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  tqp3m9041 2300 C 6 000 mhz dual lna datasheet: rev c 08 - 06 - 13 - 1 of 10 - disclaimer: subject to change without notice ? 2013 triquint www.triquint.com applications ? base station receivers ? tower mount amplifiers ? balanced amplifiers ? fdd - lte , tdd - lte, wcdma, cdma, gsm ? general purpose wireless 16 - pin 4x4 mm qfn package ordering i nformation part no. description tqp3m 9041 2 3 00 ? 6 0 00 m hz dual lna tqp3m 9041 - pcb 25 00 ? 2 7 00 mhz evaluation board standard t/r size = 2500 pieces on a 13 reel functional block diagram 7 8 6 5 14 13 15 16 12 11 10 9 1 2 3 4 gnd gnd rfin2/ vg2 rfin1/ vg1 gnd gnd rfout2/ vd2 rfout1/ vd1 dc bias 1 vpd1 ictrl1 na dc bias 2 vpd2 ictrl2 na backside paddle - rf/dc gnd pin 1 reference mark product features ? 0. 33 db nfmin (single channel) at 2600 m hz ? 2 3 00 ? 6 0 00 mhz o perational bandwidth ? gain = 18 .4 db at 260 0 mhz ? + 2 0.2 dbm input ip3 ? integrated shut - down biasing feature ? bias adjustable ? does not require negative voltage supply ? 4 x 4 mm 16 - pin qfn plastic package pin configuration pin no. label 1 rf in1/vg1 4 rf in2/vg2 12 rfout1/vd1 9 rfout2/vd2 2, 3, 10, 11 ground 16 dc bias 1 5 dc bias 2 15 vpd1 6 vpd2 14 ictrl1 7 ictrl2 backside paddle rf/dc gnd general description the tqp3m 9041 is a high linearity, ultra low noise figure dual devic e amplifier in a 4x4 mm package. at 2600 mhz in a balanced configuration, this lna provides 18 .4 db gain, 20.2 dbm iip3 and 0. 8 db noise figure. the part does not require a negative supply for operation and is bias adjustable for both drain current and vol tage. the device is housed in a green/rohs - compliant industry standard qfn package. the tqp3m 9041 consists of a single monolithic gaas e - phemt die and integrates bias circuitry as well as shut - down capability allowing the lna to be useful for both fdd an d tdd applications. the tqp3m9041 is optimized for the 2500 ? 2700 mhz band, but can be used outside of the band. triquint offers pin - compatible dual lnas for 5 00 ? 1 5 00 mhz (tqp3m9039) and 1500 ? 2300 mhz (tqp3m9040). the balanced amplifier is optimized for high performance receivers in wireless infrastructure and can be used for base - station transceivers or tower - mounted amplifiers.
tqp3m9041 2300 C 6 000 mhz dual lna datasheet: rev c 08 - 06 - 13 - 2 of 10 - disclaimer: subject to change without notice ? 2013 triquint www.triquint.com recommended operating conditions parameter min typ m ax units v pd 0 +5 v v g 0 +0.5 +1 v v d +2 +5 v i d , per channel 57 80 ma operating temp. range ? 40 + 90 c t ch (for>10 6 hrs mttf ) 190 c electrical specifications are measured at specified test conditions. specifications are not guaranteed over all recommended operating conditions. electrical specifications test conditions unless otherwise noted: v d = +4.35v, temp.= + 25 c , tuned balanced configuration . the noise figure is de - embedded to the input pin of the input hybrid coupler. parameter conditions min typ max units operational frequency range 2 3 00 6 0 00 mhz test frequency 2600 mhz gain 1 7.2 18 .4 19. 6 db ou tput p1db +2 2.5 dbm input ip3 pin= ? 13 dbm /tone, f=1 mhz +1 7 + 20.2 dbm output ip3 pout=+ 5 dbm/tone, f=1 mhz +38.2 dbm noise figure balanced configuration 0. 8 1 .15 db drain voltage, v d + 4.35 v drain current, i d single channel 35 57 80 ma po wer down control voltage, v pd on - state 0 +0.3 v off - state +2.1 v d v thermal resistance, jc junction to case - per channel 53 c/w absolute maximum ratings parameter rating storage temperature ? 65 to 150c drain voltage (v d ) + 7 v i d , v d = 5v (per channel) 300 ma input power (cw) +22 dbm input power (dc off condition) +22 dbm input p0wer (dc off condition & 10% duty cycle) +30 dbm operation of this device outside the parameter ranges given above may cause permanent damage.
