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Upconversion

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Abstract: , Upconversion mode, VCC = +5.0V, PLO = 0dBm, PIF = 0dBm, fIF = 350MHz, LO is high-side injected, TC =+25°C, unless otherwise noted.) CONVERSION LOSS vs. RF FREQUENCY (UPCONVERSION MODE) 8 7 TC = -40°C , ) RF FREQUENCY (MHz) INPUT IP3 vs. RF FREQUENCY (UPCONVERSION MODE) INPUT IP3 vs. RF FREQUENCY (UPCONVERSION MODE) 1550 RF FREQUENCY (MHz) INPUT IP3 vs. RF FREQUENCY (UPCONVERSION MODE) 38 40 , (UPCONVERSION MODE) MAX2051 toc38 CONVERSION LOSS vs. RF FREQUENCY (UPCONVERSION MODE) TC = +25°C 34 Maxim Integrated Products
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bm 1410 860mhz rf amplifier circuit diagram JESD51-7 MABACT0060 TOC42 USB modem WIMAX 850MH 1550MH MAX2051ETP 1000MH 1200MH 2250MH
Abstract: , Upconversion mode, VCC = +5.0V, PLO = 0dBm, PIF = 0dBm, fIF = 350MHz, LO is high-side injected, TC =+25°C, unless otherwise noted.) CONVERSION LOSS vs. RF FREQUENCY (UPCONVERSION MODE) 8 7 TC = -40°C , ) RF FREQUENCY (MHz) INPUT IP3 vs. RF FREQUENCY (UPCONVERSION MODE) INPUT IP3 vs. RF FREQUENCY (UPCONVERSION MODE) 1550 RF FREQUENCY (MHz) INPUT IP3 vs. RF FREQUENCY (UPCONVERSION MODE) 38 40 , (UPCONVERSION MODE) MAX2051 toc38 CONVERSION LOSS vs. RF FREQUENCY (UPCONVERSION MODE) TC = +25°C 34 Maxim Integrated Products
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892x1 T2055
Abstract: balanced diode mixer for 2LO suppression and image rejection. It is usable both for up-conversion and , 55-65GHz SSB Mixer CHM1298-99F Typical On-wafer Measurements in Up-Conversion mode with external combiner Bias conditions: Tamb=+25° Vd=3.5V, Id=90mA C, Up-Conversion mode with external combiner P LO = +10dBm F IF = 2,0GHz Up-Conversion mode with external combiner P LO = +10dBm F IF = 1,0GHz 0 , ) Up-Conversion Sup. compression with external combiner LO = 30GHz P LO = +10dBm IF = 2,0GHz (RF = 62GHz United Monolithic Semiconductors
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55-65GH CHM1298 DSCHM1298-1293 AN0020 AN0019 CHM1298-99F/00
Abstract: balanced diode mixer for 2LO suppression and image rejection. It is usable both for up-conversion and , SSB Mixer MFC - P09828 Typical On-wafer Measurements in Up-Conversion mode with external combiner Bias conditions: Tamb = +25°C, Vd = 3.5V, Id = 90mA Up-Conversion mode with external combiner P LO = +10dBm F IF = 1,0GHz Up-Conversion mode with external combiner P LO = +10dBm F IF = 2,0GHz , ) Up-Conversion Sup. compression with external combiner LO = 30GHz P LO = +10dBm IF = 2,0GHz (RF = 62GHz) 0 United Monolithic Semiconductors
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MFC-P09828 5GHz RF mixer 60Ghz 60GHz mixer DSMUX-P098282134 P09828-99F/00
Abstract: INTEGRATED CIRCUITS DATA SHEET TEA6200 Integrated AM upconversion receiver Product , specification Integrated AM upconversion receiver TEA6200 GENERAL DESCRIPTION The TEA6200 is an integrated AM upconversion receiver circuit with an IF of 10.7 MHz. Because of the high dynamic range of the , Product specification Integrated AM upconversion receiver TEA6200 Fig.1 Block diagram. August 1989 3 Philips Semiconductors Product specification Integrated AM upconversion receiver Philips Semiconductors
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7PS-1078 sfe murata BB609 bb809 BBY40 c1615
Abstract: INTEGRATED CIRCUITS DATA SHEET TEA6200 Integrated AM upconversion receiver Product , specification Integrated AM upconversion receiver TEA6200 GENERAL DESCRIPTION The TEA6200 is an integrated AM upconversion receiver circuit with an IF of 10.7 MHz. Because of the high dynamic range of the , Product specification Integrated AM upconversion receiver TEA6200 Fig.1 Block diagram. August 1989 3 Philips Semiconductors Product specification Integrated AM upconversion receiver -
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philips rf Receiver Circuits DIP20
Abstract: processing channels can be independently configured for upconversion, downconversion or a combination of two upconversion and two downconversion channels. Up-conversion Channel Mode - Output Rates to 150-MSPS for 4 Channels, 300-MSPS for 2 Channels - Four Up-conversion Channels Support UMTS , , Summed into Two or One Output(s), and optionally Merged with Multiple GC5016 Chips In up-conversion , 20 DI WCDMA/CDMA2000 Up-conversion Channel 21 WCDMA/CDMA2000 Up-conversion Channel Texas Instruments
