1. Multi-octave RF coverage (0.5 ~ 40GHz) 2. Octave RF coverage S, C, X, Ku, and Ka 3. 2GHz or above instantaneous signal bandwidth 4. Amplitude Equalization and Group Delay Equalization 5. Variety of commonly used IF and bandwidth combinations 6. Choices of coherent dual-channel or non-coherent dual-channel 7. Excellent phase noise specification ≤-100dBc/Hz@10KHz 8. Internal and external reference switching 9. Remote programming
AppVision D Series Dual Channel Up/Downconverter belongs to our microwave converter series that has a high performance and a multi-octave or single octave coverage by RF signal. Its frequency step is precise and accurate to 1Hz with a variety of IF and signals bandwidth choices. This series of the converter is mainly applied to the electronic countermeasure system, radar system, and satellite communication system. The special dual-channel design has an excellent amplitude and phase stability that can be configured with a common synthesizer or double synthesizer work. With excellent phase noise, clutter suppression, and in-band flatness data, it is able to provide a transparent RF transmission channel to all videos or data communications. All programming commands can be set through a local panel or through the network remotely. D Series Dual Chanel Up/Downconverter is available in both 2U and 4U sizes.
Applications:
T&M Systems Satellite Communications MIMO
Specifications:
Output Characteristics
Frequency Range
0.5~40GHz
P-1dB Compression Point
≥14dBm
Frequency Tuning Step Size
10Hz
IM3 Output
≤-36dBc (△5MHz, maximum gain, power output: 20dBm)
Output VSWR
≤2.5
Output Impedance
50Ω
Input Characteristics
Input Frequency
70±20MHz,140±40MHz,1.2±0.25GHz,1.2±0.5GHz, 1.8±1GHz (Select between single or multiple IF inputs)
Maximum Power Input
+10dBm (Operating)
Input Impedance
50Ω
Input VSWR
≤1.5
Transfer Characteristics
Gain
0~15dB (Minimum signal power output -100dBm or below, ATT110 support)
• RF: 6 to 20 GHz
• IF: 1 to 10 GHz
• Adjustable LO frequency: 6 to 20 GHz
• Conversion Loss: 10 dB (typical)
• Integrated with an internal LO source
• Simultaneously up and down conversion for each channel
• Ideal for WiFi-6/7, UWB, LEO applications
Features & Benefits:
1.Octave RF coverage (S, C, X, Ku, and Ka) 2.2GHz or above instantaneous signal bandwidth 3.Amplitude Equalization and Group Delay 4.Variety of commonly used IF and bandwidth combinations 5.Excellent phase noise specification (40GHz): ≤-100dBc/Hz@10KHz 6.Internal and external reference switching 7.Remote programming 8.Self-testing...
Features & Benefits:
1. Multi-octave RF coverage (0.5 ~ 67GHz) 2. 4GHz or above instantaneous signal bandwidth 3. Amplitude Equalization and Group Delay Equalization 4. Variety of commonly used IF and bandwidth combinations 5. Excellent phase noise specification (67GHz): ≤-100dBc/Hz@10KHz 6. Internal and external reference switching 7. Remote...
• RF: 6 to 20 GHz
• IF: 1 to 10 GHz
• Adjustable LO frequency: 6 to 20 GHz
• Conversion Loss: 10 dB (typical)
• Integrated with an internal LO source
• Simultaneously up and down conversion for each channel
• Ideal for WiFi-6/7, UWB, LEO applications
Features & Benefits:
1. Octave RF coverage (S, C, X, Ku, and Ka)
2. Multi-octave RF coverage 1.5M ~ 26.5GHz
3. 2GHz or above instantaneous signal bandwidth
4. Amplitude Equalization and Group Delay Equalization
5. Variety of commonly sued IF and bandwidth combinations
6. Choices of coherent multi-channel or non-coherent multi-channel
7. Excellent...
• RF: 23 to 30 GHz
• IF: 2.6 to 5.8 GHz
• External LO Input Range: 4.75 to 6.75 GHz
• On-chip x4 LO Frequency Multiplier
• Up Conversion Gain: 11.5 dB (typical)
• Down Conversion Gain: 7 dB (typical)
• Tiny and Compact
Features & Benefits:
1.Octave RF coverage (S, C, X, Ku, and Ka) 2.2GHz or above instantaneous signal bandwidth 3.Amplitude Equalization and Group Delay 4.Variety of commonly used IF and bandwidth combinations 5.Excellent phase noise specification (40GHz): ≤-100dBc/Hz@10KHz 6.Internal and external reference switching 7.Remote programming 8.Self-testing...
Features & Benefits:
1. Multi-octave RF coverage (0.5 ~ 67GHz) 2. 4GHz or above instantaneous signal bandwidth 3. Amplitude Equalization and Group Delay Equalization 4. Variety of commonly used IF and bandwidth combinations 5. Excellent phase noise specification (67GHz): ≤-100dBc/Hz@10KHz 6. Internal and external reference switching 7. Remote...
1. Multi-octave RF coverage (0.5 ~ 40GHz) 2. Octave RF coverage S, C, X, Ku, and Ka 3. 2GHz or above instantaneous signal bandwidth 4. Amplitude Equalization and Group Delay Equalization 5. Variety of commonly used IF and bandwidth combinations 6. Choices of coherent dual-channel or non-coherent dual-channel 7. Excellent phase noise specification ≤-100dBc/Hz@10KHz 8. Internal and external reference switching 9. Remote programming