Mini-Circuits TSY Amplifiers
Mini-Circuits TSY Amplifiers offer a 50Ω impedance rating and 0.4GHz to 17GHz frequency ratings. The TSY series consists of monolithic and low-noise modules that have various features, including low loss bypass mode, low current, low voltage, internal bypass switching, and positive gain slope. Suitable applications for Mini-Circuits TSY Amplifiers include point-to-point ODU systems, fixed satellites, wireless base station systems, and test and measurement equipment.Features
- TSY-173LN+
- Positive gain slope
- Shutdown feature
- Excellent noise figure, 1.2dB typ.
- Built-in ESD protection circuits (Class 1C)
- Low current operation
- TSY-172LNB+
- Low NF over entire frequency band
- Low current and low voltage
- Internal bypass switching
- Suitable for low phase noise applications
- TSY-13LNB+
- Built-in bypass switching
- Low noise figure
- Low current and low voltage
- TSY-83LN+
- Low loss bypass mode
- Low noise figure
- MMIC surface mount
Applications
- TSY-173LN+
- Point-to-point ODU system
- Fixed satellite
- Radio location
- Mobile
- TSY-172LNB+ and TSY-13LNB+
- Wireless base station systems
- Test and measurement systems
- Multi-band receivers
- TSY-83LN+
- Radar, EW, and ECM defense systems
- 5G Sub6, MIMO wireless infrastructure systems
- Test and measurement equipment
Specifications
- TSY-173LN+
- 1.2dB typical noise figure
- 13.2mA current operation
- 13.5GHz to 17GHz frequency range
- 0.42W total power dissipation
- -40°C to +85°C operating temperature range
- TSY-172LNB+
- 1.4dB noise figure
- 2.7V voltage
- 7.7mA current
- P1dB: +17.5 dBm typ.
- 0.03GHz to 1.7GHz frequency range
- -40°C to +85°C operating temperature range
- TSY-13LNB+
- 1.2dB typical noise figure
- 2.7V voltage
- 7.7mA current
- P1dB: +17.1 dBm typ.
- 0.03GHz to 1GHz frequency range
- -40°C to +85°C operating temperature range
- TSY-83LN+
- 1.5dB typical noise figure
- +33.6dBm OIP3
- +22.9dBm P1dB
- 3mm x 3mm 12-lead QFN-style package
- 0.4GHz to 8GHz frequency range
Datasheets
Publié le: 2024-09-20
| Mis à jour le: 2024-10-07
