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SZV-STM300CTransceiver Module

EnOcean GmbH
Transceiver Module - FCC ID SZV-STM300C - EnOcean GmbH
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Application Details

Equipment Class
DSR - Part 15 Remote Control/Security Device Transceiver
Date of Grant
Apr 06, 2010
Application Purpose
Original Equipment
Date of Application
Apr 06, 2010
Equipment Note
Transceiver Module
Frequency Range
315.00000000 - 315.00000000
Company
EnOcean GmbH
Country
Germany

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 V0.90 EnOcean GmbH Kolpingring 18a 82041 Oberhaching Germany Phone +49.89.67 34 689-0 Fax +49.89.67 34 689-50 [email protected] www.enocean.com Subject to modifications STM 300 / STM 300C User Manual V0.90 February 26, 2010 2:18 PM Page 1/36 Patent protected: WO98/36395, DE 100 25 561, DE 101 50 128, WO 2004/051591, DE 103 01 678 A1, DE 10309334, WO 04/109236, WO 05/096482, WO 02/095707, US 6,747,573, US 7,019,241 Observe precautions! Electrostatic sensitive devices! Scavenger Transceiver Module STM 300 / STM 300C February 26, 2010 USER MANUAL V0.90 © 2010 EnOcean | www.enocean.com STM 300 / STM 300C User Manual V0.90 | Page 2/36 STM 300 / STM 300C REVISION HISTORY The following major modifications and improvements have been made to the first version of this document: No Major Changes 0.6 Chapter 4 (Agency certifications) modified; Chapter 2.8.1 Order of Data Bytes for 10/8/6 bit option modified Drawing in 1.3 corrected; Chapter 3.4 and 3.5 modified. Charging circuit in chapter 3.1 modified 0.7 Additional function on pin WXIDIO; charging circuit in chapter 3.1 modified; pro- grammable delay time for measurement added in 2.8.2; operating temperature range limited to -25 °C/+85 °C; deep sleep current increased to 0.2 μA; RX sensi- tivity reduced to -94 dBm; Layout recommendation in 3.5 modified; Maximum Rat- ings (non-operating) modified in 2.4, Maximum Ratings (operating) added in 2.5 0.75 Section 2.7 and 2.11 modified. Max output currents in 2.3 reduced 0.8 ECS 3x0 solar cells mentioned. Receive current increased to typ.33 mA; Section 2.7 and 2.3.2 modified; Section 3.4 inserted; recommended foot pattern added in 3.6; new drawing in 1.3; section 3.8 Tape&Reel spec added; RX sensitivity reduced to -93 dBm 0.9 Max. ripple at VDD reduced to 50 mVpp; Connect external 1 kΩ pull-down to RE- SET and PROG_EN. Published by EnOcean GmbH, Kolpingring 18a, 82041 Oberhaching, Germany www.enocean.com, [email protected], phone ++49 (89) 6734 6890 © EnOcean GmbH All Rights Reserved Important! This information describes the type of component and shall not be considered as assured characteris- tics. No responsibility is assumed for possible omissions or inaccuracies. Circuitry and specifications are subject to change without notice. For the latest product specifications, refer to the EnOcean web- site: http://www.enocean.com. As far as patents or other rights of third parties are concerned, liability is only assumed for modules, not for the described applications, processes and circuits. EnOcean does not assume responsibility for use of modules described and limits its liability to the replacement of modules determined to be defective due to workmanship. Devices or systems contain- ing RF components must meet the essential requirements of the local legal authorities. The modules must not be used in any relation with equipment that supports, directly or indirectly, human health or life or with applications that can result in danger for people, animals or real value. Components of the modules are considered and should be disposed of as hazardous waste. Local government regulations are to be observed. Packing: Please use the recycling operators known to you. By agreement we will take packing mate- rial back if it is sorted. You must bear the costs of transport. For packing material that is returned to us unsorted or that we are not obliged to accept, we shall have to invoice you for any costs incurred. USER MANUAL V0.90 © 2010 EnOcean | www.enocean.com STM 300 / STM 300C User Manual V0.90 | Page 3/36 STM 300 / STM 300C TABLE OF CONTENT 1 GENERAL DESCRIPTION ............................................................................... 4 1.1 Basic functionality ....................................................................................... 4 1.2 Technical data............................................................................................. 5 1.3 Physical dimensions ..................................................................................... 5 1.4 Environmental conditions.............................................................................. 6 1.5 Ordering Information ................................................................................... 6 2 FUNCTIONAL DESCRIPTION .......................................................................... 7 2.1 Simplified firmware flow chart and block diagram............................................. 7 2.2 Hardware pin out......................................................................................... 9 2.3 Pin description and operational characteristics ................................................. 9 2.3.1 Interface supply voltage ..........................................................................11 2.3.2 Analog and digital inputs .........................................................................11 2.4 Absolute maximum ratings (non operating)....................................................12 2.5 Maximum ratings (operating) .......................................................................12 2.6 Power management and voltage regulators ....................................................12 2.7 Charge control output (CCO)........................................................................13 2.8 Configuration .............................................................................................14 2.8.1 Configuration via pins .............................................................................14 2.8.2 Configuration via serial interface...............................................................15 2.9 Radio telegram ..........................................................................................16 2.9.1 Normal operation....................................................................................16 2.9.2 Teach-in telegram ..................................................................................17 2.10 Transmit timing......................…

