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1 | Manual English | Users Manual | 1.59 MiB | July 06 2019 |
Electronic-Key-System Manual Electronic-Key adapter EKS and EKS FSA with Ethernet TCP/IP interface Order no. 2100420 Ethernet Manual EKS Electronic-Key Adapter Ethernet TCP/IP Table of contents 1 General notes ............................................................................................................................................... 4 1.1 Use of the manual .................................................................................................................................. 4 1.1.1 Explanation of symbols .............................................................................................................. 4 1.1.2 Abbreviations ............................................................................................................................. 5 1.2 CE conformity......................................................................................................................................... 5 1.3 Approvals ............................................................................................................................................... 5 1.3.1 UL approval ................................................................................................................................ 5 1.3.2 Radio frequency approvals for USA and Canada ...................................................................... 6 1.4 Correct use............................................................................................................................................. 6 1.5 Obligations on the operating organization ............................................................................................. 7 2 Safety precautions....................................................................................................................................... 8 3 Function ........................................................................................................................................................ 9 3.1 Functional description ............................................................................................................................ 9 3.1.1 Common functions of EKS Standard and version EKS FSA ..................................................... 9 3.1.2 Additional functions of the version EKS FSA ...........................................................................10 4 Technical data ............................................................................................................................................11 4.1 Dimension drawing of Electronic-Key adapter .....................................................................................11 4.1.1 Version EKS-A-IEX-G01-ST02/03 with Ethernet interface ......................................................11 4.1.2 Version EKS-A-IEXA-G01-ST02/03/04 (EKS FSA) with Ethernet interface ............................11 4.2 Technical data of Electronic-Key adapter ............................................................................................12 4.3 Connector assignment .........................................................................................................................13 4.3.1 Connection socket for Ethernet interface .................................................................................13 4.3.2 Connection terminal assignment ..............................................................................................13 4.4 DIP switch settings ...............................................................................................................................14 4.4.1 DIP switch S1 ...........................................................................................................................14 4.4.2 DIP switch S2 ...........................................................................................................................14 4.4.3 DIP switch S3 ...........................................................................................................................15 4.5 LED indicator........................................................................................................................................15 5 Mounting .....................................................................................................................................................16 6 Electrical connection.................................................................................................................................17 6.1 Ethernet connection .............................................................................................................................17 6.1.1 Ethernet configuration ..............................................................................................................18 6.2 Connection of power supply.................................................................................................................20 Page 2/34 Subject to technical modifications 2100420-03-05/19 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 6.3 Connection of function earth ................................................................................................................ 20 6.4 Connection of the semiconductor switching contacts (for EKS FSA only) .......................................... 20 7 Setup ........................................................................................................................................................... 21 7.1 Network settings .................................................................................................................................. 21 7.1.1 Network settings for a configuration PC with Windows .......................................................... 21 7.2 Configuring the Electronic-Key adapter via the web interface ............................................................. 24 8 Data transfer via the Ethernet TCP/IP interface...................................................................................... 26 8.1 Communication .................................................................................................................................... 26 8.2 Basic message structure...................................................................................................................... 26 IP Internet Protocol ............................................................................................................... 26 8.2.1 8.2.2 TCP Transport Control Protocol ............................................................................................ 26 8.3 Commands for writing and reading an Electronic-Key read/write ....................................................... 27 8.3.1 Write process ........................................................................................................................... 28 8.3.2 Read process ........................................................................................................................... 29 8.3.3 Reading the serial number ....................................................................................................... 30 8.3.4 Reading the Electronic-Key status ........................................................................................... 30 8.4 Command overview ............................................................................................................................. 31 8.5 Status numbers .................................................................................................................................... 31 9 Exclusion of liability .................................................................................................................................. 32 10 Service and repair ..................................................................................................................................... 32 11 Guarantee ................................................................................................................................................... 32 2100420-03-05/19 Subject to technical modifications Page 3/34 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 1 General notes 1.1 Use of the manual This manual describes the technical features and the function of the EKS Electronic-Key adapters with Ethernet TCP/IP interface EKS-A-IEX-G01-ST02/03 (order no. 100401) as well as the version FSA (For Safety Applications) EKS-A-IEXA-G01-ST02/03/04 (order no. 099265). The complete evaluation and interface electronics for data transmission are integrated into these Electronic-Key adapters (also referred to as devices for short in the rest of the text). 1.1.1 Explanation of symbols The following symbols are used in this manual to identify important instructions and useful information:
Danger!
Identifies an immediate hazard. If not avoided, the consequence will be fatality or very serious injuries. Warning!
Identifies a possible hazard. If not avoided, the consequence may be fatality or very serious injuries. Caution!
Identifies a possible hazard. If not avoided, minor injuries or damage may result. Attention!
Risk of damage to material or machine or degradation of function. Information!
Important information is provided to the user here. Page 4/34 Subject to technical modifications 2100420-03-05/19 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 1.1.2 Abbreviations The following abbreviations are used in this manual:
DHCP DIP DNS EPROM EKS EKS FSA LED LSB MSB PA RD ROM TCP/IP TD Dynamic Host Configuration Protocol Dual Inline Package Domain Name Service Electrically Erasable Programmable Read-Only Memory Electronic-Key-System Electronic-Key-System For Safety Applications Light Emitting Diode Least Significant Bit Most Significant Bit PolyAmide Receive Data Read-Only Memory Transmission Control Protocol / Internet Protocol Transmit Data 1.2 CE conformity The EKS devices with Ethernet TCP/IP interface correspond to the Radio Equipment Directive (RED) 2014/53/EU and the RoHS Directive 2011/65/EU. The devices comply with the following European standards:
EN 55011 Industrial, scientific and medical equipment Radio-frequency disturbance characteristics Limits and methods of measurement EN 61000-6-2 Electromagnetic compatibility (EMC) Part 6-2: Generic standards Immunity standard for industrial environments EN 50364 Product standard for human exposure to electromagnetic fields from devices operating in the frequency range 0 Hz to 300 GHz, used in Electronic Article Surveillance (EAS), Radio Frequency Identification (RFID) and similar applications EN 300 330 V2.1.1 Short Range Devices (SRD); Radio equipment in the frequency range 9 kHz to 25 MHz and inductive loop systems in the frequency range 9 kHz to 30 MHz; Harmonised Standard covering the essential requirements of article 3.2 of Directive 2014/53/EU EN 50581 Technical documentation for the assessment of electrical and electronic products with respect to the restriction of hazardous substances 1.3 Approvals 1.3.1 UL approval The EKS Electronic-Key adapters with Ethernet interface are certified in accordance with E240367).
