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UKOPLX1004QDUA square active dual-layer transponder 433 MHz Tx

Advanced Microwave Engineering s.r.l.
A square active dual-layer transponder 433 MHz Tx - FCC ID UKOPLX1004QDU - Advanced Microwave Engineering s.r.l.
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Application Details

Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Date of Grant
Jul 01, 2007
Application Purpose
Original Equipment
Date of Application
Jul 01, 2007
Equipment Note
A square active dual-layer transponder 433 MHz Tx
Frequency Range
433.92000000 - 433.92000000
Company
Advanced Microwave Engineering s.r.l.
Country
Italy

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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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

User Manual Updated as of 27 giu. 07 – Rel.1.3.5 Page 1 of 70 For review by: Issue No. Date 1.3 12/04/07 Description of Revision Rev. Date Prepared: A. Piccioli 5 2706/07 Approved: User Manual Updated as of 27 giu. 07 – Rel.1.3.5 Page 2 of 70 NOTES: This apparatus and its documentation must be thoroughly reviewed, to become familiar with safety instructions before starting operating procedures. To assure a correct and safe utilisation, the user of this apparatus shall observe all information and warnings contained herein. The Apparatus must be connected to an electrical system that complies with current national standards. The information contained herein is subjected to change without advance notice. This device complies with Part 15 of the FCC Rules. Operation 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. Changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment. User Manual Updated as of 27 giu. 07 – Rel.1.3.5 Page 3 of 70 TABLE OF WRITTEN CONTENTS 1. SECURITY INSTRUCTIONS AND CONSIDERATIONS.............................. 1-5 2. ABBREVIATIONS ................................................................................... 2-5 3. GENERAL INFORMATION ...................................................................... 3-6 3.1. OPERATING PRINCIPLE OF THE LNX SYSTEM 3-6 STANDARD, FAST and APB Mode .......................................................................... 3-7 TRACK Mode ........................................................................................................... 3-8 ECM Mode ............................................................................................................... 3-9 BEEPER FAST Mode ............................................................................................. 3-10 3.2. E XAMPLES OF APPLICATIONS OF THE LNX SYSTEM 3-11 4. TECHNICAL DESCRIPTION OF THE DEVICES..................................... 4-13 4.1. I LLUMINATOR UKOPLX2101FHU 4-13 Mechanical Characteristics ................................................................................... 4-13 Mechanical Characteristics ................................................................................... 4-14 Wiring for UKOPLX2101FHU ................................................................................ 4-14 POSITION OF LABEL................................................................................................... 4-14 4.2. TAG DUALFREQUENCY UKOPLX1004STU & UKOPLX1004QDU 4-15 Mechanical Characteristics ................................................................................... 4-15 Wiring for UKOPLX1004STU or UKOPLX1004QDU............................................... 4-16 POSITION OF LABEL................................................................................................... 4-16 4.3. UKOPLX2002 RADIO RECEIVER 4-17 Mechanical Characteristics ................................................................................... 4-17 Wiring for UKOPLX2002........................................................................................ 4-17 POSITION OF LABEL................................................................................................... 4-18 5. INSTALLATION .................................................................................... 5-19 5.1. I NTRODUCTION 5-19 Illuminator UKOPLX2101FHU ............................................................................... 5-19 Receiver UKOPLX2002.......................................................................................... 5-19 Transponder UKOPLX1004STU or UKOPLX1004QDU.......................................... 5-19 5.2. P RECAUTIONS 5-20 Initial Inspection.................................................................................................... 5-20 Packing and Unpacking ........................................................................................ 5-20 Preparation for Use ............................................................................................... 5-20 Caution.................................................................................................................. 5-20 Connection to Power Supply Mains....................................................................... 5-21 5.3. TECHNICAL CHARACTERISTICS OF THE MATERIALS EMPLOYED 5-21 Power supply cord................................................................................................. 5-21 Data cables ........................................................................................................... 5-21 Auxiliary cables .................................................................................................... 5-22 Environmental conditions...................................................................................... 5-22 Cleaning the instrument........................................................................................ 5-22 Caution.................................................................................................................. 5-22 5.4. N OTES ON INSTALLATION 5-22 Installation ............................................................................................................ 5-22 Equipment required for installation....................................................................... 5-22 Notes on installation ............................................................................................. 5-23 User Manual Updated as of 27 giu. 07 – Rel.1.3.5 Page 4 of 70 Caution.................................................................................................................. 5-23 5.5. INSTALLATION OF THE APPARATUS 5-24 5.6. STARTING THE APPARATUSES 5-27 5.7. CONFIGURATION OF ILLUMINATOR UKOPLX2101FHU 5-…

