
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
July 20101.1 Handwheels1 1 HR 550FS Handwheel 1.1 Handwheels The standard iTNC 530 HSCI supports the use of electronic handwheels. They are connected to X23 of the machine operating panel. The following handwheels can be installed: „One HR 550FS portable handwheel with wireless transmission „One HR 520 portable handwheel with connecting cable, or „One HR 410 portable handwheel with connecting cable, or „One HR 130 panel-mounted handwheel HR 550FS handwheel with wireless transmission Portable electronic handwheel with wireless transmission: „Graphic display, Resolution: 128 x 64 pixels, 6-line display „6 NC keys „6 PLC keys with LEDs that are controlled through the PLC „2 override potentiometers (feed rate and spindle speed) „2 permissive buttons „Exchangeable snap-on keys for PLC functions and maintenance „Integrated emergency stop button „Vibration alarm when leaving the radio range „Battery warning „Display of radio field strength „Weight: Approx. 1 kg Without mechanical detent: ID 598 515-xx With mechanical detent: ID 606 622-xx Accessories (1 x included with the HR 550FS): Handwheel batteries (battery pack, 4-tray) ID 623166-02 2HEIDENHAIN Technical Manual iTNC 530 HRA 551FS Handwheel holder (docking tray) with integrated charger for handwheel batteries ID 731 928-xx July 20101.1 Handwheels3 1.1.1 HR 550 wireless handwheel The HR 550FS wireless handwheel must always be used together with the HRA 551FS handwheel adapter. The handwheel and the handwheel adapter communicate with each other via radio transmission. The handwheel adapter is connected to X23 of the machine operating panel via the connecting cable. If the handwheel is located in the HRA, communication takes place through serial data transmission via contacts on the HRA and on the rear side of the HR instead of through radio transmission. The function of the HR 550FS remains the same, regardless of whether it communicates via radio transmission or via the handwheel adapter. The HRA handwheel adapter features an integrated charger for the handwheel batteries. In addition, the safety-related signals (Emergency Stop, permissive buttons) are translated into relay contacts through the HRA. They must be used to connect the Emergency Stop button and the permissive buttons of the handwheel to the control and the associated safety circuits. If the machine operator moves with the HR too far away from the HRA, a vibration alarm announces that transmission is weak before the machine operator has actually left the radio range. If the machine operator leaves the radio range anyway, or if radio communication is interrupted for other reasons, the HRA relay contacts for Emergency Stop and for the permissive buttons will open. You must ensure through appropriate wiring that this triggers an Emergency Stop on the control. HEIDENHAIN also recommends that you always place the wireless handwheel into the HRA 551FS adapter when you are not using it. This prevents you from confusing the different handwheels. It also ensures that the handwheel battery is recharged and prevents an unexpected Emergency Stop reaction triggered by an empty battery. Gefahr If more than one control with a portable HR 550 handwheel is located in a factory hall, a room or a working area, then the handwheels must be identified by unique color markings. The color marking must be applied to the handwheel and the associated machine tool at a clearly visible location. The marking on the handwheel and the machine tool must enable the machine operator to see clearly which handwheel belongs to which machine tool. The color marking must ensure that no confusion occurs. A set of different markers is included with the wireless handwheel. In addition, the machine operator must be informed that he must ensure/ verify every time before using the handwheel that he uses the correct handwheel for the respective machine tool. 4HEIDENHAIN Technical Manual iTNC 530 When using a wireless handwheel and the HRA adapter at X23 of the MB 6xx, you must ensure that the assignment between the handwheel and the HRA is unambiguous. The individual serial numbers of the wireless handwheel and the HRA are used for mutual assignment. When the control to which the HR and the HRA are connected is switched on for the first time, both units exchange their serial numbers and store them. To do this, the wireless SpecificationsHR 550FS with HRA 551FS Radio range (max. distance between the HR and the HRA) Max. 20 m in direct line of sight (depending on the ambient conditions) Ambient temperature during operation 0 ¬×C to + 40 ¬×C Ambient temperature for charging process of battery + 5 ¬×C to + 40 ¬×C (recharging the battery at a temperature of < + 10 ¬×C may reduce the battery life) Storage temperature of NiMH rechargeable battery ‚Äì20 ¬×C to +21 ¬×C with a state of charge of 40% Power supply for HRA 551FS12 V Display resolution128 x 64 pixels Power consumption Max. 10 W during charging phase BatteriesPackage with 4 x AA batteries NiMh 4.8 V/2400mAh Complete charging timeApprox. 