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  features ? high gain: 21 db at 900 to 1500 mhz typical ? high output power: p sat = +12.5 dbm at 900 mhz +11 dbm at 1500 mhz ? low bias voltage: 3.0 v typical, 2.7 v minimum ? super small package: sot-363 ? tape and reel packaging option available UPC2771TB 3v, super minimold medium power si mmic amplifier description nec's UPC2771TB is a silicon monolithic integrated circuit which is manufactured using the nesat? iii process. the nesat iii process produces transistors with f t approaching 20 ghz. the UPC2771TB is pin compatible and has comparable performance as the larger upc2771t, so it is suitable for use as a replacement to help reduce system size. the ic is housed in a 6 pin super minimold or sot-363 package. operating on a 3 volt supply, this ic is ideally suited for hand-held, portable designs. nec's stringent quality assurance and test procedures ensure the highest reliability and performance. electrical characteristics (t a = 25 c, z l = z s = 50 ? , v cc = 3.0 v) gain vs. frequency and temperature frequency, f (ghz) gain, g s (db) part number UPC2771TB package outline s06 symbols parameters and conditions units min typ max i cc circuit current (no signal) ma 36 45 g s small signal gain, f = 900 mhz db 19 21 24 f = 1500 mhz db 18 21 24 f u upper limit operating frequency (the gain at f u is 3 db down from the gain at 100 mhz) ghz 1.8 2.2 p 1db 1 db compressed output power, f = 900 mhz dbm +9 +11.5 f = 1500 mhz dbm +7 +9.5 p sat saturated output power, f = 900 mhz dbm +12.5 f = 1500 mhz dbm +11 nf noise figure, f = 900 mhz db 6 7.5 f = 1500 mhz db 6 7.5 rl in input return loss, f = 900 mhz db 10 14 f = 1500 mhz db 10 14 rl out output return loss, f = 900 mhz db 6.5 9.0 f = 1500 mhz db 5.5 8.5 isol isolation, f = 900 mhz db 25 30 f = 1500 mhz db 25 30 oip3 ssb outputthird order intercept point f = 900, 902 mhz, p out = +4 dbm dbm +13 f = 1500, 1502 mhz, p out = +4 dbm dbm +10 p adj1 adjacent channel power 1, f = 900 mhz, /4 qpsk wave 1 , p out = +7 dbm ? f = 50 khz dbc -61 ? f = 100 khz dbc -72 p adj2 adjacent channel power 2, f = 1.5 ghz, /4 qpsk wave 1 , p out = +7 dbm ? f = 50 khz dbc -59 ? f = 100 khz dbc -72 california eastern laboratories note: 1. /4 qpsk modulated wave input, data rate 42 kbps, filter roll off = 0.5 0.1 0.3 1.0 3.0 24 22 20 18 16 14 t a = -40? c t a = +25? c t a = +85? c v cc = 3.0 v +85? c +25? c -40? c
circuit current vs. voltage 0.1 0.3 1.0 3.0 24 22 20 18 16 14 12 10 8 6 v cc = 2.7 v v cc = 3.0 v v cc = 3.3 v nf g s v cc = 2.7v v cc = 3.0v v cc = 3.3v v cc = 3.3v v cc = 3.0 v v cc = 2.7 v 7 5 3 supply voltage, v cc (v) circuit current, i cc (ma) circuit current vs. temperature -60 -40 -20 0 20 40 60 80 100 50 40 30 20 10 0 circuit current, i cc (ma) temperature ( c) frequency, f (ghz) gain, g s (db) noise figure, nf (db) gain and noise figure vs. frequency and voltage typical performance curves (t a = 25 c) UPC2771TB absolute maximum ratings 1 (t a = 25 c) symbols parameters units ratings v cc supply voltage v 3.6 i cc total supply current ma 77.7 p in input power dbm +13 p t total power dissipation 2 mw 200 t op operating temperature c -40 to +85 t stg storage temperature c -55 to +150 notes: 1. operation in excess of any one of these parameters may result in permanent damage. 