tqp3m9041 2300 C 6 000 mhz dual lna datasheet: rev c 08 - 06 - 13 - 3 of 10 - disclaimer: subject to change without notice ? 2013 triquint www.triquint.com de - embedded s - parameters data test conditions unless otherwise noted: v dd =+4.35 v, i dd =57 ma, temp=+25c, 50 ohm system freq (mhz) s11 (db) s11 (ang) s21 (db) s21 (ang) s12 (db) s12 (ang) s22 (db) s22 (ang) 10 - 0.08 - 1.55 31.76 - 178.90 - 65.61 72.04 - 3.83 5.41 10 0 - 0.50 - 10.68 32.14 166.28 - 52.51 55.96 - 1.53 2.04 200 - 1.05 - 19.42 31.64 151.59 - 49.17 66.30 - 1.46 - 2.87 500 - 3.22 - 37.41 28.96 121.07 - 42.32 70.95 - 1.73 - 10.88 750 - 4.87 - 45.81 26.85 104.52 - 39.50 69.80 - 1.93 - 16.10 1000 - 6.16 - 52.39 25.05 91.86 - 37 .11 71.15 - 2.08 - 21.29 1200 - 7.06 - 57.60 23.85 83.20 - 35.62 68.87 - 2.22 - 25.66 1400 - 7.76 - 62.48 22.80 75.39 - 34.21 67.84 - 2.33 - 30.17 1600 - 8.45 - 68.59 21.91 67.93 - 32.82 65.63 - 2.46 - 35.08 1800 - 9.08 - 74.44 21.10 60.75 - 31.80 63.08 - 2.59 - 40.23 2000 - 9.57 - 82.20 20.38 53.44 - 30.84 60.61 - 2.76 - 46.28 2200 - 9.79 - 86.21 19.63 44.72 - 30.49 54.60 - 3.25 - 52.79 2300 - 9. 8 2 - 84.43 18.95 43.91 - 30.09 62.95 - 3.09 - 51.68 2400 - 9. 8 4 - 91.72 18.86 41.02 - 29.15 59.62 - 2.92 - 56.18 2500 - 9.86 - 95.33 18.62 37.63 - 2 8.66 57.75 - 2.94 - 59.74 2600 - 9.98 - 99.27 18.33 34.26 - 28.31 56.06 - 3.06 - 62.94 2700 - 9.94 - 103.51 18.07 31.03 - 27.82 54.48 - 3.03 - 66.14 2800 - 9.88 - 105.66 17.80 27.96 - 27.46 52.93 - 3.01 - 69.18 3000 - 10.07 - 111.89 17.30 21.52 - 26.72 49.72 - 3.10 - 75.44 3200 - 10.20 - 114.68 16.77 15.32 - 26.10 46.67 - 3.14 - 81.16 3400 - 9.85 - 121.75 16.42 10.10 - 25.13 44.73 - 3.09 - 86.87 3600 - 10.15 - 126.13 16.07 3.95 - 24.62 40.82 - 3.18 - 92.92 3800 - 10.35 - 131.51 15.70 - 2.03 - 23.94 38.08 - 3.26 - 98.91 4000 - 11.47 - 137.19 1 5.37 - 6.61 - 23.29 36.19 - 3.23 - 99.29 4250 - 11.77 - 148.96 15.01 - 14.80 - 22.49 31.20 - 3.43 - 107.68 4500 - 12.31 - 165.19 14.67 - 23.65 - 21.74 24.83 - 3.83 - 116.92 4750 - 14.33 173.97 14.14 - 33.60 - 21.58 15.26 - 4.72 - 126.02 5000 - 13.32 - 164.72 13.63 - 35.01 - 21 .34 29.91 - 3.76 - 126.65 5250 - 11.33 158.91 13.84 - 46.81 - 19.30 17.10 - 4.12 - 145.25 5500 - 10.50 136.31 13.58 - 57.49 - 18.52 8.06 - 4.70 - 160.18 5750 - 9.39 120.64 13.11 - 67.85 - 17.91 0.21 - 5.11 - 175.27 6000 - 7.88 105.14 12.50 - 78.40 - 17.38 - 8.68 - 5.53 168. 20 noise parameters test conditions unless otherwise noted: v dd =+ 4.3 5 v, i dd =57 ma, temp=+25c, 50 ohm system freq (ghz) nf min (db) opt (mag) opt (deg) rn ( ) 2 0.16 0.16 57.92 0.05 2.1 0.21 0.17 71.64 0.05 2.2 0.30 0.20 53.88 0.07 2.3 0.24 0.15 84.16 0.05 2.35 0.27 0.13 97.19 0.05 2.4 0.29 0.13 101.49 0.05 2.5 0.32 0.13 117.86 0.05 2.6 0.33 0.14 113.34 0.04 2.7 0.34 0.12 11 2.27 0.05 2.8 0.38 0.10 141.65 0.05 2.9 0.38 0.11 153.72 0.05 3 0.53 0.13 - 152.67 0.06 3.2 0.64 0.03 89.21 0.06 3.4 0.56 0.09 176.76 0.06 3.6 0.54 0.16 - 105.65 0.07 3.8 0. 6 4 0. 17 - 130.46 0. 08 4 0.62 0.16 - 127.44 0.06