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A3 CO1-DO3 WCDMA TRANSCEIVER SLWS142
Abstract: Product Information Typical Upconversion Performance Plots Performance using the MH203A with the 6 , Temperature High-side Upconversion, LO = +17 dBm, 25 °C High-side Upconversion, LO = +17 dBm, IF = 326 MHz Input IP3 vs RF Frequency vs LO Power High-side Upconversion, IF = 326 MHz, 25 °C 36 36 , 1000 750 Conv. Loss vs RF Frequency vs Temperature High-side Upconversion, LO = +17 dBm, IF = , RF Frequency (MHz) L-I Isolation High-side Upconversion High-side Upconversion 50 70 L WJ Communications
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0402CS JESD22-C101 JESD22-A114 J-STD-020B 1-800-WJ1-4401
Abstract: ­ LO LO DDS + LO Figure 1. Quadrature DDS SSB Upconversion. Analog Dialogue 34-3 (2000 , frequency multiplication and single-stage mixer upconversion. PLL output phase noise is an obvious and , suppressed carrier (LO), single-upconversion mixer output, demonstrates this problem with upconversion. The , sideband of conventional double-sideband-mixer upconversion. 5 Analog Devices , Single-Sideband Upconversion of Quadrature DDS Signals to the 800-to2500-MHz Band undesired Analog Devices
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AD8346 AD9850 AD9851 ad9850 am modulation ad983x PLL FSK MODULATOR LMX1501 UHf band upconverter ad9850 fm modulation 2500-MH AD9854 300-MH AD9852
Abstract: , Upconversion mode, VCC = +5.0V, PLO = 0dBm, PIF = 0dBm, fIF = 350MHz, LO is high-side injected, TC = +25°C, unless otherwise noted.) CONVERSION LOSS vs. RF FREQUENCY (UPCONVERSION MODE) 8 7 TC = -40°C , ) RF FREQUENCY (MHz) INPUT IP3 vs. RF FREQUENCY (UPCONVERSION MODE) INPUT IP3 vs. RF FREQUENCY (UPCONVERSION MODE) 1550 RF FREQUENCY (MHz) INPUT IP3 vs. RF FREQUENCY (UPCONVERSION MODE) 38 40 , (UPCONVERSION MODE) MAX2051 toc38 CONVERSION LOSS vs. RF FREQUENCY (UPCONVERSION MODE) TC = +25°C 34 Maxim Integrated Products
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Abstract: High-side Upconversion, LO = +17 dBm, 25 °C The Communications Edge TM Product Information High Linearity Cellular-Band MMIC Mixer Typical Upconversion Performance Plots Performance using the MH203A , Upconversion, LO = +17 dBm, IF = 326 MHz Input IP3 vs RF Frequency vs LO Power High-side Upconversion, IF = , Frequency High-side Upconversion, LO = +17 dBm, 25 °C RF Frequency (MHz) Conv. Loss vs RF Frequency vs Temperature High-side Upconversion, LO = +17 dBm, IF = 326 MHz RF Frequency (MHz) Conv. Loss vs RF WJ Communications
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Diplexer 900 1800 MH203A-PCB
Abstract: up-conversion and downconversion. It is designed for a wide range of applications, from military to commercial , Measurements in Up-Conversion mode with external combiner Bias conditions: Tamb=+25°C, Vd=3.5V, Id=90mA Up-Conversion mode with external combiner P LO = +10dBm F IF = 2,0GHz Up-Conversion mode with external , Frequency (GHz) LO Frequency (GHz) Up-Conversion Sup. compression with external combiner LO = 30GHz P LO = +10dBm IF = 2,0GHz (RF = 62GHz) Up-Conversion Inf. compression with external combiner LO = United Monolithic Semiconductors
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55GHz DSCHM1298-0357
Abstract: upconversion. The remainder of this paper describes a method to eliminate the analog up-conversion section , DIRECT UP-CONVERSION USING AN FPGA-BASED POLYPHASE MODEM Rob Pelt Altera Corporation 101 , implementation using these techniques. 2. BACKGROUND Traditionally, frequency translation (i.e., up-conversion , (VCOs) and mixers are used to approximate the mathematical expressions of the up-conversion process , up-conversion is dependent on the clock speed of the digital device. For example, Altera's Stratix® II FPGAs Altera
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nyquist MB86064 Fliege FPGA IMPLEMENTATION of Multi-Rate FIR fpga da altera EP2S90 800-EPLD
