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  silicon bipolar rfic amplifiers technical data features msa-2011 ? surface mount sot-143 package ? 3 db bandwidth: dc to 1.0 ghz ? 16.2 db gain at 1 ghz ? 4.3 db nf at 1 gh z MSA-2035 ? hermetic ceramic package ? 3 db bandwidth: dc to 1.1 ghz ? 17.3 db gain at 1 ghz ? 3.7 db nf at 1 ghz msa-2085 ? plastic microstrip package ? 3 db bandwidth: dc to 1.1 ghz ? 16.6 db gain at 1 ghz ? 3.7 db nf at 1 ghz msa-2086 ? surface mount plastic microstrip package ? 3 db bandwidth: dc to 1.1 ghz ? 16.6 db gain at 1 ghz ? 3.7 db nf at 1 ghz msa-20xx series description the msa-20xx series are high performance silicon bipolar rfic amplifiers designed to be cascadable in 50 w systems. the stability factor of k > 1 contributes to easy cascading in numerous narrow and broadband if and rf commercial and industrial applications. the msa series is fabricated using a 10 ghz f t , 25 ghz f max , silicon bipolar rfic process which utilizes nitride self-alignment, ion implantation, and gold metallization to achieve excellent uniformity, performance, and reliability. the use of an external bias resistor for temperature and current stability also allows bias flexibility. package options include the industry standard plastic surface mount sot-143 package, the 100 mil surface mountable hermetic ceramic package, the 85 mil plastic microstripline package, and the 85 mil surface mountable plastic microstripline package. msa-2011 MSA-2035 msa-2085 msa-2086
2 absolute maximum ratings [1] msa- msa- msa- parameter 2011 2035 2085, -2086 device current 50 ma 60 ma 60 ma power dissipation [2,3] 250 mw [3a] 325 mw [3b] 325 mw [3c] rf input power +13 dbm +13 dbm +13 dbm junction 150 c 200 c 150 c temperature storage temperature -65 to 150 c -65 to 200 c -65 to 150 c thermal 500 c/w 155 c/w 115 c/w resistance: q jc notes: 1. permanent damage may occur if any of these limits are exceeded. 2. t case = 25 c. 3a. derate at 2.0 mw/ c for t c > 25 c. b. derate at 6.5 mw/ c for t c > 149 c. c. derate at 8.7 mw/ c for t c > 112 c. typical biasing configuration electrical specifications, t a = 25 c i d = 32 ma, z o = 50 w msa-2011 MSA-2035 msa-2085, -2086 parameters and symbol test conditions units min. typ. max. min. typ. max. min. typ. max. g p power gain (|s 21 | 2 ) f = 0.1 ghz db 18.9 17.8 19.2 19.8 19.2 f = 0.5 ghz 18.1 18.7 18.3 f = 1.0 ghz 15.0 16.2 17.3 15.0 16.6 d g p gain flatness f = 0.1 to 0.6 ghz db 0.6 0.4 1.0 0.6 f 3db 3 db bandwidth ghz 1.0 1.1 1.1 vswr input vswr f = 0.1 to 3.0 ghz 1.3:1 1.3:1 1.2:1 output vswr f = 0.1 to 3.0 ghz 1.4:1 1.4:1 1.5:1 p 1db power output @ 1 db gain compression: f = 1.0 ghz dbm 9.0 9.5 9.0 nf 50 w noise figure f = 1.0 ghz db 4.3 3.7 3.7 ip 3 third order intercept point f = 1.0 ghz dbm 22 22 22 t d group delay f = 1.0 ghz psec 143 143 143 v d device voltage t c = 25 c v 4.0 5.0 6.0 4.5 5.0 5.5 4.3 5.0 6.3 dv/dt device voltage temperature mv/ c -9.3 -9.3 -9.3 coefficient note: 1. refer to tape and reel packaging for surface mount devices. output r bias v 3 7 v cc v = 5 v d input 4 1 2 3 r = bias i d dc block rf choke cc d v ?v msa
