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  alm-31222 1.7-2.7ghz 1-watt high linearity amplifier data sheet description avago technologies alm-31222 is a high linearity 1 watt pa with good oip3 performance and exceptionally good pae at 1db gain compression point, achieved through the use of avago technologies proprietary 0.25um gaas en- hancement-mode phemt process. all matching components are fully integrated within the module. this makes the alm-31222 extremely easy to use. the adjustable temperature-compensated internal bias circuit allows the device to be operated at either class a or class ab operation. the alm-31222 is housed inside a miniature 5.0 x 6.0 x 1.1 mm 3 22-lead multiple-chips-on-board (mcob) module package. component image 5.0 x 6.0 x 1.1 mm 3 22-lead mcob features  fully matched, input and output  high linearity and p1db  unconditionally stable across load condition  built-in adjustable temperatur e-compensated internal bias circuitry  gaas e-phemt technology [1]  5v supply  excellent uniformity in product specifications  tape-and-reel packaging option available  msl-3 and lead-free  high mttf for base station application specifications 2ghz; 5v, 415ma (typical)  14.9 db gain  47.9 dbm output ip3  31.5 dbm output power at 1db gain compression  52.6% pae at p1db  2.7 db noise figure applications  class a driver amplifier for gsm/pcs/w-cdma/wimax base stations.  general purpose gain block. note: 1. enhancement mode technology employs positive gate voltage, thereby eliminating the need of negative gate voltage associated with conventional depletion mode devices. notes: package marking provides orientation and identification 31222 = device part number wwyy = work week and year of manufacture xxxx = last 4 digit of lot number 31222 wwyy xxxx 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 21 20 22 gnd gnd vdd1 gnd vctrl gnd gnd gnd gnd vdd2 gnd nc gnd gnd gnd rf_out gnd gnd gnd gnd gnd nc gnd gnd rf_in gnd top view bottom view attention: observe precautions for handling electrostatic sensitive devices. esd machine model = 200 v esd human body model = 700 v refer to avago application note a004r: electrostatic discharge, damage and control.
2 .36 .38 .4 .42 .44 .46 .48 .5 cpk = 1.26 std dev = 10.6 44.5 45 45.5 46 46.5 47 47.5 48 48.5 49 cpk = 4.51 std dev = 0.254 30 30.5 31 31.5 32 cpk = 12.1 std dev = 0.042 50 51 52 53 54 55 std dev = 0.254 1 3.5 14 14.5 15 15.5 16 16.5 17 cpk = 5.0 std dev = 0.085 absolute maximum rating [2] t a =25 c symbol parameter units absolute max. v dd, max device voltage, rf output to ground v 5.5 i ds, max device drain current ma 750 v ctrl,max control voltage v 5.5 p in,max cw rf input power dbm 25 p diss total power dissipation [4] w 4.125 t j,max junction temperature o c 150 t stg storage temperature o c -65 to 150 product consistency distribution charts [5, 6] thermal resistance [3] jc = 25 c/w (vdd = 5v, idd = 400ma, tc = 85 c) notes: 2. operation of this device in excess of any of these limits may cause permanent damage. 3. thermal resistance measured using infra-red measurement technique. 4. this is limited by maximum vdd and ids. derate 40mw/ c for t c >46.9 c. figure 1: ids; lsl = 370ma, nominal = 415ma, usl = 470ma figure 2: oip3; lsl = 44.5dbm, nominal = 47.9dbm figure 3: p1db; lsl = 30dbm, nominal = 31.5dbm figure 4: pae at p1db; nominal = 52.6% figure 5: gain; lsl=13.7db, nominal = 14.9db, usl=16.8db notes: 5. distribution data sample size is 500 samples taken from 2 different wafers lots. t a = 25c, vdd = 5v, vctrl = 5v, rf performance at 2ghz unless otherwise specified. future wafers allocated to this product may have nominal values anywhere between the upper and lower limits. 6. measurements are made on a production test board. input trace losses have not been de-embedded from actual measurements.
