RF Module Testing & Configuration Device
Budget: $250 – $750 USD
Device Functional Requirements:
1. 10G SFP+ Module Testing:
Capability to test 10G SFP+ modules, ensuring full functionality for 10G Ethernet ports with SFP+ 10G Base LR modules.
2. RF Receiver Testing and RF Signal Generation:
Three independent RF transmitters capable of generating radio frequencies within the range of 2110–2170 MHz at 20W, with modulation control.
3. Connection and Configuration:
Accessible configuration via RS485 communication port.
General Specifications:
1. Ports and Interfaces:
Three 10G Ethernet ports with physical SFP+ cages for module connection.
One RS485 communication port.
One MDR 26-pin SCSI Servo Connector (welded plate, female).
2. RF Signal Generators:
Three independent RF generators with the following specs:
Frequency range: 2110–2170 MHz
Output power: 20W
Controlled via a NodeMCU or equivalent.
3. Controller:
The system controller can utilize a NodeMCU or similar microcontroller for management and control.
4. Power Supply:
Input voltage: 48V DC.
Additional Requirements:
The 10G Ethernet ports must provide basic functionality and ensure compatibility with SFP+ 10G Base LR modules.
Minimum configuration options should be accessible through the RS485 port.
1. 10G SFP+ Module Testing:
Capability to test 10G SFP+ modules, ensuring full functionality for 10G Ethernet ports with SFP+ 10G Base LR modules.
2. RF Receiver Testing and RF Signal Generation:
Three independent RF transmitters capable of generating radio frequencies within the range of 2110–2170 MHz at 20W, with modulation control.
3. Connection and Configuration:
Accessible configuration via RS485 communication port.
General Specifications:
1. Ports and Interfaces:
Three 10G Ethernet ports with physical SFP+ cages for module connection.
One RS485 communication port.
One MDR 26-pin SCSI Servo Connector (welded plate, female).
2. RF Signal Generators:
Three independent RF generators with the following specs:
Frequency range: 2110–2170 MHz
Output power: 20W
Controlled via a NodeMCU or equivalent.
3. Controller:
The system controller can utilize a NodeMCU or similar microcontroller for management and control.
4. Power Supply:
Input voltage: 48V DC.
Additional Requirements:
The 10G Ethernet ports must provide basic functionality and ensure compatibility with SFP+ 10G Base LR modules.
Minimum configuration options should be accessible through the RS485 port.