(UL file number For use and operation as per the circuits must be used. requirements, a power supply with the feature for use in class 2 2100420-03-05/19 Subject to technical modifications Page 5/34 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 1.3.2 Radio frequency approvals for USA and Canada Product description: Electronic-Key-System FCC ID:
IC:
2AJ58-04 22052-04 FCC/IC-Requirements This device complies with part 15 of the FCC Rules and with Industry Canadas licence-exempt RSSs. 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 users authority to operate the equipment. NOTE: This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense. Le prsent appareil est conforme aux CNR dIndustrie Canada applicables aux appareils radio exempts de licence. Lexploitation est autorise aux deux conditions suivantes :
(1) lappareil ne doit pas produire de brouillage, et
(2) lutilisateur de lappareil doit accepter tout brouillage radiolectrique subi, mme si le brouillage est susceptible den compromettre le fonctionnement. 1.4 Correct use As part of a higher-level overall system, the EKS Electronic-Key adapter is used for access control and monitoring on control systems or parts of control systems for machine installations. EKS can be used, for example, as part of an overall system for checking access rights on the selection of the operating mode. However, it is not permitted to derive the operating mode directly from the access rights on the Electronic-
Key. If the selection of the operating mode is relevant for safety, this must not be performed by means of the EKS; instead an additional device must be used to select the operating mode. Information!
The Machinery Directive 2006/42/EC provides information on selection of the operating mode. It is imperative that this information be followed. When designing machines and using the Electronic-Key adapter, the national and international regulations and standards specific to the application must be observed, e.g.:
EN 60204, Safety of machinery Electrical equipment of machines EN 12100-1, Safety of machinery Basic concepts, general principles for design Part 1: Basic terminology, methodology EN 62061, Safety of machinery Functional safety of safety-related electrical, electronic and programmable electronic control systems EN ISO 13849-1, Safety of machinery Safety-related parts of control systems Part 1: General principles for design Modifications to the electronics of the Electronic-Key adapter and any other changes, especially mechanical modifications and reworking, are not permissible and will result in the loss of the warranty and exclusion of liability. The Electronic-Key adapter must be employed and used only in accordance with this manual and other documentation referred to in this manual. Page 6/34 Subject to technical modifications 2100420-03-05/19 Manual EKS Electronic-Key Adapter Ethernet TCP/IP The EKS Electronic-Key adapter is not a safety component in the context of the Machinery Directive. Without additional precautions, the EKS Electronic-Key adapter must not be used to provide a safety function, particularly if failure or malfunction of the device could endanger the safety or health of people in the operating area of a machine. 1.5 Obligations on the operating organization The manufacturer and the organization operating the higher-level overall system, e.g. a machine installation, are responsible for the observance of national and international safety and accident prevention regulations applicable in the specific case. 2100420-03-05/19 Subject to technical modifications Page 7/34 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 2 Safety precautions Warning!
The EKS Electronic-Key adapter is not a safety component in the context of the Machinery Directive. Without additional precautions, the EKS Electronic-Key adapter must not be used to provide a safety function, particularly if failure or malfunction of the device could endanger the safety or health of persons in the operating area of a machine. On this topic, pay particular attention to the sections Correct use (see chapter 1.4) and Electrical connection (see chapter 6). Warning!
Mounting and electrical connection are allowed to be performed only by authorized personnel who are familiar with the applicable regulations on accident prevention and have read and understood this manual. Furthermore, mounting and electrical connection of the version EKS FSA must be performed only by personnel familiar with handling safety components. Caution!
Modifications to the electronics of the Electronic-Key adapter and any other changes, especially mechanical modifications and reworking, are not permissible and will result in the loss of the warranty. Page 8/34 Subject to technical modifications 2100420-03-05/19 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 3 Function 3.1 Functional description 3.1.1 Common functions of EKS Standard and version EKS FSA The EKS is used for access control and monitoring on control systems or parts of control systems for machine installations. Instead of passwords, coded Electronic-Keys are assigned. In this way unauthorized access to control and visualization systems is prevented to the greatest possible extent. The EKS uses a non-contact, inductive read/write identification system. It comprises:
Electronic-Key Electronic-Key adapter The user is responsible for organizing the programming of the application, integration into an overall system and the assignment and use of the freely programmable memory in the Electronic-Key. Information!
For easier organization and management of your Electronic-Keys and the data they contain, EUCHNER also offers the Electronic-Key-Manager EKM software. To enter data in the EKM software, an Electronic-Key adapter with serial interface or USB interface must be in operation on the PC. EKS Ethernet TCP/IP devices are read/write systems with electronics for the inductive bidirectional interface to the transponder and interface electronics. Due to the non-contact transfer of data, the Electronic-Key adapter is designed with a high degree of protection suitable for industry from the access side. The Electronic-Key adapter is fastened from the rear side of the panel in order to exclude unauthorized tampering from the operator side. The system is connected via the integrated Ethernet TCP/IP interface, which is designed as an RJ45 socket. A separate switch may be required for the Ethernet TCP/IP connection. The device does not have an integrated switch. Setup and system integration can be implemented straightforwardly and quickly on the Electronic-Key adapter with Ethernet TCP/IP interface. The current state of the Electronic-Key adapter is displayed using a 3-color LED. For operation, the Electronic-Key is inserted into the Electronic-Key adapter and is held in place by a spring clip. The power supply for the transponder and the data are transferred between the Electronic-Key adapter and the Electronic-Key without using any contacts. Figure 1: Cut-away illustration of Electronic-Key adapter The Electronic-Keys are tag shaped. The complete transponder with memory chip and antenna is integrated into the Electronic-Key. The transponder does not have a battery. 2100420-03-05/19 Subject to technical modifications Page 9/34 Manual EKS Electronic-Key Adapter Ethernet TCP/IP The data carrier in the Electronic-Key is equipped with a combined memory:
116 bytes E2PROM (programmable) plus 8 bytes ROM (serial number) The programmable memory of 116 bytes is organized in 4-byte blocks. This means a multiple of 4-byte-sized blocks must always be written. 3.1.2 Additional functions of the version EKS FSA The version EKS FSA has two additional switching contacts (semiconductor relay) LA1/LA2 and optionally LB1/LB2 that are switched off as long as there is no Electronic-Key in the Electronic-Key adapter or if it is not possible to read the Electronic-Key. The switching contacts are electrically isolated from the device electronics and from each other. Either AC or DC can be switched. Each of the contacts is operated with diversity by a dedicated processor that opens the contacts on removal of the Electronic-Key (see figure Block diagram EKS FSA). Figure 2: Block diagram EKS FSA Due to separate evaluation of channel LA and channel LB, the EKS FSA device can be used in conjunction with a safe evaluation device in safety-related applications. Integrated voltage monitoring switches off the switching contacts LA and LB if the power supply is outside the permitted tolerance (see chapter 4.2). Information!