3 electrical specifications [7] t a = 25 c, vdd =5v, vctrl=5v, rf performance at 2.0 ghz, measured on demo board (see figure 7) unless otherwise specified. symbol parameter and test condition units min. typ. max. ids quiescent current ma 370 415 470 ictrl vctrl current ma - 10.4 - gain gain db 13.7 14.9 16.8 oip3 [8] output third order intercept point dbm 44.5 47.9 - op1db output power at 1db gain compression dbm 30 31.5 - pae power added efficiency % - 52 - nf noise figure db - 2.7 - s11 input return loss, 50 source db - -10 - s22 output return loss, 50 load db - -10 - s12 reverse isolation db - -30 - notes: 7. measurements at 2ghz obtained using demo board described in figure 6 and 7. 8. 2ghz oip3 test condition: f rf1 - f rf2 = 10mhz with input power of -5dbm per tone measured at worse case side band. 9. use proper bias, heat sink and de-rating to ensure maximum channel temperature is not exceeded. see absolute maximum ratings and application note (if applicable) for more details.
4 s-parameter (vdd=5v, vctrl=5v, t=25c, matched 50 ohm) freq (ghz) s11 (db) s11 (ang) s21 (db) s21 (ang) s12 (db) s12 (ang) s22 (db) s22 (ang) 0.1 -0.28 175.96 -83.18 176.23 -85.32 -67.51 -1.24 -142.79 0.2 -0.33 173.13 -52.64 161.11 -79.55 71.39 -1.1 -167.79 0.3 -0.32 169.83 -39.35 128.52 -75.05 83.66 -1.02 179.87 0.4 -0.38 166.32 -29.95 100.99 -69.64 85.21 -0.99 169.14 0.5 -0.39 162.45 -23.54 79.41 -68.48 69.93 -1.01 158.91 0.6 -0.51 158 -17.63 69.24 -65.17 52.89 -1.05 147.9 0.7 -0.57 152.77 -11.35 54.33 -60.41 26.3 -1.17 134.94 0.8 -0.78 146.84 -5.72 35.54 -56.11 6.3 -1.45 119.17 0.9 -0.82 139.57 -0.4 13.28 -51.07 -19.9 -2.03 99.51 1 -1.16 129.83 4.3 -13.32 -46.1 -49.33 -3.2 75.34 1.1 -1.48 119.45 8.01 -41.24 -42.01 -78.55 -5.01 50.04 1.2 -2.16 104.83 11.14 -73.66 -38.32 -111.37 -7.73 22.1 1.3 -3.45 86.86 13.49 -106.74 -35.37 -144.38 -10.47 -3.04 1.4 -5.75 64.05 15.1 -139.71 -33.12 -176.73 -11.98 -25.11 1.5 -9.86 34.92 16.01 -171.85 -31.64 151.79 -11.99 -48.46 1.6 -16.32 -12.66 16.29 157.85 -30.83 122.31 -11.45 -73.83 1.7 -18.73 -104.19 16.1 130.8 -30.55 96.01 -11.22 -98.63 1.8 -15.14 -151.56 15.8 108.62 -30.51 74.43 -11.43 -119.98 1.9 -12.68 -179.03 15.4 86.61 -30.55 52.91 -12.04 -141.78 2 -11.46 157.09 15.05 64.4 -30.61 31.14 -13.09 -165.11 2.1 -10.95 139.46 14.78 46.1 -30.69 13.01 -14.18 174.4 2.2 -10.67 120.01 14.51 26.44 -30.8 -6.7 -15.59 149.47 2.3 -10.67 101.25 14.25 6.6 -30.97 -26.97 -17.05 119.92 2.4 -10.76 80.58 13.98 -13.62 -31.23 -47.79 -18.2 83.09 2.5 -11.08 60.42 13.69 -32.78 -31.57 -67.87 -18.1 43.43 2.6 -11.15 35.78 13.32 -54.85 -32.11 -90.91 -16.32 1.98 2.7 -11.14 8.61 12.79 -78.85 -32.95 -114.76 -13.6 -31.62 2.8 -10.62 -17.4 11.76 -105.67 -34.13 -137.54 -10.54 -58.62 2.9 -9.29 -41.86 9.7 -131.03 -34.8 -158.21 -7.5 -85.47 3 -7.64 -67.59 7.59 -150.93 -35.42 175.41 -5.5 -111.51 3.1 -6.29 -92.79 5.59 -171.05 -36.65 148.66 -4.2 -132.99 3.2 -5.37 -113.14 3.48 170.73 -38.05 126.66 -3.34 -149.42 3.3 -4.44 -133.05 0.91 152.1 -39.61 105.49 -2.67 -164.34 3.4 -3.78 -150.27 -1.89 135.32 -41.07 87.89 -2.19 -176.6 3.5 -3.23 -165.06 -4.83 120.49 -42.43 73.22 -1.87 173.41 3.6 -2.89 -178.18 -7.85 107.48 -43.41 61.54 -1.65 165.31 3.7 -2.64 170.43 -10.94 96.02 -44.11 52.9 -1.5 158.68 3.8 -2.53 159.49 -14.05 85.79 -44.41 45.89 -1.38 153.37 3.9 -2.55 149.92 -17.01 77.16 -44.37 39.92 -1.3 149.34 4 -2.7 138.27 -20.45 68.04 -43.94 32.99 -1.23 145.77
5 freq (ghz) s11 (db) s11 (ang) s21 (db) s21 (ang) s12 (db) s12 (ang) s22 (db) s22 (ang) 4.1 -3.12 124.98 -24.48 59.64 -43.26 24.59 -1.19 142.81 4.2 -4 107.04 -29.94 54.26 -42.41 14.09 -1.16 140.48 4.3 -5.88 80.14 -38.62 78.06 -41.52 0.14 -1.14 138.59 4.4 -9.12 29.56 -35.16 141.21 -40.94 -18.9 -1.14 137.06 4.5 -8.89 -53.48 -31.02 131.79 -41.43 -41.31 -1.14 135.82 4.6 -5.46 -101.97 -30.5 114.9 -43 -59.92 -1.15 134.88 4.7 -3.25 -130.17 -31.67 99.57 -45.29 -73.84 -1.17 134.07 4.8 -2.22 -146.59 -33.51 88.44 -47.71 -82.07 -1.19 133.29 4.9 -1.67 -156.9 -35.58 80.35 -49.9 -85.77 -1.21 132.54 5 -1.38 -164.03 -37.74 74.33 -51.68 -87.52 -1.25 131.78 5.1 -1.19 -168.88 -39.92 69.9 -53.54 -88.6 -1.29 130.96 5.2 -1.08 -172.79 -42 66.23 -55.04 -88.69 -1.34 130.02 5.3 -1 -175.55 -44.09 63.38 -56.69 -88.55 -1.39 128.84 5.4 -0.97 -177.74 -46.1 60.82 -57.75 -86.81 -1.45 127.63 5.5 -0.93 -179.47 -48.16 58.9 -59.67 -84.83 -1.51 125.96 5.6 -0.91 178.98 -50.38 55.72 -61.1 -80.67 -1.6 123.94 5.7 -0.89 177.9 -52.39 55.19 -62.67 -75.2 -1.69 121.57 5.8 -0.88 176.77 -54.31 53.59 -64.48 -61.6 -1.78 118.67 5.9 -0.89 175.77 -56.07 50.42 -65.31 -47.79 -1.9 115.35 6 -0.91 174.44 -58.26 46.84 -64.83 -33.25 -2.01 111.39
6 demo board schematic vsupply 3 8 vsense bias c5 c4 c8 c7 module outline 50-ohms tl output match c2 r1 c6 c1 z1 z2 vctrl r2 c3 1,2,19,20 input match 50-ohms tl vsupply 21 20 19 17,18 16 3,4 5 1,22 12,13,14,15 7 8 9 10 11 6 1,2,19,20 2 circuit symbol size value description c1, c6 0805 2.2uf ceramic chip capacitor c2, c4, c8 0402 0.1uf ceramic chip capacitor c3, c5, c7 0402 10nf ceramic chip capacitor r1 0805 0 ohm chip resistor r2 0805 not used n/a z1, z2 0805 not used zener diode 5.6v (optional) figure 6. demo board application schematics and components table demo board layout 10 1 rf input 20-pin connector rf output 1 2 3 4 5 6 7 8 9 10 20 19 18 17 16 15 14 13 12 11 pins pointing out of the page unit is on top pins 1,2,19,20 = vsupply = vdd pin 3 = vsense (optional) pins 5,6,15,16 = gnd pin 8 = vctrl other pins are not used figure 7. demo board layout diagram 1. recommended pcb material is 10 mils rogers ro4350, with fr4 backing for mechanical strength. 2. suggested component values may vary according to layout and pcb material.