tqp3m9041 2300 C 6 000 mhz dual lna datasheet: rev c 08 - 06 - 13 - 4 of 10 - disclaimer: subject to change without notice ? 2013 triquint www.triquint.com noise figure circles at 2600 mhz noise parameter measurements taken at the package pin reference plane . the gate and drain are biased externally through bias - tees. the achievable nfmin will worsen with on board non - ideal bias circuit. 0 1.0 1.0 -1.0 10.0 10.0 -10.0 5.0 5.0 -5.0 2.0 2.0 -2.0 3.0 3.0 -3.0 4.0 4.0 -4.0 0.2 0.2 -0.2 0.4 0.4 -0.4 0.6 0.6 -0.6 0.8 0.8 -0.8 graph 4 1 swp max 2.61ghz swp min 2.6ghz p6 p5 p4 p3 p2 p1 nfcir(5,0.05) conj(s(1,1)) p1: freq = 2.6 ghz nf = 0.33 db p2: freq = 2.6 ghz nf = 0.38 db p3: freq = 2.6 ghz nf = 0.43 db p4: freq = 2.6 ghz nf = 0.48 db p5: freq = 2.6 ghz nf = 0.53 db p6: freq = 2.6 ghz nf = 0.58 db s 11 * opt
tqp3m9041 2300 C 6 000 mhz dual lna datasheet: rev c 08 - 06 - 13 - 5 of 10 - disclaimer: subject to change without notice ? 2013 triquint www.triquint.com bill of material C tqp3m 9041 - pcb r eference des. value description manuf. part number u1 n/a dual lna triquint tqp3m 9041 x1 n/a hybrid coupler anaren x3c26p1 - 03s x2 n/a hybrid coupler anaren c2327j5003ahf r1, r 9 330 ? res, 0402, +/ - 5%, 1/10w various r8, r 15 51 ? res, 0402, +/ - 5%, 1/10 w various r4, r 12 2.7k ? res, 0402, +/ - 5%, 1/10w various r7, r 16 6.8 ? res, 0603, +/ - 5%, 1/8w various r2, r 6, r 10, r 14, l2, l4 0 ? res, 0402, +/ - 5%, 1/10w various c1, c 4 , c7, c14 22 pf cap, 0402, +/ - 5%, 50v panasonic ecj - 0ec1h220j c 11, c 19, c 21, c 22 100 pf cap, 0402, +/ - 5%, 50v panasonic ecj - 0ec1h101j c9, c 16 0.01 uf cap, 0805, +/ - 5%, 50v, x7r various c10, c 20 1000 pf cap, 0402, +/ - 10%, 50v various c12, c 13, c 17, c 18 1 pf cap, 0402, +/ - 0.05pf, 25v avx 04023j1r0abstr l3, l 6, l 7, l 9 47 nh ind, 0603, +/ - 5%, 600ma coilcraft 0402cs - 1n2xjl l8, l 10 2.2 nh ind, 0402, +/ - 5% coilcraft 0603cs - 47nxjl c3, c6, c8, c15 dnp notes: 1. r2 , r6, r10, and r14 may be replaced with metal trace in target applications . 2. l2 and l4, or an equivalent transmission line length, are required for impedance matching. tqp3m 9041 - pcb evaluation board (2500?2700 mhz) j4 j5 j3 j8 j6 j7 u1 l2 c8 x1 x2 l4 c4 c1 r2 c3 r4 c21 c15 r10 c6 r12 c22 c10 c11 c20 c19 c17 c12 c18 c13 l8 l10 c14 c6 r1 r9 r8 r15 c14 c7 l3 l6 l7 l9 r7 r16 c16 c9 see evaluation board pcb information section for pcb material and stack - up.