3 typical performance for msa-2011 figure 1. power gain vs. frequency at four temperatures, i d = 32 ma. figure 2. power gain vs. current at 25 c. figure 3. typical p 1db vs. frequency at 25 c. figure 4. noise figure vs. frequency at i d = 32 ma. figure 5. power gain, noise figure, and p 1db vs. temperature at 1 ghz and i d = 32 ma. figure 6. i d vs. v d at four temperatures. gp (db) frequency (ghz) 0.1 1.0 4.0 25 20 5 10 15 -25 c 85 c 25 c -55 c i (ma) d gain (db) 40 25 30 13 11 17 15 20 18 12 14 16 19 20 35 0.1 ghz 2.0 ghz 1.0 ghz 0.5 ghz p (dbm) 1db frequency (ghz) 0.1 1.0 4.0 0 16 14 2 8 10 6 4 12 25 ma 40 ma 35 ma 30 ma 20 ma noise figure (db) frequency (ghz) 0.1 1.0 4.0 3 4 6 5 40 ma 20 ma p (dbm) 1db ambient temperature ( c) gain (db) 85 25 9 7 17 16 8 10 15 -25 nf 6 4 5 3 noise figure (db) p g 1db p -55 c 0 0 30 10 20 v (volts) d 40 16 5 4 3 2 -25 c 25 c 85 c i ma d
4 typical performance for MSA-2035 figure 1. power gain vs. frequency at four temperatures, i d = 32 ma. figure 2. power gain vs. current at 25 c. figure 3. typical p 1db vs. frequency at 25 c. figure 4. noise figure vs. frequency at i d = 32 ma. figure 5. power gain, noise figure, and p 1db vs. temperature at 1 ghz and i d = 32 ma. figure 6. i d vs. v d at four temperatures. gp (db) frequency (ghz) 0.1 0 1.0 4.0 25 20 5 10 15 25 c 125 c 85 c -55 c i (ma) d gain (db) 40 25 30 13 11 17 15 20 18 12 14 16 19 20 35 0.1 ghz 2.0 ghz 1.0 ghz 0.5 ghz p (dbm) 1db frequency (ghz) 0.1 1.0 4.0 0 16 14 2 8 10 6 4 12 25 ma 40 ma 35 ma 30 ma 20 ma noise figure (db) frequency (ghz) 0.1 1.0 4.0 3 4 5 4.5 40 ma 20 ma 3.5 p (dbm) 1db ambient temperature ( c) gain (db) 85 25 9 7 17 16 8 10 15 -25 nf 6 4 5 3 noise figure (db) p g 1db p 0 0 30 10 20 v (volts) d 40 16 5 4 3 2 85 c 25 c -55 c i ma d 50 125 c
5 typical scattering parameters at t a = 25 c, for msa-2011 i d = 32 ma, z o = 50 w s 11 s 21 s 12 s 22 (ghz) mag. ang. (db) mag. ang. (db) mag. ang. mag. ang. 0.1 0.05 7 18.9 8.81 172 -22.6 0.074 4 0.17 -13 0.2 0.05 9 18.8 8.73 165 -22.4 0.076 8 0.17 -23 0.3 0.06 3 18.6 8.52 157 -22.2 0.077 11 0.17 -34 0.4 0.06 1 18.3 8.25 150 -22.0 0.079 15 0.17 -43 0.5 0.06 0 18.1 8.00 143 -21.7 0.082 17 0.17 -52 0.6 0.07 -5 17.7 7.65 137 -21.4 0.085 20 0.17 -61 0.7 0.07 -8 17.3 7.33 131 -21.1 0.088 22 0.17 -68 0.8 0.08 -12 16.9 7.02 125 -20.7 0.092 24 0.17 -74 0.9 0.08 -18 16.3 6.70 120 -20.3 0.096 26 0.18 -80 1.0 0.08 -22 16.2 6.43 115 -20.0 0.100 28 0.18 -85 1.5 0.09 -46 14.3 5.16 93 -18.2 0.123 31 0.18 -102 2.0 0.11 -69 12.6 4.26 75 -16.7 0.146 31 0.17 -109 2.5 0.11 -93 11.2 3.64 59 -15.6 0.167 29 0.17 -111 3.0 0.12 -118 10.1 3.18 45 -14.7 0.185 26 0.18 -112 3.5 0.12 -152 9.1 2.85 31 -13.9 0.202 24 0.19 -116 4.0 0.15 174 8.1 2.55 18 -13.3 0.216 21 0.20 -124 4.5 0.22 147 7.4 2.33 5 -12.8 0.231 19 0.22 -133 5.0 0.30 127 6.5 2.11 -8 -12.2 0.246 17 0.25 -145 5.5 0.39 113 5.6 1.90 -20 -11.4 0.268 14 0.30 -157 6.0 0.45 100 4.5 1.68 -32 -10.7 