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Users Manual

USER MANUAL V0.82 EnOcean GmbH Kolpingring 18a 82041 Oberhaching Germany Phone +49.89.67 34 689-0 Fax +49.89.67 34 689-50 [email protected] www.enocean.com Subject to modifications TCM 300 / 300C / 320 / 320C User Manual V0.82 February 11, 2010 6:03 PM Page 1/43 Patent protected: WO98/36395, DE 100 25 561, DE 101 50 128, WO 2004/051591, DE 103 01 678 A1, DE 10309334, WO 04/109236, WO 05/096482, WO 02/095707, US 6,747,573, US 7,019,241 Observe precautions! Electrostatic sensitive devices! Transceiver Module TCM 300 / TCM 300C TCM 320 / TCM 320C February 11, 2010 USER MANUAL V0.82 © 2010 EnOcean | www.enocean.com TCM 300 / 300C / 320 / 320C User Manual V0.82 | Page 2/43 TCM 300 / 300C / 320 / 320C REVISION HISTORY The following major modifications and improvements have been made to the first version of this document: No Major Changes 0.6 Chapter 4 modified, Drawing in 1.3 corrected; Chapter 3.6 added. 0.7 Chapter 3.8 added; Operating temperature range limited to -25 °C/+85 °C; RX sensitivity reduced to -94 dBm; Layout recommendation in 3.5 modified; Change in 2.2.: Do not connect pins marked as n.c.; Maximum Ratings (non- operating) modified in 2.3; Maximum Ratings (operating) added in 2.4 0.75 Section 2.2.1 updated; output currents reduced in 2.2 0.8 Receive current increased to typ. 33 mA; Section 3.5 modified; recommended foot pattern added in 3.6.1;new drawings in 1.3; section 2.7 Repeater Configuration added; section 2.10 Smart Acknowledge added; section 3.8 Tape&Reel spec. added; RX sensitivity reduced to -93dBm; section 3.10 added; 0.81 Sections 3.2.x content removed; section 4.2 and 4.3 content removed; 0.82 Max. ripple at VDD reduced to 50 mVpp; Connect external 1 kΩ pull-down to RE- SET and PROG_EN. Published by EnOcean GmbH, Kolpingring 18a, 82041 Oberhaching, Germany www.enocean.com, [email protected], phone +49 (89) 6734 6890 © EnOcean GmbH All Rights Reserved Important! This information describes the type of component and shall not be considered as assured characteristics. No responsibility is assumed for possible omissions or inaccuracies. Circuitry and specifications are subject to change without notice. For the latest product specifica- tions, refer to the EnOcean website: http://www.enocean.com. As far as patents or other rights of third parties are concerned, liability is only assumed for modules, not for the described applications, processes and circuits. EnOcean does not assume responsibility for use of modules described and limits its liability to the replacement of modules determined to be defective due to workmanship. Devices or systems containing RF components must meet the essential requirements of the local legal authorities. The modules must not be used in any relation with equipment that supports, directly or indirectly, human health or life or with applications that can result in danger for people, animals or real value. Components of the modules are considered and should be disposed of as hazardous waste. Local government regulations are to be observed. Packing: Please use the recycling operators known to you. By agreement we will take pack- ing material back if it is sorted. You must bear the costs of transport. For packing material that is returned to us unsorted or that we are not obliged to accept, we shall have to in- voice you for any costs incurred. USER MANUAL V0.82 © 2010 EnOcean | www.enocean.com TCM 300 / 300C / 320 / 320C User Manual V0.82 | Page 3/43 TCM 300 / 300C / 320 / 320C TABLE OF CONTENT 1 GENERAL DESCRIPTION ............................................................................... 5 1.1 Basic functionality ....................................................................................... 5 1.2 Technical data............................................................................................. 5 1.3 Physical dimensions ..................................................................................... 6 1.4 Environmental conditions.............................................................................. 7 1.5 Ordering information.................................................................................... 7 2 FUNCTIONAL DESCRIPTION .......................................................................... 8 2.1 Pin out....................................................................................................... 8 2.2 Pin description and operational characteristics ................................................. 9 2.2.1 Interface supply voltage - IOVDD..............................................................10 2.3 Absolute maximum ratings (non operating)....................................................12 2.4 Maximum ratings (operating) .......................................................................12 2.5 Operating modes........................................................................................13 2.6 Mode selection ...........................................................................................14 2.7 Repeater configuration ................................................................................15 2.8 Teach-in procedure.....................................................................................16 2.8.1 Setting the receiver to learning mode ........................................................16 2.8.2 Confirmation of Learning Mode .................................................................16 2.8.3 Teaching in a transmitter.........................................................................16 2.8.4 Confirmation of correct learning/deletion ...................................................17 2.8.5 Learning of further transmitters................................................................17 2.8.6 Selecting the next channel .......................................................................17 2.8.7 Leaving learning mode ............................................................................17 2.8.8 Deleting a transmitter …