150 minutes Life of rechargeable batteryApprox. 16 hours with a utilization of 50% Radio frequencyISM band 2.4 GHz Transmitter power10 mW Usable number of channels16 Number of possible HRs with wireless transmission Only one wireless HR per machine tool Degree of protectionIP 54 for HR 551FS IP 54 for HR 550FS Max. voltage for relay contacts in HRA 551FS 250 V~ Max. current for relay contacts in HRA 551FS 3.6 A Reaction times of Emergency Stop and permissive buttons safety functions Time until the reaction of the relay contacts: max. 170 ms; typically 60 ms FCC-IDYJKHR550FS Weight HR 5501 kg ID for HR 550FS without mech. detent 598 515-xx ID for HR 550FS with mech. detent 606 622-xx ID HRA 551FS731 928-xx July 20101.1 Handwheels5 handwheel must be located in the HRA. If this is the case, the HR and the HRA communicate only over the serial interface. Both serial numbers (HRA and HR) will then also be saved in the control. If you remove the H…
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Wireless Handwheel (HR 550 FS) Block diagram Edited on: Release-No. Created ResponsibleReleased Version Rev. Sheet Page Name Viotto F. Viotto F. D744055 - 01-B-01 1/ Date 04.05.2011 00 00 00 04.05.2011 00 00 00 Document no. 3 Note the protection mark for ISO 16016! 4MHz Clock Wireless Handwheel HR 550 FS 2.4 GHz ZigBee Transceiver CPU 2 CPU 1 16MHz Crystal Data Data Release No. Created Responsible Released Version Rev. Sheet Page Name Viotto F. Viotto F. D744055 - 01-B-01 2/ Date 04.05.2011 00 00 00 04.05.2011 00 00 00 Document no. 3 Note the protection mark for ISO 16016! The 2.4 GHz ZigBee transceiver Block drawing, show a simplified diagram of the MC13192 which is an 802.15.4 standard compatible transceiver that provide the function required in the physical layer specifications. Product Description This document describes the product HR550 and HRA550, a portable unit connected with the fixed unit, lets the operator to make changes in settings and parameters and to operate manual controlled movements of a milling machine electronically controlled by a numerical control system, to which is connected through an interface unit. The product shall comply with the requirements of the EN13849 Part-1 Performance Level D (only for the stop button and the enable buttons capabilities). The product described is in the form of two units: a user operated mobile unit and a fixed interface unit. Dimensions and shape of the mobile unit are ideal for a comfortable grip and an ergonomic use from the operator. The two units are intercommunicating trough a radio connection with a maximum channel occupation of the 15%. The fixed unit is also connected through another serial line to a numerical control system. The fixed unit has functions of interface between the mobile unit and the numerical control system. The fixed unit has some outputs relay that are used to unplug the power supply of the motors of the milling machine when an alarm occurs. The mobile unit is operative through a battery that is recharged when the mobile unit comes connected to the fixed one. On the mobile unit there are an lcd display, a keyboard, two potentiometer, an handwheel, two enable pushbutton and a big stop pushbutton that is placed in a position of evidence. If the operator walks away with the mobile unit and the physical distance become too much for the radio connection, the communication stops and the relays on the fixed unit open. To resume the Release No. Created Responsible Released Version Rev. Sheet Page Name Viotto F. Viotto F. D744055 - 01-B-01 3/ Date 04.05.2011 00 00 00 04.05.2011 00 00 00 Document no. 3 Note the protection mark for ISO 16016! connection the mobile unit must return near the fixed unit and the operator must follow a procedure on the keyboard of the numerical control. The radio connection is only for a short range and allows the communication between the fixed unit and the mobile unit for a maximum of approximately 25 meters. Every milling machine can be connected to maximum only one mobile unit. The radio connection is codified and can use one of the 16 channels available only. Block description of the mobile unit Inside the mobile unit there are two different cpu which are intercommunicating. The first cpu manages all peripherals, keyboard, display, handwheel and two potentiometers, reads the enable buttons and one of the two contacts that are inside the stop button. The second cpu also reads the enable buttons , the other contact of the stop button and manages the communication with the fixed unit via radio connection. Block description of the fixed unit The fixed unit can be connected to every type of numerical controls, and therefore provides traditional HW outputs (relays), which shall be used to ensure the safe state on the milling machine. The unit contains two cpu which are intercommunicating. The first cpu manages the communication with the mobile unit, the communication with the numerical control through serial line, and directly controls two output relays. The second cpu F2 controls two additional relays.
