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  part number upa827tf package outline ts06 symbols parameters and conditions units min typ max i cbo collector cutoff current at v cb = 5 v, i e = 0 a 0.1 i ebo emitter cutoff current at v eb = 1 v, i c = 0 a 0.1 h fe dc current gain 1 at v ce = 2 v, i c = 7 ma 70 140 f t gain bandwidth (1) at v ce = 2 v, i c = 7 ma, f = 2 ghz ghz 10 13 f t gain bandwidth (2) at v ce = 1 v, i c = 5 ma, f = 2 ghz ghz 8.5 12 cre feedback capacitance 2 at v cb = 2 v, i e = 0, f = 1 mhz pf 0.4 0.6 |s 21e | 2 insertion power gain (1) at v ce = 2 v, i c =7 ma, f = 2 ghz db 7.5 9 |s 21e | 2 insertion power gain (2) at v ce = 1 v, i c =5 ma, f = 2 ghz db 7 8.5 nf noise figure (1) at v ce = 2 v, i c = 3 ma, f = 2 ghz db 1.5 2 nf noise figure (2) at v ce = 1 v, i c = 3 ma, f = 2 ghz db 1.5 2 h fe1/ h fe2 h fe ratio, v ce = 2 v, i c = 7 ma 0.85 1.0 h fe1 = smaller h fe value between q1 and q2 h fe2 = larger h fe value between q1 and q2 upa827tf npn silicon epitaxial twin transistor ? high gain with low operating current: |s 21e | 2 = 9 db typ at f = 2 ghz, v ce = 2 v, lc = 7 ma |s 21e | 2 = 8.5 db typ at f = 2 ghz, v ce = 1 v, lc = 5 ma ? small package style: 2 ne686 die in a 2 mm x 1.25 mm x 0.6 mm package ? pb-free features preliminary data sheet electrical characteristics (t a = 25 c) notes: 1. pulsed measurement, pulse width 350 s, duty cycle 2 %. 2. collector to base capacitance when measured with capacitance meter (automatic balanced bridge method), with emitter connected to guard pin of capacitances meter. california eastern laboratories outline dimensions (units in mm) 2.1 0.1 1.25 0.1 0 ~ 0.1 0.13 0.05 0.6 0.1 2.0 0.2 0.65 1.3 1 2 3 4 5 6 0.22 (all leads) +0.10 - 0.05 0.45 package outline ts06 (top view) pin connections 1. collector (q1) 2. emitter (q1) 3. collector (q2) 4. base (q2) 5. emitter (q2) 6. base (q1) description the upa827tf has two built-in low-voltage transistors which are designed for low-noise amplification in the vhf to uhf band. the two die are chosen from adjacent locations on the wafer. these features combined with the pin configuration make this device ideal for balanced or mirrored applications. this device is suitable for low voltage/low current, low noise applications, and its high f t makes it an excellent choice for portable wireless applications. the thinner package style allows for higher density designs. note: pin 1 is the lower left most pin as the package lettering is oriented and read left to right.
