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  AVT-51663 dc C 6000 mhz ingap hbt gain block data sheet description avago technologies AVT-51663 is an economical, easy- to-use, general purpose ingap hbt mmic gain block ampli?er utilizing darlington pair con?guration housed in a 6-lead (sot-363) surface mount plastic package. the darlington feedback structure provides inherent broad bandwidth performance, resulting in useful ope- rating frequency up to 6 ghz. this is an ideal device for small-signal gain cascades or if ampli?cation. AVT-51663 is fabricated using advanced ingap hbt (hetero-junction bipolar transistor) technology that o?ers state-of-the-art reliability, temperature stability and performance consistency. component image attention: observe precautions for handling electrostatic sensitive devices. esd machine model = 160 v esd human body model = 2000 v refer to avago application note a004r: electrostatic discharge, damage and control. notes: package marking provides orientation and identi?cation 51 = device code x = month of manufacture ? = pin 1 typical biasing con?guration pin 1, 2, 4, 5 (gnd) pin 6 pin 3 c byp r bias c block c block v d rfin rfout v cc = 5v r bias = (v cc - v d )/i d c byp features ? small signal gain ampli?er ? operating frequency dc to 6 ghz ? unconditionally stable ? 50 ohm input & output ? flat, broadband frequency response up to 2 ghz ? industry standard sot-363 ? lead-free, rohs compliant, green speci?cations 2 ghz, 5v vcc, 37ma (typical) ? 19.6 db gain ? 12.9 dbm p1db ? 25.1 dbm oip3 ? 3.2 db nf ? 10 db irl and orl applications ? cellular / pcs / 3g base station ? wireless data / wlan ? wimax / wibro ? catv & cable modem ? ism top view gnd gnd 51x input gnd gnd output & v d
2 absolute maximum rating [1] t a =25 c symbol parameter units absolute max. i d device current ma 70 p in,max cw rf input power dbm 15 p diss total power dissipation [3] mw 284 t opt operating temperature c -40 to 85 t j,max junction temperature c 150 t stg storage temperature c -65 to 150 thermal resistance thermal resistance [2] jb = 184c/w (i d = 36 ma, t c = 85c) notes: 1. operation of this device in excess of any of these limits may cause permanent damage. 2. thermal resistance measured using infrared measurement technique. 3. ground lead temperature is 25c. derate 5.5mw/c for t c >98c. electrical speci?cations [1] t a = 25c, zo = 50 , v cc = 5 v, r bias = 30 , p in = -15 dbm (unless speci?ed otherwise) symbol parameter and test condition frequency units min. typ. max. i d device current ma 33.0 36.4 40.0 gp power gain 900 mhz 2000 mhz db 18.0 21.7 19.6 21.0 oip3 [2] output 3rd intercept point 900 mhz 2000 mhz dbm 24.0 25.8 25.1 s11 input return loss, 50 source 900 mhz 2000 mhz db -14.8 -10.8 s22 output return loss, 50 load 900mhz 2000 mhz db -14.9 -11.8 s12 reverse isolation 900 mhz 2000 mhz db -24.1 -24.6 p1db output power at 1db gain compression 900 mhz 2000 mhz dbm 13.3 12.9 nf noise figure 900 mhz 2000 mhz db 2.8 3.2 notes: 1. measurements obtained on cpwg line with reference plane at the ends of dut leads (as shown in figure 1). 2. oip3 test condition: f rf1 - f rf2 = 10mhz with input power of -23 dbm per tone measured at worse side band.
3 pin 1, 2, 4, 5 (gnd) pin 6 pin 3 rfin rfout v cc zo = 50 ohm zo = 50 ohm bias tee r bias lsl usl 33 34 35 36 37 38 39 40 lsl usl 18 19 20 21 lsl 24 25 26 figure 1. block diagram of board used for id, gain, oip3, s11, s22, s12, op1db and nf measurements. circuit losses have been de-embedded from actual measurements. product consistency distribution charts at 2 ghz, v cc = 5 v, r bias = 30 figure 2. i d (ma) distribution. lsl = 33, nominal = 36.4, usl = 40 figure 3. gain (db) distribution. lsl = 18, nominal = 19.6, usl = 21 figure 4. oip3 (dbm) distribution. lsl = 24, nominal = 25.1 notes: 1. statistical distribution determined from a sample size of 1500 samples taken from 3 di?erent wafers from 2 wafer lots, measured on a production test board. 2. future wafers allocated to this product may have typical values anywhere between the minimum and maximum speci?cation limits.
