Part Number Hot Search : 
L5993D BZY93C20 MAX1079 PCD5003A 7824K 2CL2F MMBD444 BCM1112
Product Description
Full Text Search
 

To Download MGA-13216-BLKG Datasheet File

  If you can't view the Datasheet, Please click here to try to view without PDF Reader .  
 
 


  Datasheet File OCR Text:
  mga-13216 high gain, high linearity, very low noise amplifier data sheet description avago technologies mga-13216 is a two stage, easy-to- use gaas mmic low noise amplifier (lna). the lna has low noise with good input return loss and high linearity achieved through the use of avago technologies propri- etary 0.25  m gaas enhancement-mode phemt process. minimum matching needed for input, output and the inter-stage between the two lna. it is designed for optimum use between 1.5 ghz to 2.5 ghz. for optimum performance at lower frequency from 400 mhz to 1.5 ghz, the mga-13116 is recommended. both mga-13216 & mga-13116 share the same package and pinout configuration. pin configuration and package marking 4.0 x 4.0 x 0.85 mm 3 16-lead qfn note: package marking provides orientation and identification 13216 = device part number yyww = work week and year of manufacture xxxx = lot number features  optimum frequency of operation 1.5 ghz C 2.5 ghz  very low noise figure  high gain  high linearity performance  excellent isolation  gaas e-phemt technology [1]  low cost small package size: 4.0 x 4.0 x 0.85 mm 3 specifications 1.95 ghz; q1: 5 v, 53 ma (typ) q2: 5 v, 122 ma (typ)  0.61 db noise figure  35.8 db gain  46 db rfoutq1 to rfinq2 isolation  40.5 dbm output ip3  23.6 dbm output power at 1db gain compression applications  low noise amplifier for cellular infrastructure including gsm, cdma, and w-cdma.  other very low noise applications. simplified schematic attention: observe precautions for handling electrostatic sensitive devices. esd machine model = 90 v esd human body model = 650 v refer to avago application note a004r: electrostatic discharge, damage and control. notes: enhancement mode technology employs positive gate bias, thereby eliminating the need of negative gate voltage associated with conventional depletion mode devices. c10 r2 l1 c8 r3 c9 r4 c7 l2 c2 c3 c4 c5 c1 c6 l3 r1 15 12 14 11 13 9 8 7 6 5 4 2 16 10 3 1 q1bias vdd1 vdd2 q1 q2 rfout rfin avag o 1 32 1 6 yyww xxxx 8 7 6 5 1 3 1 4 1 5 1 6 1 2 3 4 1 2 11 1 0 9 g n d p i n 2 p i n 3 p i n 1 0 p i n 11 p i n 1 3 p i n 1 6 t o p view b o tt o m view all other p i n s nc C n ot c onnecte d v bias r f i n q 1 r fout q2 r fout q2 r f i n q2 r fout q 1
2 mga-13216 absolute maximum rating [1] ta = 25 c symbol parameter units absolute maximum vdd1 device voltage v 5.5 vdd2 device voltage v 5.5 idd1 q1 drain current ma 90 p d power dissipation (2) w 1.11 p in,max cw rf input power dbm 20 t j,max junction temperature c 150 t stg storage temperature c -65 to 150 thermal resistance [3] (v dd1 =5.0v, i dd1 =53ma, v dd2 =5.0v, i dd2 =122ma)  jc = 40.3 c/w notes: 1. operation of this device in excess of any of these limits may cause permanent damage. 