absolute maximum ratings 1 (t a = 25 c) symbols parameters units ratings v cbo collector to base voltage v 5 v ceo collector to emitter voltage v 3 v ebo emitter to base voltage v 2 i c collector current ma 10 p t total power dissipation 1 element mw 30 2 elements mw 60 t j junction temperature c 150 t stg storage temperature c -65 to +150 note: 1.operation in excess of any one of these parameters may result in permanent damage. upa827tf typical performance curves (t a = 25 ? c) total power dissipation vs. ambient temperature total power dissipation, p t (mw) ambient temperature, t a ( c) collector current vs. dc base voltage collector current, lc (ma) dc base voltage, v be (v) collector current vs. emitter voltage collector current, lc (ma) collector to emitter voltage, v ce (v) dc current gain vs. collector current dc current gain,h fe collector current, lc (ma) 100 50 0 50 100 150 2 elements in total 60mw per element 30mw 50 40 30 20 10 0 0.5 1.0 v ce = 2 v 10 8 6 4 2 0 1.0 2.0 3.0 l b = 20 a 60 a 80 a 100 a 40 a 500 200 100 50 20 10 1 2 5 10 20 50 100 v ce = 1 v v ce = 2 v
upa827tf typical performance curves (t a = 25 ? c) gain bandwidth product vs. collector current gain bandwidth product, f t (ghz) collector current, lc (ma) insertion power gain vs. collector current insertion power gain, |s 21e | 2 (db) collector current, lc (ma) noise figure vs. collector current noise figure, nf (db) collector current, lc (ma) feedback capacitance vs. collector to base voltage feedback capacitance, c re (pf) collector to base voltage, v cb (v) 15 10 5 123571020 f = 2 ghz v ce = 2 v v ce = 1 v 10 5 0 1 235710 20 v ce = 2 v v ce = 1 v 3 2 1 1235710 f = 2 ghz v ce = 2 v v ce = 1 v 0.8 0.6 0.4 0.2 0 2.0 4.0 6.0 8.0 10.0 f = 1 mhz 0
upa827tf typical scattering parameters (t a = 25 c) frequency s 11 s 21 s 12 s 22 (ghz) mag ang mag ang mag ang mag ang v ce = 2 v, i c = 1 ma, z o = 50 0.10 0.97 -3.76 2.38 173.74 0.02 86.91 0.99 -3.32 0.20 0.96 -7.50 2.35 167.97 0.03 83.65 0.99 -6.56 0.30 0.95 -11.38 2.39 162.59 0.05 80.52 0.98 -9.72 0.40 0.94 -15.24 2.38 157.14 0.06 77.30 0.97 -12.95 0.50 0.92 -19.09 2.38 152.09 0.08 74.64 0.95 -15.89 0.60 0.91 -23.00 2.38 147.56 0.09 71.39 0.93 -19.16 0.70 0.89 -26.94 2.37 142.82 0.11 68.87 0.91 -21.99 0.80 0.86 -30.85 2.37 138.70 0.12 65.96 0.89 -25.12 0.90 0.84 -34.90 2.37 133.96 0.13 63.53 0.86 -27.55 1.00 0.82 -38.48 2.33 129.63 0.14 61.18 0.84 -30.48 1.20 0.76 -46.39 2.32 121.22 0.16 56.71 0.79 -35.31 1.50 0.67 -59.42 2.32 109.38 0.19 50.94 0.71 -42.55 1.70 0.61 -67.25 2.24 101.17 0.20 47.51 0.65 -47.09 