HEIDENHAIN HEIDENHAIN • Postfach • 83292 Traunreut, Germany Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 DR. JOHANNES HEIDENHAIN GmbH Dr.-Johannes-Heidenhain-Straße 5 • 83301 Traunreut, Germany H? +49 8669 31 -0 • [FAX] +49 8669 38609 • E-mail: [email protected] Your Reference Our Department/Responsible Person ©+49 8669 31- UM +49 8669 32 Datum NC-I Management / Dr. Kranitzky 1409 1409 2010-07-26 SAMPLE CONFIDENTIALITY FORM Gentlemen: This letter is to comply with Section 0.457(d)(2)(i) pertaining to confidential material. DR. JOHANNES HEIDENHAIN GmbH would like the following documents regarding this Submission for FCC ID: YJKHR550FS to be kept permanent confidential. 1. Electrical drawing Bill of material Circuit Diagram 738595-00-A-01 - HR.pdf Circuit Diagram 743033-00-A-01 - HRA.pdf BOM 594850-04-02-A - HR.pdf BOM 607436-04-03-A - HRA.pdf The above material contains trade secrets or technical data, which would customarily be guarded from competitors. We do not want these documents to be accessible to the general public. NJU *LS V . t—- >^>-^- «-»/^-^ QT Dr. Walter Kranitzky (Director NC-I) Yours faithfully, DR. JOHANNES HEIDENHAIN GmbH Albert Kraller (Head Product Manager) Chairman of the Supervisory Board: Rainer Burkhard Management Board: Thomas Sesselmann (Chairman), Michael Grimm, Matthias Fauser 684245-00 Court of Register: Traunstein, HRB275 • Head Office: Traunreut
TT&T Laboratory Test Report No. ARSK00125 Date 2010-09-09 page 48 of 52 T ELECOMMUNICATIONS & T ELEMATICS FOR T RANSPORTS L ABORATORY 8 PHOTOGRAPHIC DOCUMENTATION 8.1 EUT IDENTIFICATION External view of wireless portable controller
Label HR Product information Edited on: Release-No. Created Responsible Released Version Rev. Sheet Page Name D743988 - 01 - A - 01 1/ Date 18.10.2010 11:54:17 18.10.2010 00:00:00 18.10.2010 Document no. 2 Note the protection mark for ISO 16016! Hand Wheel: Release No. Created Responsible Released Version Rev. Sheet Page Name D743988 - 01 - A - 01 2/ Date 18.10.2010 11:54:17 18.10.2010 00:00:00 18.10.2010 Document no. 2 Note the protection mark for ISO 16016! Label:
TT&T Laboratory Test Report No. ARSK00125 Date 2010-09-09 page 49 of 52 T ELECOMMUNICATIONS & T ELEMATICS FOR T RANSPORTS L ABORATORY Internal view of wireless portable controller
© Freescale Semiconductor, Inc., 2004, 2005, 2006, 2007, 2008. All rights reserved. Freescale Semiconductor Technical Data Freescale reserves the right to change the detail specifications as may be required to permit improvements in the design of its products. Document Number: MC13192 Rev. 3.3, 04/2008 MC13192 Package Information Plastic Package Case 1311-03 (QFN-32) Ordering Information DeviceDevice MarkingPackage MC13192FC13192QFN-32 MC13192FCR2 (Tape and reel) 13192QFN-32 1Introduction The MC13192 is a short range, low power, 2.4 GHz Industrial, Scientific, and Medical (ISM) band transceivers. The MC13192 contains a complete 802.15.4 physical layer (PHY) modem designed for the IEEE ® 802.15.4 Standard which supports peer-to-peer, star, and mesh networking. The MC13192 includes the 802.15.4 PHY/MAC for use with the HCS08 Family of MCUs. The MC13192 can be used with Freescale’s IEEE 802.15.4 MAC and BeeStack, which is Freescale’s ZigBee 2006 compliant protocol stack. When combined with an appropriate microcontroller (MCU), the MC13192 provide a cost-effective solution for short-range data links and networks. Interface with the MCU is accomplished using a four wire serial peripheral interface (SPI) connection and an interrupt request output which allows for the use of a variety of processors. The software and processor can be scaled to fit applications ranging from simple point-to-point systems, through complete ZigBee™ networking. MC13192 2.4 GHz Low Power Transceiver for the IEEE ® 802.15.4 Standard Contents 1 Introduction . . . . . . . . . . . . . . . . . . . . . . . . . . 1 2 Features . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2 3 Block Diagrams . . . . . . . . . . . . . . . . . . . . . . . 