Electrosys TL6F5K
The Electrosys TL6F5K is a liquid-cooled solid state transmitter for digital broadcasting (DVB-T2), operating in a frequency range from 470 to 870 MHz.
This connector monitors the activity of the TX transmitter via SNMP.
About
Version Info
| Range | Key Features | Based on | System Impact |
|---|---|---|---|
| 1.0.0.x [SLC Main] | Initial version | - | - |
Product Info
| Range | Supported Firmware |
|---|---|
| 1.0.0.x | - |
System Info
| Range | DCF Integration | Cassandra Compliant | Linked Components | Exported Components |
|---|---|---|---|---|
| 1.0.0.x | No | Yes | - | - |
Configuration
Connections
SNMP Connection
This connector uses a Simple Network Management Protocol (SNMP) connection and requires the following input during element creation:
SNMP CONNECTION:
- IP address/host: The polling IP or URL of the destination.
- IP port: The IP port of the destination.
SNMP Settings:
- Get community string: The community string used when reading values from the device (default: public).
- Set community string: The community string used when setting values on the device (default: private).
Web Interface
The web interface is only accessible when the client machine has network access to the product.
How to use
The element consists of the following data pages:
- General: Displays general transmitter information, including measurements from the TX transmitter, such as Forward Status, TX Forward Power, etc.
- System Information: A subpage of the general page that provides general information about the transmitter system, including System Name, System Description, etc.
- TX Control: Displays control status information for the transmitter, such as Power Set, RF, Operational Mode, etc.
- Dual Drive: Displays status information for Exciter A and Exciter B in the transmitter.
- Cooling: Displays the status information for the cooling systems in the transmitter, including Water Temperature, Heat Exchange, Pump System, etc.
- CAN Bus Connection: Contains a table displaying the connection status for the CAN bus in the transmitter.