2.00 0.53 -81.17 2.17 90.51 0.22 42.47 0.57 -53.85 2.50 0.38 -105.57 2.05 71.84 0.25 36.57 0.45 -64.55 3.00 0.30 -134.37 1.89 56.05 0.27 31.69 0.34 -77.62 0.10 0.97 -3.79 2.37 173.89 0.02 86.19 0.99 -3.35 0.20 0.96 -7.62 2.35 168.24 0.03 83.85 0.99 -6.52 0.30 0.95 -11.53 2.40 162.95 0.05 80.08 0.98 -9.88 0.40 0.94 -15.36 2.38 157.51 0.06 77.05 0.97 -13.07 0.50 0.92 -19.27 2.39 152.51 0.08 74.32 0.96 -16.16 0.60 0.90 -23.25 2.38 147.98 0.09 71.00 0.95 -19.49 0.70 0.88 -27.31 2.37 143.24 0.10 68.16 0.93 -22.31 0.80 0.86 -31.26 2.37 139.10 0.12 65.24 0.91 -25.62 0.90 0.83 -35.44 2.37 134.35 0.13 62.59 0.89 -28.16 1.00 0.80 -39.13 2.33 129.91 0.14 59.95 0.86 -31.26 1.20 0.74 -47.66 2.32 121.47 0.16 55.12 0.82 -36.57 1.50 0.63 -61.74 2.31 109.55 0.19 48.35 0.75 -44.21 1.70 0.56 -70.44 2.23 101.17 0.20 44.53 0.70 -48.82 2.00 0.46 -86.95 2.16 90.13 0.22 38.96 0.64 -55.67 2.50 0.27 -120.95 2.03 70.78 0.24 32.87 0.54 -65.96 3.00 0.20 -171.57 1.83 54.75 0.25 27.71 0.46 -77.11 v ce = 2 v, i c = 1 ma, z o = 50 frequency s 11 s 21 s 12 s 22 (ghz) mag ang mag ang mag ang mag ang q1 q2
upa827tf typical scattering parameters (t a = 25 c) 0.10 0.90 -6.40 6.38 170.12 0.02 84.82 0.98 -5.79 0.20 0.88 -12.71 6.21 161.60 0.03 80.22 0.96 -11.39 0.30 0.85 -19.07 6.16 153.85 0.04 76.19 0.93 -16.48 0.40 0.81 -25.04 6.00 146.67 0.06 72.09 0.90 -21.27 0.50 0.76 -31.15 5.84 140.06 0.07 69.59 0.85 -25.20 0.60 0.71 -36.82 5.65 134.24 0.08 66.27 0.81 -29.17 0.70 0.66 -42.59 5.49 128.01 0.09 64.30 0.77 -32.16 0.80 0.61 -48.04 5.32 122.51 0.10 61.95 0.73 -35.33 0.90 0.55 -53.11 5.12 116.88 0.10 60.14 0.70 -37.63 1.00 0.50 -57.87 4.92 111.77 0.11 59.19 0.67 -39.81 1.20 0.40 -66.68 4.51 102.30 0.12 56.73 0.61 -43.76 1.50 0.27 -79.47 3.95 90.17 0.15 53.86 0.54 -49.15 1.70 0.20 -88.30 3.60 83.36 0.16 52.11 0.50 -52.50 2.00 0.11 -108.97 3.18 74.09 0.18 49.45 0.45 -57.74 2.50 0.07 158.31 2.66 60.75 0.21 45.49 0.38 -64.84 3.00 0.16 118.39 2.29 48.87 0.24 40.58 0.32 -80.67 v ce = 2 v, i c = 3 ma, z o = 50 frequency s 11 s 21 s 12 s 22 (ghz) mag ang mag ang mag ang mag ang q1 0.10 0.90 -6.34 6.39 169.68 0.02 84.84 0.98 -5.82 0.20 0.88 -12.58 6.20 160.94 0.03 80.33 0.96 -11.25 0.30 0.85 -18.91 6.14 153.06 0.04 76.31 0.92 -16.31 0.40 0.82 -24.80 5.97 145.83 0.06 73.00 0.88 -20.79 0.50 0.77 -30.57 5.79 139.18 0.07 70.49 0.83 -24.41 0.60 0.73 -36.24 5.59 133.26 0.08 67.69 0.79 -28.04 0.70 0.68 -41.66 5.41 127.08 0.09 65.74 0.74 -30.52 0.80 0.63 -46.88 5.23 121.55 0.10 63.80 0.70 -33.20 0.90 0.58 -51.46 5.02 116.05 0.11 62.24 0.66 -35.07 1.00 0.53 -55.76 4.80 111.07 