4 4 Data Transfer Modes . . . . . . . . . . . . . . . . . . . 5 5 Electrical Characteristics . . . . . . . . . . . . . . . 7 6 Functional Description . . . . . . . . . . . . . . . . 11 7 Pin Connections . . . . . . . . . . . . . . . . . . . . . . 14 8 Applications Information . . . . . . . . . . . . . . . 17 9 Packaging Information . . . . . . . . . . . . . . . . . 23 Features MC13192 Technical Data, Rev. 3.3 2Freescale Semiconductor For more detailed information about MC13192 operation, refer to the MC13192 Reference Manual, (MC13192RM). Applications include, but are not limited to, the following: •Remote control and wire replacement in industrial systems such as wireless sensor networks •Factory automation and motor control •Energy Management (lighting, HVAC, etc.) •Asset tracking and monitoring Potential consumer applications include: •Home automation and control (lighting, thermostats, etc.) •Human interface devices (keyboard, mice, etc.) •Remote control •Wireless toys The transceiver includes a low noise amplifier, 1.0 mW power amplifier (PA), PLL with internal voltage controlled oscillator (VCO), on-board power supply regulation, and full spread-spectrum encoding and decoding. The device supports 250 kbps Offset-Quadrature Phase Shift Keying (O-QPSK) data in 2.0 MHz channels with 5.0 MHz channel spacing per the 802.15.4 Standard. The SPI port and interrupt request output are used for receive (RX) and transmit (TX) data transfer and control. 2Features •Supports 250 kbps O-QPSK data in 5.0 MHz channels and full spread-spectrum encode and decode (compatible with the 802.15.4 Standard) •Operates on one of 16 selectable channels in the 2.4 GHz band •RX sensitivity of <-92 dBm (typical) at 1.0% packet error rate •0 dBm nominal, programmable from -27 dBm to 4 dBm typical maximum output power •Recommended power supply range: 2.0 to 3.4 V •Buffered transmit and receive data packets for simplified use with low cost MCUs •Three power down modes for power conservation: —< 1 μA Off current —1 μA Typical Hibernate current — 35 μA Typical Doze current (no CLKO) •Four internal timer comparators available to supplement MCU resource •Programmable frequency clock output (CLKO) for use by MCU •Onboard trim capability for 16 MHz crystal reference oscillator eliminates need for external variable capacitors and allows for automated production frequency calibration. •Seven general purpose input/output (GPIO) signals •Operating temperature range: -40 °C to 85 °C •Small form factor QFN-32 Package Features MC13192 Technical Data, Rev. 3.3 Freescale Semiconductor3 — RoHS compliant — Meets moisture sensitivity level (MSL) 3 — 260 °C peak reflow temperature — Meets lead-free requirements 2.1Software Features Freescale provides a wide range of software functionality to complement the MC13192 hardware. There are three levels of application solutions: 1. Simple proprietary wireless connectivity. 2. User networks built on the 802.15.4 MAC standard. 3. ZigBee-compliant network stack. 2.1.1Simple MAC (SMAC) •Small memory footprint (about 3 Kbytes typical) •Supports point-to-point and star network configurations •Proprietary networks •Source code and application examples provided 2.1.2802.15.4 Standard-Compliant MAC •Supports star, mesh and cluster tree topologies •Supports beaconed networks •Supports GTS for low latency •Multiple power saving modes (idle doze, hibernate) 2.1.3ZigBee-Compliant Network Stack •Supports ZigBee 1.0 specification •Supports star, mesh and tree networks •Advanced Encryption Standard (AES) 128-bit security Block Diagrams MC13192 Technical Data, Rev. 3.3 4Freescale Semiconductor 3Block Diagrams Figure 1 shows a simplified block diagram of the MC13192 which is an 802.15.4 Standard compatible transceiver that provides the functions required in the physical layer (PHY) specification. Figure 1. MC13192 Simplified Block Diagram Figure 2 shows the basic system block diagram for the MC13192 in an application. Interface with the transceiver is accomplished through a 4-wire SPI port and interrupt request line. The media access control (MAC), drivers, and network and application software (as required) reside on the host processor. The host can vary from a simple 8-bit device up to a sophisticated 3…