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Cover Letter(s)

Models UKOPLX1004QDU e UKOPLX1004STU 1) Please refer 15.19 (a) (3). It is deemed that there is enough place for statements on the label. So please print the statements on the label. 2) Please check your schematics. From your operational descritption we can infer that there are two antennas, one is for receiveing 2.4 GHz signal and the other one is for transmitting 433 MHz. But in the schematics there is “433 MHz Rx”. Could you please explain this? Another A.M.E. product has got the same hardware of LX1004STU but different firmware and different name. LX 1004 STU is able to receive only MW transmission powered by LX2101 transmitter. LX 1004 STU is the older version of LX1004, now we are producing the LX 1004 QDU hardware only. 3) Please check the last second row on page 43 of your user manual. How much is the “transmission time”? We show in the following table the total transmission times for each mode of operation Mode Total transmission time max (ms) Standard 3Tx (150ms) + PSR (max 2s) + 2Tx(100ms) 2250 Fast 3Tx (150ms) + PSR (max 450ms) 600 APB 3Tx (150ms) + PSR (max 2s) + 2Tx(100ms) 2250 Track 3Tx (150ms) 600 ECM 3Tx (150ms) + PSR (max 2s) + 2Tx(100ms) 2250 Beeper 3Tx (150ms) 600 4) From the user manual we could not infer that 15.231 (a) (2) can be fulfiled. Please send us the corresponding plot to prove that transmission will be ceased in 5 seconds. Please choose the worst case (also explain why it is the worst case) as the test report plot. In figure you can see a plot of a transmission of APB mode, with pseudorandom time forced to max and so this is the worst case. The total transmission time is about 2,2 sec maximum. There are two important questions, which need to be answered. Q1, The transponder is active and working under one code command. And in 5 seconds there is new code command. How will the transponder react? The reaction of the transponder is strictly dependent of the LX2101FHU product code. In “standard mode” and “fast mode” of operation, if the microwave activation signal is received, the transponder transmit . We remind that "standard" and "fast" operation are admitted only in case of danger and in applications involving safety of life. If we pose a transponder near an illuminator (worst case: continuous activation) we have the following reactions: • APB no transmission (1 transmission when placing the transponder near the LX2101) • ECM, TRACK no transmission (1 transmission when the transponder is carried out to the “illumination zone”) Using duty cycle operation of LX2101, (see user manual on section of TEMPORAL DIAGRAM of LX2101) the maximum time of no transmission by LX2101 is 900ms. But minimum time between activation, to allow a new LX1004 transmission (APB, TRACK and ECM) is 1 sec. So duty cycle operation of LX2101 is equivalent to a continuous activation. Q2, It is possible that the transponder is in an overlapped area of two or more illuminators. If there are 2 command codes in 5 seconds from different illuminators, how will the transponder react? The LX1004 2,45GHz receiver is a very simple amplitude demodulator and if different microwave activation signals hit LX1004 only the stronger one will be received. If the strength of two microwave signals is about the same, no code will be received. Q3, In 5.8 of the user manual the BEEPER FAST mode is described as “at regular intervals”. So It should fulfil 15.231 (a) (3), namely total transmission does not exceed 2 seconds in an hour. Minimum interval between transmission in “beeper fast mode” is 15’ and thus we have 4 transmissions in a hour for 1,8sec of total transmission time. 5)The application form 731 and the test report refer to a Receiver operating at 433,9 MHz. Schematics and Part List show the use of a transceiver TR3000 which consists an intentional radiator and should not be certified as a receiver under equipment class CYY. Please check and make sure that the application filing is consistent: In case of receiver only (RX 5000/5500), the schematics and part list lists should not show a transceiver and should be corrected appropriately. LX2002 is absolutely a receiver because the firmware on the LX 2002 always put the TR3000 in receiving mode. The use of TR3000 is a question of “easy supplying” because other A.M.E. products are able to transmit at 433 MHz with TR3000, but the LX2002 can not do this.