2. board temperature (t c ) is 25 c. for t c >100 c, derate the device power at 24.8 mw per c rise in board temperature adjacent to pack- age bottom. 3. thermal resistance measured using infrared measurement technique. electrical specifications [1] rf performance at vdd1 = 5 v, vdd2 = 5 v, 1.95 ghz, t a = 25 c, measured on the demo board for 1.95 ghz matching. symbol parameter and test condition units min. typ. max. idd1 current at q1 ma 39 53 67 idd2 current at q2 ma 101 122 143 nf noise figure db C 0.61 0.9 gain gain db 34.3 35.8 37.3 oip3 [2] output third order intercept point dbm 37 40.5 C op1db output power at 1 db gain compression dbm 22.3 23.6 C irl input return loss, 50  source db C -18 C orl output return loss, 50  load db C -10.7 C |s12| reverse isolation db C 55 C |isol 1-2 | isolation between q1s output pin & q2s input pin db C 46 C notes: 1. measurements obtained using demo board described in figure 7 with component list in table 1. input and output trace loss is not de-embedded from the measurement. 2. oip3 test condition: f tone1 = 1.95 ghz, f tone2 = 1.951 ghz with input power of -27 dbm per tone. 3. use proper bias, heatsink and derating to ensure maximum channel temperature is not exceeded. see absolute maximum ratings and application note for more details.
3 product consistency distribution charts [1,2] figure 1. idd1 @ 1. 95 ghz, vdd1 = 5 v, lsl = 39 ma, nominal = 53 ma, usl = 67 ma figure 3. noise figure @ 1. 95 ghz, vdd1 = 5 v, vdd2 = 5 v, nominal = 0.61 db, usl = 0.9 db figure 4. gain @ 1. 95 ghz, vdd1 = 5 v, vdd2 = 5 v, lsl = 34.3 db, nominal = 35.8 db, usl = 37.3 db figure 5. oip3 @ 1. 95 ghz, vdd1 = 5 v, vdd2 = 5 v, lsl = 37 dbm, nominal = 40.5 dbm figure 6. op1db @ 1. 95 ghz, vdd1 = 5 v, vdd2 = 5 v, lsl = 22.3 dbm, nominal = 23.6 dbm figure 2. idd2 @ 1.95 ghz, vdd2 = 5 v, lsl = 101 ma, nominal = 122 ma, usl = 143 ma notes: 1. data sample size is 9193 samples taken from 3 different wafers. future wafers allocated to this product may have nominal valu es anywhere between the upper and lower limits. 2. measurements are made on production test board which represents a trade-off between optimal gain, nf, oip3 and op1db. circuit losses have been de-embedded from actual measurements. 40 50 60 lsl usl 0.4 0.5 0.7 0.8 0.6 0.9 usl 35 36 37 lsl usl 38 37 39 41 40 43 42 lsl 23 24 22.5 23.5 24.5 lsl lsl usl 100 110 120 130 140
4 demo board layout demo board schematic figure 7. demo board layout diagram. figure 8. demo board schematic diagram. C recommended pcb material is 10 mils rogers r04350. C suggested component values may vary according to layout and pcb material. vdd2 mangrove gnd vdd1 gnd l2 l1 c2 c4 c3 in out c7 c1 r4a r2 l3 c6 c8 jan 2011 r1 c10 avago technologies c11 l4 r4b r3 c9a gnd vbias c12 r5 c5a c5b l5 c13 c9b c 1 0 r2 l1 c8 r3 c9 r4 c7 l 2 c2 c3 c4 c5 c 1 c6 l 3 r 1 1 5 1 2 1 4 11 1 3 9 8 7 6 5 4 2 1 6 1 0 3 1 q 1 bias v dd 1 v dd2 q 1 q2 r f ou t r fi n table 1. component list for 1.95ghz matching part size value detail part number notes c1 0402 10pf (murata) grm1555c1h100jz01e dc blocking capacitor c2 0402 100pf (murata) grm1555c1h101jd01e dc blocking capacitor