The switching contacts FSA close when the Electronic-Key is in place, irrespective of the data allocation in the memory. Page 10/34 Subject to technical modifications 2100420-03-05/19 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 4 Technical data 4.1 Dimension drawing of Electronic-Key adapter For installation in a control panel you must provide a cut-out 33 mm x 68 mm according to DIN 43700. 4.1.1 Version EKS-A-IEX-G01-ST02/03 with Ethernet interface 4.1.2 Version EKS-A-IEXA-G01-ST02/03/04 (EKS FSA) with Ethernet interface 2100420-03-05/19 Subject to technical modifications Page 11/34 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 4.2 Technical data of Electronic-Key adapter Attention!
All the electrical connections must either be isolated from the mains supply by a safety transformer according to EN IEC 61558-2-6 with limited output voltage in the event of a fault, or by other equivalent isolation measures. General parameters Housing Degree of protection acc. to EN 60529 Ambient temperature at UB = DC 24 V Mounting cut-out acc. to DIN 43700 Power supply connection Operating voltage UB
(regulated, residual ripple < 5%) Current consumption IB Interface, data transfer Interface to the control system Transfer protocol Data transfer rate (full duplex) Connection for Ethernet interface Data line Cable length LED indicator min. 0 Value typ. Plastic (PA 6 GF30 gray) IP 67 in mounted condition 33 x 68 max.
+ 55 Plug-in connection terminal, 3-pin, with screw terminal
(tightening torque 0.22 Nm), conductor cross-section 0.14 ... 1.5 mm 24 28 150 20 Industrial Ethernet (IEEE 802.3) TCP/IP 10/100 1 x RJ45 socket Mbit/s 2 x 2 twisted-pair copper cables, screened; min. category 5 100 Green: Ready (in operation) Yellow: Electronic-Key active *
Red: Fault Unit C mm DC V mA m Version FSA (For Safety Applications) parameters for floating semiconductor switching contacts LA and LB Switching contact connection Plug-in connection terminal, 4-pin, with screw terminal
(tightening torque 0.22 Nm), conductor cross-section 0.14 ... 1.5 mm Power supply U for load (LA, LB) Switching current (with overload protection) Output voltage UA (LA, LB) in switched state Resistance in switched state Capacitive load Utilization category acc. to AC-12 EN IEC 60947-5-2 AC-15 DC-12 DC-13 1 U x 0.9 Difference time of the outputs** (LB first) Reliability values acc. to EN ISO 13849-1 (FSA version only) Category (with downstream safe evaluation) MTTFD Evaluation of data channel and one switching contact LA Evaluation of data channel and both switching contacts LA and LB 24 10 35 50 mA / 24 V 200 3 416 803 DC
* The LED illuminates yellow if there is a functional Electronic-Key in the Electronic-Key adapter.
** If the Ethernet interface is accessed during placement or removal of the Electronic-Key, the difference time can be more than 200 ms. 92 30 50 U 1 V mA V ohms F ms years years
%
Page 12/34 Subject to technical modifications 2100420-03-05/19 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 4.3 Connector assignment 4.3.1 Connection socket for Ethernet interface The connection on the Electronic-Key adapter is realized as an RJ45 (8P8C) socket corresponding to ISO IEC 61754-24. Pin 1 2 3 6 Function Transmit Data + (TD+) Transmit Data - (TD-) Receive Data + (RD+) Receive Data - (RD-) 4.3.2 Connection terminal assignment Information!
The plug-in connection terminals are included with the Electronic-Key adapter. 4.3.2.1 Connection of power supply Pin Designation Function Plug-in connection terminal, 3-pin, with screw terminal 1 2 3 UB Power supply DC + 24 V 0V Power supply DC 0 V Function earth Electrically connected to the housing 4.3.2.2 Plug-in screw terminals for outputs LA1/LA2 and LB1/LB2 (EKS FSA only) Pin Channel Function 1 2 3 4 LA LB NO contact, channel LA NO contact, channel LB Plug-in connection terminal, 2 x 2-pin, with screw terminal 2100420-03-05/19 Subject to technical modifications Page 13/34 123 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 4.4 DIP switch settings The device has three DIP switches (S1, S2, S3). DIP switch S1
(4-fold) S2
(8-fold) S3
(4-fold) Function S1.1 S1.4; write and read settings S2.1 S2.8; setting of a fixed DNS name (required only for special applications) S3.1 S3.4; settings for network connection and service Information!
The settings are adopted only when the power supply is switched on. 4.4.1 DIP switch S1 Function ON = write protection for Electronic-Key read/write No function No function No function DIP switch S1.1 S1.2 S1.3 S1.4 Factory setting OFF OFF OFF OFF Information!