4 AVT-51663 typical performance curves t a = 25c, zo = 50 , p in = -15 dbm (unless speci?ed otherwise) figure 5. gain vs frequency at id = 37ma figure 6. p1db vs frequency at id = 37ma figure 7. oip3 vs frequency at id = 37ma, pin=-23dbm figure 8. nf vs frequency at id = 37ma figure 9. i d vs v d and temperature 10 12 14 16 18 20 22 24 0123456 frequency (ghz) gain (db) 14 16 18 20 22 24 26 28 0123456 frequency (ghz) oip3 (dbm) 0 10 20 30 40 50 60 70 0123456 vd (v) id (ma) 25c 85c -40c 5 6 7 8 9 10 11 12 13 14 15 0123456 frequency (ghz) p1db (dbm) 1 2 3 4 5 6 0123456 frequency (ghz) nf (db)
5 AVT-51663 typical performance curves t a = 25c, zo = 50 , p in = -15 dbm (unless speci?ed otherwise), continued figure 10. gain vs i d and temperature at 900 mhz figure 11. p1db vs i d and temperature at 900 mhz figure 12. oip3 vs i d and temperature at 900 mhz, pin=-23dbm figure 13. nf vs i d and temperature at 900 mhz figure 14. gain vs i d and temperature at 2 ghz figure 15. p1db vs i d and temperature at 2 ghz 17 18 19 20 21 22 23 10 20 30 40 50 id (ma) gain (db) 10 15 20 25 30 35 10 20 30 40 50 id (ma) oip3 (dbm) 15 16 17 18 19 20 21 10 20 30 40 50 id (ma) gain (db) 0 5 10 15 20 10 20 30 40 50 id (ma) p1db (dbm) 2.0 2.5 3.0 3.5 4.0 10 20 30 40 50 id (ma) nf(db) 0 5 10 15 20 10 20 30 40 50 id (ma) p1db (dbm) 25c 85c -40c 25c 85c -40c 25c 85c -40c 25c 85c -40c 25c 85c -40c 25c 85c -40c
6 AVT-51663 typical performance curves t a = 25c, zo = 50 , p in = -15 dbm (unless speci?ed otherwise), continued figure 16. oip3 vs i d and temperature at 2 ghz, pin=-23dbm figure 17. nf vs i d and temperature at 2 ghz figure 18. gain vs i d and frequency (ghz) figure 19. p1db vs i d and frequency (ghz) figure 20. oip3 vs i d and frequency (ghz), pin=-23dbm figure 21. nf vs i d and frequency (ghz) 10 15 20 25 30 35 10 20 30 40 50 id (ma) oip3 (dbm) 2.0 2.5 3.0 3.5 4.0 10 20 30 40 50 id (ma) nf(db) 8 10 12 14 16 18 20 22 24 10 20 30 40 50 id (ma) gain (db) 0.05 0.9 2.5 4.0 5.0 6.0 0 5 10 15 20 10 20 30 40 50 id (ma) p1db (dbm) 0.05 0.9 2.5 3.0 5.0 6.0 10 15 20 25 30 35 10 20 30 40 50 id (ma) oip3 (dbm) 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5 6.0 10 20 30 40 50 id (ma) nf (db) 25c 85c -40c 25c 85c -40c 2.0 3.0 2.0 4.0 0.05 0.9 2.0 2.5 3.0 4.0 5.0 6.0 0.9 0.05 2.0 2.5 3.0 6.0 4.0 5.0
7 AVT-51663 typical performance curves t a = 25c, zo = 50 , p in = -15 dbm (unless speci?ed otherwise), continued figure 22. s11 vs frequency and i d figure 23. s22 vs frequency and i d -30 -25 -20 -15 -10 -5 0 0246810 frequency (ghz) s11 (db) -30 -25 -20 -15 -10 -5 0 0246810 frequency (ghz) s22 (db) id=20ma id=37ma id=45ma id=20ma id=37ma id=45ma
