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EMM5834X Ku / K-Band Power Amplifier MMIC FEATURES *Output Power; P1dB = 26 dBm (Typ.) *High Gain; G1dB = 23 dB(Typ.) *Wide Frequency Band ; 12.7 - 27.0 GHz *Impedance Matched Zin/Zout = 50 DESCRIPTION The EMM5834X is a wide band power amplifier MMIC that contains a four stage amplifier, internally matched, for standard communications band in 12.7 to 27.0GHz frequency range. This product is well suited for point-to-point radio applications. Eudyna's stringent Quality Assurance Program assures the highest reliability and consistent performance. ABSOLUTE MAXIMUM RATING Item Drain-Source Voltage Gate-Source Voltage Input Power Storage Temperature Symbol VDD VGG Pin Tstg Rating 10 -3 16 -55 to +125 Unit V V dBm o C RECOMMENDED OPERATING CONDITIONS Item Drain-Source Voltage Input Power Operating Backside Temperature Symbol VDD Pin Top Conditions <=6 <=6 -40 to +85 Unit V dBm o C This product should be hermetically packaged. ELECTRICAL CHARACTERISTICS (Ambient Temperature Ta=25oC) Item Frequency Range Output Power at 1dB G.C.P. Power Gain at 1dB G.C.P. Power-added Efficiency at 1dB G.C.P. Third Order Intermodulation* Drain Current at 1dB G.C.P. Input Return Loss (at Pin=-20dBm) Output Return Loss (at Pin=-20dBm) Symbol f P1dB G1dB add IM3 IDD RLin RLout * :f=10MHz , 2-Tone Test, Pout=15dBm S.C.L. Test Conditions VDD=6V IDD=300mA typ. Min. 12.7 23 19 -26 Limits Typ. Max. 27 26 23 18 -35 370 -10 -10 600 Unit GHz dBm dB % dBc mA dB dB Note : RF parameter sample size 10pcs. Criteria(accept/reject)=(0/1) G.C.P.:Gain Compression Point S.C.L.:Single Carrier Level Class 0 Note : Based on EIAJ ED-4701 C-111A(C=100pF, R=1.5Kohm) Edition 1.1 January 2006 ESD ~ 199V 1 http://www.eudyna.com/ EMM5834X Ku / K-band Power Amplifier MMIC Output Powervs. Frequency Output Power vs. Frequency @VDD =6V, ID D(DC )=300mA 28 26 P1dB 24 22 20 18 16 14 12 10 8 6 10 12 14 16 18 20 22 24 26 Frequency [GHz] Output Power, Drain Current vs. Input Power Output Power, Drain Current vs. Input Power @ VDD=6V, IDD(DC)=300mA 30 7dB m 1100 12.7GHz 17GHz 21GHz 25GHz 27GHz Output Power 28 Output Power [dBm] 26 24 22 20 18 16 14 12 1000 800 700 Drain Current Output Power [dBm] 0dB m -4dB m 600 500 400 300 200 100 Pin=-10dB m 28 30 10 -12 -10 -8 -6 -4 -2 0 2 4 6 8 10 Input Power [dBm] Power Added EfficiencyFrequency Power Added Efficiency vs vs. Frequency . @VDD =6V, ID D(DC )=300mA 30 Power Added Efficiency [%] 25 20 15 10 5 0 10 12 14 16 18 20 22 24 26 Frequency [GHz] IMD vs. Output Power IMD vs. Output Power @VD D=6V, ID C)=300mA D(D -15 -20 -25 -30 -35 -40 -45 -50 -55 -60 -65 13 14 15 16 17 18 19 20 21 22 23 2-tone Total Output Power [dBm] IM5 Inter Modulation Distortion [dBc] 12.7GH z 17GHz 21GHz 25GHz 