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Search results for: A Packaged 60 GHz Low-Power Transceiver with Integrated Antennas for Short-Range Communications 5991 (found: 93 regularSearch) ask for a document
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A Packaged 60 GHz Low-Power Transceiver with Integrated Antennas for Short-Range Communications 5991 : Full Text Matches - Check >>
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A Packaged 60 GHz Low-Power Transceiver with Integrated Antennas for Short-Range Communications 599109/11/21 Agilent A Packaged 60 GHz Low-Power Transceiver with Integrated Antennas for Short-Range Communications 5991-3774EN c20140711 [4].pdf629 kB1AgilentA Packaged 60 GHz Low-Power Transceiver with Integrated Antennas for Short-Range Communications 5991
Found in: fulltext index (92)
GEDA01.pdf11/02/08The GEDA01 is 7.0 GHz to 20.0 GHz low power single stage buffer amplifier. The amplifier is designed using 2 μm InGaP HBT Technology for high frequency applications. Driver amplifier shows gain of 4.5 dB at 20 GHz with power output of 9 dBm. It 48 kB517Rficsolutions Inc.The GEDA01 is 7.0 GHz to 20.0 GHz low power
antenna.pdf19/07/05antennas for low power applications107 kB1015rfmantennas
RFISFRT01(2.4-2.5 GHz).pdf13/02/08The RFISFRT01 is a monolithic integrated transceiver front end suitable for 802.11b/g (2.4 GHz) application. This is the fully integrated Transceiver Chip except passive filters. It contains low noise amplifier, Power amplifier and a switch. The input133 kB212Rficsolutions.IncRFISFRT01
GEDA02.pdf11/02/08The GEDA02 is 20 GHz to 40 GHz low power buffer amplifier. The amplifier is designed using 2 μm InGaP HBT process for high frequency applications. Driver amplifier shows gain of 1dB at 40 GHz with power output of 0dBm. It operates at 4.2Volts.44 kB276Rficsolutions Inc.The GEDA02 is 20 GHz to 40 GHz low power buffer
5991-3501EN HMMC-3104 DC-16 GHz Packaged Divide-by-4 Prescaler - Data Sheet c20140808 [9].pdf15/07/21 Agilent 5991-3501EN HMMC-3104 DC-16 GHz Packaged Divide-by-4 Prescaler - Data Sheet c20140808 [9].pdf1726 kB1Agilent5991-3501EN HMMC-3104 DC-16 GHz Packaged Divide-by-4 Prescaler - Data Sheet c20140808 [9]
5991-3483EN HMMC-3102 DC-1 GHz Packaged Divide-by-2 Prescaler - Data Sheet c20140815 [9].pdf14/10/21 Agilent 5991-3483EN HMMC-3102 DC-1 GHz Packaged Divide-by-2 Prescaler - Data Sheet c20140815 [9].pdf1787 kB5Agilent5991-3483EN HMMC-3102 DC-1 GHz Packaged Divide-by-2 Prescaler - Data Sheet c20140815 [9]
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
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
RGLNA11(2-6 GHz GaAs pHEMT).pdf13/02/08The RGLNA11 is a broadband high efficiency GaAs Enhancement mode pHEMT Low Noise Amplifier. The device is designed for use in the 802.11a/b/g and WLAN MIMO system. The LNA covers a wide range of frequency from 2 to 6 GHz. The noise figure is 1.7 dB a126 kB55Rficsolutions.IncRGLNA11
RFISFR01(2.5 -2.686 GHz).pdf13/02/08The RFISFR01 is a RF front-end module that integrates band switching and is a transceiver front end designed for low voltage operation. The module contains wide band power amplifier, low noise amplifiers, band pass, low pass filters.56 kB188Rficsolutions.IncRFISFR01
5991-3832EN Keysight Low PIM Coaxial Switches_252C DC to 26.5 GHz c20140728 [5].pdf01/10/19 Agilent 5991-3832EN Keysight Low PIM Coaxial Switches_252C DC to 26.5 GHz c20140728 [5].pdf191 kB6Agilent5991-3832EN Keysight Low PIM Coaxial Switches_252C DC to 26.5 GHz c20140728 [5]
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 kB109Rficsolutions Inc.RTLNA01
RGLNA02(2-6 GHz, 3V GaAs pHEMT).pdf13/02/08The RGLNA02 is 2.0 to 6.0 GHz high efficiency GaAs Enhancement mode psuedomorphic high electron mobility transistor Low noise amplifier. The device is designed for 802.11a/b/g and Wi-Fi systems. It gives Power Output of 5 dBm at P1 dB. The minimum no59 kB65Rficsolutions.IncRGLNA02
GRFM1.pdf11/02/08The GRFM1 is 10 GHz to 20 GHz Frequency multiplier designed on 2 um InGaP HBT process. GRFM1 multiplies the input frequency from 10 GHz to 20 GHz by the factor of 2 so as to produce the output of 20 GHz to 40 GHz. Conversion gain of frequency multipl41 kB133Rficsolutions Inc.GRFM1
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
RJP05 _2.4GHz_WLAN_PA_.pdf12/02/08The RJP05 is 2.4 GHz to 2.5 GHz; high efficiency Power stage for WLAN Power Amplifier. The Amplifier is designed using 0.18um SiGe BiCMOS process for 802.11 b/g WLAN systems. Power amplifier shows PAE of 31% at 24 dBm power with output match off-chip206 kB485Rficsolutions Inc.RJP05
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
RGLNA03.pdf13/12/07broadband Low noise amplifier 2 GHz to 12 GHz114 kB98
5991-4375EN Evaluating Current Probe Technologies for Low-Power Measurements - Application Note c20119/11/21 Agilent 5991-4375EN Evaluating Current Probe Technologies for Low-Power Measurements - Application Note c20140416 [12].pdf5450 kB2Agilent5991-4375EN Evaluating Current Probe Technologies for Low-Power Measurements - Application Note c201

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