2. mounted on a 50 x 50 x 1.6 mm epoxy glass pwb (t a = 85 c). recommended operating conditions symbols parameters units min typ max v cc supply voltage v 2.7 3 3.3 t op operating temperature c -40 +25 +85 test circuit 1000 pf v cc 50 ? out in l=1000 nh 2, 3, 5 1 6 4 50 ? 1000 pf 1000 pf 0 1 2 3 4 50 40 30 20 10 0 insertion power gain vs. frequency and temperature insertion power gain, gp (db) frequency, f (ghz) t a = +25 c t a = -40 c t a = +85 c 24 22 20 18 16 14 0.1 0.3 1.0 3.0 v cc = 3.0 v
UPC2771TB typical performance curves (t a = 25 ) output power vs. input power and temperature output power, p out (dbm) input power, p in (dbm) input power, p in (dbm) output power, p out (dbm) output power vs. input power and voltage 0.1 0.3 1.0 3.0 0 -10 -20 -30 -40 -50 v cc = 3.0v frequency, f (ghz) isolation, isol (db) isolation vs. frequency output power, p out (dbm) -25 -20 -15 -10 -5 0 15 10 5 0 -5 f = 0.9 ghz v cc = 3.0 v v cc = 3.3 v v cc = 2.7 v input power, p in (dbm) frequency, f (ghz) return loss (db) input return loss and output return loss vs. frequency 0.1 0.3 1.0 3.0 v cc = 3.0 v 0 -10 -20 -30 -40 rl out rl in output power vs. input power and voltage f = 0.9 ghz v cc = 3.0 v t a = +85 c t a = +85 c t a = -40 c t a = +25 c t a = +25 c t a = -40 c +15 -15 -20 -25 +10 +5 0 0 -5 -5 -10 f = 1.5 ghz v cc = 3.0 v +15 -25 -20 -15 -10 -5 0 +10 +5 0 -5 t a = +25 c t a = +85 c t a = -40 c t a = +25 c t a = -40 c t a = +85 c f = 1.5 ghz +15 -25 -20 -15 -10 -5 0 +10 -10 +5 0 -5 v cc = 2.7 v v cc = 3.3 v v cc = 3.0 v output power vs. input power and temperature input power, p in (dbm) output power, p out (dbm)
+15 +10 +5 0 -5 -10 -25 -20 -15 -10 -5 0 f = 1.9 ghz v cc = 3.3 v v cc = 3.0 v v cc = 2.7 v +15 +10 +5 0 -5 -10 -25 -20 -15 -10 -5 0 f = 1.9 ghz v cc = 3.0 v t a = +85 c t a = -40 c t a = +25 c +17 +15 +13 +11 +9 +7 +5 0.1 0.3 1.0 3.0 v cc = 3.0 v v cc = 2.7 v v cc = 3.3 v p in = -3 dbm +17 +15 +13 +11 +9 +7 +5 0.1 0.3 1.0 3.0 t a = 25 c t a = 85 c t a = -40 c p in = -3 dbm f 1 = 0.900 ghz f 2 = 0.902 ghz -60 -50 -40 -30 -20 -10 0 -15 -10 -5 0 +5 +10 v cc = 2.7 v v cc = 3.0 v v cc = 3.3 v f 1 = 1.500 ghz f 2 = 1.502 ghz -60 -50 -40 -30 -20 -10 0 -15 -10 -5 0 +5 +10 v cc = 3.3 v v cc = 3.0 v v cc = 2.7 v UPC2771TB output power vs. input power and voltage output power, p out (dbm) input power, p in (dbm) output power vs. input power and voltage input power, p in (dbm) output power, p out (dbm) saturated output power vs. frequency and voltage frequency, f (ghz) saturated output power, p o(sat) (dbm) saturated output power vs. frequency and temperature frequency, f (ghz) saturated output power, p o(sat) (dbm) third order intermodulation distortion vs. output power of each tone and voltage third order intermodulation distortion vs. output power of each tone and voltage third order intermodulation distortion, im 3 (dbc) output power of each tone, p o(each) (dbm) third order intermodulation distortion, im 3 (dbc) output power of each tone, p o(each) (dbm)