c3 0402 3.3pf (murata) mch155a3r3jk bypass capacitor c4 0402 0.1uf (murata) grm155r61a104ka01d bypass capacitor c5a 0603 2.2uf (murata) grm188r61a225ke34d bypass capacitor c6 0402 1000pf (murata) grm155r71h102ka01e dc blocking capacitor c7, c8 0402 10pf (murata) grm1555c1h100jz01e bypass capacitors c9a, c10 0402 4.7uf (murata) grm155r60e475me760 bypass capacitors c9b n/a not used not used bypass capacitors l1 0402 5.6nh (toko) ll1005-fhl5n6s input match for nf l2 0402 4.7nh (toko) ll1005-fh4n7s output match for q2 l3 0402 100nh (toko) ll1005-fhlr10j output match for q1 r1, r2 0402 0 ohm (koa) rk73z1eltp bridging resistors r3 0402 49.9 ohm (koa) rk73h1eltp49r9f stabilizing resistor for q1 r4b 0402 4.7k ohm (rohm) mcr01j472 biasing resistor for q1
5 25.0 30.0 35.0 40.0 45.0 50.0 1 300 1 500 1 700 1 900 2 1 00 2300 2500 2700 o ip 3 ( d bm) frequency (mhz) 25 c - 40 c 85 c 0.0 0.2 0.4 0.6 0.8 1 .0 1 .2 1 300 1 500 1 700 1 900 2 1 00 2300 2500 2700 frequency (mhz) n f ( d b) 20.0 22.0 24.0 26.0 1 300 1 500 1 700 1 900 2 1 00 2300 2500 2700 frequency (mhz) o p1 d b ( d bm) 30.0 32.0 34.0 36.0 38.0 40.0 1 300 1 500 1 700 1 900 2 1 00 2300 2500 2700 frequency (mhz) g ai n ( d b) 85 c 25 c - 40 c 85 c 25 c - 40 c 85 c 25 c - 40 c 0 1 2 3 4 5 6 7 8 9 1 0 02468 1 0 1 2 1 4 1 6 1 820 frequency (ghz) k - f a ctor 85 c 25 c - 40 c - 70 - 50 - 30 -1 0 1 0 30 50 0 1 2345 i r l, or l, g ai n, r ev i s ol ( d b) frequency (ghz) s 11 s22 s2 1 s 1 2 mga-13216 typical performance in demoboard for 1.95 ghz t a = 25 c, v dd1 = 5.0 v, v dd2 = 5.0 v, i dd1 = 53 ma, i dd2 = 122 ma figure 9. nf vs frequency and temperature figure 10. gain vs frequency and temperature figure 11. oip3 vs frequency and temperature figure 12. op1db vs frequency and temperature figure 13. input return loss, output return loss, gain, & reverse isolation vs frequency figure 14. k-factor vs frequency and temperature
6 - 35 - 30 - 25 - 20 -1 5 -1 0 1 .6 1 .8 2 2.2 2.4 i r l ( d b) frequency (ghz) 85 c 25 c - 40 c - 20 -1 5 -1 0 - 5 0 1 6 1 8 2 22 24 or l ( d b) 85 c 25 c - 40 c frequency (ghz) 0.0 1 0.0 20.0 30.0 40.0 50.0 60.0 70.0 0 1 23456 v dd 1 (v) i dd 1 (ma) 0.0 20.0 40.0 60.0 80.0 1 00.0 1 20.0 1 40.0 1 60.0 0 1 23456 v dd2 (v) i dd2 (ma) 25.0 30.0 35.0 40.0 45.0 50.0 05 1 0 1 52025 pout ( d bm) o ip 3 ( d bm) 85 c 25 c - 40 c 85 c 25 c - 40 c 85 c 25 c - 40 c mga-13216 typical performance in demoboard for 1.95 ghz t a = 25 c, v dd1 = 5.0 v, v dd2 = 5.0 v, i dd1 = 53 ma, i dd2 = 122 ma figure 15. irl vs frequency and temperature figure 16. orl vs frequency and temperature figure 17. idd1 vs vdd1 and temperature f igure 18. idd2 vs vdd2 and temperature figure 19. oip3 vs output power and temperature at 1.95 ghz