0.292 10 0.35 -168 typical scattering parameters at t a = 25 c, for MSA-2035 i d = 32 ma, z o = 50 w s 11 s 21 s 12 s 22 (ghz) mag. ang. (db) mag. ang. (db) mag. ang. mag. ang. 0.1 0.05 -2 19.2 9.13 174 -22.8 0.072 3 0.18 -11 0.2 0.06 -3 19.1 9.05 167 -22.7 0.073 6 0.18 -20 0.3 0.06 -7 19.0 8.94 160 -22.6 0.075 9 0.18 -29 0.4 0.06 -10 18.9 8.77 154 -22.4 0.076 11 0.18 -38 0.5 0.06 -14 18.7 8.58 147 -22.2 0.078 14 0.18 -47 0.6 0.07 -22 18.4 8.35 141 -21.9 0.080 16 0.17 -55 0.7 0.07 -27 18.2 8.10 135 -21.6 0.083 17 0.17 -63 0.8 0.07 -32 17.9 7.86 130 -21.3 0.086 19 0.17 -71 0.9 0.07 -37 17.6 7.59 124 -21.0 0.089 20 0.17 -79 1.0 0.07 -42 17.3 7.33 119 -20.7 0.092 22 0.16 -86 1.5 0.08 -74 15.7 6.11 96 -19.1 0.111 24 0.16 -117 2.0 0.09 -108 14.2 5.15 76 -17.8 0.130 23 0.16 -140 2.5 0.12 -136 12.9 4.42 59 -16.6 0.148 20 0.15 -155 3.0 0.15 -162 11.7 3.86 43 -15.7 0.164 16 0.15 -169 3.5 0.19 176 10.7 3.41 27 -15.1 0.176 11 0.16 -178 4.0 0.25 158 9.7 3.04 12 -14.6 0.187 7 0.17 177 4.5 0.30 141 8.7 2.71 -1 -14.1 0.196 3 0.19 171 5.0 0.37 126 7.8 2.44 -16 -13.8 0.204 -1 0.22 161 5.5 0.43 112 6.8 2.17 -29 -13.5 0.212 -5 0.29 154 6.0 0.49 100 5.7 1.92 -42 -13.1 0.222 -9 0.35 148 frequency frequency
6 typical performance for msa-2085 and msa-2086 figure 6. i d vs. v d at four temperatures. figure 5. power gain, noise figure, and p 1db vs. temperature at 1 ghz and i d = 32 ma. figure 4. noise figure vs. frequency at i d = 32 ma. figure 1. power gain vs. frequency at four temperatures, i d = 32 ma. figure 2. power gain vs. current at 25 c. figure 3. typical p 1db vs. frequency at 25 c. gp (db) frequency (ghz) 0.1 0 1.0 4.0 25 20 5 10 15 25 c 125 c 85 c -55 c i (ma) d gain (db) 40 25 30 13 11 17 15 20 18 12 14 16 19 20 35 0.1 ghz 2.0 ghz 1.0 ghz 0.5 ghz p (dbm) 1db frequency (ghz) 0.1 1.0 4.0 0 16 14 2 8 10 6 4 12 25 ma 40 ma 35 ma 30 ma 20 ma noise figure (db) frequency (ghz) 0.1 1.0 4.0 3 4 5 4.5 40 ma 20 ma 3.5 p (dbm) 1db ambient temperature ( c) gain (db) 85 25 9 7 17 16 8 10 15 -25 nf 6 4 5 3 noise figure (db) p g 1db p -55 c 0 0 30 10 20 v (volts) d 40 16 5 4 3 2 -25 c 25 c 85 c i ma d
7 typical scattering parameters at t a = 25 c, for msa-2086 i d = 32 ma, z o = 50 w s 11 s 21 s 12 s 22 (ghz) mag. ang. (db) mag. ang. (db) mag. ang. mag. ang. 0.1 0.06 1 19.2 9.08 172 -22.8 0.073 4 0.18 -15 0.2 0.05 -5 19.1 8.98 165 -22.6 0.074 7 0.17 -26 0.3 0.05 -10 18.9 8.80 157 -22.4 0.076 10 0.17 -37 0.4 0.07 -15 18.7 8.57 150 -22.2 0.078 13 0.19 -45 0.5 0.09 -18 18.4 8.29 143 -21.9 0.081 15 0.19 -53 0.6 0.09 -22 18.1 7.99 136 -21.6 0.084 18 0.20 -62 0.7 0.08 -23 17.7 7.66 130 -21.2 0.087 20 0.20 -71 0.8 0.08 -31 17.4 7.37 124 -20.8 0.091 21 0.20 -80 0.9 0.08 -34 17.0 7.07 118 -20.5 0.095 23 0.20 -87 1.0 0.08 -44 16.6 6.78 112 -20.1 0.099 23 0.19 -94 1.5 0.07 -71 14.8 5.49 88 -18.2 0.123 24 0.19 -125 2.0 0.06 -99 13.3 4.60 68 -16.7 0.146 22 0.17 -145 2.5 0.07 -176 11.9 3.93 50 -15.5 0.167 17 0.18 -174 3.0 0.14 151 10.7 3.42 31 -14.7 0.185 10 0.20 172 3.5 0.20 125 9.5 2.98 15 -14.2 0.196 3 0.24 153 4.0 