frequency s 11 s 21 s 12 s 22 k ghz mag ang mag ang mag ang mag ang 0.1 0.045 19.7 10.570 -4.7 0.028 0.8 0.327 -6.2 1.65 0.2 0.057 37.0 10.638 -9.5 0.028 5.0 0.325 -11.5 1.63 0.3 0.075 41.3 10.775 -14.1 0.029 8.6 0.323 -16.2 1.58 0.4 0.090 43.3 11.004 -19.4 0.030 11.1 0.326 -20.9 1.49 0.5 0.105 42.2 11.275 -24.4 0.030 14.9 0.331 -26.4 1.45 0.6 0.118 40.2 11.586 -30.0 0.031 15.8 0.342 -32.0 1.37 0.7 0.138 34.9 12.041 -35.9 0.031 19.8 0.350 -37.3 1.29 0.8 0.163 32.5 12.367 -42.1 0.032 20.1 0.359 -42.8 1.20 0.9 0.186 29.4 12.844 -48.8 0.032 23.2 0.361 -49.4 1.15 1.0 0.202 26.3 13.300 -56.6 0.032 23.9 0.371 -56.1 1.11 1.1 0.219 21.7 13.771 -64.6 0.033 24.9 0.389 -62.5 1.03 1.2 0.233 15.4 14.082 -73.5 0.033 26.6 0.400 -69.3 0.99 1.3 0.252 8.4 14.365 -83.2 0.036 28.8 0.405 -75.4 0.92 1.4 0.267 -0.1 14.336 -92.6 0.036 30.0 0.402 -83.6 0.91 1.5 0.285 -6.8 14.142 -102.4 0.036 32.0 0.406 -91.6 0.90 1.6 0.293 -13.9 13.929 -112.0 0.037 31.6 0.413 -99.3 0.89 1.7 0.304 -20.9 13.428 -121.6 0.039 32.5 0.414 -105.8 0.88 1.8 0.290 -28.1 12.722 -131.0 0.038 34.7 0.401 -113.7 0.96 1.9 0.285 -35.3 11.966 -139.6 0.038 36.1 0.387 -120.8 1.03 2.0 0.273 -41.8 11.232 -147.5 0.038 37.4 0.378 -127.6 1.09 2.1 0.267 -47.4 10.500 -154.8 0.039 39.1 0.366 -133.1 1.14 2.2 0.254 -51.6 9.815 -161.7 0.040 41.4 0.356 -138.0 1.20 2.3 0.237 -57.1 9.168 -168.0 0.041 43.7 0.342 -142.8 1.28 2.4 0.221 -61.1 8.570 -173.7 0.041 48.3 0.325 -148.3 1.37 2.5 0.212 -68.8 7.967 -179.7 0.042 48.3 0.322 -152.6 1.44 2.6 0.208 -72.2 7.507 174.9 0.043 50.8 0.314 -156.7 1.49 2.7 0.202 -74.1 7.004 170.0 0.045 53.7 0.309 -160.1 1.53 2.8 0.190 -76.3 6.667 164.7 0.047 54.2 0.303 -164.0 1.56 2.9 0.178 -76.7 6.336 160.7 0.051 57.7 0.292 -167.8 1.55 3.0 0.154 -82.3 6.003 155.6 0.051 56.5 0.287 -172.8 1.62 3.1 0.147 -88.0 5.772 151.3 0.054 59.3 0.279 -176.4 1.61 v cc = v out = 3.0 v, i cc = 35 ma typical scattering parameters (t a = 25 c) 0.1 ghz 2.0 ghz 3.0 ghz 0.1 ghz 3.0 ghz 2.0 ghz s 11 frequency s 22 frequency UPC2771TB
5-212 UPC2771TB outline dimensions (units in mm) UPC2771TB package outline s06 lead connections 2 1 4 5 6 2 1 4 5 6 33 c2h 1. input 2. gnd 3. gnd 4. output 5. gnd 6. v cc (top view) (bottom view) part number qty UPC2771TB-e3-a 3k/reel ordering information note: embossed tape, 8 mm wide. pins 1, 2 and 3 face perforated side of tape. +0.1 -0 dot on back side +0.1 -0.5 0 ~0.1 0.2 0.15 3 2 1 6 5 4 0.65 1.3 2.0 0.2 0.65 2.1 0.1 1.25 0.1 0.9 0.1 0.7 pin pin applied description internal no. name voltage equivalent (v) circuit 1 input ? signal input pin. an internal matching circuit, configured with resistors, enables 50 ? connection over a wide bandwidth. a multi-feedback circuit is designed to cancel the deviations of h fe and resistance. this pin must be coupled to the signal source with a blocking capacitor. 4 output signal output pin. connect an inductor between this pin and vcc to supply current to the internal output transistors. 6 vcc 2.7 to 3.3 power supply pin. this pin should be externally equipped with a bypass capacitor to minimize ground impedance. 2 gnd 0 ground pins. these pins should be connected to system ground with minimum inductance. ground pattern on the board should be formed as wide as possible. all the ground pins must be connected together with wide ground pattern to minimize impedance difference. 1 3 2 5 4 6 pin description exclusive north american agent for rf, microwave & optoelectronic semiconductors california eastern laboratories headquarters ?4590 patrick henry drive ?santa clara, ca 95054-1817 ?