27GHz IM3 P1dB 3dB m 7dB m 0dB m -4dB m Pin= -10dB m 28 30 2 Drain Current [mA] 3dB m 900 EMM5834X Ku / K-Band Power Amplifier MMIC IMD vs. Frequency IMD vs Frequency . @ VDD =6V, ID D(DC )=300mA Pout=15dB S.C.L , m Inter Modulation Distortion [dBc] -15 -20 -25 -30 -35 -40 -45 -50 -55 -60 -65 10 12 14 16 18 20 22 24 26 28 30 Frequency [GH z] IM3 IM5 Output Power, Gainvs. Drain Voltage Output Power, Gain vs. Drain Voltage @IDD )=300mA (DC 28 27 26 25 24 23 22 21 20 19 18 17 16 4 42 40 38 36 34 32 30 28 26 24 22 20 18 7 8 Output Power, Gain vs. vs. Drain Current Output Power, Gain Drain Current(DC) @ VDD=6V 28 27 26 25 24 23 22 21 20 19 18 17 16 100 42 40 38 36 34 32 30 28 26 24 22 20 18 500 12.7G z H 17G z H 21G z H 25G z H 27G z H P1dB 12.7G z H 17G z H 21G z H 25G z H 27G z H P1dB P1dB [dBm] P1dB [dBm] G1dB [dB] G 1dB G 1dB 5 6 D rain Voltage VD [V] D 200 300 400 Drain Current IDD(DC) [mA] 3 G1dB [dB] EMM5834X Ku / K-band Power Amplifier MMIC Output Power, Drain Current vs. Input Power by Current Voltage Output Power, Drain Drain vs. Input Power by Drain Voltage @ f=12.7GHz, IDD(DC)=300mA 30 28 Output Power [dBm] 26 24 22 20 18 16 14 12 10 -12 -10 -8 -6 -4 -2 0 2 4 6 8 10 D Current rain Output Power, Drain Current vs. Input Power by Drain Input Power Output Power, Drain Current vs.Voltage by Drain Voltage @ f=17GHz, IDD(DC)=300mA 1100 5V 6V 7V 1000 O utput Power 30 28 Output Power [dBm] Drain Current [mA] 1100 5V 6V 7V 1000 800 700 600 500 400 300 D Current rain O utput Power 800 700 600 500 400 300 200 100 Input Power [dBm] 24 22 20 18 16 14 12 10 -12 -10 -8 -6 -4 -2 0 2 4 200 100 10 6 8 Input Power [dBm] Output Power, Drain Current vs. Input Power by Current Voltage Output Power, Drain Drainvs. Input Power by Drain Voltage @ f=21GHz, IDD(DC)=300mA 30 28 Output Power [dBm] 26 24 22 20 18 16 14 12 10 -12 -10 -8 -6 -4 -2 0 2 4 5V 6V 7V Output Power Output Power, Drain Current vs. Input Power by Drain Input Power Output Power, Drain Current vs.Voltage by Drain Voltage @ f=27GHz, IDD(DC)=300mA 1100 1000 900 800 700 600 500 400 300 D Current 200 rain 30 28 Output Power [dBm] Drain Current [mA] 1100 5V 6V 7V O utput Power 1000 800 700 600 500 400 300 D Current 200 rain 24 22 20 18 16 14 12 10 -12 -10 -8 -6 100 6 8 10 Input Power [dBm] 100 -4 -2 0 2 4 6 8 10 Input Power [dBm] 4 Drain Current [mA] 26 900 Drain Current [mA] 900 26 900 EMM5834X Ku / K-Band Power Amplifier MMIC Output Power, Drain Current vs. Input Power Output Power, Drain Current vs. Input Power by Drain Current by Drain Current @ f=12.7GHz, VDD=6V 30 28 Output Power [dBm] 26 24 22 20 18 16 14 12 10 -12 -10 -8 -6 -4 -2 0 2 4 6 8 10 D Current rain Output Power, Drain Current vs. Input Power Output Power, Drain Current vs. Input Power by Drain Current