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Search results for: HP-AN301-1--Low-noise-division-of 10MHz-oscillators (found: 96 regularSearch) ask for a document
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HP-AN301-1--Low-noise-division-of 10MHz-oscillators.pdf02/02/20 Agilent HP-AN301-1--Low-noise-division-of 10MHz-oscillators.pdf2658 kB0AgilentHP-AN301-1--Low-noise-division-of 10MHz-oscillators
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RTLNA01.pdf12/02/08The RTLNA01 is 2 to 4 GHz; Low Noise Amplifier IP Block .The device is designed for 802.11 b/g and Cellular system. The LNA has input and output matching off-chip which will provide the flexibility to tune the LNA for low noise figure. The LNA is bia61 kB107Rficsolutions Inc.RTLNA01
RGDIV01.pdf11/02/08RGDIV01 is a low noise divide by 8 static divider utilizing InGaP HBT technology. The device operates from 7 to 20 GHz.162 kB48Rficsolutions Inc.RGDIV01
RJL01_1.5_1.7GHz_GPS_LNA_.pdf12/02/08The RJL01 is 1.5 to 1.7 GHz, Low Noise Amplifier IP Block. The LNA is designed on the 0.18um SiGe BiCMOS Process. The device is designed for GPS system. The LNA has provision for mode control to turn off. It requires a single +3.0 Volt supply and con169 kB197Rficsolutions Inc.RJL01
RJM01_1.6_3GHz_Gillbert cell Mixer_.pdf12/02/08The RJM01 is 1.6 to 3.0 GHz; Low noise, Gilbert Cell down conversion SiGe Mixer designed on 0.35 μm SiGe BiCMOS technology. The device is designed for 802.11 b/g standard and WLAN MIMO system. Functional Diagram . The noise figure is 4.43 dB an173 kB155Rficsolutions Inc.RJM01
2563 Noise in Low Curr.pdf05/11/19 Keithley Appnotes 2563 Noise in Low Curr.pdf51 kB0Keithley2563 Noise in Low Curr
RGLNA03(2-12 GHz GaAs pHEMT).pdf13/02/08The RGLNA03 is 2.0 to 12.0 GHz high efficiency GaAs Enhancement mode p-HEMT Low noise amplifier .The device is designed for 802.11a/b/g standard. The minimum noise figure achieved is 1.5 dB at 2 GHz. A single 3.5V and 12 mA current bias the LNA. No input114 kB92Rficsolutions.IncRGLNA03
5991-3886EN Low Noise Filter Improves B2961A 62A Power Source Noise Performance - Application Brief 12/09/19 Agilent 5991-3886EN Low Noise Filter Improves B2961A 62A Power Source Noise Performance - Application Brief c20140618 [2].pdf541 kB3Agilent5991-3886EN Low Noise Filter Improves B2961A 62A Power Source Noise Performance - Application Brief
5991-3884EN Ultra-Low Noise Filter Minimizes B2961A 62A Power Source Noise Density - Application Bri27/08/20 Agilent 5991-3884EN Ultra-Low Noise Filter Minimizes B2961A 62A Power Source Noise Density - Application Brief c20140728 [2].pdf710 kB0Agilent5991-3884EN Ultra-Low Noise Filter Minimizes B2961A 62A Power Source Noise Density - Application Bri
RGLNA10(7.0-26.0 GHz GaAs pHEMT).pdf13/02/08The RGLNA10 is 7.0-26.0 GHz; Low Noise Distributed Amplifiers using GaAs pHEMT Technology. The self-biased amplifier provides 19 dB of gain and 14 dBm of output power at P1 dB gain compression while requiring only 86 mA from a single 3.0 V supply. G44 kB198Rficsolutions.IncRGLNA10
RS01_1.7_2.7GHz_ single stage LNA_.pdf12/02/08The RS01 is 1.7 to 2.7 GHz; high efficiency Single stage Low Noise Amplifier designed on 0.18μm SiGe BiCMOS technology. The device is designed for 802.11b/g standard and WLAN MIMO system. The simulated noise figure is as low as 1.2 dB at 2.0 GHz184 kB77Rficsolutions Inc.RS01
RGLNA06(2-6 GHz,3.3 V GaAs pHEMT).pdf13/02/08The RGLNA06 is a broadband high efficiency GaAs Enhancement mode pHEMT Low Noise Amplifier. The MMIC Low Noise Amplifier doesn’t require any off-chip component. The Broadband LNA is designed for the 802.11a/b/g/n system. The LNA covers a wide range o54 kB78Rficsolutions.IncRGLNA06
RJL02 _GPS LNA_.pdf12/02/08The RJL02 is 1575 MHz narrow band Low Noise Amplifier IP Block. The LNA is designed on the 0.18um SiGe BiCMOS Process. The device is designed for GPS system Application. The LNA die area is 0.8 mm x 0.7 mm. It has two off chip components at input sid164 kB153Rficsolutions Inc.RJL02
5991-3732EN Performing a Precision ADC Evaluation Using a Low Noise DC Source - Application Note c2030/08/20 Agilent 5991-3732EN Performing a Precision ADC Evaluation Using a Low Noise DC Source - Application Note c20140618 [7].pdf686 kB0Agilent5991-3732EN Performing a Precision ADC Evaluation Using a Low Noise DC Source - Application Note c20
Scherer_Low_noise_source_design_and_test.pdf09/03/20 HP Publikacje Scherer_Low_noise_source_design_and_test.pdf1277 kB0HPScherer Low noise source design and test
M000 Management Division.pdf08/03/20 IBM share SHARE_61_Proceedings_Volume_1_Summer_1983 M000 Management Division.pdf31 kB0IBMM000 Management Division
A000 Applications Division.pdf17/03/20 IBM share SHARE_61_Proceedings_Volume_1_Summer_1983 A000 Applications Division.pdf27 kB0IBMA000 Applications Division
Device Evaluation using the Keysight B2961A B2962A Ultra Low Noise DC Source-flyer 5991-1420EN c201224/11/19 Agilent Device Evaluation using the Keysight B2961A B2962A Ultra Low Noise DC Source-flyer 5991-1420EN c20121218 [2].pdf340 kB1AgilentDevice Evaluation using the Keysight B2961A B2962A Ultra Low Noise DC Source-flyer 5991-1420EN c2012
Precise VCO Characterization using the B2962A Low Noise Power Source-flyer 5991-1616EN c20141030 [2]28/08/20 Agilent Precise VCO Characterization using the B2962A Low Noise Power Source-flyer 5991-1616EN c20141030 [2].pdf140 kB0AgilentPrecise VCO Characterization using the B2962A Low Noise Power Source-flyer 5991-1616EN c20141030 [2]
B2961A B2962A 6.5 Digit Low Noise Power Source-brochure 5991-1388EN c20140829 [12].pdf19/10/19 Agilent B2961A B2962A 6.5 Digit Low Noise Power Source-brochure 5991-1388EN c20140829 [12].pdf1455 kB0AgilentB2961A B2962A 6.5 Digit Low Noise Power Source-brochure 5991-1388EN c20140829 [12]

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