(408) 988-3500 ?telex 34-6393 ?fax (408) 988-0279 24-hour fax-on-demand: 800-390-3232 (u.s. and canada only) ?internet: http://www.cel.com 7/20/2000 data subject to change without notice life support applications these nec products are not intended for use in life support devices, appliances, or systems where the malfunction of these prod ucts can reasonably be expected to result in personal injury. the customers of cel using or selling these products for use in such applications do so at their own risk and agree to fully indemnify cel for all damages resulting from such improper use or sale.
5-213 4590 patrick henry drive santa clara, ca 95054-1817 telephone: (408) 919-2500 facsimile: ( 408 ) 988-0279 subject: compliance with eu directives cel certifies, to its knowledge, that semiconductor and laser products detailed below are compliant with the requirements of european union (eu) directive 2002/95/ec restriction on use of hazardous substances in electrical and electronic equipment (rohs) and the requirements of eu directive 2003/11/ec restriction on penta and octa bde. cel pb-free products have the same base part number with a suffix added. the suffix ? indicates that the device is pb-free. the ?z suffix is used to designate devices containing pb which are exempted from the requirement of rohs directive (*). in all cases the devices have pb-free terminals. all devices with these suffixes meet the requirements of the rohs directive. this status is based on cel? understanding of the eu directives and knowledge of the materials that go into its products as of the date of disclosure of this information. restricted substance per rohs concentration limit per rohs (values are not yet fixed) concentration contained in cel devices -a -az lead (pb) < 1000 ppm not detected (*) mercury < 1000 ppm not detected cadmium < 100 ppm not detected hexavalent chromium < 1000 ppm not detected pbb < 1000 ppm not detected pbde < 1000 ppm not detected if you should have any additional questions regarding our devices and compliance to environmental standards, please do not hesitate to contact your local representative. important information and disclaimer: information provided by cel on its website or in other communications concerting the substan ce content of its products represents knowledge and belief as of the date that it is provided. cel bases its knowledge and belief on information provided by third parties and makes no representation or warranty as to the accuracy of such information. efforts are underway t o better integrate information from third parties. cel has taken and continues to take reasonable steps to provide representative and ac curate information but may not have conducted destructive testing or chemical analysis on incoming materials and chemicals. cel and ce l suppliers consider certain information to be proprietary, and thus cas numbers and other limited information may not be available for release. in no event shall cel? liability arising out of such information exceed the total purchase price of the cel part(s) at issue s old by cel to customer on an annual basis. see cel terms and conditions for additional clarification of warranties and liability.


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