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The SMP-KWB2-1 sets a new standard for ultra-small blind-mating RF
connectors. Designed for precision applications, it combines
high-frequency performance with ease of use. Whether you’re working
with printed boards or chassis, this connector ensures reliable
signal transmission, even in demanding environments. Its unique
features include fast and secure connections, vibration resistance,
and the ability to tolerate slight axial and radial mismatches. As
industries like phased array radar, aviation, aerospace, and civil
communications increasingly adopt high-density setups, the
SMP-KWB2-1 emerges as a versatile and essential solution.
High Frequency Precision: With a frequency range of 0~40 GHz
(semi-rigid) and 0~12.4 GHz (flexible cable), the SMP-KWB2-1
delivers consistent performance across a wide spectrum.
Quick and Accurate Connections: The blind-mating design allows for
rapid and secure connections, making it ideal for high-density
installations.
Built to Withstand Vibrations: Whether in airborne applications or
rugged environments, the SMP-KWB2-1 maintains signal integrity.
Tolerance for Misalignments: Its axial and radial mismatch
tolerance ensures reliable performance, even when alignment isn’t
perfect.
The SMP-KWB2-1 stands as a testament to precision engineering. Imagine a connector that seamlessly bridges the gap between high-frequency performance and practical usability. Whether you’re assembling intricate printed boards or integrating components within a robust chassis, the SMP-KWB2-1 ensures flawless signal transmission. Here’s why it matters:
High-Frequency Precision: The SMP-KWB2-1 operates across an
impressive frequency range—0~40 GHz for semi-rigid setups and
0~12.4 GHz for flexible cables. This versatility empowers engineers
to tackle diverse applications, from radar systems to satellite
communication.
Blind-Mating Brilliance: Picture a scenario where connections need
to be lightning-fast, yet precise. The SMP-KWB2-1 delivers
precisely that. Its blind-mating design allows components to engage
swiftly, even when you can’t visually align them. Think of it as a
well-choreographed dance between precision and speed.
Vibration Resistance: In the real world, vibrations are
inevitable—whether it’s an aircraft in flight or a rugged
industrial environment. The SMP-KWB2-1 remains unfazed. Its robust
construction ensures signal integrity, regardless of external
disturbances.
Axial and Radial Forgiveness: Imperfect alignments happen. Maybe
it’s a slight tilt or a minor offset. No worries—the SMP-KWB2-1
forgives these discrepancies. It’s like having a connector that
says, “I’ve got this; let’s stay connected.”
Let’s delve into the intricacies—the nuts and bolts that make the
SMP-KWB2-1 exceptional:
Precision Machining: Each component undergoes meticulous machining,
ensuring consistent impedance (50 Ω) and reliable performance. It’s
like having a Swiss watch in connector form.
500 Mating Cycles: Durability matters. The SMP-KWB2-1 can withstand
500 mating cycles without breaking a sweat. That’s longevity you
can count on.
VSWR Magic: VSWR (Voltage Standing Wave Ratio) matters for signal
fidelity. The SMP-KWB2-1 achieves impressive VSWR values (1.15 +
0.02F for flexible cables and 1.1 + 0.02F for semi-rigid).
Translation: minimal signal loss, maximal satisfaction.
Insulation Warrior: With an insulation resistance of 5000 mΩ and a
dielectric withstanding voltage of 500 V, the SMP-KWB2-1 laughs in
the face of electrical challenges.
In summary, the SMP-KWB2-1 isn’t just a connector; it’s a silent
hero, ensuring seamless communication across the airwaves and
circuit traces. So, whether you’re launching satellites or
fine-tuning 5G networks, trust the SMP-KWB2-1 to keep your signals
crisp and your connections unbreakable.
Impedance | 50 Ω |
Mating Cycles | 500 |
Frequency Range with Flexible Cable | 0~12.4 GHz |
Frequency Range with Semi-rigid | 0~40 GHz |
VSWR with Flexible Cable | 1.15+0.02F |
VSWR with Semi-rigid | 1.1+0.02F |
Series | RF Connectors |
Insulation Resistance | 5000 mΩ |
dielectric withstanding voltage | 500 V |