tqp3m9041 2300 C 6 000 mhz dual lna datasheet: rev c 08 - 06 - 13 - 6 of 10 - disclaimer: subject to change without notice ? 2013 triquint www.triquint.com application circuit C tqp3m 9041 - pcb c1 l2 l3 c3 l6 l4 c4 c6 r1 c7 r9 c14 c8 r2 r4 c21 r7 c9 c10 c11 r6 c15 r10 r12 c22 r16 c16 c20 c19 l9 r14 c17 l7 c12 l8 l10 c13 c18 x2 r8 x1 r15 j7 j6 j4 j3
tqp3m9041 2300 C 6 000 mhz dual lna datasheet: rev c 08 - 06 - 13 - 7 of 10 - disclaimer: subject to change without notice ? 2013 triquint www.triquint.com typical performance (balanced con figuration) test conditions unless otherwise noted: v d = +4.35 v, i d = 57 ma, temp.=+25c . nf is de - embedded to the input pin of the input hybrid coupler. parameter typical value units frequency 2500 2600 2700 m hz gain 1 8.1 18. 1 17.7 db noise figu re 0. 7 0. 7 7 0. 8 5 db input return loss 2 2 19 18 db output return loss 22 2 9 26 db output p1db +22.6 +22.5 +22.5 dbm iip3 (p in /tone= ?13 dbm , f = 1 mhz ) +20.1 +20.2 +20.3 dbm performance plots (balanced configuration) test conditions unless otherwise noted: v d = +4.35 v, i d = 57 ma, temp.=+25c - 10 - 5 0 5 10 15 20 2000 2500 3000 3500 4000 4500 5000 5500 6000 gain (db) frequency (mhz) gain vs. frequency +85 c +25 c ?40 c -40 -35 -30 -25 -20 -15 -10 -5 0 2000 2500 3000 3500 4000 4500 5000 5500 6000 |s11| (db) frequency (mhz) input return loss vs. frequency +85 c +25 c ?40 c -70 -60 -50 -40 -30 -20 -10 0 2000 2500 3000 3500 4000 4500 5000 5500 6000 |s22| (db) frequency (mhz) output return loss vs. frequency +85 c +25 c ?40 c 0 0.2 0.4 0.6 0.8 1 1.2 2500 2550 2600 2650 2700 nf (db) frequency (mhz) noise figure (balanced) vs. frequency +85 c +25 c ? 40 c 10 15 20 25 30 2500 2550 2600 2650 2700 iip3 (dbm) frequency (mhz) input ip3 vs. frequency ? 40 c +25 c +85 c pin= ? 13 dbm/tone 1 mhz tone spacing 0 20 40 60 80 100 120 140 0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 idq (ma) vpd (v) idq vs. vpd - 40 c +25 c +85 c
tqp3m9041 2300 C 6 000 mhz dual lna datasheet: rev c 08 - 06 - 13 - 8 of 10 - disclaimer: subject to change without notice ? 2013 triquint www.triquint.com pin configuration and description pin no. label des cription 1 rf in1/vg1 rf input pin for channel 1. gate voltage bias pin for channel 1. 2, 3, 10, 11 gnd no internal connection but should be grounded to provide pcb mounting integrity and isolation between the two rf paths. 4 rf in2/vg2 rf input pin for c hannel 2. gate voltage bias pin for channel 2. 5 dc bias 2 dc out bias for channel 2 6 vpd2 power down control voltage for channel 1 7 ictrl2 channel 2 drain current control 8, 13 na no internal connection. these pins can be grounded to provide pcb mou nting integrity. 9 rfout2/vd2 rf output pin for channel 2. gate voltage bias pin for channel 2. 12 rfout1/vd1 rf output pin for channel 1. drain voltage bias pin for channel 1. 14 ictrl1 channel 1 drain current control 15 vpd1 power down control voltag e for channel 1 16 dc bias 1 dc out bias for channel 1 backside paddle rf/dc gnd rf/dc ground. follow recommended via pattern and ensure good solder attach for best thermal and electrical performance. evaluation board pcb information triquint pcb 1 094098 material and stack - up 1 oz. cu bottom layer rogers 4003 r =3.5 typ. 1 oz. cu top layer 0.020 0.002 finished board thickness 50 o hm line dimensions: width = .0 4 0, spacing = .0 20