Abstract: High Linearity Cellular-Band MMIC Mixer Product Information Typical Upconversion Performance , Frequency vs Temperature High-side Upconversion, LO = +17 dBm, 25 °C High-side Upconversion, LO = +17 dBm, IF = 326 MHz Input IP3 vs RF Frequency vs LO Power High-side Upconversion, IF = 326 MHz, 25 , ) High-side Upconversion, LO = +17 dBm, IF = 326 MHz 6 IF = 312 MHz IF = 326 MHz IF = 340 MHz 4 850 , 950 1000 RF Frequency (MHz) L-I Isolation High-side Upconversion High-side Upconversion WJ Communications
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MH203A-G M203A J-STD-020
Abstract: High-side Upconversion, LO = +17 dBm, 25 °C The Communications Edge TM Product Information High Linearity Cellular-Band MMIC Mixer Typical Upconversion Performance Plots Performance using the MH203A , Upconversion, LO = +17 dBm, IF = 326 MHz Input IP3 vs RF Frequency vs LO Power High-side Upconversion, IF = , Frequency High-side Upconversion, LO = +17 dBm, 25 °C RF Frequency (MHz) Conv. Loss vs RF Frequency vs Temperature High-side Upconversion, LO = +17 dBm, IF = 326 MHz RF Frequency (MHz) Conv. Loss vs RF WJ Communications
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c4038 M3432
Abstract: diodes mixer for 2LO suppression and image rejection. It is usable both for up-conversion and , Up-Conversion mode with external IF quadrature combiner Up-Conversion infradyne mode with external combiner P LO = +5dBm F LO = 14GHz Up-Conversion supradyne mode with external combiner P LO = +5dBm F LO = , (dB), LO & 2xLO leakage (dBm) Up-Conversion supradyne mode with external combiner P LO = +5dBm F , ,1 2,3 2,5 IF Frequency (GHz) IF Frequency (GHz) Up-Conversion infradyne mode with United Monolithic Semiconductors
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CHM1291 25-32GH DSCHM12912266 CHM1291-99F/00
Abstract: 19-4679; Rev 0; 8/09 SiGe High-Linearity, 2000MHz to 3000MHz Upconversion/Downconversion Mixer with LO Buffer Features The MAX2042 single, high-linearity upconversion/downconversion mixer , Description MAX2042 SiGe High-Linearity, 2000MHz to 3000MHz Upconversion/Downconversion Mixer with LO , SiGe High-Linearity, 2000MHz to 3000MHz Upconversion/Downconversion Mixer with LO Buffer , SiGe High-Linearity, 2000MHz to 3000MHz Upconversion/Downconversion Mixer with LO Buffer +5.0V SUPPLY Maxim Integrated Products
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MAX2042A RF transmitter and receiver rf transmitter receiver max2044 MAX2044A 2000MH 3000MH 1800MH 2800MH 500MH
Abstract: diodes mixer for 2LO suppression and image rejection. It is usable both for up-conversion and , gain comp.) Low DC power consumption, 55mA@3.5V Chip size : 2.06 x 1.25 x 0.10mm Up-Conversion , Measurements in Up-Conversion mode with external IF quadrature combiner Up-Conversion supradyne mode with , =55mA C, P LO @ RF ( dBm ) P 2xLO @ RF ( dBm ) 1,5 1,7 1,9 2,1 2,3 Up-Conversion , leakage (dBm) Up-Conversion supradyne mode with external combiner P LO=+5dBm F IF=2,0GHz 30 26 22 United Monolithic Semiconductors
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DSCHM12917166
Abstract: upconversion. A single-pole, double-throw (SPDT) switch provides 50ns switching time between the two LO , Upconversion/ Downconversion Mixer with LO Buffer/Switch The MAX2041 high-linearity passive upconverter or , applications. The IIP3 is typically +33.5dBm for both downconversion and upconversion operation. With an LO , input for downconversion (or RF output for upconversion), and single-ended LO inputs. The MAX2041 , General Description MAX2041 High-Linearity, 1700MHz to 3000MHz Upconversion/ Downconversion Mixer Maxim Integrated Products
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MAX2039 MAX2031 MABAES0029 MAX2041ETP MAX2041ETP-T MAX2043 1700MH 1900MH 815MH 995MH
Abstract: upconversion. A single-pole, double-throw (SPDT) switch provides 50ns switching time between the two LO inputs , Upconversion/ Downconversion Mixer with LO Buffer/Switch Features The MAX2039 high-linearity passive , receiver applications. The IIP3 is typically +34.5dBm and +33.5dBm for downconversion and upconversion , downconversion (or RF output for upconversion), and single-ended LO inputs. The MAX2039 requires a nominal LO , General Description MAX2039 High-Linearity, 1700MHz to 2200MHz Upconversion/ Downconversion Mixer Maxim Integrated Products
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DCS1800 MAX2039ETP MAX2039ETP-T PCS1900 2200MH 1500MH
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