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Cover Letter(s)

EnOcean GmbH Kolpingring 18a 82041 Oberhaching/Germany Dr. Wolfgang Heller Product Line Manager Phone +49.89.67 34 689-34 Fax +49.89.67 34 689-55 Mobile +170.855 92 64 [email protected] [email protected] Date: February 26, 2010 Page: 1 OEM Agreement Governing use of EnOceanOEM Agreement Governing use of EnOcean Limited Modular Approval This Agreement (the “Agreement ”), is made and entered into as of ________, 2010 (the “Effective Date ”) by and between EnOcean GmbH with its principal place of business located at Kolpingring 18a, D-82041 Oberhaching, Germany (“EnOcean ”), and ____________________________, a _______________ with its principal place of business located at _____________, hereinafter referred to as “PARTY” or “PARTIES” respectively. NOW, THEREFORE, in consideration of the foregoing and of the mutual covenants, promises and agreements contained in the following provisions, and intending to be legally bound by this Agreement, the Parties agree as follows: LIMITED MODULAR APPROVAL EnOcean RF modules, approved for Limited Modular use, operate as intentional transmitting devices with respect to 47 CFR 15.231(a-c) and are limited to OEM installation. The modules are optimized to operate using small amounts of harvested energy, and may be powered by a small solar cell exposed to ambient light or a battery. The module transmits short radio packets comprised of control signals, (in some cases the control signal may be accompanied with data) such as those used with alarm systems, door openers, remote switches, and the like. The module does not support continuous streaming of voice, video, or any other forms of streaming data; it sends only short packets containing control signals and possibly data. The module is designed to comply with, has been tested according to 15.231(a-c), and has been found to comply with each requirement. Thus, a finished device containing an EnOcean radio module can be operated in the United States and Canada without additional FCC/IC approval (approval(s) for unintentional radiators may be required for the OEM’s finished product), under EnOcean’s FCC ID number. This EnOcean GmbH Kolpingring 18a 82041 Oberhaching Germany Phone +49.89.67 34 689-0 Fax +49.89.67 34 689-50 [email protected] www.enocean.com Managing Directors: Markus Brehler, Uwe Thumm Registered Court Munich HRB 139781 VAT Reg.No. DE813355588 Account: HypoVereinsbank München No. 2440610 Bank Code 700 202 70 Date: February 26, 2010 Page: 2 greatly simplifies and shortens the design cycle and development costs for OEM integrators. The module can be triggered manually or automatically, which cases are described below. Manual Activation The radio module can be configured to transmit a short packetized control signal if triggered manually. The module can be triggered by pressing a switch, for example. The packet contains one (or more) control signals that is (are) intended to control something at the receiving end. The packet may also contain data. Depending on how much energy is available from the energy source, subsequent manual triggers can initiate the transmission of additional control signals. This may be necessary if prior packet(s) was (were) lost due to fading or interference. Subsequent triggers can also be initiated as a precaution if any doubt exists that the first packet didn’t arrive at the receiver. Each packet that is transmitted, regardless of whether it was the first one or a subsequent one, will only be transmitted if enough energy is available from the energy source. Automatic Activation The radio module also can be configured to transmit a short packetized control signal if triggered automatically, by a relevant change of its inputs, for example. Again, the packet contains a control signal that is intended to control something at the receiving end and may also contain data. As above, it is possible for the packet to get lost and never reach the receiver. However, if enough energy is available from the energy source, and the module has been configured to do so, then another packet or packets containing the control signal may be transmitted at a later, unpredictable time. (I) FCC requirements: (a) In order to use the FCC/IC grant, the OEM must not operate or configure the module in such a way that the module will transmit more than 2 seconds telegrams per hour. For STM300C modules this can be done by properly selecting the connection of CW_0, CW_1, CP_0, and CP_1 in a way that not more than 1110 telegrams are sent per hour. If a TCM300C, STM300C or TCM320C module is used as a repeater, for instance, special consideration must be given to ensure that this requirement is met. This can be accomplished by, but not limited to, the following methods: • programming the module through the API to enforce this limit; EnOcean GmbH Kolpingring 18a 82041 Oberhaching Germany Phone +49.89.67 34 689-0 Fax +49.89.67 34 689-50 [email protected] www.enocean.com Management: Markus Brehler, Uwe Thumm Registered Court Munich HRB 139781 VAT Reg No. DE813355588 Account: HypoVereinsbank München No. 2440610 Bank Code 700 202 70 Date: February 26, 2010 Page: 3 • installing the device in a network in which it is impossible to exceed the limit; (b) End users of products which contain the module must not have the ability to alter the firmware that governs the operation of the module. The agency grant is valid only when the module is incorporated into a final product by OEM integrators. (c) The end-user must not be provided with instructions to remove, adjust or install the module. The OEM must instruct the end user not to do so by providing appropriate written documentation (d) FCC labeling requirements: The Original Equipment Manufacturer (OEM) must ensure that FCC labeling requirements are met. This includes a clearly visible label on the outside of the final product. Attaching a label to a removable portion of the final product, such as a battery cover, is not permitted. The label must include the follo…

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External Photos

External Photos (TCM300C / STM300C) Top View STM 300C / TCM 300C Bottom View STM 300C / TCM 300C

ID Label/Location Info

ID Label and Label Location (TCM300C / STM300C) ID label Label location on module

Internal Photos

Internal Photos (TCM300C / STM300C) Top View STM 300C TCM 300C Bottom View STM 300C / TCM 300C