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Product Information HR 550 FS Electronic Handwheel with Wireless Transmission September 2010 Product Information HR 550 FS 9/2010 Delicate manual traverse For setup, you can use the direction keys of the machine operating panel to move the machine axes manually or in incremental jog. A simpler and more reliable way, however, is to use the electronic handwheels from HEIDENHAIN. With the portable handwheels you are always close to the action, enjoy a close-up view of the setup process, and can control the infeed responsively and precisely. The HR 550 FS with wireless transmission is exceedingly simple to use: because it communicates with the handwheel holder via radio transmission, your movements are not restricted in any manner, and you can fully concentrate on the action in the machine’s working space. The practical HRA 551 handwheel holder is not just a docking station for the handwheel: it also features an integrated charger for the handwheel’s battery, so that your HR 550 FS is always ready for the next job. The transmission range is amply dimensioned. If you should nevertheless happen to come near the edge of the transmission area, which is possible with very large machines, the HR 550 FS warns you in time with a plainly noticeable vibration alarm. When the handwheel is in the docking station, contacts on its back ensure uninterrupted operation in the event of unexpected disturbances in the radio fi eld. System requirements The HR 550 FS can be connected to the iTNC 530 with the following software: NC software 340 49x-06 or higher• NC software 606 42x-01 (HSCI) or higher• The connecting and adapter cables are identical with those of the HR 420 and HR 520. The radio operating conditions of the iTNC 530 Technical Manual apply during operation of the HR 550 FS/HRA 551 FS in the appropriate locations. User-Friendly Setup with HEIDENHAIN Handwheels The HR 550 FS electronic handwheel from HEIDENHAIN is available with and without mechanical detent, with 100 stops per revolution. The traverse path per stop can be set via parameters. It also features numerous valuable additional functions: The handwheel display consists of a header and six status lines. It displays important machine conditions and information (e.g. position of the selected axis, spindle speed, feed rate, error messages, active basic rotation and tilted working plane) as well as the functions of the fi ve soft keys, which the machine manufacturer can assign as desired. The header provides information on the active radio operation, fi eld strength and the battery's state of charge. The colored and raised axis keys permit traverse of up to six NC axes. In addition, the machine manufacturer can confi gure an axis key for selection of the so-called “virtual tool axis.” In addition to the soft keys, the machine manufacturer can assign special functions to six function keys. They can be illuminated by LEDs. The symbols for the axis designations and the function keys can be exchanged. The axis feed rate, which is activated when the arrow key is pressed, and the spindle speed can each be set with an override potentiometer. The HR 550 FS handwheel features the usual safety elements such as an emergency stop button and two permissive buttons. The safety functions of the HR 550 FS fulfi ll the requirements of performance level d, category 3, according to EN ISO 13849-1. Moreover, the HR 550 FS meets the requirement of EN 60950. Product Information HR 550 FS 9/2010 HR 550 FS Description Handwheel with wireless transmission Functional safety For applications up to category 3, PL d according to EN ISO 13849-1: 2008 Display Monochrome 6-line display (128 x 64 pixels) Handwheel* HR 550 FS with mechanical detent: ID 508 