It is imperative that all DIP switches without a function (S1.2, S1.3 and S1.4) are set to OFF! In this way problems with any functions added in the future will be avoided. 4.4.2 DIP switch S2 DNS name EKS000 EKS001 EKS002 EKS003 EKS254 EKS255 LSB S2.1 OFF ON OFF ON OFF ON S2.2 OFF OFF ON ON ON ON S2.3 OFF OFF OFF OFF ON ON S2.4 OFF OFF OFF OFF ON ON S2.5 OFF OFF OFF OFF ON ON S2.6 OFF OFF OFF OFF ON ON S2.7 OFF OFF OFF OFF ON ON MSB S2.8 OFF OFF OFF OFF ON ON Page 14/34 Subject to technical modifications 2100420-03-05/19 Manual EKS Electronic-Key Adapter Ethernet TCP/IP Information!
Using the DIP switch S2, it is possible to set an EKS name that is used for addressing the device in the network in conjunction with a DHCP server. This name consists of the fixed code EKS plus a configurable number between 001 and 254 that can be used in all system environments with DHCP support. The station name for a specific Electronic-Key adapter would then be EKS027, for example. The DIP switch S2 is relevant specifically in conjunction with the Siemens SINUMERIK DHCP address assignment routine (see chapter 6.1.1.3 Operation in the Siemens system network). In this way it is possible to set the identical address by copying the DIP switch settings if a device is replaced. 4.4.3 DIP switch S3 Function Fixed IP address Default IP address 192.168.1.1 Obtain IP address from DHCP server Obtain IP address from a SINUMERIK control system Internal function, leave switch OFF Permit configuration via the web interface
(Factory setting: all in OFF position)
= any switch position S3.1 OFF S3.2 OFF OFF OFF OFF OFF OFF S3.3 OFF ON OFF ON OFF S3.4 OFF OFF ON ON OFF Information!
The use of the DIP switches to assign the IP address is described in the following in chapter 6.1.1. To prevent unauthorized changes to the network, it is sensible to deactivate the web interface after use. For this purpose switch S3.1 is set to ON. 4.5 LED indicator The Electronic-Key adapter operating states are indicated using a 3-color LED on the front. The illumination of the LED in any color indicates the presence of the operating voltage. Color Operating status Description Electronic-Key Red adapter power-up or After the application of the power supply, the LED is constantly illuminated red during power-up. The completion of the process is indicated by a change in this state after approx. 20 seconds. If the LED then flashes red quickly, it is an indication of a network fault. Network connected. fault Ready Electronic-Key active Network connected. Electronic-Key is in the Electronic-Key adapter. Fault LED flashing slowly red/green (without Electronic-Key) or red/yellow (with Electronic-
Key). Network was connected and a network fault then occurred. Green Yellow Red/green Red/yellow 2100420-03-05/19 Subject to technical modifications Page 15/34 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 5 Mounting Warning!
Mounting must be performed only by authorized personnel. After mounting, again check the Electronic-Key adapter for firm seating and correct sealing on the front panel. Attention!
To achieve the degree of protection IP 67, it is necessary to install the Electronic-Key adapter in a clean, flat metal plate at least 2 mm thick and to tighten the screws with a tightening torque of 0.25 ... 0.35 Nm. A suitable strain relief must be provided for the connecting cables in order to avoid damage to the connection sockets or malfunctions. The Electronic-Key adapter is intended for mounting in control panels with a cut-out measuring 33 mm x 68 mm according to DIN 43700 (see chapter 4.1). The device is fastened using screw clamp elements from the rear side of the panel. Information!
The screw clamp elements for front panel mounting are included with the Electronic-Key adapter. 1. 2. Insert the Electronic-Key adapter, with seal already bonded in place, into the mounting cut-out from the front. Insert screw clamp elements into the housing of the Electronic-Key adapter from the side up to the stop and tighten with 0.25 0.35 Nm. Attention!
The device may be damaged if the tightening torque exceeds 0.35 Nm. Page 16/34 Subject to technical modifications 2100420-03-05/19 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 6 Electrical connection Danger!
Electrical connection may be performed only by authorized personnel trained in EMC and with the device and wiring isolated. Warning!
For use and operation as per the 2 circuits must be used. Attention!
requirements, a power supply with the feature for use in class The Electronic-Key adapter is allowed to be connected only if it is electrically isolated. Otherwise the Electronic-Key adapter may be damaged. Attention!
If connected incorrectly, the Electronic-Key adapter may be damaged. Observe electrical characteristics and terminal assignment (see chapter 4.2 Technical data of Electronic-Key adapter). Attention!
All the electrical connections must either be isolated from the mains supply by a safety transformer according to IEC/EN 61558-2-6 with limited output voltage in the event of a fault, or by other equivalent isolation measures. Attention!
When connecting, the operating organization must ensure compliance with the EMC protection requirements in accordance with EN 55011 and EN 61000-6-2. Attention!
The equipotential bonding system of the machine installation must comply with EN 60204-1, section 8, Equipotential bonding. Attention!
Do not lay connecting cables in the immediate vicinity of sources of interference. 6.1 Ethernet connection The interface for the Electronic-Key adapter is compatible with the standards ISO/IEC 61754-24 and IEC 61158. The Electronic-Key adapter is operated in full-duplex mode with 10 Mbit/s or 100 Mbit/s. Information!
Only a screened 100 BaseTX cable, twisted pair, Cat 5 or higher, is permitted for use as the connecting cable. The maximum cable length is 100 m. It may be necessary to provide additional shielding in conditions with a high level of EMC interference. A separate switch may be required for the Ethernet TCP/IP connection. 2100420-03-05/19 Subject to technical modifications Page 17/34 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 6.1.1 Ethernet configuration Using the DIP switch S3, the Electronic-Key adapter can be configured for the following operating modes (see chapter 4.4.3):
With a fixed IP address As a DHCP client with dynamic IP address As a DHCP client for a SINUMERIK control system with dynamic IP address based on a fixed station name
(see chapter 4.4.2) In addition, the following service functions can be set with DIP switch S3:
Reset to default IP address (see chapters 4.4.3 and 6.1.1.1) Permit or prohibit configuration via a web interface (see chapters 4.4.3 and 7.2) The individual functions are described below in detail. 6.1.1.1 Fixed IP address and default IP address Fixed IP address In this operating mode, communication with the Electronic-Key adapter is via a fixed IP address. In the default setting on delivery, the factory-set default IP address is 192.168.1.1 and the subnet mask is 255.255.255.0. Information!