Operational Description

USER MANUAL V0.90 © 2010 EnOcean | www.enocean.com STM 300 / STM 300C User Manual V0.90 | Page 4/36 STM 300 / STM 300C 1 GENERAL DESCRIPTION 1.1 Basic functionality The extremely power saving RF transmitter module STM 300 of EnOcean enables the realization of wireless and maintenance free sensors and actuators such as room operating panels, motion sensors or valve actuators for heating control. Power supply is provided by an external energy harvester, e.g. a small solar cell (e.g. EnOcean ECS 3x0) or a thermal harvester. An energy storage device can be connected externally to bridge periods with no supply from the energy harvester. A voltage limiter avoids damaging of the module when the sup- ply from the energy harvester gets too high. The module provides a user configurable cyclic wake up. After wake up a radio telegram (input data, unique 32 bit sensor ID, checksum) will be transmitted in case of a change of any digital input value compared to the last send- ing or in case of a significant change of measured analogue values (different input sensitivi- ties can be selected). In case of no relevant input change a redundant retransmission signal is sent after a user configurable number of wake-ups to announce all current values. In addition a wake up can be triggered externally. Features with built-in firmware „ 3 A/D converter inputs „ 4 digital inputs „ Configurable wake-up and transmission cycle „ Wake-up via Wake pins „ Voltage limiter „ Threshold detector „ Application notes for calculation of energy budgets and management of external energy storages Product variants „ STM 300/300C: SMD mountable module for use with external antenna (868/315 MHz) Features accessible via API Using the Dolphin API library it is possible to write custom firmware for the module. STM 300 / STM 300C is in-system programmable. The API provides: „ Integrated 16 MHz 8051 CPU with 32 KB FLASH and 2 kB SRAM „ Receiver functionality „ Various power down and sleep modes down to 0.2 μA current consumption „ Up to 16 configurable I/Os „ 10 bit ADC, 8 bit DAC USER MANUAL V0.90 © 2010 EnOcean | www.enocean.com STM 300 / STM 300C User Manual V0.90 | Page 5/36 STM 300 / STM 300C 1.2 Technical data Antenna External whip or 50 Ω antenna mountable Frequency 315.0 MHz (STM 300C)/868.3 MHz (STM 300) Radio Standard EnOcean 868 MHz/315 MHz Data rate/Modulation type 125 kbps/ASK Receiver Sensitivity (at 25°C) typ. –93 dBm, receiver available only via API Conducted Output Power typ. 5 dBm Power Supply 2.1 V–4.5 V, 2.6 V needed for start-up Current Consumption Deep Sleep mode : typ. 0.2 μA Transmit mode: typ. 24 mA, max. 33 mA Receive mode (available via API only): typ. 33 mA, max. 43 mA Input Channels 4x digital input, 2x WAKE input , 3x analog input Resolution: 3x 8 bit or 1x 10 bit, 1x 8 bit, 1x 6 bit Radio Regulations R&TTE EN 300 220 (STM 300) FCC CFR-47 Part 15 (STM 300C) 1.3 Physical dimensions STM 300 / STM 300C (pads on bottom side of PCB!) PCB dimensions STM 300/STM 300C: 22x19x3.1 mm Unless otherwise specified dimensions are in mm. Tolerances: PCB outline dimensions ±0.2 mm All other tolerances ±0.1 mm USER MANUAL V0.90 © 2010 EnOcean | www.enocean.com STM 300 / STM 300C User Manual V0.90 | Page 6/36 STM 300 / STM 300C 1.4 Environmental conditions Operating temperature -25 °C ... +85 °C Storage temperature -40 °C ... +85 °C Storage temperature in tape & reel package -20 °C ... +50 °C Humidity 0% ... 93% r.h., non-condensing 1.5 Ordering Information Type Ordering Code Frequency STM 300 S3001-D300 868.3 MHz STM 300C S3031-D300 315.0 MHz Suited solar cells (for technical details please refer to the ECS3x0 data sheet): Type Ordering Code Size ECS 300 S3005-D305 35.0×12.8×1.1 mm ECS 310 S3005-D310 50.0×20.0×1.1 mm