7 figure 20. notes: measurements are made on 10 mils rogers r04350 trl board. figure 20 shows the input and output reference plane for q1. mga-13216 q1 typical scattering parameters, vdd1 = 5 v, idd1 = 53 ma freq ghz s11 s21 s12 s22 mag. ang. mag. ang. mag. ang. mag. ang. 0.1 0.90 -16.98 37.00 157.64 0.00 48.80 0.54 -16.53 0.5 0.58 -57.10 20.73 112.16 0.01 60.00 0.34 -25.47 0.9 0.41 -78.09 13.42 89.11 0.02 63.96 0.31 -32.94 1.0 0.39 -82.31 12.28 84.68 0.02 64.17 0.30 -35.72 1.5 0.33 -100.68 8.73 65.57 0.03 63.16 0.27 -49.87 1.9 0.32 -111.98 7.10 52.31 0.03 61.03 0.24 -65.97 2.0 0.32 -114.21 6.78 49.09 0.03 60.41 0.23 -70.70 2.5 0.32 -123.78 5.58 33.68 0.04 56.77 0.22 -97.67 3.0 0.32 -131.52 4.74 18.62 0.05 52.16 0.24 -124.98 4.0 0.34 -147.74 3.62 -10.88 0.07 42.70 0.33 -170.16 5.0 0.43 -160.90 2.85 -40.35 0.09 31.33 0.43 152.86 6.0 0.46 -173.17 2.32 -73.07 0.11 15.51 0.57 108.56 7.0 0.42 164.51 1.65 -104.52 0.11 -1.13 0.75 79.33 8.0 0.49 144.57 1.15 -128.97 0.12 -12.89 0.85 66.43 9.0 0.58 135.92 0.87 -153.00 0.13 -25.90 0.88 50.13 10.0 0.59 123.84 0.68 179.70 0.14 -43.85 0.88 25.49 11.0 0.56 104.66 0.49 153.85 0.14 -61.82 0.94 3.72 12.0 0.62 95.03 0.35 133.97 0.14 -74.64 0.96 -8.28 13.0 0.61 83.60 0.24 114.00 0.13 -88.86 0.96 -9.97 14.0 0.57 77.47 0.16 101.52 0.12 -96.62 0.95 -11.26 15.0 0.69 63.81 0.13 83.57 0.13 -112.30 0.95 -22.26 16.0 0.78 48.65 0.09 58.50 0.13 -140.70 0.92 -43.28 17.0 0.77 31.46 0.07 45.20 0.11 -172.63 0.90 -59.64 18.0 0.74 -5.87 0.09 33.11 0.06 123.08 0.87 -70.19 19.0 0.35 -60.87 0.16 -30.74 0.15 -74.65 0.81 -81.91 20.0 0.40 60.14 0.15 -133.62 0.27 -168.80 0.59 -91.00 15 12 14 11 13 9 8 7 6 5 4 2 16 10 3 1 bias ln a 2 ln a 1 rf in p ut r efere n ce p lan e rf o ut p ut r efere n ce p lan e mga-13216 q1 typical noise parameters, vdd1 = 5 v, idd1 = 53 ma freq ghz fmin db  opt mag.  opt ang. rn/50 1.50 0.51 0.214 58.2 0.0398 1.70 0.52 0.228 93.1 0.0472 1.95 0.61 0.244 112.0 0.0356 2.00 0.59 0.268 119.1 0.0430 2.20 0.58 0.242 141.0 0.0320 2.50 0.62 0.211 159.6 0.0376 2.70 0.66 0.259 -179.0 0.034 2.90 0.75 0.238 178.8 0.0438
8 figure 21. notes: measurements are made on 10 mils rogers r04350 trl board. figure 21 shows the input and output reference plane for q2. mga-13216 q2 typical scattering parameters, vdd2 = 5 v, idd2 = 122 ma freq ghz s11 s21 s12 s22 mag. ang. mag. ang. mag. ang. mag. ang. 0.1 0.87 171.29 0.14 -111.79 0.00 88.11 0.82 173.63 0.5 0.85 138.30 1.52 -81.16 0.01 96.29 0.77 145.63 0.9 0.69 96.98 5.52 -124.77 0.03 86.36 0.56 112.53 1.0 0.59 84.76 6.84 -140.78 0.03 78.00 0.46 104.58 1.5 0.18 130.00 9.14 138.88 0.05 25.63 0.23 144.28 1.9 0.30 121.10 8.18 98.15 0.05 -1.96 0.28 138.20 2.0 0.30 114.38 8.01 89.78 0.05 -7.84 0.28 135.20 2.5 0.21 68.24 7.54 51.45 0.04 -38.95 0.19 126.38 3.0 0.15 -47.90 7.51 11.84 0.03 -81.84 0.11 159.70 4.0 0.66 169.12 5.52 -78.67 0.02 135.07 0.26 144.46 5.0 0.96 114.66 2.62 -162.85 0.03 69.66 0.16 -134.63 6.0 0.90 85.78 0.78 134.59 0.04 39.96 0.44 -174.12 7.0 0.90 66.82 0.29 99.54 0.04 20.92 0.45 142.19 8.0 0.97 49.53 0.15 61.95 0.04 2.45 0.58 118.39 9.0 0.94 31.72 0.07 18.92 0.03 -23.65 0.69 89.18 10.0 0.96 16.48 0.02 -2.22 0.00 -27.52 0.68 32.18 11.0 0.96 7.02 0.03 70.89 0.02 72.90 0.85 -28.05 12.0 0.97 -0.97 0.04 37.99 0.04 32.78 0.66 -92.36 13.0 0.91 -10.74 0.03 8.76 0.04 0.04 0.57 -160.08 14.0 0.95 -16.10 0.01 -6.28 0.01 -30.22 0.55 139.91 15.0 0.98 -24.91 0.02 119.58 0.02 136.32 0.59 97.39 16.0 0.94 -41.02 0.05 107.64 0.05 111.77 0.65 67.01 17.0 