515-xx HR 550 FS with mechanical detent: ID 606 622-xx Operating elements 6 keys for axis selection (symbols can be exchanged)• 6 keys with permanent NC functions• 6 keys with LEDs for free assignment via the PLC (symbols can be exchanged) • 2 override potentiometers for feed rate and spindle speed• 5 soft keys for menu-guided operation• Safety buttons Emergency stop button (dual-channel)• 2 permissive buttons (dual-channel)• Handwheel holder HRA 551 FS: ID 731 928-xx For docking the HR 550 FS on the machine• Integrated charger for the HR 550 FS• Connections to the control and the machine• Integrated transceiver unit• Radio transmission According to EN 300328; EN 301489-1; EN 301489-17; FCC ID: YJKHR550FS Radio link16 channels (ISM; 2.4 GHz)• Transmission range up to 20 m (depending on environment)• FunctionsDisplay of the fi eld strength• Vibrating alarm upon leaving the transmission area• Battery warning/battery charge indicator• Power supply HR 550 FS: via battery pack (included in delivery; replacement ID 623 166-xx) HRA 551 FS: by standard connection from the control Operating timeContinuous duty typically 6 h Charging processAutomatic when handwheel is in the HRA docking station, duration approx. 2.5 h Weight HR 550 FS: approx. 1 kg HRA 551 FS: approx. 1 kg * Please indicate when ordering !" ! ! # $$$$ #%# # %# # # $ $ # & ' ()* )*#$ + %# HRA 551 FS HR 550 FS 636 227 · 00 · C · 02 · 9/2010 · PDF Related documents: Adhere to the information in the following documents to ensure the correct and intended operation of the encoder: iTNC 530• Technical Manual ID 581 295-xx iTNC 530• User’s Manual ID 670 387-xx Dimensions Dimensions in mm For catalogs, brochures and product information sheets, visit www.heidenhain.de/docu
RF Exposure assessment is shown in RF/EMC test report. Peak power is above the threshold of 60/F(GHz) mW but the average power is below the threshold. Therefore, RF Exposure assessed as a device with output power less than 60/F(GHz) mW.
TT&T Laboratory Test Report No. ARSK00125/1 Date 2011-07-29 page 2 of 53 T ELECOMMUNICATIONS & T ELEMATICS FOR T RANSPORTS L ABORATORY CONTENTS 1 GENERAL DESCRIPTION OF EQUIPMENT UNDER TEST ......................... 1-3 1.1 APPLICANT.................................................................................................... 1-3 1.2 MANUFACTURER..........................................................................................1-3 1.3 EQUIPMENT CLASSIFICATION .................................................................... 1-3 1.4 BASIC DESCRIPTION OF EQUIPMENT UNDER TEST ............................... 1-4 1.5 FEATURE OF EQUIPMENT UNDER TEST ................................................... 1-5 2 TEST CONFIGURATION OF EQUIPMENT UNDER TEST ........................... 2-7 2.1 ENVIRONMENTAL CONDITIONS ................................................................. 2-7 2.2 DESCRIPTION OF SUPPORT EQUIPMENT................................................. 2-7 2.3 INTERFACE IDENTIFICATION AND CONNECTION DIAGRAM OF TEST SYSTEM ......................................................................................................... 2-8 3 OPERATION OF EQUIPMENT UNDER TEST............................................... 3-9 3.1 OPERATING TEST CONDITIONS ................................................................. 3-9 4 TESTS IDENTIFICATION AND RESULTS .................................................. 4-10 4.1 METHODS OF MEASUREMENT ................................................................. 4-11 4.2 FREQUENCY RANGE INVESTIGATED ...................................................... 4-11 5 MEASUREMENTS AND TESTS DATA........................................................ 5-12 6 ADDITIONAL TECHNICAL INFORMATION ................................................ 6-48 6.1 ELECTROMAGNETICALLY RELEVANT COMPONENTS:.......................... 6-48 6.2 RFI SUPPRESSION DEVICES: ................................................................... 