0.29 106 8.3 2.61 -1 -13.8 0.204 -3 0.28 139 4.5 0.39 96 7.3 2.31 -15 -13.6 0.210 -8 0.32 129 5.0 0.51 90 6.3 2.08 -29 -13.3 0.217 -12 0.36 124 5.5 0.62 83 5.4 1.85 -43 -13.0 0.225 -16 0.40 119 6.0 0.69 75 4.3 1.64 -58 -12.7 0.233 -22 0.47 113 typical scattering parameters at t a = 25 c, for msa-2085 i d = 32 ma, z o = 50 w s 11 s 21 s 12 s 22 (ghz) mag. ang. (db) mag. ang. (db) mag. ang. mag. ang. 0.1 0.05 4 19.2 9.11 173 -22.7 0.073 4 0.18 -14 0.2 0.05 -6 19.1 9.00 166 -22.6 0.075 8 0.18 -27 0.3 0.05 -14 18.9 8.79 159 -22.4 0.076 11 0.18 -38 0.4 0.07 -13 18.6 8.53 152 -22.2 0.078 14 0.19 -45 0.5 0.09 -17 18.3 8.26 146 -21.9 0.080 17 0.20 -51 0.6 0.08 -33 18.0 7.98 140 -21.6 0.083 19 0.21 -59 0.7 0.09 -44 17.7 7.71 135 -21.3 0.086 22 0.22 -68 0.8 0.09 -47 17.4 7.41 130 -20.9 0.090 24 0.22 -77 0.9 0.09 -54 17.0 7.06 125 -20.5 0.094 26 0.22 -85 1.0 0.10 -60 16.6 6.77 120 -20.2 0.098 27 0.22 -90 1.5 0.10 -78 14.9 5.58 99 -18.5 0.119 31 0.23 -116 2.0 0.13 -96 13.4 4.67 82 -17.1 0.140 31 0.21 -126 2.5 0.13 -113 12.0 3.97 67 -16.0 0.159 30 0.20 -137 3.0 0.14 -129 10.8 3.48 54 -15.0 0.177 27 0.20 -140 3.5 0.15 -153 9.8 3.10 41 -14.4 0.192 24 0.21 -143 4.0 0.18 -177 8.9 2.77 29 -13.9 0.202 22 0.22 -148 4.5 0.22 163 7.9 2.49 17 -13.5 0.212 19 0.24 -151 5.0 0.27 147 7.0 2.24 6 -13.2 0.218 17 0.28 -154 5.5 0.32 134 6.1 2.02 -5 -12.9 0.225 15 0.31 -159 6.0 0.37 123 5.2 1.82 -15 -12.6 0.235 14 0.35 -164 frequency frequency
www.semiconductor.agilent.com data subject to change. copyright ? 1999 agilent technologies obsoletes 5965-9560e 5967-5859e (11/99) tape and reel part number ordering information part number devices per reel reel size msa-2011-tr1 3000 7" msa-2086-tr1 1000 7" outline drawings sot-143 85 35 86 13 4 2 ground dia. ground rf output and bias rf input .085 2.15 .083 2.11 .020 .508 .100 2.54 .455 .030 11.54 .75 .006 .002 .15 .05 notes: (unless otherwise specified) 1. dimensions are in 2. tolerances in .xxx = 0.005 mm .xx = 0.13 mm .022 .56 .057 .010 1.45 .25 a20 1 3 4 2 5 typ. 45 ground ground rf output and bias rf input .085 2.15 .286 .030 7.36 .76 notes: (unless otherwise specified) 1. dimensions are in 2. tolerances in .xxx = 0.005 mm .xx = 0.13 mm .020 .51 .07 0.43 .060 .010 1.52 .25 .006 .002 .15 .05 0.143 0.015 3.63 0.38 a20 4 0.51 0.13 (0.020 0.005) 2.34 0.38 (0.092 0.015) 2.67 0.38 (0.105 0.15) 1 3 2 2.16 0.13 (0.085 0.005) dimensions are in millimeters (inches) 1.52 0.25 (0.060 0.010) 0.66 0.013 (0.026 0.005) 0.203 0.051 (0.006 0.002) 0.30 min (0.012 min) c l 45 5 typ. 8 max 0 min ground rf input rf output and dc bias ground a20 0.69 (0.027) 0.45 (0.018) 1.40 (0.055) 1.20 (0.047) 2.65 (0.104) 2.10 (0.083) 0.60 (0.024) 0.45 (0.018) 0.54 (0.021) 0.37 (0.015) 0.10 (0.004) 0.013 (0.0005) 1.02 (0.041) 0.85 (0.033) 0.92 (0.036) 0.78 (0.031) 2.04 (0.080) 1.78 (0.070) dimensions are in millimeters (inches) 0.15 (0.006) 0.09 (0.003) 3.06 (0.120) 2.80 (0.110) package marking code rf output and bias ground ground rf input a20


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