This operating mode is not suitable for operation in conjunction with a DHCP server. The DIP switches S3.3 and S3.4 always remain OFF in this operating mode (see DIP switch settings in chapter 4.4.3). On powering up the Electronic-Key adapter, the fixed IP address last set is always active after the application of the power supply in this operating mode. You can assign an individual, fixed IP address via the web interface of the Electronic-Key adapter (see chapter 7.2). To do this, access via a web interface must be enabled (see DIP switch settings in chapter 4.4.3). Default IP address Every Electronic-Key adapter has the factory-set default IP address 192.168.1.1 and the subnet mask 255.255.255.0. Information!
If you have forgotten your self-defined IP address, you can reset the Electronic-Key adapter to the default address again. The self-defined address is then overwritten by the default address. For this purpose proceed as follows. The Electronic-Key adapter can be connected to the network or disconnected from the network during this routine. 1. Disconnect Electronic-Key adapter from the power supply. 2. Set DIP switch S3.3 (see DIP switch settings in chapter 4.4.3) to ON. 3. Apply power supply. Wait until the Electronic-Key adapter has fully powered up. During power-up the LED is illuminated red constantly. The completion of the process is indicated by a change in this state after approx. 20 seconds. The Electronic-Key adapter is now reset to the default IP address 192.168.1.1 and the subnet mask 255.255.255.0. 4. Disconnect Electronic-Key adapter from the power supply. Set DIP switch S3.3 to OFF (see DIP switch settings in chapter 4.4.3). After the application of the power supply, the Electronic-Key adapter now powers up again with the default IP address. A new, fixed, self-defined IP address can now be set again using the web interface (see above). Page 18/34 Subject to technical modifications 2100420-03-05/19 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 6.1.1.2 Dynamic IP address In this operating mode, the Electronic-Key adapter is a DHCP client. The IP address is assigned by a DHCP server (see DIP switch settings in chapter 4.4.3). Information!
This operating mode is unsuitable for operation in a network with fixed IP addresses. 6.1.1.3 Operation in the Siemens system network The Siemens system architecture is designed so that the HMI PRO (Human Machine Interface) software and the operating system run on one or more NCUs (Numeric Control Units)/PCUs (PC Units). The TCP/IP protocol is used for communication. In the case of the SINUMERIK solution line (sl), EKS communicates with an NCU. Linux is used here as the operating system in the NCU. Simple TCUs (Thin Client Units) with MCPs (Machine Control Panels) are provided at the control station for operation and visualization. A control station typically consists of a TCU and MCP. Communication between TCU, MCP and NCU takes place completely via Ethernet. In the case of the SINUMERIK powerline, EKS communicates with a PCU 50. Windows is used as the operating system here. If the Electronic-Key adapter is to be operated physically remote from the PCU 50, the Electronic-Key adapter with Ethernet interface is also used with powerline. Each station in a system network is assigned an unambiguous SINUMERIK station name. The EKS can be integrated in this network. According to the principle of flexible assignment of stations to each other, it is possible to define which stations are to work together, i.e. which TCU is to access which NCU/PCU with which MCP. This means that an EKS Electronic-Key adapter can be assigned to a specific control station. A DHCP server runs on the NCU/PCU, and a DHCP client runs on the connected network stations. With this SINUMERIK DHCP address assignment routine, an unambiguous SINUMERIK station name is made up of an assigned device name and a number. In the case of the EKS Electronic-Key adapter, this station name consists of the identifier EKS and a consecutive number between 001 and 254 (around 1 byte). The numbers 000 and 255 are not supported by the SINUMERIK address assignment routine. The station name for a specific EKS Electronic-Key adapter would then be EKS027, for example. No programming device or PC is required for setup within the Siemens network. When carrying out setup, it must be ensured that each device receives a separate number in a network. An unambiguous IP address is then dynamically assigned to this name via DHCP. DNS is used to ensure that each device can be addressed by its name. EKS can obtain the IP address corresponding to the SINUMERIK DHCP address assignment routine. Activation of the SINUMERIK address assignment routine must be set by means of the DIP switch S3 (see chapter 4.4.3). The 3-digit numbering as part of the station name (i.e. 027 in the example above) can be set by means of the DIP switch S2 (see chapter 4.4.2). System integration in the user software is performed by Siemens. 2100420-03-05/19 Subject to technical modifications Page 19/34 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 6.2 Connection of power supply
(For information on connector assignment, see chapter 4.3.2.1 Connection of power supply) It is imperative that the following points are observed:
The connections must be made as appropriate to maintain EMC performance. A power supply of suitable EMC performance must be used for the power supply. Conductor cross-section maximum 1.5 mm. Tighten the screws on the terminal plug to 0.22 Nm. 6.3 Connection of function earth The function earth is connected via terminal 3 on the plug-in screw terminals for the power supply. This connection is electrically connected internally to the housing of the Electronic-Key adapter. Information!
The function earth must be connected to PE!
6.4 Connection of the semiconductor switching contacts (for EKS FSA only) Warning!
Incorrect connection or errors in the safety-related integration of the EKS FSA can lead to fatal injury. For this reason, observe the following safety aspects:
It is not possible to generate a safe signal by using only the switching contacts LA1/LA2 and LB1/LB2. Safe, downstream evaluation is always necessary. Use of the switching contact LB1/LB2
(for the compact version only) is optional. Safe evaluation must always be dual-channel:
Evaluation of switching contact LA1/LA2 as channel LA together with evaluation of the data line as channel LB. Information!
The switching contact LA1/LA2 is used with functionally safe applications. The function that can be evaluated in terms of safety engineering is the reliable detection that an Electronic-Key has not been placed. Page 20/34 Subject to technical modifications 2100420-03-05/19 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 7 Setup Perform setup in the following sequence:
1. Set the DIP switches on the Electronic-Key adapter
(see chapter 4.4). 2. Check whether mounting and electrical connection are correct
(see chapter 5 and chapter 6). 3. After connection of the power supply, the LED on the front of the Electronic-Key adapter first illuminates red. When the connection has been established, the LED illuminates green and signals readiness for operation. 4. Insert Electronic-Key into the Electronic-Key adapter. The LED changes to yellow. 5. Important: for the version EKS FSA, all safety functions must also be thoroughly tested. 7.1 Network settings You need the following information to integrate the EKS Electronic-Key adapter in the network:
IP address of the host computer with which you want to configure the Electronic-Key adapter. Free IP address that can be assigned to the EKS Electronic-Key adapter (not needed if the IP address is obtained automatically from a DHCP server) Subnet mask of the network in which the Electronic-Key adapter is to be operated If necessary, information on valid gateway If necessary, information on valid DNS server Information!