6-48 6.3 EMI PROTECTION DEVICES: ..................................................................... 6-48 7 TECHNICAL DOCUMENTATION................................................................. 7-49 8 PHOTOGRAPHIC DOCUMENTATION ........................................................ 8-50 8.1 EUT IDENTIFICATION ................................................................................. 8-50 8.2 TEST SET-UP .............................................................................................. 8-52 9 MEASUREMENT AND TEST EQUIPMENT INSTRUMENTATION ............. 9-53 TT&T Laboratory Test Report No. ARSK00125/1 Date 2011-07-29 page 3 of 53 T ELECOMMUNICATIONS & T ELEMATICS FOR T RANSPORTS L ABORATORY 1 GENERAL DESCRIPTION OF EQUIPMENT UNDER TEST 1.1 APPLICANT NAME DR. JOHANNES HEIDENHAIN GmbH ADDRESS Dr. Johannes Heidenhain Straße 5 COUNTRY GERMANY 1.2 MANUFACTURER NAME DR. JOHANNES HEIDENHAIN GmbH ADDRESS Dr. Johannes Heidenhain Straße 5 COUNTRY GERMANY 1.3 EQUIPMENT CLASSIFICATION According to the definition 15.3 (o) EUT is a Intentional Radiator operating within the bands 2400-2483,5 MHz so it shall fulfil provisions of 47CFR Part 15 Subpart C – Intentional radiators – and Section 15.247. TT&T Laboratory Test Report No. ARSK00125/1 Date 2011-07-29 page 4 of 53 T ELECOMMUNICATIONS & T ELEMATICS FOR T RANSPORTS L ABORATORY 1.4 BASIC DESCRIPTION OF EQUIPMENT UNDER TEST Parameters Value Type of equipment : WIRELESS HANDWEEL SYSTEM Model: HR 550 FS FCC ID. : YJKHR550FS Trade Name: HEIDENHAIN Data cable : / Telecom cable : / Power supply type : HR550FS – dedicated NiMh battery pack AC power input cable : / DC power input cable : / Model tested Brand Description HR 550 FS HEIDENHAIN Handweel - Portable wireless controller Derivate model Brand Description SelBOX-S50 SELCA Handweel - Portable wireless controller TT&T Laboratory Test Report No. ARSK00125/1 Date 2011-07-29 page 5 of 53 T ELECOMMUNICATIONS & T ELEMATICS FOR T RANSPORTS L ABORATORY 1.5 FEATURE OF EQUIPMENT UNDER TEST Power specification Operating frequency: 2405 ÷ 2480 MHz Maximum RF radiated power: 14.71 dBm Modulation: DTS Channel Spacing: 5 MHz Antenna: Integral antenna “F” reverse strip on PCB (-3 dBi gain) RX sensitivity: / Main SW identification / Main HW Board identification / Peripherals included (for system application) None Interfaces : None Integrated interfaces : None AC adapter: None TT&T Laboratory Test Report No. ARSK00125/1 Date 2011-07-29 page 6 of 53 T ELECOMMUNICATIONS & T ELEMATICS FOR T RANSPORTS L ABORATORY CHANNEL CONFIGURATION Channel (No.) Frequency (MHz) 00 2405 01 2410 02 2415 03 2420 04 2425 05 2430 06 2435 07 2440 08 2445 09 2450 10 2455 11 2460 12 2465 13 2470 14 2475 15 2480 TT&T Laboratory Test Report No. ARSK00125/1 Date 2011-07-29 page 7 of 53 T ELECOMMUNICATIONS & T ELEMATICS FOR T RANSPORTS L ABORATORY 2 TEST CONFIGURATION OF EQUIPMENT UNDER TEST 2.1 ENVIRONMENTAL CONDITIONS TEST CONDITIONS MEASURED Ambient Temperature 20 ÷ 25 °C Relative Humidity 50 ÷ 60 % Atmospheric Pressure 900 ÷ 1000 mbar 2.2 DESCRIPTION OF SUPPORT EQUIPMENT Here following the details concerning equipment needed for correct operation or loading of the EUT: EQUIPMENT MANUFACTURER MODEL / / / TT&T Laboratory Test Report No. ARSK00125/1 Date 2011-07-29 page 8 of 53 T ELECOMMUNICATIONS & T ELEMATICS FOR T RANSPORTS L ABORATORY 2.3 INTERFACE IDENTIFICATION AND CONNECTION DIAGRAM OF TEST SYSTEM # Port Description Max length Ref. Document 1 Enclosure Plastic case / / 2 AC power input Non present / / 2 AC power output Non present / / 3 DC power input Equipment power supply by internal dedicated battery pack / / 4 Earth Non present / / 5 Telecommunication N…
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Traunreut · Germany
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 59.00 mW |

Touch Probe 2.4 GHz
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Transceiver Unit 2.4 GHz
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Wireless Handwheel System - Access Point
Equipment Class
DTS - Digital Transmission System