Cover Letter(s)

I’ m sorry for my bad english, I’ll try to be more clear. A, “ Please check your schematics. From your operational descritption we can infer that there are two antennas, one is for receiveing 2.4 GHz signal and the other one is for transmitting 433 MHz. But in the schematics there is “433 MHz Rx”. Could you please explain this? Another A.M.E. product has got the same hardware of LX1004STU but different firmware and different name. LX 1004 STU is able to receive only MW transmission powered by LX2101 transmitter. LX 1004 STU is the older version of LX1004, now we are producing the LX 1004 QDU hardware only. “ I think we have misunderstandnis between us. My question is so. In the schematics there is “433 MHz Rx” . Usually Rx mens receive. But for STU and QDU 433 MHz is used for transmission. So I find there is conflict. You wrote “we are producing LX1004QDU only”. Then do you still need grant for STU and QDU? Or you need only grant for QDU and we should stop reviewing application of STU? We need grant for LX1004QDU and for LX1004STU (a big number already produced). Both products are not able to receive 433MHz signals. B “ Mode Total transmission time max (ms) Standard 3Tx (150ms) + PSR (max 2s) + 2Tx(100ms) 2250 Fast 3Tx (150ms) + PSR (max 450ms) 600 APB 3Tx (150ms) + PSR (max 2s) + 2Tx(100ms) 2250 Track 3Tx (150ms) 600 ECM 3Tx (150ms) + PSR (max 2s) + 2Tx(100ms) 2250 Beeper 3Tx (150ms) 600 “ Thanks for your transmission time table. I do not quite understand the table. Each Tx is 50 ms? What do 3Tx and 2Tx mean? Both of the items are working on 433 MHz? For Track and Beeper the max. time is 600s, but without PSR. Can you explain this for me? I apologize for the wrong data in the table Correct table is Mode Total transmission time max (ms) Standard 3Tx (150ms) + PSR (max 2s) + 2Tx(100ms) 2250 Fast 3Tx (150ms) + PSR (max 450ms) 150 APB 3Tx (150ms) + PSR (max 2s) + 2Tx(100ms) 2250 Track 3Tx (150ms) 150 ECM 3Tx (150ms) + PSR (max 2s) + 2Tx(100ms) 2250 Beeper 3Tx (150ms) 150 Each Tx is 50ms C “Q1, The transponder is active and working under one code command. And in 5 seconds there is new code command. How will the transponder react? The reaction of the transponder is strictly dependent of the LX2101FHU product code. In “standard mode” and “fast mode” of operation, if the microwave activation signal is received, the transponder transmit . We remind that "standard" and "fast" operation are admitted only in case of danger and in applications involving safety of life. If we pose a transponder near an illuminator (worst case: continuous activation) we have the following reactions: • APB no transmission (1 transmission when placing the transponder near the LX2101) • ECM, TRACK no transmission (1 transmission when the transponder is carried out to the “illumination zone”) Using duty cycle operation of LX2101, (see user manual on section of TEMPORAL DIAGRAM of LX2101) the maximum time of no transmission by LX2101 is 900ms. But minimum time between activation, to allow a new LX1004 transmission (APB, TRACK and ECM) is 1 sec. So duty cycle operation of LX2101 is equivalent to a continuous activation.” If it is working under APB mode and is now moved to the “illumination zone” and then stays in the illumination zone for a while, there is still 1 mal transmission? When LX1004 works in APB mode transmission is possible only when: • When the LX1004 enter in a illumination zone. If LX1004 continually receives same activation code it did not transmit. • It is moved to an illumination zone of an other LX2101 with different serial number. D “Q3, In 5.8 of the user manual the BEEPER FAST mode is described as “at regular intervals”. So It should fulfil 15.231 (a) (3), namely total transmission does not exceed 2 seconds in an hour. Minimum interval between transmission in “beeper fast mode” is 15’ and thus we have 4 transmissions in a hour for 1,8sec of total transmission time.” If I have correctly undestood your explaination, the max. transmission duration is 15 minutes for BEEPER FAST mode. So there are max. 4 transmissions in an hour. But from your table above, the total transmission time is 600ms * 4=2.4 s. Can you explain this? With correct data the total transmission is 0,15s *4= 0,6s. Thanks for your effort and waiting for your new documents. Best wishes, Xing Liu