0.96 -54.68 0.09 88.59 0.09 90.04 0.66 37.97 18.0 0.95 -63.44 0.15 61.31 0.15 61.66 0.70 5.63 19.0 0.88 -61.13 0.19 1.11 0.19 1.14 0.52 -29.99 20.0 0.92 -57.92 0.11 55.82 0.11 55.64 0.47 -2.21 1 5 1 2 1 4 11 1 3 9 8 7 6 5 4 2 1 6 1 0 3 1 bias l n a 2 l n a1 r f output r eference pl a ne r f i nput r eference pl a ne mga-13216 q2 typical noise parameters, vdd2 = 5 v, idd2 = 122 ma freq ghz fmin db opt mag. opt ang. rn/50 1.50 2.21 0.314 -77.0 0.3470 1.70 2.23 0.183 -62.8 0.3638 1.95 2.15 0.188 -81.0 0.2762 2.00 2.20 0.187 -81.5 0.2844 2.20 2.06 0.165 -87.0 0.2558 2.50 2.20 0.140 -99.5 0.2542 2.70 2.29 0.132 -116.7 0.2426 2.90 2.20 0.176 -149.2 0.1972
9 package dimensions pcb land patterns and stencil design p in #1 i d entific a tion ch am fer 0.30 x 45 0.40 0.10 4.00 0.10 0.00 ?0.10 0.203 r ef . 1.95 r ef . 0.65 b s c 4.00 0.10 p in 1 do t by m a r king 2.70 0.10 ex p . dap 2.70 0.10 ex p . dap 0.85 0.10 to p view si d e view b otto m view a v ag o 13216 yyww xxxx 0.30 0.10 notes: 1. all dimensions are in milimeters. 2. 4 mil stencil thickness recommended. l a n d pa ttern stencil o p enin g co mb in a tion of l a n d pa ttern & stencil o p enin g 4.00 0.65 2.70 3.96 2.16 4.00 2.70 4.00 3.96 2.70 2.16 3.96 2.16 0.40 0.30 0.65 0.36 0.27 0.65 0.40 0.30 0.36 0.27 2.70 2.16
10 device orientation tape dimensions user fee d d irection to p view en d view user fee d d irection cover t ap e c a rrier t ap e reel a v ag o 13216 yyww xxxx a v ag o 13216 yyww xxxx a v ag o 13216 yyww xxxx 10 ma x10 ma x 4.25 0.10 4.25 0.10 1.13 0.10 5.50 0.05 1.75 0.10 8.00 0.10 ? 1.50 0.10 12.0 0.30 C0.10 ? 1.50 0.25 2.00 0.05 4.00 0.10 a .k. b . 0.279 0.02 part number ordering information part number no. of devices container mga-13216-tr1g 1000 7 reel MGA-13216-BLKG 100 antistatic bag
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 ? 2005-2011 avago technologies. all rights reserved. av02-2878en - december 19, 2011 reel dimensions (7 inch reel) p s 6 p s 6 ba ck view ?178.00.5 ?55.00.5 6.25 mm e mb osse d letters letterin g thickness: 1.6 mm see d et a il "x" slot hole "b" slot hole(2x) 180 apa rt. slot hole "a": 3.00.5 mm (1x) slot hole "b": 2.50.5 mm (1x) ?13.0 65 45 r10.65 45 r5.2 e mb osse d ri b s r a ise d : 0.25 mm, wi d th: 1.25 mm 18.0* ma x. ?51.20.3 ?178.00.5 recycle lo g o front view 120 1.5 m in. ?20.2 m in. -0.2 +0.5 d et a il "x" -0.0 +1.5* 12.4 d et a il "y" (sl o t h o l e ) 3.5 1.0 see d et a il "y" front ba ck front ba ck slot hole "a" ?178.00.5


▲Up To Search▲   

 
Price & Availability of MGA-13216-BLKG

All Rights Reserved © IC-ON-LINE 2003 - 2022  

[Add Bookmark] [Contact Us] [Link exchange] [Privacy policy]
Mirror Sites :  [www.datasheet.hk]   [www.maxim4u.com]  [www.ic-on-line.cn] [www.ic-on-line.com] [www.ic-on-line.net] [www.alldatasheet.com.cn] [www.gdcy.com]  [www.gdcy.net]


 . . . . .
  We use cookies to deliver the best possible web experience and assist with our advertising efforts. By continuing to use this site, you consent to the use of cookies. For more information on cookies, please take a look at our Privacy Policy. X