AMMP-5620-TR2G Avago Technologies US Inc., AMMP-5620-TR2G Datasheet
AMMP-5620-TR2G
Specifications of AMMP-5620-TR2G
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AMMP-5620-TR2G Summary of contents
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... GHz High Gain Amplifier in SMT Package Data Sheet Description The AMMP-5620 MMIC is a GaAs wide-band amplifier in a surface mount package designed for medium output power and high gain over the 6-20 GHz frequency range. The 3 cascaded stages provide high gain while the single bias supply offers ease of use ...
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Table 1. Absolute Maximum Ratings Symbol Parameters and Test Conditions V Positive Drain Voltage dd I Total Drain Current Power Dissipation Input Power in T Operating Channel Temperature ch T Storage Case Temperature ...
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... AMMP-5620 Typical Performance vs. Frequency ( Frequency (GHz) Figure 1. Gain 0 -5 -10 -15 -20 -25 -30 - Frequency (GHz) Figure 4. Output Return Loss 20 18 GHz 15 13 GHz 7 GHz -10 -20 -15 - Pin (dBm) Figure 7. Pout and Idd vs. Pin Note: These measurements are obtained using demo board with 50 Ohm traces at input and output. Aspects of the amplifier performance may be improved over a narrower bandwidth by application of additional conjugate, linearity or low noise matching ...
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... AMMP-5620 Typical Performance vs. Supply Voltage ( Vdd=4V 4 Vdd=5V Vdd= Frequency (GHz) Figure 8. Gain and Voltage 0 -10 -20 Vdd=4V -30 Vdd=5V Vdd=6V - Frequency (GHz) Figure 10. Input Return Loss and Voltage Vdd=4V 2 Vdd=5V 1 Vdd= Frequency (GHz) Figure 12. Noise Figure and Voltage Note: These measurements are obtained using demo board with 50 Ohm traces at input and output. Aspects of the amplifier performance may be improved over a narrower bandwidth by application of additional conjugate, linearity or low noise matching ...
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... AMMP-5620 Typical Performance vs. Temperature (Vdd = 5V, Zin = Zo = 50W - Frequency (GHz) Figure 14. Gain and Temperature 0 -5 -10 -15 -20 - Frequency (GHz) Figure 17. Output Return Loss and Temperature 100 3.5 4 4.5 5 5.5 Vdd (V) Figure 20. Idd vs. Vdd Note: These measurements are obtained using demo board with 50 Ohm traces at input and output. Aspects of the amplifier performance may be improved over a narrower bandwidth by application of additional conjugate, linearity or low noise matching ...
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... AMMP-5620 Typical Scattering Parameters (T Freq S11 GHz dB Mag Phase 2.00 -3.392 0.677 53.71 2.50 -3.821 0.644 -9.44 3.00 -4.034 0.629 -73.08 3.50 -4.037 0.628 -136.32 4.00 -3.883 0.640 162.19 4.50 -3.799 0.646 102.28 5.00 -4.301 0.610 41.50 5.50 -6.217 0.489 -19.26 6 ...
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... AMMP-5620 Typical Scattering Parameters (T Freq S11 GHz dB Mag Phase 2.00 -3.407 0.676 53.67 2.50 -3.838 0.643 -9.56 3.00 -4.066 0.626 -73.27 3.50 -4.085 0.625 -136.57 4.00 -3.957 0.634 161.91 4.50 -3.908 0.638 102.02 5.00 -4.423 0.601 41.50 5.50 -6.310 0.484 -19.18 6 ...
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... AMMP-5620 Typical Scattering Parameters (T Freq S11 GHz dB Mag Phase 2.00 -3.416 0.675 53.66 2.50 -3.851 0.642 -9.62 3.00 -4.094 0.624 -73.39 3.50 -4.126 0.622 -136.79 4.00 -4.016 0.630 161.59 4.50 -3.999 0.631 101.74 5.00 -4.535 0.593 41.39 5.50 -6.419 0.478 -19.13 6 ...
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... DC and thermal conditions. Figure 21. Typical Application. Figure 22. Simplified MMIC Schematics. 9 Recommended SMT Attachment The AMMP Packaged Devices are compatible with high volume surface mount PCB assembly processes. The PCB material and mounting pattern, as defined in the data sheet, optimizes RF performance and is strongly recommend- ed. An electronic drawing of the land pattern is available upon request from Avago Sales & ...
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... Packages have been qualified to withstand a peak temperature of 260°C for 20 seconds. Verify that the profile will not expose device beyond these limits. Outline Drawing AMMP XXXX YWWDNN ...
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Stencil Design Guidelines A properly designed solder screen or stencil is required to ensure optimum amount of solder paste is deposited onto the PCB pads. The recommended stencil layout is shown in Figure 26. The stencil has a solder paste ...
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... AMMP-5620-BLKG 0 AMMP-5620-TRG 00 AMMP-5620-TR2G 500 For product information and a complete list of distributors, please go to our web site: Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies Limited in the United States and other countries. Data subject to change. Copyright © 2008 Avago Technologies Limited. All rights reserved. Obsoletes AV0-0585EN AV02-053EN - February 27, 2008 ∅ ...