The TCP connection to the Electronic-Key adapter must be made using port 2444. If the Ethernet ActiveX module is used, this port is set by default. If the connection is to be made from a control system, for example, this port must be set explicitly. 7.1.1 Network settings for a configuration PC with Windows Information!
It is assumed that you connect the PC to the EKS read/write station as shown in the following example. For connection, you need a (Cat 5) patch cable. You must first modify the network settings on the PC so that the web interface can be opened. Enter IP address for the PC from 192.168.1.2 to 192.168.1.254. Enter subnet mask for the PC as 255.255.255.0 Windows Figure 3: Connection of configuration PC 2100420-03-05/19 Subject to technical modifications Page 21/34 Manual EKS Electronic-Key Adapter Ethernet TCP/IP Adapting network settings 1. Select Network & Internet in your operating system and click Change adapter options. 2. Right-click Ethernet and then click Properties. Page 22/34 Subject to technical modifications 2100420-03-05/19 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 3. Open the Properties for Internet Protocol Version 4 (TCP/IPV4). 4. To ensure that the EKS Electronic-Key adapter and the configuration computer are in the same network, you must assign your configuration PC an IP address in the same subnet mask as the Electronic-Key adapter. On delivery, the default IP of the Electronic-Key adapter is 192.168.1.1 and the subnet mask is 255.255.255.0. As a consequence you can allocate to the configuration computer any IP address between 192.168.1.2 and 192.168.1.254, for example. In this example, the configuration PC is assigned the IP address 192.168.1.2. 5. Click the OK button to confirm your entries. The EKS Electronic-Key adapter can now be configured via the integrated web interface as described in chapter 7.2. 2100420-03-05/19 Subject to technical modifications Page 23/34 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 7.2 Configuring the Electronic-Key adapter via the web interface The Electronic-Key adapter can be configured with a web browser. If you wish to operate the Electronic-Key adapter with a self-defined, fixed IP address, it is recommended to configure the device with a PC. This is the fastest method, particularly if several devices have to be configured. The configuration PC must meet the following requirements:
Network card Web browser (e.g. Internet Explorer) If the configuration PC features a firewall, it may be necessary to enable the EKS Electronic-Key adapter as a trustworthy application. Refer to the firewall documentation for further information. Launching the EKS web interface Information!
With this interface, a Java applet is used to display Electronic-Key data on the Information screen. This is no longer compatible with the runtime environment from Java 8. Consequently, no Electronic-Key data are displayed. The connection to the web interface is established anyway; the Configuration screen continues to function. The DIP switches S3.1, S3.2, S3.3 and S3.4 must all be set to OFF so that settings can be made via the web interface (see settings for DIP switch S3 in chapter 4.4.3) 1. Open a browser window and enter the default IP address http://192.168.1.1/ or the IP address you have assigned for the EKS Electronic-Key adapter. If necessary, first reset the default IP address (see chapter 6.1.1.1). If the EKS Electronic-Key adapter is located in a network with DHCP server, enter the automatically assigned IP address. You will find this in the network connection properties in Windows. The Information screen for the EKS web interface is now displayed. Page 24/34 Subject to technical modifications 2100420-03-05/19 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 2. Click Configuration. The Configuration screen for the EKS web interface is now displayed. 1. Enter the desired IP address and the subnet mask. If the network has a gateway, also enter this information. 2. Click the Send button. The following message is displayed: The settings were saved, to apply settings please switch power off/on 3. Interrupt the power supply and connect the Electronic-Key adapter again in order to activate the settings. 2100420-03-05/19 Subject to technical modifications Page 25/34 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 8 Data transfer via the Ethernet TCP/IP interface 8.1 Communication This chapter primarily describes communication between a PC and the Electronic-Key adapter (referred to as the device in the following). The commands Program (write) Electronic-Key Read Electronic-Key are issued using the TCP/IP protocol. Integration of the Electronic-Key adapter with Ethernet interface into the users PC application is supported by an optionally available ActiveX module (order no. 100 665) (usable if user programs under MS Windows support ActiveX). The EKS can thus be used in conjunction with process visualization, for example. The ActiveX module is used as a protocol driver for the TCP/IP data transfer protocols described in the following. EUCHNER provides a shared library as the interface to the NCU control system of the SINUMERIK Solution Line (Embedded Linux). Information!
EKS is used in read mode only in this system environment. In order to avoid problems caused by parallel use of the TCP/IP interface and the web server, the number of simultaneous connections is limited to one. 8.2 Basic message structure 8.2.1 IP Internet Protocol The internet protocol defines the basis for data transfer. It guarantees data transfer by connectionless, unsecured transport of data packets. IP provides an addressing mechanism for unambiguously identifying the transmitter and receiver. This is done by means of IP addresses. In addition to the actual user data that are to be transferred, a data packet also contains other important information to facilitate problem-free data transfer. This additional information is also referred to as the packet overhead or header. 8.2.2 TCP Transport Control Protocol TCP takes care of the handling and security of the IP data packets. It establishes a connection between two network stations for the duration of data transfer. The conditions for data transfer (e.g. the size of the data packets) are defined when the connection is set up. TCP operates according to the so-called client-server principle. The network station that sets up a connection represents the client. The addressed network station is known as the server. TCP provides every data packet with a checksum and therefore ensures that any data loss is detected. A sequence number is also transferred that calculates a so-called acknowledge number according to a fixed algorithm. This acknowledge number is sent back to the transmitter. In this way, the receiver acknowledges that the data packet has been received correctly. If this is not the case, the receiver requests the data packet again. A further task of TCP is forwarding of data packets to the correct application. These applications (so-called services) are addressed by means of different port numbers (e.g. port 80 for HTTP). Page 26/34 Subject to technical modifications 2100420-03-05/19 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 8.3 Commands for writing and reading an Electronic-Key read/write Write and read processes are always initiated by the PC/control system using a command message. The command message and reply message are also packed as user data in the TCP/IP frame. The Electronic-Key-System then sends a reply message to the PC/control system. PC/control system Command message Electronic-Key-System Reply message Information!