by Drain Current @ f=17GHz, VDD=6V 30 28 Output Power [dBm] Drain Current [mA] 1100 200mA 300mA 400mA O utput Power 1100 200mA 300mA 400mA 1000 800 700 600 D Current rain 1000 900 800 700 600 500 400 300 200 100 24 22 20 18 16 14 12 10 -12 -10 -8 -6 -4 -2 0 2 4 6 8 10 500 400 300 200 100 Input Power [dBm] Input Power [dBm] Output Power, Drain Currentvs. Input PowerPower Output Power, Drain Current vs. Input by Drain Current by Drain Current @ f=21GHz, VDD=6V 30 28 Output Power [dBm] 26 24 22 20 18 16 14 12 10 -12 -10 -8 -6 -4 -2 0 2 4 6 8 10 D Current rain Output Power, Drain Currentvs. Input PowerPower Output Power, Drain Current vs. Input by Drain Current by Drain Current @ f=27GHz, VDD=6V 30 28 Output Power [dBm] Drain Current [mA] 1100 200mA 300mA 400mA O utput Power 1100 200mA 300mA 400mA O utput Power 1000 900 800 700 600 500 400 300 200 100 1000 800 700 600 D Current rain 24 22 20 18 16 14 12 10 -12 -10 -8 -6 500 400 300 200 100 -4 -2 0 2 4 6 8 10 Input Power [dBm] Input Power [dBm] 5 Drain Current [mA] 26 900 Drain Current [mA] 26 O utput Power 900 EMM5834X Ku / K-band Power Amplifier MMIC IMD vs.vs. Output Power by Drain Voltage Voltage IMD Output Power by Drain @f=12.7GHz, IDD(DC)=300mA -15 -20 -25 -30 -35 -40 -45 -50 -55 -60 -65 13 14 15 16 17 18 19 20 21 22 23 2-tone Total Output Power [dBm] IM5 IMD vs. vs. Output Power by Drain Voltage Voltage IMD Output Power by Drain @f=17GHz, IDD(DC)=300mA -15 -20 -25 -30 -35 -40 -45 -50 -55 -60 -65 13 14 15 16 17 18 19 20 21 22 23 2-tone Total Output Power [dBm] IM5 Inter Modulation Distortion [dBc] 5V 6V 7V Inter Modulation Distortion [dBc] IM3 5V 6V 7V IM3 IMD vs. vs. Output Power by Drain Voltage Voltage IMD Output Power by Drain @f=21GHz, IDD(DC)=300mA -15 -20 -25 -30 -35 -40 -45 -50 -55 -60 -65 13 14 15 16 17 18 19 20 21 22 23 2-tone Total Output Power [dBm] IM5 IMD vs. vs. Output Power by Drain Voltage Voltage IMD Output Power by Drain @f=27GHz, IDD(DC)=300mA -15 -20 -25 -30 -35 -40 -45 -50 -55 -60 -65 13 14 15 16 17 18 19 20 21 22 23 2-tone Total Output Power [dBm] IM5 Inter Modulation Distortion [dBc] Inter Modulation Distortion [dBc] 5V 6V 7V IM3 5V 6V 7V IM3 6 EMM5834X Ku / K-Band Power Amplifier MMIC IMD vs. vs. Output Power by Drain Current Current IMD Output Power by Drain @f=12.7GHz, VDD=6V -15 -20 -25 -30 -35 -40 -45 -50 -55 -60 -65 13 14 15 16 17 18 19 20 21 22 23 2-tone Total Output Power [dB m] IM5 IMD vs. vs. Output Power by Drain Current Current IMD Output Power by Drain @f=17GHz, VD D=6V -15 -20 -25 -30 -35 -40 -45 -50 -55 -60 -65 13 14 15 16 17 18 19 20 21 22 23 2-tone Total Output Power [dB m] IM5 Inter Modulation Distortion [dBc] Inter Modulation Distortion [dBc] 200mA 300mA 400mA IM3 200mA 300mA 400mA 200 A IM3 IMD vs. vs. Output Power by