Operational Description

Description of UKOPLX1004QDU gen. ’07, 2005 – Rel.1.3 Page 1 of 4 For review by: Issue No. Date 1 21/09/06 Description of Revision Rev. Date Prepared: A. Piccioli 3 28/01/07 Approved: Description of UKOPLX1004QDU Description of UKOPLX1004QDU gen. ’07, 2005 – Rel.1.3 Page 2 of 4 1. TAG DUALFREQUENCY UKO PLX1004QDU Normally off, it activates in the area of influence of the UKOPLX2101FHU illuminator. In reply, it transmits its own code preceded by the code of the illuminator in whose area the TAG was activated, at a reply frequency of 433MHz. Equipped with replaceable lithium battery, it has an endurance of over 100,000 transmissions. The activation range at 2.45 GHz under the UKOPLX2101FHU illuminator is about 12 meters in free area; the transmission at 433 MHz to the receiver UKOPLX2002, compliant with ETSI EN 300-220, can vary between 40 meters and 60 meters in free area. Mechanical Characteristics Parameter External dimensions (L x H x P) 95 mm 56 mm9 mm Colour White Wiring for UKOPLX1004QDU The system is self-powered and requires no wiring. UKOPLX1004QDU Description of UKOPLX1004QDU gen. ’07, 2005 – Rel.1.3 Page 3 of 4 POSITION OF LABEL 2. CHARACTERISTICS Mechanical characteristics Parameter External dimensions (L x H x W) 95 mm 56 mm9 mm Protection rating IP20 Colour White, customized on request UKOPLX1004QDU Electrical characteristics Parameter Min. Typ. Max. Duty cycles >100,000 Input supply voltage(Vcc) 3 V (mod. Lithium battery.) 2032) 2.7V 3 V 3.3 V Power consumption Active in TX RF 25 mA Active in RX MW 4 mA Standby 1.5 μA Total 25 mA Parameter External dimensions (L x H x W) 55 mm 55 mm 12 mm Protection rating IP20 Colour White, grey, black, customized on request Description of UKOPLX1004QDU gen. ’07, 2005 – Rel.1.3 Page 4 of 4 Environmental specifications Parameter Min. Typ. Max. Temperature range for operation -10 °C +60 °C Temperature range for storage -55 °C +125 °C Humidity -- -- -- Radio Frequency Specifications 433 MHz. transmitter Band European ISM 433 Operating frequency 433.92 MHz Data transfer type Unidirectional Modulation OOK / AM Coding Manchester Bitrate 4800 bps Outdoor range min 30 m Output power max -14 dBm e.i.r.p. Complies with FCC 15.231 standards 2.45 GHz receiver Band 2400 – 2483 MHz Operating frequency - Data transfer type Unidirectional Modulation OOK / AM Coding Manchester Outdoor range 8 m Rx sensitivity -35 dBm