On the Electronic-Key read/write with 116 bytes freely programmable, the memory is organized in 4-
byte blocks. This means the start address for writing must be given in the range byte number 0 to byte number 112, always in 4-byte steps (byte number 0, 4, 8 ... 112). Also a multiple of 4-byte-sized blocks must always be written (4, 8, 12 ... 116 bytes)!
However, during reading it is possible to access the memory byte-by-byte without the above-mentioned restriction for writing. The Electronic-Key read/write also has a unique 8-byte serial number that is permanently written to the memory during the Electronic-Key production process. The serial number can therefore not be changed. This serial number is used for secure distinction of every single Electronic-Key. It is necessary that all 8 bytes are completely evaluated for secure distinction. The serial number is appended to the freely programmable memory. The serial number can be read by entering the start address byte number 116 and the number of bytes 8. 2100420-03-05/19 Subject to technical modifications Page 27/34 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 8.3.1 Write process Information!
When this command is used, the Electronic-Key must be in the Electronic-Key adapter, and must be removed from within the operating distance only after the reply message has been received. Command message
(message core, PC/control system EKS, see Figure 4):
TP (device addr.) (start addr. user data) (number of bytes of user data) (user data) Reply message (message core, EKS PC/control system, see Figure 5):
RF (device addr.) (00hex, 00hex) (status number) Byte no. Description 0 1 2 3 4 5 6 7 ... 122 Number of message bytes Command identification Constant Start address for the user data Number of bytes of user data User data ASCII T P Contents hexadecimal 0B ... 7B decimal 11 ... 123 54 50 01 00 84 80 1 0 00 ... 70 04 ... 74 0 ... 112 4 ... 116 ASCII or hexadecimal or BCD (code transparent) Figure 4: Command message Write Electronic-Key read/write (message core) Byte no. Description 0 1 2 3 4 5 6 Number of message bytes Command identification Constant Padding data Status number Contents ASCII hexadecimal decimal R F 07 52 46 01 00 00
*
7 82 70 1 0 0 Figure 5: Reply message Write Electronic-Key read/write status (message core)
* Status number 00hex: without errors 02hex: Electronic-Key not in the operating distance
(for further status numbers see chapter 8.5) Page 28/34 Subject to technical modifications 2100420-03-05/19 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 8.3.2 Read process Command message
(message core, PC/control system EKS, see Figure 6):
TL (device addr.) (start addr. user data) (number of bytes of user data) Reply message (message core, EKS PC/control system, see Figure 7 or Figure 8):
For this command there are two possible replies:
RL (device addr.) (start addr. user data) (number of bytes of user data) (user data) or RF (device addr.) (00hex, 00hex) (status number) The reply message RL (see Figure 7) stands for correct reception of the data. If an Electronic-Key cannot be read, an RF reply message is received (see Figure 8). The status number then indicates the cause of the error. Byte no. Description 0 1 2 3 4 5 6 Number of message bytes Command identification Constant Start address for the user data Number of bytes of user data Contents ASCII hexadecimal decimal T L 07 54 4C 01 00 7 84 76 1 0 00 ... 74 01 ... 7C 0 ... 116 1 ... 124 Figure 6: Command message Read Electronic-Key read/write (message core) Byte no. Description 0 1 2 3 4 5 6 7 ... 130 Number of message bytes Command identification Constant Start address for the user data Number of bytes of user data User data Contents ASCII hexadecimal 08 ... 83 52 4C 01 00 decimal 8 ... 131 82 76 1 0 00 ... 74 01 ... 7C 0 ... 116 1 ... 124 ASCII or hexadecimal or BCD (code transparent) R L Figure 7: Reply message Read Electronic-Key read/write (message core) Byte no. Description 0 1 2 3 4 5 6 Number of message bytes Command identification Constant Padding data Status number Contents ASCII hexadecimal decimal R F 07 52 46 01 00 00
*
7 82 70 1 0 0 Figure 8: Reply message Read Electronic-Key read/write status (message core)
* Status number 02hex: Electronic-Key not in operating distance
(for further status numbers see chapter 8.5) 2100420-03-05/19 Subject to technical modifications Page 29/34 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 8.3.3 Reading the serial number The Electronic-Key read/write also has a unique 8-byte serial number that is permanently written to the memory during the Electronic-Key production process. The serial number can therefore not be changed. This serial number is used for secure distinction of every single Electronic-Key. It is necessary that all 8 bytes are completely evaluated for secure distinction. The serial number is appended to the freely programmable memory. The serial number can be read by entering the start address byte number 116 and the number of bytes 8 (see chapter 8.3.2). 8.3.4 Reading the Electronic-Key status Command message
(message core, PC/control system EKS, see Figure 9):
Ek (device addr.) (00hex, 00hex) (00hex) Reply message (message core, EKS PC/control system, see Figure 10):
There is only one reply for this command:
Ek (device addr.) (00hex, 00hex) (status number) Byte no. Description 0 1 2 3 4 5 6 Number of message bytes Command identification Constant Padding data Byte no. Description 0 1 2 3 4 5 6 Number of message bytes Command identification Constant Padding data (can be different values) Status number Contents ASCII hexadecimal decimal E k 07 45 6B 01 00 00 00 7 69 107 1 0 0 0 Contents ASCII hexadecimal decimal E k 07 45 6B 01 XX XX
*
7 69 107 1 X X Figure 9: Command message Read Electronic-Key status (message core) Figure 10: Reply message Read Electronic-Key status status (message core)
* Status number 01hex: EKS_KEY_IN 02hex: EKS_KEY_OUT 03hex: EKS_KEY_OTHER Information!
