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BGU7224 2. 4 GHz ISM SiGe:C low-noise amplifier MMIC with bypass 1 1 General description The BGU7224 is a fully integrated MMIC Low Noise Amplifier (LNA) for wireless receiver applications in the 2 4 GHz to 2 5 GHz ISM band Manufactured in NXP's high performance SiGe:C technology, the BGU7224 couples best-in-class gain, noise figure, linearity and efficiency with the process stability and ruggedness that are the hallmarks of SiGe technology The BGU7224
X LNB 7. 25-8. 50 GHz Satcom TLT E. O. PLL models - SMW The X-band PLL LNB models cover the frequency range 7 25 to 8 50 GHz with fixed gain of 60 dB typ (55 dB min ) or gain by request Available with Internal LO ref or with External 10 MHz ref input Optional you can order X-Band LNB with Fiber-optic output (single mode fiber) For more detailed information, ask for product sheet of each model
DESIGN OF 1. 1mW 2. 4GHZ CMOS LOW NOISE AMPLIFIER BASED ON 90nm . . . To demonstrate design methodology a narrow-band source degenerated cascode LNA is designed and simulated in a standard 90nm CMOS process to operate in the 2 4 GHZ band The LNA achieves a voltage gain of 20 6dB, Noise figure of 2 87dB and consuming 1 1 mW power from 1 V supply voltage Simulation study has been done using Micro Wave Office
CMOS Low Noise Amplifier Design Optimization Technique In this paper, a set up noise parameter expression and the third order intermodulation product expression (IM3) for a power-constrained simultaneous noise and input matching low noise amplifier
Low Noise Amplifler ZX60-83LN-S+ - Mini-Circuits PRODUCT OVERVIEW Mini-Circuits’ ZX60-83LN-S+ is a wideband low noise connectorized amplifier providing a unique combination of low noise figure, high IP3 and flat gain over a very wide frequency range, supporting a wide range of sensitive, high-dynamic range receiver applications and many systems where high performance over wideband is needed This design operates on a single 5 or 6V supply
Low Noise, 1 GHz FastFET Op Amps - SparkFun Electronics FEATURES High speed −3 dB bandwidth (G = 1, RL = 100 Ω): 1050 MHz Slew rate: 870 V μs 0 1% settling time: 9 ns Input bias current: 2 pA typical Input capacitance Common-mode capacitance: 1 3 pF typical Differential mode capacitance: 0 1 pF typical Low input noise Voltage noise: 4 nV √Hz at 100 kHz Current noise: 2 5 fA √Hz at 100 kHz Low distortion: −90 dBc at 10 MHz (G = 1, RL = 1
Optical Delay Line | ODL 40 GHz - rfoptic. com RFOptic's optical delay line ODL series provides a high performance solution for testing and calibrating radar systems, or for RF communication The ODL converts analog RF signals to optical signals and back The RF input signal is converted into an optical modulated signal, which is then transmitted into a single mode fiber, creating a fixed time delay defined by the fiber length After