Drain Current Current IMD Output Power by Drain @f=21GHz, VDD=6V -15 -20 -25 -30 -35 -40 -45 -50 -55 -60 -65 13 14 15 16 17 18 19 20 21 22 23 2-tone Total Output Power [dBm] IM5 IMD vs. vs. Output Power by Drain Current Current IMD Output Power by Drain @f=27GH VD =6V z, D -15 -20 -25 -30 -35 -40 -45 -50 -55 -60 -65 13 14 15 16 17 18 19 20 21 22 23 2-tone Total Output Power [dB m] IM5 Inter Modulation Distortion [dBc] Inter Modulation Distortion [dBc] 200mA 300mA 400mA IM3 200mA 300mA 400mA IM3 7 EMM5834X Ku / K-band Power Amplifier MMIC S-Parameter @ VDD=6V, IDD(DC)=300mA 30 S11 20 10 Sxx [dB] 0 -10 -20 -30 0 5 10 15 20 25 30 35 40 45 50 Frequency [GHz] S21 S22 @ VDD=6V, IDD(DC)=300mA 30 20 S11 10 Sxx [dB] 0 -10 -20 -30 10 12 14 16 18 20 22 24 26 28 30 Frequency [GHz] S21 S22 8 EMM5834X Ku / K-Band Power Amplifier MMIC S-Parameter Freq. GHz 1.0 2.0 3.0 4.0 5.0 6.0 7.0 8.0 9.0 10.0 11.0 12.0 12.5 13.0 13.5 14.0 14.5 15.0 15.5 16.0 16.5 17.0 17.5 18.0 18.5 19.0 19.5 20.0 20.5 21.0 21.5 22.0 22.5 23.0 23.5 24.0 24.5 25.0 25.5 26.0 26.5 27.0 27.5 28.0 29.0 30.0 31.0 32.0 33.0 34.0 35.0 36.0 37.0 38.0 39.0 40.0 S11 Mag. Ang. 0.9364 -42.16 0.7812 -81.39 0.6008 -117.15 0.4254 -151.08 0.2654 172.75 0.1382 120.00 0.1247 29.61 0.2184 -24.49 0.3199 -56.88 0.4069 -84.14 0.4609 -110.53 0.4482 -137.09 0.4190 -148.66 0.3791 -158.44 0.3415 -166.35 0.3117 -173.16 0.2884 179.83 0.2649 172.43 0.2456 163.53 0.2197 152.38 0.1924 138.65 0.1604 123.63 0.1372 102.04 0.1166 77.07 0.1107 40.95 0.1270 10.27 0.1570 -18.52 0.1943 -38.14 0.2368 -56.50 0.2787 -74.08 0.3149 -90.70 0.3427 -107.39 0.3682 -124.45 0.3781 -141.04 0.3842 -158.57 0.3812 -176.04 0.3794 165.28 0.3757 145.99 0.3775 125.86 0.3830 105.17 0.3962 84.89 0.4087 65.61 0.4269 48.48 0.4490 33.54 0.5021 6.64 0.5071 -13.97 0.5147 -25.92 0.5508 -31.91 0.6245 -39.98 0.6836 -50.00 0.7313 -57.97 0.7485 -65.77 0.7731 -72.50 0.8007 -78.20 0.8122 -83.09 0.8263 -88.26 S21 Mag. Ang. 0.0173 91.32 0.0866 -95.26 0.0361 63.31 0.0114 92.76 0.0496 148.46 0.4097 102.31 0.8893 16.24 1.2973 -44.79 1.8931 -92.65 3.2336 -132.46 7.8616 176.68 16.5903 90.45 18.7073 43.74 18.8635 1.56 18.2229 -36.28 17.3261 -70.47 16.5197 -101.96 15.9096 -131.47 15.5321 -159.70 15.3884 172.80 15.4297 145.60 15.7534 118.68 16.2360 91.14 16.9396 63.15 17.7663 33.76 18.5339 3.08 18.9621 -28.82 18.9627 -61.17 18.3970 -93.92 17.3632 -125.68 16.3173 -156.67 15.1908 173.17 14.2478 143.68 13.4796 114.33 12.8187 84.98 12.3604 55.18 12.0174 24.95 11.8535 -6.54 11.8023 -39.56 11.8585 -74.57 12.0356 -112.74 12.1294 -154.82 11.9840 157.33 10.9988 101.22 4.4476 -20.99 1.0263 -105.33 0.2519 -167.14 0.0601 134.22 0.0042 87.96 0.0020 -49.58 0.0038 157.75 0.0053 165.16 0.0026 -119.47 0.0034 71.83 0.0078 -50.87 0.0063 -108.00 S12 Mag. Ang. 