Test Report

NOTICE: The results of tests and checks reported in this Test Report refer exclusively to the samples tested and described in the Report itself. This report shall not be reproduced partially or in its entirety without the written approval of IMQ S.p.A. IMQ S.p.A. - Via Quintiliano, 43 – I-20138 MILANO T E L E C O M M U N I C A T I O N S & T E L E M A T I C S F O R T R A N S P O R T S L A B O R A T O R Y Telecommunications & Telematics for Transports Lab. TEST REPORT Ref. No. ARSG00141/b Date: 2007-06-11 Measurements performed in accordance with: FCC Rules: Code of Federal Regulations (CFR) no. 47 - PART 15 – RADIO FREQUENCY DEVICES PRODUCT : Active dual-layer Transponder APPLICANT : ADVANCED MICROWAVE ENGINEERING S.r.l. – Via del Monasteraccio, 4 - FIRENZE MANUFACTURER : ADVANCED MICROWAVE ENGINEERING S.r.l. – Via del Monasteraccio, 4 - FIRENZE TRADEMARK : ADVANCED MICROWAVE ENGINEERING TESTED MODEL : LX 1004 QDU FCC ID : UKOPLX004QDU RATING : DC 3 V Lithium battery type 2032 OTHER INFORMATION :Samples received on :2006-08-29 Testing dates : 2006-08-29 ÷2006-09-04 Samples tested No. :1 Testing site :IMQ S.p.A – Via Quintiliano, 43 I-20138 MILANO Tested by : R. Radice Signature: Date :2007-06-11 Checked by: R. Colombo (EMC and R&TTE Lab. deputy) Signature: Date :2007-06-11 Revision Sheet Release No. Date Revision Description Rev. 0 2006-09-19 Test Results and Evaluation Report Rev. 1 2007-02-08 Antenna requirement Rev. 2 2007-06-11 FCC ID TT&T Laboratory Test Report No. ARSG00141/b Date: 2007-06-11 page 2 of 25 T E L E C O M M U N I C A T I O N S & T E L E M A T I C S F O R T R A N S P O R T S L A B O R A T O R Y CONTENTS 1TEST SPECIFICATIONS, METHODS & PROCEDURES ...............3 1.1 EMISSION TESTS ........................................................................3 1.2 EQUIPMENT CLASSIFICATION...................................................3 1.3 ENVIRONMENTAL CONDITIONS ................................................3 2EQUIPMENT UNDER TEST DETAILS............................................4 2.1 EUT IDENTIFICATION..................................................................4 2.2 EUT TECHNICAL DATA ...............................................................5 2.3 TESTED SAMPLES ......................................................................5 2.4 SYSTEM INTERFACE IDENTIFICATION .....................................6 2.5 DESCRIPTION OF SUPPORT EQUIPMENT ...............................7 3GENERAL MEASUREMENT CONDITIONS ...................................8 3.1 OPERATION OF THE EQUIPMENT (EUT) ..................................8 3.2 EUT PERFORMANCE ASSESSMENT .........................................9 4SUMMARY OF TEST RESULTS ...................................................10 4.1 EMISSION TESTS ......................................................................10 5EMC TEST DATA ..........................................................................11 6ADDITIONAL TECHNICAL INFORMATION..................................22 6.1 ELECTROMAGNETICALLY RELEVANT COMPONENTS: ........22 6.2 RFI SUPPRESSION DEVICES: ..................................................22 6.3 EMI PROTECTION DEVICES: ....................................................22 7TECHNICAL DOCUMENTATION..................................................22 8PHOTOGRAPHIC DOCUMENTATION .........................................23 8.1 EUT IDENTIFICATION................................................................23 9MEASUREMENT AND TEST EQUIPMENT ..................................25 TT&T Laboratory Test Report No. ARSG00141/b Date: 2007-06-11 page 3 of 25 T E L E C O M M U N I C A T I O N S & T E L E M A T I C S F O R T R A N S P O R T S L A B O R A T O R Y 1TEST SPECIFICATIONS, METHODS & PROCEDURES The following tests and relevant standards have been applied to the Equipment Under Test (EUT): 1.1 EMISSION TESTS Product family standard Date Title FCC Rules February 1, 2006 Code of Federal Regulations (CFR) no. 47 PART 15 – RADIO FREQUENCY DEVICES 1.2 EQUIPMENT CLASSIFICATION According to the definition 15.3 (o) EUT is a Class B digital device. A digital device that is marketed for use in a residential environment notwithstanding use in commercial, business and industrial environments. Examples of such devices include, but are not limited to, personal computers, calculators, and similar electronic devices that are marketed for use by the general public. Note: The responsible party may also qualify a device intended to be marketed in a commercial, business or industrial environment as a Class B device, and in fact is encouraged to do so, provided the device complies with the technical specifications for a Class B digital device. In the event that a particular type of device has been found to repeatedly cause harmful interference to radio communications, the Commission may classify such a digital device as a Class B digital device, regardless of its intended use so it shall fulfil provisions of 47CFR Part 15 Subpart C – Intentional radiators – Section 15.231 and 15.209. 1.3 ENVIRONMENTAL CONDITIONS TEST CONDITIONS MEASURED Ambient Temperature 20 ÷25 °C Relative Humidity 50 ÷60 % Atmospheric Pressure 900 ÷1000 mbar TT&T Laboratory Test Report No. ARSG00141/b Date: 2007-06-11 page 4 of 25 T E L E C O M M U N I C A T I O N S & T E L E M A T I C S F O R T R A N S P O R T S L A B O R A T O R Y 2EQUIPMENT UNDER TEST DETAILS 2.1 EUT IDENTIFICATION The EUT is composed by the following modules/parts: Transmitter module 433,92 MHz Receiver module 2,45 GHz EUT classification Intentional radiator EUT use / installation (fixed/vehicular use/portable use) : Portable EUT single or system: Single EUT standing (floor- standing/Table-top-wall- mounted) : --- Dimension of EUT (H x W x D): 55 x 55 x 12 mm Weight of EUT: --- TT&T Laboratory Test Report No. ARSG00141/b Date: 2007-06-11 page 5 of 25 T E L E C O M M U N I C A T I O N S & T E L E M A T I C S F O R T R A N S P O R T S L A B O R A T O R Y 2.2 EUT TECHNICAL DATA Po…

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Contact Information

Applicant

Filippo Bonifacio
[email protected]+3905573921Fax: +390557392141

Test Firm

IMQ - Istituto Italiano Marchio QualitaVincenzo La Fragola
[email protected]39-2-5073392Fax: 39-2-50991509

Technical Specifications

#Rule PartsFrequency RangePower Output
115.231433.92 MHz - 433.92 MHz-
Confidentiality
Long Term

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