Impedance 50Ω Frequency range 2400MHz to 2484MHz V.S.W.R at B.W 3.0max REFERENCE Drawing NoPage Surface mountable chip antenna AHD1403-244ST01 Specification RJC-AP-0003E2/4 Mitsubishi Materials Corporation 6. Precautions 6.1. Handling Excessive stress or mechanical shock may damage to products , therefore , please be careful in handling or transporting products and assemblies with this product . 6.2. Storage Products should be stored as it packaged ( as sealed up ) under normal temperature and humidity . To avoid degradation or destruction of products , please do not store under conditions below. - In an atmosphere containing corrosive gas (SO x , NO x , Cl 2 , NH 3 etc.) - Dusty Place - Humid place , where water condenses Stored products should be used within 3 months of receipt ( If once the seal of covertape is broken , please use immediately ) If this period is exceeded please verify solderability of products . [ Recommended storage condition ] Temperature -10 ْ C to 40 ْ C Humidity 15 %R.H. to 85 %R.H REFERENCE Drawing NoPage Surface mountable chip antenna AHD1403-244ST01 Specification RJC-AP-0003E3/4 Mitsubishi Materials Corporation Fig.1. Dimensions (Unit:mm) 13.5 +0.2 -0.2 3.0 +0.2 -0.2 0.8 +0.1 -0.1 (1) (2) (1) (2) (3) (3) (3) (3) (3)(3) 3.00 +0.10 -0.10 9.00 +0.20 -0.20 1.00 +0.10 -0.10 (0.25) (0.25) : conductor <Terminal description> (1) : Gnd (2) : Feeding electrode (3) : fixing electrode (Should be connected with floating pad) REFERENCE Drawing NoPage Surface mountable chip antenna AHD1403-244ST01 Specification RJC-AP-0003E4/4 Mitsubishi Materials Corporation 7.3 2.55.0 15.0 8.0 2.2 25.0 1.0 1.5 2.0 1.0 1.4 1.5 2.0 9.0 6.0 1.0 1.0 3.75 3.75 3.0 0.5 0.4 25.0 9.06.0 3.4 3.8 1.2 1.2 1.21.21.2 1.6 1.61.6 1.6 1.6 3.0 [Land pattern] [ Solder resist pattern] SMA connector Micro Strip Line (50ohm) Chip antenna Fig.2. Outline of standard evaluation board Fig.3. Dimensions of Land pattern (Unit : mm) Substrate : FR- 4 (Both print) Thickness : 0.8mm Cupper : 0.035mm Size : W=25mm , L=50mm Φ [ Backside pattern of substrate (top view)] Ground plane Through hole Connected to backside GND plane Through hole Φ0.4 REFERENCE Drawing NoPage Surface mountable chip antenna AHD series characteristic specification RJC-AQ-0003E1/ 3 Mitsubishi Materials Corporation. Type AHD seriesDate December.10.2001 1. Scope of application This specification is applied to surface mountable chip Antenna AHD series. 2. Climatic Quality ItemTest MethodPerformance Cold test Test temperature : -25°C ± 3°C Test duration : 1000hrs +48,-0 hrs After completion of the test, allow the sample to stand under the standard condition for at 2hrs. After the test ,shall satisfy the band width specification. Dry heat test Test temperature : +85°C ± 2°C Test duration : 1000hrs +48,-0 hrs After completion of the test, allow the sample to stand under the standard condition for at 2hrs. After the test ,shall satisfy the band width specification. Damp heat Test Test temperature : +60°C ± 2°C Test relative humidity : 90% 95% Test duration : 1000hrs +48,-0 hrs After completion of the test, allow the sample to stand under the standard condition for at 2hrs. After the test ,shall satisfy the band width specification. Temperature cycle Test (+85 °C ) (ordinary temp) (-20 °C ) Fig.1. Operations per One Cycle One cycle is the operation shown in Fig.1 . This cycle is repeated 65 times After completion of the test, allow the sample to stand under the standard conditions for at 2hrs. After the test ,shall satisfy the band width specification. 30min 30min 3min3min REFERENCE Drawing NoPage Surface mountable chip antenna AHD series characteristic specification RJC-AQ-0003E2/ 3 Mitsubishi Materials Corporation. 3. Solderability ItemTest MethodPerformance Solderability Test Immerse into melted solder. Solder : H63A Flux : Rosin 25wt% (According to JIS C2571) Soldering temperature : 230°C ± 3°C Duration of immersion : 5sec. ± 1sec Preheating : 150°C , 60sec. At least 90% of the terminal electrode must be covered with new solder. Resistance to reflow soldering Heat Test Reflow soldering temperature : Peak temperature : 240°C Keeping time at peak temp : within 5sec Solder : Sn63/Pb37 solder paste Temperature profile : see fig.2. After the test, shall satisfy the band width specification. Visual : No mechanical damage REFERENCE Drawing NoPage Surface mountable chip antenna AHD series characteristic specification RJC-AQ-0003E3/ 3 Mitsubishi Materials Corporation. Preheating 100°C - 150°C 60sec - 100sec 30sec - 40sec…
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2700981.sch-1 - Mon Jul 29 11:52:49 2002