Test Report

Prüfbericht / Test report Test-Firm-Registration-Number: 90870 FCC (Federal Communications Commission) Ohmstrasse 1 84160 Frontenhausen, Germany Tel.: + 49 (0) 8732 - 6381 Fax: + 49 (0) 8732 - 2345 E-mail: [email protected] Prüfbericht Nr./ Test report no.: 10/01-0093 Seite 1 von 18 Seiten Page 1 of 18 pages Prüfbericht Nr./Test report no.: 10/01-0093 Seite 2 von 18 Seiten Page 2 of 18 pages TABLE OF CONTENTS Page 1. CLIENT INFORMATION 3 2. EQUIPMENT UNDER TEST 3 3. TEST SITE 4 4. CALIBRATIONS OF MEASURING INSTRUMENTS 4 5. DESCRIPTION OF THE TEST CONDITIONS 4-5 6. MEASURING INSTRUMENTS AND SET-UP 6-7 7. MEASUREMENTS AND RESULTS 8-9 8. TEST DATA / CONCLUSIONS 10-16 9. PHOTOS 17-18 Note: The test equipments used at pkm are calibrated by an external DKD-calibration laboratory. Calibration documents are available upon request. To duplicate parts of this test report needs the written confirmation of the test laboratory. The test results are based only on the following specified test sample (see 2. EQUIPMENT UNDER TEST). Prüfbericht Nr./Test report no.: 10/01-0093 Seite 3 von 18 Seiten Page 3 of 18 pages 1. CLIENT INFORMATION: Name: EnOcean GmbH Address: Kolpingring 18a, 82041 Oberhaching, Germany Name of contact: Mr. Darius Draksas Telephone: + 49 (0) 89 67 34 689 - 627 Fax: + 49 (0) 89 67 34 689 - 50 E-mail: [email protected] 2. EQUIPMENT UNDER TEST: 2.1 Identification of the EUT Equipment: 315 MHz Transceiver Modul Model: TCM300C / STM300C Brand name: -/- Serial no.: 148001000077 Manufacturer: -/- Country of origin: Germany Date of receipt of test sample: 27.01.2010 Date of tests performed: 27.01.2010 Power supply: 2.5V - 4.5V DC Frequency 315MHz Type of modulation 373KA1DAN Number of channels 1 Antenna wire antenna 15cm Max. ERP 94.9 dBμV/m peak, measured at 3m distance from transmitter 74.9 dBμV/m average, measured at 3m distance from transmitter Applied standards FCC Part 15 - Radio Frequency Devices, Subpart C - Intentional Radiators 15.231, Subpart B - Unintentional Radiators for the receiver part 2.2 Additional information about the EUT: During fieldstrength- and bandwidth-tests a 3V Varta CR2032 battery was used as power supply, where for conducted emission a AC DC converter with 115V / 60Hz input and 3V DC output was used. Prüfbericht Nr./Test report no.: 10/01-0093 Seite 4 von 18 Seiten Page 4 of 18 pages 3. TEST SITE 3.1. Shielded room for conducted emission Measurement of conducted emission from EUT was made in the shielded chamber (Siemens DC-10GHz) that has been found in compliance with Federal Communications Commissions (FCC) requirements according to ANSI C63.4-2003 on March 04, 2009. 3.2. Semi-anechoic chamber/OATS for radiated emission Measurement of radiated emissions from EUT was made in the semi-anechoic chamber that has been found in compliance with Federal Communications Commissions (FCC) requirements according to ANSI C63.4-2003 on March 04, 2009. 