MHV5IC1810NR2 Freescale Semiconductor, MHV5IC1810NR2 Datasheet
MHV5IC1810NR2
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MHV5IC1810NR2 Summary of contents
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... INTEGRATED POWER AMPLIFIER 16 1 CASE 978- -03 PFP- -16 PLASTIC / DS2 out RD1 V / DS2 out RG1 /RF DS1 DS2 out GND 5 V /RF 12 DS2 out V / DS2 out /RF GS1 DS2 out GS2 (Top View) Note: Exposed backside flag is source terminal for transistors. Figure 2. Pin Connections MHV5IC1810NR2 1 ...
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... W Avg., 1805--1880 MHz or 1930--1990 MHz EDGE Modulation out Power Gain Error Vector Magnitude Spectral Regrowth at 400 kHz Offset Spectral Regrowth at 600 kHz Offset 1. Refer to AN1955, Thermal Measurement Methodology of RF Power Amplifiers http://www.freescale.com/rf. Select Documentation/Application Notes -- AN1955. MHV5IC1810NR2 2 Stage 1, 28 Vdc 120 mA DQ1 Stage 2, 28 Vdc DQ2 ...
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... W Avg., 1805--1990 MHz Power Gain Power Added Efficiency Input Return Loss RF Device Data Freescale Semiconductor continued) = 25°C unless otherwise noted Symbol = 28 Vdc PAE IRL Min Typ Max Unit = 120 mA mA DQ1 DQ2 out — 29 — dB — 19 — % — --13 — dB MHV5IC1810NR2 3 ...
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... Microstrip Z5 0.127″ x 0.122″ Microstrip Z6 0.355″ x 0.084″ Microstrip Figure 3. MHV5IC1810NR2 Test Circuit Schematic — 1930- -1990 MHz Table 6. MHV5IC1810NR2 Test Circuit Component Designations and Values — 1930- -1990 MHz Part Chip Capacitor C3, C4, C5, C6 8.2 pF Chip Capacitors ...
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... C3 C7 Figure 4. MHV5IC1810NR2 Test Circuit Component Layout — 1930- -1990 MHz RF Device Data Freescale Semiconductor C10 C5 C13 C2 C12 C4 MHV5IC1810N Rev GS1 GS2 C11 C9 C14 C6 C15 MHV5IC1810NR2 5 ...
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... DQ2 DQ2 Vdc DD 26 Center Frequency = 1960 MHz 100 kHz Tone Spacing OUTPUT POWER (WATTS) PEP out Figure 7. Two- -Tone Power Gain versus Output Power MHV5IC1810NR2 Vdc (Avg.) DD out I = 120 mA DQ1 DQ2 100 kHz Tone Spacing IMD 1920 1940 1960 1980 f, FREQUENCY (MHz) Figure 5 ...
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... Figure 11. Power Gain versus Output Power Vdc Avg 120 mA out DQ1 DQ2 Two--Tone Measurements, Center Frequency = 1960 MHz T = --30_C C 25_C 85_C 1850 1900 1950 f, FREQUENCY (MHz) Figure 12. Power Gain versus Frequency Actual 120 DQ1 DQ2 f = 1960 MHz OUTPUT POWER (WATTS) CW out = 90 mA 2000 MHV5IC1810NR2 ...
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... This above graph displays calculated MTTF in hours x ampere drain current. Life tests at elevated temperatures have correlated to better than ±10% of the theoretical prediction for metal failure. Divide 2 MTTF factor by I for MTTF in a particular application. D Figure 15. MTTF Factor versus Junction Temperature MHV5IC1810NR2 8 --45 50 --50 25_C 40 --55 ...
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... Microstrip Z6 0.095″ x 0.084″ Microstrip Z7 0.260″ x 0.085″ Microstrip Figure 17. MHV5IC1810NR2 Test Circuit Schematic — 1805- -1880 MHz Table 7. MHV5IC1810NR2 Test Circuit Component Designations and Values — 1805- -1880 MHz Part C1 0.8 pF Chip Capacitor Chip Capacitor C3, C4, C5 ...
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... Figure 18. MHV5IC1810NR2 Test Circuit Component Layout — 1805- -1880 MHz MHV5IC1810NR2 C10 C5 C2 C13 C12 C4 MHV5IC1810N Rev GS1 GS2 C11 Device Data Freescale Semiconductor ...
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... DQ2 -- 1840 MHz SR @ 600 kHz 10 EDGE Modulation --80 0 --85 100 0.1 Figure 20. Spectral Regrowth at 400 and 600 kHz 25_C 25_C T = 85_C Vdc --30_C 105 mA DQ1 85_C DQ2 f = 1840 MHz EDGE Modulation --30_C OUTPUT POWER (WATTS) AVG. out versus Output Power MHV5IC1810NR2 100 11 ...
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... MHz f = 1800 MHz Figure 21. Series Equivalent Input and Load Impedance MHV5IC1810NR2 Ω load f = 2000 MHz f = 1800 MHz Vdc 120 mA mA Avg. DD DQ1 DQ2 out load MHz Ω Ω 1800 43.82 + j6.83 3.49 + j8.58 1820 43.67 + j7.10 3.43 + j8.96 1840 43.50 + j7.34 3 ...
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... RF Device Data Freescale Semiconductor PACKAGE DIMENSIONS MHV5IC1810NR2 13 ...
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... MHV5IC1810NR2 14 RF Device Data Freescale Semiconductor ...
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... RF Device Data Freescale Semiconductor MHV5IC1810NR2 15 ...
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... Figs. 3 and 17, Test Circuit Schematic, redrawn to reflect correct trace lengths and trace length measurements • Updated Part Numbers in Tables 6, 7, Component Designations and Values, to RoHS compliant part numbers • Added Product Documentation and Revision History MHV5IC1810NR2 16 PRODUCT DOCUMENTATION REVISION HISTORY Description ...
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... Freescale Semiconductor was negligent regarding the design or manufacture of the part. Freescalet and the Freescale logo are trademarks of Freescale Semiconductor, Inc. All other product or service names are the property of their respective owners. © Freescale Semiconductor, Inc. 2006, 2011. All rights reserved. MHV5IC1810NR2 17 ...