The current status of the EKS Electronic-Key can be polled actively at any time using the command identification Ek. The EKS device responds also with command identification Ek and the information on whether an Electronic-Key is in place or not. This status message is sent automatically by the EKS also without request via the command message, as soon as the Electronic-Key is put in place or removed. Page 30/34 Subject to technical modifications 2100420-03-05/19 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 8.4 Command overview Description Program Electronic-Key Read Electronic-Key
(also read the serial number) Command message TP (see chapter 8.3.1) TL (see chapters 8.3.2 and 8.3.3) Read the Electronic-Key status Ek (see chapter 8.3.4) Reply message RF (see chapter 8.3.1) RL (see chapter 8.3.2) or RF (see chapter 8.3.2) Ek (see chapter 8.3.4) 8.5 Status numbers Value 00hex 02hex 03hex 06hex 17hex 18hex 4xhex 50hex 61hex Description No error Electronic-Key not in the operating distance Parity bit error on read-only Electronic-Key Write process interrupted. Start address or number of bytes is not a multiple of the block size 4 Read attempt when the Electronic-Key adapter is set to read/write Electronic-Key and a read-only Electronic-Key is inserted Read attempt when the Electronic-Key adapter is set to read-only Electronic-Key and a read/write Electronic-Key is inserted General Electronic-Key communication error (renewed write or read process necessary) Write attempt despite enabled write protection Maximum permissible number of TCP/IP connections exceeded 2100420-03-05/19 Subject to technical modifications Page 31/34 Manual EKS Electronic-Key Adapter Ethernet TCP/IP 9 Exclusion of liability Exclusion of liability under the following circumstances:
Incorrect use Non-compliance with safety regulations If mounting and electrical connection are carried out by unauthorized personnel If modifications are made 10 Service and repair No servicing is required. Remove dirt from the Electronic-Key and the Electronic-Key adapter using a soft cloth and solvent-free, non-abrasive cleaning agents. Repairs are to be made only by the manufacturer. On version EKS FSA devices, the safety-related functions must be checked at regular intervals. 11 Guarantee The General Terms and Conditions of EUCHNER GmbH + Co. KG apply. Page 32/34 Subject to technical modifications 2100420-03-05/19 EUCHNER GmbH + Co. KG Kohlhammerstrae 16 70771 Leinfelden-Echterdingen Microsoft Windows and ActiveX are registered trademarks of Microsoft Corporation
+49 711 / 75 97 - 0 Telephone Fax www.euchner.com . support@euchner.de
+49 711 / 75 33 16
frequency | equipment class | purpose | ||
---|---|---|---|---|
1 | 2019-06-13 | 0.125 ~ 0.125 | DCD - Part 15 Low Power Transmitter Below 1705 kHz | Original Equipment |
app s | Applicant Information | |||||
---|---|---|---|---|---|---|
1 | Effective |
2019-06-13
|
||||
1 | Applicant's complete, legal business name |
EUCHNER GmbH Co.KG
|
||||
1 | FCC Registration Number (FRN) |
0025866880
|
||||
1 | Physical Address |
Kohlhammerstrasse 16
|
||||
1 |
Leinfelden-Echterdingen, N/A 70771
|
|||||
1 |
Germany
|
|||||
app s | TCB Information | |||||
1 | TCB Application Email Address |
T******@ctcadvanced.com
|
||||
1 | TCB Scope |
A1: Low Power Transmitters below 1 GHz (except Spread Spectrum), Unintentional Radiators, EAS (Part 11) & Consumer ISM devices
|
||||
app s | FCC ID | |||||
1 | Grantee Code |
2AJ58
|
||||
1 | Equipment Product Code |
04
|
||||
app s | Person at the applicant's address to receive grant or for contact | |||||
1 | Name |
T******** K******
|
||||
1 | Title |
Design Department
|
||||
1 | Telephone Number |
+49 7********
|
||||
1 | Fax Number |
+49 7********
|
||||
1 |
T******@euchner.de
|
|||||
app s | Technical Contact | |||||
n/a | ||||||
app s | Non Technical Contact | |||||
n/a | ||||||
app s | Confidentiality (long or short term) | |||||
1 | Does this application include a request for confidentiality for any portion(s) of the data contained in this application pursuant to 47 CFR § 0.459 of the Commission Rules?: | Yes | ||||
1 | Long-Term Confidentiality Does this application include a request for confidentiality for any portion(s) of the data contained in this application pursuant to 47 CFR § 0.459 of the Commission Rules?: | No | ||||
if no date is supplied, the release date will be set to 45 calendar days past the date of grant. | ||||||
app s | Cognitive Radio & Software Defined Radio, Class, etc | |||||
1 | Is this application for software defined/cognitive radio authorization? | No | ||||
1 | Equipment Class | DCD - Part 15 Low Power Transmitter Below 1705 kHz | ||||
1 | Description of product as it is marketed: (NOTE: This text will appear below the equipment class on the grant) | Electronic-Key-System | ||||
1 | Related OET KnowledgeDataBase Inquiry: Is there a KDB inquiry associated with this application? | No | ||||
1 | Modular Equipment Type | Does not apply | ||||
1 | Purpose / Application is for | Original Equipment | ||||
1 | Composite Equipment: Is the equipment in this application a composite device subject to an additional equipment authorization? | No | ||||
1 | Related Equipment: Is the equipment in this application part of a system that operates with, or is marketed with, another device that requires an equipment authorization? | No | ||||
1 | Is there an equipment authorization waiver associated with this application? | No | ||||
1 | If there is an equipment authorization waiver associated with this application, has the associated waiver been approved and all information uploaded? | No | ||||
app s | Test Firm Name and Contact Information | |||||
1 | Firm Name |
CTC advanced GmbH (former CETECOM ICT Services )
|
||||
1 | Name |
G******** S****
|
||||
1 | Telephone Number |
49-68********
|
||||
1 | Fax Number |
49-68********
|
||||
1 |
t******@ctcadvanced.com
|
|||||
Equipment Specifications | |||||||||||||||||||||||||||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Line | Rule Parts | Grant Notes | Lower Frequency | Upper Frequency | Power Output | Tolerance | Emission Designator | Microprocessor Number | |||||||||||||||||||||||||||||||||
1 | 1 | 15C | 0.12500000 | 0.12500000 |
some individual PII (Personally Identifiable Information) available on the public forms may be redacted, original source may include additional details
This product uses the FCC Data API but is not endorsed or certified by the FCC