8 AVT-51663 typical scattering parameters t a = 25c, zo = 50 , i d = 20 ma, (unless speci?ed otherwise) frequency ghz s11 s21 s12 s22 mag angle db mag angle mag angle mag angle k 0.05 0.24 -0.7 20.4 10.51 177.2 0.07 -0.9 0.26 -2.2 1.0 0.1 0.24 -1.7 20.4 10.50 174.8 0.07 -1.4 0.26 -5.0 1.0 0.5 0.25 -11.5 20.2 10.21 154.5 0.07 -6.6 0.27 -25.0 1.0 0.9 0.29 -23.5 19.8 9.73 135.1 0.07 -11.0 0.30 -43.2 1.0 1.5 0.34 -43.5 19.0 8.89 107.3 0.07 -16.9 0.34 -69.4 1.1 2.0 0.36 -60.5 18.2 8.16 85.0 0.06 -21.3 0.35 -90.6 1.1 2.5 0.37 -78.0 17.4 7.43 63.6 0.06 -25.3 0.35 -111.0 1.1 3.0 0.37 -96.1 16.5 6.70 43.0 0.06 -28.9 0.36 -131.0 1.2 3.5 0.37 -115.4 15.6 6.00 23.0 0.06 -32.4 0.36 -150.8 1.2 4.0 0.37 -136.2 14.5 5.32 3.5 0.06 -35.8 0.38 -169.9 1.3 4.5 0.37 -157.4 13.3 4.64 -15.3 0.06 -39.0 0.40 173.0 1.4 5.0 0.39 -178.3 12.0 4.00 -32.9 0.06 -41.8 0.43 159.0 1.5 5.5 0.41 162.1 10.7 3.44 -49.5 0.06 -44.3 0.45 146.7 1.6 6.0 0.44 144.5 9.4 2.96 -65.2 0.06 -47.0 0.47 134.4 1.7 6.5 0.46 128.9 8.2 2.56 -80.0 0.06 -49.9 0.48 121.7 1.7 7.0 0.47 114.6 6.9 2.22 -94.2 0.07 -53.5 0.50 108.7 1.8 7.5 0.49 100.6 5.7 1.93 -107.9 0.07 -57.9 0.51 95.7 1.9 8.0 0.50 86.2 4.5 1.68 -121.3 0.07 -63.2 0.53 83.0 2.0 8.5 0.51 70.9 3.2 1.45 -134.5 0.08 -69.3 0.56 71.3 2.1 9.0 0.52 55.2 1.9 1.25 -147.2 0.08 -75.8 0.58 60.7 2.2 9.5 0.54 40.2 0.5 1.06 -159.3 0.08 -82.5 0.61 51.1 2.4 10.0 0.57 27.4 -0.9 0.90 -170.3 0.08 -88.9 0.63 42.2 2.5 10.5 0.60 17.7 -2.4 0.76 179.7 0.08 -94.8 0.65 33.4 2.7 11.0 0.62 10.7 -3.8 0.65 170.6 0.08 -100.3 0.67 24.7 2.9 11.5 0.64 4.7 -5.1 0.56 162.0 0.08 -105.9 0.68 15.5 3.1 12.0 0.65 -2.1 -6.4 0.48 153.2 0.08 -112.1 0.69 5.8 3.4 12.5 0.66 -10.4 -7.6 0.42 144.1 0.08 -119.0 0.71 -4.0 3.7 13.0 0.67 -20.0 -8.8 0.36 134.8 0.08 -126.6 0.72 -13.8 4.0 13.5 0.68 -30.9 -10.1 0.31 125.3 0.08 -134.9 0.73 -23.5 4.4 14.0 0.70 -42.5 -11.4 0.27 115.7 0.08 -143.7 0.74 -33.4 4.9 14.5 0.72 -53.6 -12.8 0.23 106.7 0.08 -152.0 0.75 -42.7 5.4 15.0 0.74 -62.7 -14.4 0.19 99.2 0.08 -159.2 0.77 -50.0 5.9 16.0 0.76 -75.1 -17.1 0.14 89.1 0.07 -169.4 0.80 -58.9 7.1 17.0 0.77 -84.2 -19.5 0.11 82.8 0.07 -177.9 0.81 -66.7 8.8 18.0 0.78 -92.2 -21.4 0.08 77.3 0.07 172.3 0.81 -77.7 10.8 19.0 0.78 -104.1 -23.4 0.07 69.5 0.07 158.6 0.81 -94.4 13.9 20.0 0.80 -119.5 -26.0 0.05 61.1 0.06 143.3 0.83 -112.5 17.9 notes: 1. s-parameters are measured on a cpwg line fabricated on 0.025 inch thick rogers? ro4350 material. the input reference plane is at the end of the input lead. the output reference plane is at the end of the output lead.
