Connectorized Band Stop Filters
Connectorized Band Stop Filters
| Part Number | Stop Band (MHz) | Pass Band (MHz) | Insertion Loss (dB) | Rejection at Frequency (MHz) | Rejection dB Atten | VSWR Input | VSWR Output | Max. Input Power P1 dBm | |
| HD32495 | 255-310 | DC-180/400-1500 | 0.5/1.5 | 262-295/255-310 | 45/35 | 1.6 | 1.6 | 27 | Download |
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Custom Band Stop Filter Engineering
Modifications & Mission Critical Packaging
Modifications & Mission-Critical
RF Components specializes in custom Connectorized Band Stop Filters engineered to meet the most demanding commercial, military, and aerospace requirements. With decades of RF and microwave expertise, we deliver high-performance, reliable solutions tailored to your specific operating environment.
Extreme Temperature
Our filters are designed to operate under extreme environmental conditions, including cryogenic temperatures for scientific research and high-temperature aerospace or engine-mounted systems. These designs ensure stable performance, low insertion loss, and long-term reliability, even in conditions where standard filters fail.
Form Factor
Our custom form-factor solutions include ruggedized connectorized packages, optimized connector placement, and high-density layouts. Designs are engineered to meet tight SWaP (Size, Weight, and Power) constraints without compromising electrical or mechanical performance.
Choosing the Right Connectorized Band Stop Filter
Technical FAQ
What is the difference between Insertion Loss and Stopband Rejection?
How does OIP3 affect LNA performance in high-interference environments?
Can these LNAs be used for 5G mmWave applications?
Yes, our Ka-Band and Q-Band LNAs are specifically optimized for 26-40 GHz ranges, featuring ultra-wideband performance and compact SMT packaging suitable for 5G phased array systems.
What Our Customers Say
Lead RF Architect
Global Aerospace Prime
Senior Test Engineer
Semiconductor Testing Services
Director of Operations
Telecommunications Infrastructure Co.