7 alm-31222 typical performance t a = +25 c, vdd = 5v, vctrl = 5v, input signal=cw unless stated otherwise. 340 360 380 400 420 440 460 480 500 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 temperature (oc) ids (ma) 40 41 42 43 44 45 46 47 48 49 50 1.7 1.8 1.9 2 2.1 2.2 2.3 2.4 2.5 2.6 2.7 frequency (ghz) oip3 (db) 27 28 29 30 31 32 33 34 1.7 1.8 1.9 2 2.1 2.2 2.3 2.4 2.5 2.6 2.7 frequency (ghz) p1db (dbm) 10 11 12 13 14 15 16 17 18 1.7 1.8 1.9 2 2.1 2.2 2.3 2.4 2.5 2.6 2.7 frequency (ghz) gain (db) -25 -20 -15 -10 -5 0 1.7 1.8 1.9 2 2.1 2.2 2.3 2.4 2.5 2.6 2.7 frequency (ghz) s11 (db) -25 -20 -15 -10 -5 0 1.7 1.8 1.9 2 2.1 2.2 2.3 2.4 2.5 2.6 2.7 frequency (ghz) s22 (db) 85oc 25oc -40oc 85oc 25oc -40oc 85oc 25oc -40oc 85oc 25oc -40oc 85oc 25oc -40oc figure 9. over temperature oip3 vs frequency figure 10. over temperature p1db vs frequency figure 11. over temperature gain vs frequency figure 12. over temperature s11 vs frequency figure 13. over temperature s22 vs frequency figure 8. ids vs temperature
8 -35 -34 -33 -32 -31 -30 -29 -28 -27 -26 -25 1.7 1.8 1.9 2 2.1 2.2 2.3 2.4 2.5 2.6 2.7 frequency (ghz) s12 (db) 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 16 17 18 19 20 21 22 23 24 25 pout(dbm) evm(%) -60 -55 -50 -45 -40 -35 -30 -25 -20 20 21 22 23 24 25 output channel power (dbm) acpr (dbc) -60 -55 -50 -45 -40 -35 -30 -25 -20 20 21 22 23 24 25 output channel power (dbm) acpr (dbc) -60 -55 -50 -45 -40 -35 -30 -25 -20 20 21 22 23 24 25 output channel power (dbm) acpr (dbc) -60 -55 -50 -45 -40 -35 -30 -25 -20 20 21 22 23 24 25 output channel power (dbm) acpr (dbc) 85oc 25oc -40oc 85oc 25oc -40oc 85oc 25oc -40oc 85oc 25oc -40oc 85oc 25oc -40oc 85oc 25oc -40oc 3gpp wcdma test model 1 +64dpch +/- 5mhz o?set 3gpp wcdma test model 1 +64dpch +/- 5mhz o?set 3gpp wcdma test model 1 +64dpch +/- 5mhz o?set 3gpp wcdma test model 1 +64dpch +/- 5mhz o?set ieee 802.16d 64-qam bw20mhz alm-31222 typical performance t a = +25 c, vdd = 5v, vctrl = 5v, input signal=cw unless stated otherwise. figure 15. over temperature evm vs pout at 2.5ghz figure 16. over temperature acpr vs channel power at 2.14ghz figure 17. over temperature acpr vs channel power at 2.5ghz figure 18. over temperature acpr vs channel power at 2.6ghz figure 19. over temperature acpr vs channel power at 2.7ghz figure 14. over temperature s12 vs frequency
9 combines land pattern and stencil layout pcb land pattern stencil opening 5.80 0.50 0.50 0.35 4.80 0.30 0.35 4.20 0.85 0.30 0.30 0.70 0.60 1.30 0.50 pin 1 0.45 0.45 0.45 0.63 0.39 0.41 5.73 0.35 0.35 0.41 0.54 0.77 0.45 4.74 1.17 0.72 0.45 0.30 2.79 1.74 0.45 4.74 4.80 5.80 5.73 note: all dimensions are in millimeters. pcb layout and stencil design