9 AVT-51663 typical scattering parameters t a = 25c, zo = 50 , i d = 37 ma, (unless speci?ed otherwise) frequency ghz s11 s21 s12 s22 mag angle db mag angle mag angle mag angle k 0.05 0.10 1.7 22.2 12.85 177.2 0.06 0.0 0.13 -2.3 1.0 0.1 0.10 3.1 22.2 12.82 174.5 0.06 -1.0 0.13 -5.9 1.0 0.5 0.13 2.7 21.9 12.40 153.3 0.06 -5.7 0.15 -29.1 1.0 0.9 0.18 -8.3 21.4 11.73 132.9 0.06 -9.8 0.18 -48.9 1.0 1.5 0.26 -31.2 20.4 10.51 103.9 0.06 -15.2 0.23 -76.3 1.1 2.0 0.29 -49.8 19.5 9.45 81.2 0.06 -19.2 0.26 -98.2 1.1 2.5 0.31 -68.7 18.5 8.42 59.8 0.06 -22.7 0.27 -119.0 1.2 3.0 0.32 -88.0 17.5 7.47 39.5 0.06 -25.8 0.29 -139.0 1.2 3.5 0.32 -108.4 16.4 6.60 19.9 0.06 -28.5 0.31 -158.8 1.3 4.0 0.32 -130.4 15.3 5.79 0.9 0.06 -31.1 0.33 -177.6 1.4 4.5 0.33 -152.9 14.0 5.04 -17.4 0.06 -33.6 0.37 166.0 1.5 5.0 0.35 -175.0 12.7 4.33 -34.7 0.06 -35.8 0.40 152.8 1.5 5.5 0.38 164.5 11.4 3.72 -51.0 0.06 -38.1 0.43 141.1 1.6 6.0 0.41 146.3 10.1 3.20 -66.5 0.06 -40.8 0.45 129.2 1.6 6.5 0.43 130.2 8.8 2.77 -81.2 0.06 -44.1 0.47 116.7 1.7 7.0 0.45 115.6 7.6 2.40 -95.3 0.07 -48.2 0.49 104.0 1.7 7.5 0.47 101.3 6.4 2.08 -109.0 0.07 -53.3 0.51 91.2 1.8 8.0 0.48 86.7 5.2 1.81 -122.3 0.08 -59.2 0.53 78.8 1.8 8.5 0.49 71.2 3.9 1.56 -135.4 0.08 -65.8 0.55 67.4 1.9 9.0 0.51 55.3 2.6 1.34 -148.1 0.08 -72.9 0.58 57.1 2.0 9.5 0.53 40.1 1.2 1.14 -160.1 0.08 -80.1 0.61 47.8 2.1 10.0 0.56 27.2 -0.3 0.97 -171.1 0.09 -86.9 0.63 39.1 2.3 10.5 0.59 17.5 -1.7 0.82 178.9 0.09 -93.2 0.65 30.6 2.4 11.0 0.62 10.4 -3.1 0.70 169.8 0.09 -99.1 0.66 22.1 2.6 11.5 0.64 4.3 -4.4 0.60 161.1 0.09 -105.1 0.68 13.2 2.8 12.0 0.65 -2.5 -5.7 0.52 152.3 0.09 -111.6 0.69 3.6 3.0 12.5 0.66 -10.8 -6.9 0.45 143.1 0.09 -118.7 0.70 -6.1 3.3 13.0 0.67 -20.5 -8.1 0.39 133.8 0.09 -126.5 0.72 -15.7 3.6 13.5 0.68 -31.5 -9.4 0.34 124.1 0.09 -134.9 0.73 -25.4 4.0 14.0 0.69 -43.1 -10.7 0.29 114.4 0.09 -143.7 0.74 -35.2 4.4 14.5 0.71 -54.1 -12.1 0.25 105.3 0.08 -152.2 0.75 -44.3 4.9 15.0 0.73 -63.2 -13.6 0.21 97.6 0.08 -159.4 0.77 -51.6 5.4 16.0 0.76 -75.7 -16.4 0.15 87.0 0.07 -169.8 0.80 -60.3 6.5 17.0 0.77 -85.0 -18.7 0.12 79.9 0.07 -178.4 0.81 -67.9 8.0 18.0 0.77 -93.2 -20.6 0.09 73.6 0.07 171.6 0.81 -78.9 10.0 19.0 0.78 -104.8 -22.7 0.07 65.1 0.07 158.1 0.80 -95.5 12.9 20.0 0.79 -120.2 -25.4 0.05 55.7 0.06 142.9 0.83 -113.5 17.0 notes: 1. s-parameters are measured on a cpwg line fabricated on 0.025 inch thick rogers? ro4350 material. the input reference plane is at the end of the input lead. the output reference plane is at the end of the output lead.