0.11 61.38 0.63 -36.80 1.20 0.45 -63.47 4.39 102.03 0.13 59.31 0.57 -39.71 1.50 0.35 -74.44 3.84 90.52 0.15 56.69 0.49 -43.54 1.70 0.30 -82.13 3.52 84.07 0.17 54.93 0.44 -46.16 2.00 0.24 -95.31 3.13 74.96 0.19 52.36 0.38 -49.40 2.50 0.17 -125.55 2.66 61.81 0.23 48.10 0.29 -56.28 3.00 0.16 -165.06 2.31 49.68 0.27 43.08 0.20 -66.61 v ce = 2 v, i c = 3 ma, z o = 50 frequency s 11 s 21 s 12 s 22 (ghz) mag ang mag ang mag ang mag ang q2
upa827tf typical scattering parameters (t a = 25 c) 0.10 0.79 -10.37 12.25 164.70 0.01 82.96 0.95 -8.66 0.20 0.74 -20.08 11.49 152.30 0.03 78.29 0.90 -16.20 0.30 0.68 -29.16 10.81 141.44 0.04 74.48 0.82 -21.74 0.40 0.60 -36.85 10.00 131.96 0.05 71.50 0.76 -25.90 0.50 0.53 -43.25 9.14 123.66 0.06 70.09 0.69 -28.46 0.60 0.47 -48.47 8.31 116.90 0.07 68.61 0.64 -30.60 0.70 0.42 -52.50 7.57 110.84 0.08 67.97 0.60 -31.88 0.80 0.37 -56.05 6.92 105.69 0.08 67.35 0.56 -32.88 0.90 0.34 -59.04 6.36 101.15 0.09 66.54 0.53 -33.54 1.00 0.30 -61.69 5.87 97.08 0.10 66.31 0.51 -34.05 1.20 0.25 -66.62 5.07 90.12 0.12 64.95 0.46 -35.02 1.50 0.19 -75.77 4.24 81.19 0.14 63.09 0.41 -36.74 1.70 0.16 -84.55 3.82 75.92 0.16 61.07 0.37 -38.42 2.00 0.12 -101.92 3.34 68.51 0.18 58.41 0.32 -40.40 2.50 0.10 -148.42 2.79 57.44 0.23 53.55 0.25 -45.38 3.00 0.14 170.66 2.41 46.77 0.27 47.51 0.17 -52.42 v ce = 2 v, i c = 7 ma, z o = 50 q1 0.10 0.79 -10.59 12.26 165.48 0.01 83.48 0.96 -8.71 0.20 0.74 -20.57 11.58 153.36 0.03 77.65 0.91 -16.50 0.30 0.67 -30.03 10.98 142.68 0.04 73.57 0.84 -22.47 0.40 0.59 -38.34 10.23 133.14 0.05 70.32 0.77 -27.22 0.50 0.52 -45.42 9.42 124.76 0.06 68.50 0.72 -30.47 0.60 0.45 -51.28 8.61 117.78 0.07 66.94 0.67 -33.23 0.70 0.38 -56.02 7.87 111.39 0.07 65.98 0.62 -35.02 0.80 0.33 -59.86 7.22 105.98 0.08 65.26 0.59 -36.80 0.90 0.28 -63.19 6.63 101.18 0.09 64.24 0.56 -38.15 1.00 0.24 -65.89 6.12 96.90 0.10 63.87 0.53 -39.31 1.20 0.17 -70.37 5.29 89.57 0.11 62.59 0.49 -41.59 1.50 0.08 -78.15 4.37 80.22 0.13 60.52 0.44 -45.40 1.70 0.04 -88.25 3.92 74.77 0.15 58.88 0.42 -48.34 2.00 0.03 118.89 3.40 67.28 0.17 56.41 0.38 -53.28 2.50 0.12 102.62 2.80 55.99 0.21 51.57 0.32 -63.74 3.00 0.21 98.26 2.38 45.77 0.24 45.88 0.27 -77.81 v ce = 2 v, i c = 7 ma, z o = 50 frequency s 11 s 21 s 12 s 22 (ghz) mag ang mag ang mag ang mag ang frequency s 11 s 21 s 12 s 22 (ghz) mag ang mag ang mag ang mag ang q2 part number quantity packaging UPA827TF-T1-A 3000 tape & reel, pb-free ordering information a business partner of nec compound semiconductor devices, ltd. 3/06/2006


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