0.0001 90.00 0.0001 -171.87 0.0001 -131.99 0.0001 95.71 0.0001 26.57 0.0000 90.00 0.0001 -63.43 0.0001 22.62 0.0003 43.73 0.0001 118.30 0.0002 -114.44 0.0003 85.43 0.0002 122.91 0.0002 171.47 0.0001 -51.34 0.0004 99.46 0.0002 -148.39 0.0002 105.95 0.0006 -141.04 0.0002 177.27 0.0001 116.57 0.0000 -180.00 0.0003 -66.50 0.0021 29.03 0.0005 105.95 0.0005 -86.27 0.0005 87.84 0.0007 15.83 0.0004 -173.37 0.0006 -155.30 0.0004 -152.85 0.0004 157.48 0.0004 138.01 0.0004 126.87 0.0005 128.66 0.0005 93.30 0.0006 75.47 0.0006 96.01 0.0005 62.95 0.0003 43.60 0.0004 -30.96 0.0005 -67.22 0.0002 57.09 0.0001 -82.87 0.0002 -106.39 0.0000 26.57 0.0003 -178.03 0.0007 -105.26 0.0004 113.96 0.0004 64.09 0.0001 55.01 0.0003 -28.18 0.0005 -28.52 0.0003 47.86 0.0008 -177.95 0.0009 66.63 S22 Mag. Ang. 0.9705 -48.09 0.9164 -91.14 0.8766 -108.46 0.9449 -135.96 0.9470 -158.24 0.9345 -178.20 0.8907 162.82 0.8341 144.85 0.7652 126.73 0.6859 107.56 0.6031 87.01 0.5160 63.83 0.4739 51.49 0.4301 38.34 0.3942 25.44 0.3656 11.48 0.3443 -2.57 0.3294 -16.42 0.3160 -30.62 0.3108 -44.25 0.3091 -56.59 0.3081 -69.08 0.3067 -80.34 0.3047 -91.07 0.3009 -100.77 0.2931 -110.10 0.2837 -119.04 0.2716 -126.66 0.2530 -134.34 0.2298 -141.02 0.2089 -146.80 0.1868 -151.92 0.1610 -156.86 0.1424 -160.66 0.1159 -166.49 0.0939 -171.74 0.0726 -179.61 0.0509 162.79 0.0419 122.93 0.0632 74.85 0.1152 51.97 0.1983 37.78 0.3150 23.65 0.4673 7.13 0.6835 -33.61 0.7080 -55.94 0.7314 -69.40 0.7604 -80.08 0.7954 -88.22 0.8141 -95.73 0.8355 -102.17 0.8564 -107.84 0.8650 -113.51 0.8752 -117.97 0.9058 -121.72 0.9189 -127.13 9 EMM5834X Ku / K-band Power Amplifier MMIC Channel Temperature rise and MTTF Tch vs. Drain Voltage (Reference) IDD=300mA 50 45 40 Tch [deg-C] 35 30 25 20 15 10 5 0 3 4 5 6 VDD [V] 7 8 9 MTTF vs. Tch 1.E+12 1.E+11 1.E+10 1.E+09 MTTF (hrs) 1.E+08 1.E+07 1.E+06 1.E+05 1.E+04 1.E+03 1.E+02 1.E+01 50 100 150 Tch (deg-C) 200 250 Ea=1.56eV 10 EMM5834X Ku / K-Band Power Amplifier MMIC Chip Outline and Bonding Pad Locations (Dimension in Micro-Meters) VGG1 0 105 310 1380 1220 RF-IN 1075 VGG2 VGG3 1135 1265 VGG4 2250 2770 2880 1380 1220 1075 RF-OUT 110 0 110 0 0 105 230 930 2160 2770 2880 VDD1 VDD2 VDD3 VDD4 Chip Size : 288030um x 138030um Chip Thickness : 6020um Bonding Pad Size : 80um x 80um(VDD, VGG), 160um x 80um (RF) 11 EMM5834X Ku / K-band Power Amplifier MMIC Assembly Diagrams Recommended assembly 1 uF VGG 100pF RF_in 50ohm Line 50ohm Line RF_out 100pF 100pF 100pF VDD 1 uF "Copper" is the recommended material for the package or carrier. 12 EMM5834X Ku / K-Band Power Amplifier MMIC DIE ATTACH 1) The die-attach station must have accurate temperature control and an inert forming gas should be used. 2) Chips should be kept at room temperature except during die-attach. 