10 AVT-51663 typical scattering parameters t a = 25c, zo = 50 , i d = 45 ma, (unless speci?ed otherwise) frequency ghz s11 s21 s12 s22 mag angle db mag angle mag angle mag angle k 0.05 0.07 3.4 22.5 13.37 177.2 0.06 -0.3 0.10 -2.5 1.0 0.1 0.07 6.5 22.5 13.34 174.5 0.06 -1.0 0.10 -6.4 1.0 0.5 0.11 9.9 22.2 12.89 153.1 0.06 -5.4 0.12 -30.5 1.0 0.9 0.16 -1.9 21.7 12.17 132.5 0.06 -9.3 0.15 -50.5 1.0 1.5 0.24 -27.4 20.7 10.87 103.3 0.06 -14.7 0.21 -77.8 1.1 2.0 0.28 -46.7 19.8 9.74 80.6 0.06 -18.6 0.23 -99.6 1.1 2.5 0.30 -66.2 18.7 8.65 59.2 0.06 -22.0 0.26 -120.4 1.2 3.0 0.31 -85.9 17.7 7.65 38.9 0.06 -25.0 0.27 -140.4 1.2 3.5 0.31 -106.7 16.6 6.75 19.4 0.06 -27.7 0.29 -160.1 1.3 4.0 0.31 -129.0 15.4 5.92 0.5 0.06 -30.2 0.32 -178.8 1.4 4.5 0.32 -151.9 14.2 5.14 -17.7 0.06 -32.5 0.36 164.9 1.5 5.0 0.34 -174.3 12.9 4.43 -34.9 0.06 -34.7 0.39 151.8 1.5 5.5 0.37 164.9 11.6 3.80 -51.2 0.06 -37.0 0.42 140.4 1.6 6.0 0.40 146.5 10.3 3.27 -66.7 0.06 -39.7 0.45 128.4 1.6 6.5 0.43 130.3 9.0 2.83 -81.4 0.06 -43.1 0.47 116.0 1.7 7.0 0.45 115.6 7.8 2.45 -95.5 0.07 -47.3 0.48 103.3 1.7 7.5 0.46 101.3 6.6 2.13 -109.1 0.07 -52.5 0.50 90.5 1.7 8.0 0.48 86.6 5.3 1.85 -122.5 0.08 -58.5 0.53 78.2 1.8 8.5 0.49 71.0 4.1 1.60 -135.6 0.08 -65.3 0.55 66.8 1.9 9.0 0.50 55.1 2.8 1.37 -148.3 0.08 -72.5 0.58 56.5 2.0 9.5 0.53 39.9 1.4 1.17 -160.3 0.09 -79.8 0.60 47.2 2.1 10.0 0.56 27.0 -0.1 0.99 -171.3 0.09 -86.7 0.63 38.5 2.2 10.5 0.59 17.3 -1.5 0.84 178.7 0.09 -93.1 0.65 30.1 2.4 11.0 0.62 10.2 -2.9 0.72 169.6 0.09 -99.0 0.66 21.6 2.5 11.5 0.63 4.1 -4.2 0.62 160.8 0.09 -105.0 0.68 12.7 2.7 12.0 0.64 -2.8 -5.5 0.53 151.9 0.09 -111.6 0.69 3.2 3.0 12.5 0.65 -11.1 -6.7 0.46 142.8 0.09 -118.8 0.70 -6.6 3.2 13.0 0.66 -20.9 -7.9 0.40 133.3 0.09 -126.6 0.72 -16.2 3.5 13.5 0.68 -31.8 -9.2 0.35 123.6 0.09 -135.1 0.73 -25.8 3.9 14.0 0.69 -43.4 -10.5 0.30 113.9 0.09 -143.9 0.74 -35.6 4.3 14.5 0.71 -54.4 -11.9 0.25 104.7 0.08 -152.4 0.75 -44.7 4.8 15.0 0.73 -63.5 -13.4 0.21 97.0 0.08 -159.6 0.77 -52.0 5.2 16.0 0.76 -76.1 -16.1 0.16 86.1 0.07 -170.1 0.80 -60.6 6.3 17.0 0.77 -85.4 -18.4 0.12 78.8 0.07 -178.8 0.81 -68.3 7.8 18.0 0.77 -93.7 -20.4 0.10 72.1 0.07 171.2 0.80 -79.3 9.8 19.0 0.78 -105.2 -22.4 0.08 63.3 0.07 157.7 0.80 -95.9 12.7 20.0 0.79 -120.6 -25.2 0.06 53.8 0.06 142.6 0.82 -113.9 16.7 notes: 1. s-parameters are measured on a cpwg line fabricated on 0.025 inch thick rogers? ro4350 material. the input reference plane is at the end of the input lead. the output reference plane is at the end of the output lead.