10 1 2 3 4 5 6 7 8 9 1 0 11 1 2 1 3 1 4 1 5 1 6 1 7 1 8 1 92 1 20 22 bo tt om v iew ( 2 x) 1 .60 ( 6 x) 0.50 ( 4 x) 0.70 ( 4 x) 0.60 ( 2 x) 2.40 ( 2 x) 1 .30 0.07 ( a ll me t a l a n d sm gaps ) ( 8 x) 0.2 1 ( 8 x) 0.2 1 0 (1 2 x) 0. 1 6 ( 8 x) 0.50 sq 0. 1 0 6.00 0. 1 0 pi n 1 5.00 0. 1 0 0.60 1 .05 0. 1 0 t op v iew side v iew 31222 wwyy xxxx mcob 5x6 package dimensions notes: 1. all dimenions are in milimeters 2. dimensions are inclusive of plating 3. dimensions are exclusive of mold flash and metal burr product family output power frequency band 700mhz-1ghz 1.7- 2.7ghz 3.3-3.9ghz 0.5w mga-30116 mga-30216 mga-30316 1w alm-31122 alm-31222 alm-31322 2w alm-32120 alm-32220 alm-32320 part number ordering information part number no. of devices container alm31222-tr1g 1000 7 reel alm31222-tr2g 3000 13 reel ALM31222-BLKG 100 antistatic bag
11 user feed direction top view end view user feed direction cover tape carrier tape reel 31222 wwyy xxxx 31222 wwyy xxxx 31222 wwyy xxxx section b-b 5? all around bo b a (r0.50) b 4.000.10 see note #2 2.000.05 ?1.550.05 1.750.10 ao section a-a ko 0.300.05 5.500.10 12.000.30 ?1.50 (min) 8.000.10 a device orientation tape dimensions
12 reel dimension - 7 inch ps 6 ps 6 back view ?178.00.5 ?55.00.5 6.25mm embossed letters lettering thickness: 1.6mm see detail "x" slot hole "b" slot hole(2x) 180 apart. slot hole "a": 3.00.5mm(1x) slot hole "b": 2.50.5mm(1x) ?13.0 65 45 r10.65 45 r5.2 embossed ribs raised: 0.25mm, width: 1.25mm 18.0* max. ?51.20.3 ?178.00.5 recycle logo front view 120 1.5 min. ?20.2 min. -0.2 +0.5 detail "x" -0.0 +1.5* 12.4 detail "y" (slot hole) 3.5 1.0 see detail "y" front back front back slot hole "a" ?178.00.5
reel dimension - 13 inch ps 6 2 1 12 11 10 9 8 7 2 0 3 5 4 6 6 ps ps 6 cpn 12mm mpn detail "x" recycle logo see detail "x" r19.00.5 ?12.30.5(3x) ?100.00.5 ?329.01.0 11.9-15.4** 18.4 max.* slot 5.00.5(3x) 12.4 +2.0* -0.0 16.0mm height x min. 0.4mm thick. embossed lettering embossed line (2x) 89.0mm length lines 147.0mm away from center point 7.5mm height embossed lettering date code esd logo ?16.0 7.5mm height embossed lettering hub ?100.00.5 ?329.01.0 20.2(min.) 1.5(min.) ?13.0 -0.2 +0.5 back view front view 2 0 12 10 8 7 11 9 1 3 4 6 5 2 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. av02-1179en - october 21, 2010


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