3) Place package or carrier on the heated stage. 4) Lightly grasp the chip edges by the longer side using tweezers. Die attach conditions Stage Temperature : 300 to 310 deg.C Time : less than 15 seconds AuSn Preform Volume : per next Figure 2500 Volume of Au-Sn Perform (10 -3/mm 3) 2000 1500 EMM5834X 1000 500 0 0 2 4 6 8 10 12 14 16 18 20 Area of Chip Back Surface (mm^2) WIRE BONDING The bonding equipment must be properly grounded. The following or equivalent equipment, tools, materials, and conditions are recommended. 1) Bonding Equipment and Bonding Tool. Bonding Equipment : West Bond Model 7400 (Manual Bonder) Bonding Tool : CCOD-1/16-S-437-60-F-2010-MP (Deweyl) 2) Bonding Wire Material : Hard or Half hard gold Diameter : 0.7 to 1.0 mil 3) Bonding Conditions Method : Thermal Compression Bonding with Ultrasonic Power Tool Force : 0.196 N 0.0196 N Stage Temperature : 215 deg.C 5 deg.C Tool Heater : None Ultrasonic Power Transmitter : West Bond Model 1400 Duration : 150 mS/Bond 13 EMM5834X Ku / K-band Power Amplifier MMIC For further information please contact : Eudyna Devices USA Inc. 2355 Zanker Rd. San Jose, CA 95131-1138, U.S.A. TEL: +1 408 232-9500 FAX: +1 408 428-9111 Eudyna Devices Europe Ltd. Network House Norreys Drive Maidenhead, Berkshire SL6 4FJ United Kingdom TEL: +44 (0) 1628 504800 FAX: +44 (0) 1628 504888 Eudyna Devices International Srl Via Teglio 8/2 - 20158 Milano, Italy TEL: +39-02-8738-1695 Eudyna Devices Asia Pte. Ltd. Hong Kong Branch Suite 1906B, Tower 6, China Hong Kong City 33 Canton Road, Tsimshatsui, Kowloon Hong Kong TEL: +852-2377-0227 FAX: +852-2377-3921 Eudyna Devices Inc. 1000 Kamisukiahara, showa-cho Nakakomagun, Yamanashi 409-3883, Japan (Kokubo Industrial Park) TEL +81-55-275-4411 FAX +81-55-275-9461 Sales Division 1, Kanai-cho, Sakae-ku Yokohama, 244-0845, Japan TEL +81-45-853-8156 FAX +81-45-853-8170 CAUTION Eudyna Devices Inc. products contain gallium arsenide (GaAs) which can be hazardous to the human body and the environment. For safety, observe the following procedures: Do not put these products into the mouth. Do not alter the form of this product into a gas, powder, or liquid through burning, crushing, or chemical processing as these byproducts are dangerous to the human body if inhaled, ingested, or swallowed. Observe government laws and company regulations when discarding this product. This product must be discarded in accordance with methods specified by applicable hazardous waste procedures. Eudyna Devices Inc. reserves the right to change products and specifications without notice.The information does not convey any license under rights of Eudyna Devices Inc. or others. (c) 2006 Eudyna Devices Inc. 14 |
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