Product Description: SF14-1575F5UUC1 Surface Acoustic Wave (SAW) Filter
The SF14-1575F5UUC1 is a 1.575 GHz Surface Acoustic Wave (SAW) filter from AVX Corp/Kyocera Corp. It is a 5-Lead, Surface Mount Device (SMD) filter with a bandwidth of 2 MHz and an insertion loss of 0.8 dB. It is packaged in a Tape & Reel (TR) package.
SAW filters are used in a variety of applications, including:
- GPS receivers
- Satellite communication systems
- Radar systems
- Electronic warfare systems
- Test and measurement equipment
SAW filters are known for their excellent high-frequency performance, low insertion loss, and sharp roll-off characteristics. They are also very rugged and reliable, making them ideal for use in harsh environments.
The SF14-1575F5UUC1 SAW filter is specifically designed for use in GPS receivers. It has a very tight passband that matches the GPS signal bandwidth, which helps to improve the receiver's selectivity and sensitivity. The filter also has very low insertion loss, which ensures that the GPS signal is not attenuated too much before it reaches the receiver's front-end amplifier.
The SF14-1575F5UUC1 SAW filter is a high-performance, reliable filter that is ideal for use in GPS receivers and other demanding applications.
Features and Benefits:
- 1.575 GHz center frequency
- 2 MHz bandwidth
- 0.8 dB insertion loss
- 5-Lead, Surface Mount Device (SMD) package
- Tape & Reel (TR) packaging
- Excellent high-frequency performance
- Low insertion loss
- Sharp roll-off characteristics
- Rugged and reliable
- Ideal for use in GPS receivers and other demanding applications
Applications:
- GPS receivers
- Satellite communication systems
- Radar systems
- Electronic warfare systems
- Test and measurement equipment
Technical Specifications:
- Frequency: 1.575 GHz
- Frequency Range: 1.57442 GHz to 1.57642 GHz
- Bandwidth: 2 MHz
- Insertion Loss: 0.8 dB
- VSWR: 1.5:1
- Package: 5-Lead, Surface Mount Device (SMD)
- Packaging: Tape & Reel (TR)
Operating Temperature Range:
Storage Temperature Range:
RoHS Compliance:
Moisture Sensitivity Level (MSL):