4. CALIBRATIONS OF MEASURING INSTRUMENTS All measurements were made with instruments calibrated according to the requests of EN/IEC 17025 according to which the test site is accredited. Measurement of radiated emissions was made with instruments conforming to American National Standard Specification, ANSI C63.4-2003. The calibration of measuring instrument, including any accessories that may affect test results, was performed according to the requests of EN/IEC 17025. 5. DESCRIPTION OF THE TEST CONDITIONS (general) 5.1 Conducted emission measurements 5.1.1 Test site Measurements were made in shielded chamber as described at 3.1 in this report. 5.1.2 Detector function selection and bandwidth In conducted emissions measurement CISPR quasi-peak- and average-detector were used. The bandwidth of the detector of instrument is 10 kHz over the frequency range of 150 kHz to 30 MHz, Conducted emission is detected in CCIR quasi-peak- and average-mode. 5.1.3 Unit of measurement Test results of conducted emission measurement are reported in dBμV. 5.1.4 Frequency range to be scanned For conducted emission measurements, the spectrum in the range of 150 kHz to 30 MHz was investigated. 5.1.5 Test conditions and configuration of EUT The EUT was configured and operated in all modes of operation so as to find the maximum conducted emission generated from EUT. The power was furnished with rated (normal) voltage, as specified in the owner’s manual of EUT. The EUT was placed on a 80 cm high non metallic table. Each type of accessory provided by manufacturer or typically used and support equipment were connected to the EUT during measurements as for the typical usage and applicable as nearly as practicable. 5.1.6 Measurement uncertainty Conducted emission measurements: + 1.8dB The measurement uncertainty describes the overall uncertainty of the given measured value during the operation of the EUT in the above mentioned way. The measurements uncertainty was calculated in accordance with NAMAS NIS 81: "The treatment of uncertainty in EMC measurement" and "Guide to the Expression of Uncertainty in Measurement (GUM)". The measurement uncertainty was given with a confidence of 95%. Prüfbericht Nr./Test report no.: 10/01-0093 Seite 5 von 18 Seiten Page 5 of 18 pages 5.2 Radiated emissions measurements 5.2.1 Test site Measurements were made in semi-anechoic chamber as described at 3.2 in this report. 5.2.2 Detector function selection and bandwidth In radiated emissions measurement, field strength meters that have CISPR quasi-peak and average were used. The bandwidth of the detector of instrument is 200 Hz over the frequency range of 9 kHz to 150 kHz, 10 KHz over the frequency range of 150 kHz to 30 MHz and 120kHz over the frequency range of 30 MHz to 1000 MHz, emissions to be measured are detected in CCIR quasi peak mode. The bandwidth of the detector of instrument is 1000 KHz for frequencies above 1000 MHz, emissions to be measured are detected in average mode. 5.2.3 Unit of measurement Test results of radiated emissions measuremen…

