Quantic PMI Model SFB-13-6P-MCT is a 6 channel switch filter bank that has six filter channels that cover the frequency range of 1.38 to 2.62 GHz. This model includes an integral TTL driver and offers fast switching speeds of <500 ns. Package size is 5.0" x 4.0" x 1.5" with a 9 pin subminiature D connector for power/control and SMA female connectors.
| General Parameters: | |
|---|---|
| Status: | Preliminary |
| No of Filter Channels: | 6 |
| Operating Frequency (GHz): | 1.38 to 2.62 |
| Frequency Min (GHz): | 1.38 |
| Frequency Max (GHz): | 2.62 |
| Center Frequency (GHz): | Channel 1: 1.48 GHz Channel 2: 1.7 GHz Channel 3: 1.9 GHz Channel 4: 2.1 GHz Channel 5: 2.3 GHz Channel 6: 2.5 GHz |
| 3 dB Bandwidth (GHz): | 0.24 GHz |
| Isolation (dB): | 60dB Min |
| Insertion Loss (dB): | 3.3 dB |
| Switching Speed: | 500 ns |
| Control Type: | TTL |
| DC Voltage: | +15 VDC / -15 VDC |
| DC Current (mA): | 700 mA / 50 mA |
| VSWR: | 2.0:1 Max |
| RF Power Rating: | 27 dBm CW Max |
| Rejection: | Channel 1: -60 dBc Min @ 1.2 & 1.8 GHz -65 dB Min @ DC to 1 GHz -65 dB Min @ 2.100 to 6 GHz Channel 2: -60 dB Min @ 1.4 & 2 GHz -65 dB Min @ DC to 1.1 GHz -65 dB Min @ 2.3 to 6 GHz `Channel 3: -60 dB Min @ 1.6 & 2.2 GHz -65 dB Min @ DC to 1.3 GHz -65 dB Min @ 2.5 to 6 GHz Channel 4: -60 dB Min @ 1.8 & 2.4 GHz -65 dB Min @ DC to 1.5 GHz -65 dB Min @ 2.7 to 6 GHz Channel 5: -60 dB Min @ 2 & 2.6 GHz -65 dB Min @ DC to 1.7 GHz -65 dB Min @ 2.9 to 6 GHz Channel 6: -60 dB Min @ 2.2 & 2.8 GHz -65 dB Min @ DC to 1.9 GHz -65 dB Min @ 3.1 to 6 GHz |
| Connectors: | RF: SMA Female Power & Control: 9 Pin Micro-D |
| Size: | 5.0" x 4.0" x 1.5" |
| Export Classification (ECCN): | EAR99 |
| Environmental Ratings: | |
| Operating Temperature: | -40 °C to +85 °C |
| Non-Operating Temperature: | -40 ºC to +100 ºC |
| Humidity: | MIL-STD-202F, Method 103B Cond. B |
| Shock: | MIL-STD-202F, Method 213B Cond. B |
| Vibration: | MIL-STD-202F, Method 204D Cond. B |
| Altitude: | MIL-STD-202F, Method 105C Cond. B |
| Temperature Cycle: | MIL-STD-202F, Method 107D Cond. A |