tqp3m9041 2300 C 6 000 mhz dual lna datasheet: rev c 08 - 06 - 13 - 9 of 10 - disclaimer: subject to change without notice ? 2013 triquint www.triquint.com mechanical information package marking and dimensions marking: part number C 3 m 9041 year, week - yyww assembly code - a a xxxx n otes : 1. all dimensi ons are in millimeters. angles are in degrees. 2. except where noted, this part outline conforms to jedec standard mo - 220, issue e (variation vggc) for thermally enhanced plastic very thin fine pitch quad flat no lead package (qfn). 3. dimension and tolerance f ormats conform to asme y14.4m - 1994. 4. the terminal #1 identifier and terminal numbering conform to jesd 95 - 1 spp -012 pcb mounting pattern n o t es : 1. all dimensions are in millimeters. angles are in degrees. 2. use 1 oz. copper minimum for top and botto m layer metal. 3. we recommend a 0.35mm (#80/.0135") diameter bit for drilling via holes and a final plated thru diameter of 0.25 mm (0.10). 4. ensure good package backside paddle solder attach for reliable operation a nd best electrical performance. gnd/thermal pad .10 c .08 c seating plane 16x 2.500.05 exp. dap 16x 0.400.05 2.500.05 exp. dap .8500.050 c 16x 0.300.05 16x 0.65 pitch pin #1 identifier chamfer 0.300 x 45 terminal #1 identifier 0.000 0.050 .203 ref. 1.95 ref. 4.0000.050 4.0000.050 triquint 3m 9041 yyww a axxxx
tqp3m9041 2300 C 6 000 mhz dual lna datasheet: rev c 08 - 06 - 13 - 10 of 10 - disclaimer: subject to change without notice ? 2013 triquint www.triquint.com pro duct compliance information esd sensitivity ratings caution! esd - sensitive device esd rating: class 1a value: 250 v and <500 v test: human body model (hbm) standard: jedec standard jesd22 - a114 esd rating: class iv value: > 10 00 v test: charged device model (cdm) standard: jedec standard jesd22 - c101 solderability comp atible with both lead - free (260 c max. reflow temperature) and tin/lead (245 c max. reflow temperature) soldering processes. package contact plating: nipdau rohs compliance this part is compliant with eu 2002/95/ec rohs directive (restrictions on the use of certain hazardous substances in electrical and electronic equipment). this product also has the following attributes: ? lead free ? halogen free (chlorine, bromine) ? antimony free ? tbbp - a (c 15 h 12 br 4 0 2 ) free ? pfos free ? svhc free msl rating msl rating : level 1 test: 260c convection reflow standard: jedec standard ipc/jedec j - std - 020 contact information for the latest specifications, additional product in formation, worldwide sales and distribution locations, and information about triquint: web: www.triquint.com tel: +1.503.615.9000 email: info - sales@triquint.com fax: +1.503.615.8902 for technical questions and application information: email: sjcapplications.engineering@triquint.com important notice the information contained herein is bel ieved to be reliable. triquint makes no warranties regarding the information contained herein. triquint assumes no responsibility or liability whatsoever for any of the information contained herein. triquint assumes no responsibility or liability whatso ever for the use of the information contained herein. the information contained herein is provided "as is, where is" and with all faults, and the entire risk associated with such information is entirely with the user. all information contained herein is subject to change without notice. customers should obtain and verify the latest relevant information before placing orders for triquint products. the information contained herein or any use of such information does not grant, explicitly or implicitly, to any party any patent rights, licenses, or any other intellectual property rights, whether with regard to such information itself or anything described by such information. triquint products are not warranted or authorized for use as critical components in medical, life - saving, or life - sustaining applications, or other applications where a failure would reasonably be expected to cause severe personal injury or death.


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