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Test Setup Photos

Prüfbericht Nr./Test report no.: 10/01-0093 Seite 17 von 18 Seiten Page 17 of 18 pages 9. PHOTOS set under test antenna CBL6111 test setup for frequencies between 30MHz and 1000MHz antenna battery set under test set under test horn antenna RGA-60 loop antenna test setup for frequencies between test setup for frequencies above 1000MHz 9 kHz and 30MHz Prüfbericht Nr./Test report no.: 10/01-0093 Seite 18 von 18 Seiten Page 18 of 18 pages EMI test receiver ESVS-30 Computer, Printer 20MHz - 1000MHz spectrum analyzer FSMS 26 Broadband-Preamplifier 1-18 GHz BBV9718 cable to horn antenna RGA-60 cable to antenna CBL6111 set under test AC adaptor mains network conducted emission 150 kHz - 30 MHz cable to loop antenna or mains network monitor computer printer EMI test receiver ESHS-30 emission <30MHz End of test report

Contact Information

Applicant

Armin Anders(Director Product Marketing)
[email protected]+49 89 6734 689 - 33Fax: +49 89 6734 689 - 54

Test Firm

SGS Germany GmbHJosef Bauer
[email protected]49-89-787475-440Fax: +49 89 787475-453

Technical Specifications

#Rule PartsFrequency RangePower Output
115.231315 MHz - 315 MHz-
Modular Type
Limited Single Modular Approval
Confidentiality
Long Term
Grant Notes
The only antennas approved for use with this module are those documented in the filing, and must be installed in the manner specified therein.

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