11 part number ordering information part number no. of devices container AVT-51663-tr1g 3000 7 reel AVT-51663-blkg 100 antistatic bag package dimensions outline 63 (sot-363/sc-70) recommended pcb pad layout for avagos sc70 6l/sot-363 products notes: 1. all dimensions are in mm. 2. dimensions are inclusive of plating. 3. dimensions are exclusive of mold ?ash & metal burr. 4. all speci?cations comply to eiajsc70. 5. die is facing up for mold and facing down for trim/form, ie: reverse trim/form. 6. package surface to be mirror ?nish. 0.650bcs. symbol dimensions (mm) min max e 1.15 1.35 d 1.80 2.25 he 1.80 2.40 a 0.80 1.10 a2 0.80 1.00 a1 0.00 0.10 q1 0.10 0.40 e 0.65 b 0.15 0.30 c 0.08 0.25 l 0.10 0.46 e he d e a1 b a a2 q1 l c 0.026 0.079 0.018 0.039 dimensions in inches.
12 device orientation user feed direction cover tape carrier tape reel end view 8 mm 4 mm top view 51x 51x 51x 51x tape dimensions and product orientation for outline 63 p p 0 p 2 f w c d 1 d e a 0 10 max. t 1 (carrier tape thickness) t t (cover tape thickness) 10 max. b 0 k o description symbol size (mm) size (inches) length width depth pitch bottom hole diameter a 0 b 0 k 0 p d 1 2.40 0.10 2.40 0.10 1.20 0.10 4.00 0.10 1.00 + 0.25 0.094 0.004 0.094 0.004 0.047 0.004 0.157 0.004 0.039 + 0.010 cavity diameter pitch position d p 0 e 1.55 0.05 4.00 0.10 1.75 0.10 0.061 0.002 0.157 0.004 0.069 0.004 perforation width thickness w t 1 8.00 0.30 0.254 0.02 0.315 0.012 0.0100 0.0008 carrier tape cavity to perforation (width direction) cavity to perforation (length direction) f p 2 3.50 0.05 2.00 0.05 0.138 0.002 0.079 0.002 distance width tape thickness c t t 5.4 0.10 0.062 0.001 0.205 0.004 0.0025 0.0004 cover tape
for product information and a complete list of distributors, please go to our web site: www.avagotech.com avago, avago technologies, and the a logo are trademarks of avago technologies in the united states and other countries. data subject to change. copyright ? 2005-2010 avago technologies. all rights reserved. av02-2358en - march 11 , 2010 reel dimension 7 inch


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