Report Number: B21030D1 FCC Part 15 Subpart B and FCC Section 15.247 Test Report Bluetooth Module Model: BT260136 Brea Division 114 Olinda Drive Brea, CA 92823 (714) 579-0500 Agoura Division 2337 Troutdale Drive Agoura, CA 91301 (818) 597-0600 Silverado Division 19121 El Toro Road Silverado, CA 92676 (949) 589-0700 Lake Forest Division 20621 Pascal Way Lake Forest, CA 92630 (949) 587-0400 Page 1 of 22 FCC PART 15, SUBPART B and C TEST REPORT for BLUETOOTH MODULE MODEL: BT260136 Prepared for O’NEIL PRODUCT DEVELOPMENT 8 MASON IRVINE, CALIFORNIA 92618-2705 Prepared by:_____________________ KYLE FUJIMOTO Approved by:____________________ MICHAEL CHRISTENSEN COMPATIBLE ELECTRONICS INC. 114 OLINDA DRIVE BREA, CALIFORNIA 92823 (714) 579-0500 DATE: NOVEMBER 1, 2002 REPORT APPENDICES TOTAL BODY A B C D E PAGES 22 2 2 2 15 63 106 This report shall not be reproduced except in full, without the written approval of Compatible Electronics. Report Number: B21030D1 FCC Part 15 Subpart B and FCC Section 15.247 Test Report Bluetooth Module Model: BT260136 Brea Division 114 Olinda Drive Brea, CA 92823 (714) 579-0500 Agoura Division 2337 Troutdale Drive Agoura, CA 91301 (818) 597-0600 Silverado Division 19121 El Toro Road Silverado, CA 92676 (949) 589-0700 Lake Forest Division 20621 Pascal Way Lake Forest, CA 92630 (949) 587-0400 Page 2 of 22 TABLE OF CONTENTS Section / Title PAGE GENERAL REPORT SUMMARY 4 SUMMARY OF TEST RESULTS 5 1. PURPOSE 6 2. ADMINISTRATIVE DATA 7 2.1 Location of Testing 7 2.2 Traceability Statement 7 2.3 Cognizant Personnel 7 2.4 Date Test Sample was Received 7 2.5 Disposition of the Test Sample 7 2.6 Abbreviations and Acronyms 7 3. APPLICABLE DOCUMENTS 8 4. Description of Test Configuration 9 4.1 Description of Test Configuration - EMI 9 4.1.1 Cable Construction and Termination 10 5. LISTS OF EUT, ACCESSORIES AND TEST EQUIPMENT 11 5.1 EUT and Accessory List 11 5.2 EMI Test Equipment 12 6. TEST SITE DESCRIPTION 13 6.1 Test Facility Description 13 6.2 EUT Mounting, Bonding and Grounding 13 7. CHARACTERISTICS OF THE TRANSMITTER 14 7.1 Transmitter Power 14 7.2 Channel Number and Frequencies 14 7.3 Antenna Gain 14 8. Test Procedures 15 8.1 RF Emissions 15 8.1.1 Conducted Emissions Test 15 8.1.2 Radiated Emissions (Spurious and Harmonics) Test 16 8.2 6 dB Bandwidth 18 8.3 20 dB Bandwidth 18 8.4 Peak Output Power 19 8.5 RF Antenna Conducted Test 19 8.6 RF Band Edges 20 8.7 Carrier Frequency Separation 20 8.8 Number of Hopping Frequencies 20 8.8 Average Time of Occupancy Test 21 9. CONCLUSIONS 22 Report Number: B21030D1 FCC Part 15 Subpart B and FCC Section 15.247 Test Report Bluetooth Module Model: BT260136 Brea Division 114 Olinda Drive Brea, CA 92823 (714) 579-0500 Agoura Division 2337 Troutdale Drive Agoura, CA 91301 (818) 597-0600 Silverado Division 19121 El Toro Road Silverado, CA 92676 (949) 589-0700 Lake Forest Division 20621 Pascal Way Lake Forest, CA 92630 (949) 587-0400 Page 3 of 22 LIST OF APPENDICES APPENDIX TITLE A Laboratory Recognitions B Modifications to the EUT C Additional Models Covered Under This Report D Diagrams, Charts, and Photos • Test Setup Diagrams • Radiated Emissions Photos • Antenna and Effective Gain Factors E Data Sheets LIST OF FIGURES FIGURE TITLE 1 Conducted Emissions Test Setup 2 Plot Map And Layout of Test Site Report Number: B21030D1 FCC Part 15 Subpart B and FCC Section 15.247 Test Report Bluetooth Module Model: BT260136 Brea Division 114 Olinda Drive Brea, CA 92823 (714) 579-0500 Agoura Division 2337 Troutdale Drive Agoura, CA 91301 (818) 597-0600 Silverado Division 19121 El Toro Road Silverado, CA 92676 (949) 589-0700 Lake Forest Division 20621 Pascal Way Lake Forest, CA 92630 (949) 587-0400 Page 4 of 22 GENERAL REPORT SUMMARY This electromagnetic emission test report is generated by Compatible Electronics Inc., which is an independent testing and consulting firm. The test report is based on testing performed by Compatible Electronics personnel according to the measurement procedures described in the test specifications given below and in the "Test Procedures" section of this report. The measurement data and conclusions appearing herein relate only to the sample tested and this report may not be reproduced without the written permission of Compatible Electronics, unless done so in full. This report must not be used to claim product endorsement by NVLAP or any other agency of the U.S. Government. Device Tested: Bluetooth Module Model: BT260136 S/N: N/A Product Description: See Expository Statement. Modifications: The EUT was not modified during the testing. Manufacturer: O’Neil Product Development 8 Mason Irvine, California 92618-2705 Test Dates: October 28, 29, and 30, 2002 Test Specifications : EMI requirements CFR Title 47, Part 15, Subpart B; and Subp…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 1.30 mW |

Wireless Printer Module
Equipment Class
DTS - Digital Transmission System
Printer WLAN Card
Equipment Class
DTS - Digital Transmission System
Radio Bluetooth Unicellular
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Bluetooth Module
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Bluetooth Module
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter