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  t q l9043 1500?C ? 2 7 00? mhz bypass lna datasheet: rev . f 0 9 - 25 - 14 - 1 of 10 - disclaimer: subject to change without notice ? 201 4 triquint www.triquint.com applications ? base station receive rs ? tower mount amplifiers ? repeaters ? fdd - lte, tdd - lte, wcdma ? general purpose wireless 10 - pin 3 ? x ? 3 mm dfn package product features ? 1500 ? C ? 2 7 00 ?mhz operational b andwidth ? lna w ith i ntegrated b ypass m ode ? ability to t urn lna and b ypass m ode off ? ultra l ow n oise : 0. 6 ? db nf ? 1 7.5 db gain ? + 3 3 dbm output ip3 ? + 4 1 dbm input ip3 in b ypass m ode ? internally m atched ? positive s upply o nly : + 3.3 ?v to + 5 ? v ? 3 ? x ? 3 mm 10 - pin dfn p lastic p ackage functional block diagram backside pad - rf/dc gnd pin 1 reference mark package topside v ctrl1 n/c rf out n/c v dd v ctrl2 n/c rf in n/c gnd 10 9 8 7 1 2 3 4 5 6 general description the tql 9043 is a n ul tra low noise , high - linearity gain block amplifier with a n integrated bypass mode functi on . at 1900?mhz , th is amplifier typically provides 1 7.5 db gain, +3 3 ? dbm oip3 and 0. 6 ? db noise figure while drawing 8 0 ? ma current from a + 5 ? v supply. the tql 9043 also provides high linearity in the bypass mode with + 4 1? dbm input ip3. the tql9043 is internally matched using a high performance e - phemt process and only requires four external components for operation from a single positive supply: an external rf choke and blocking/bypass capacitors. this low noise amplifier contains an internal active bias circuit to maintain high performance over temperature. the tql9043 covers the 1500 ? C ? 2 7 00 ? mhz frequency band and is targeted for wireless infrastructure . the tql9043 is available in a 3 ? x ? 3 ? mm dfn package and is pin compatible with the 500? C ? 2 0 00? mhz tql9042 and 1 7 00 ? C ? 2 7 00 ? mhz tql9044. pin configuration pin no. label 1 v ctrl2 2, 4, 7, 9 n /c 3 rfin 5 gnd 6 v dd 8 rfout 10 v ctrl1 backside paddle rf/dc gnd ordering information part no. description tql9043 1500 ? C ? 2 7 00 ? mhz bypass lna tql9043 - pcb evaluation board standard t/r size = 2500 pieces on a 7 reel
t q l9043 1500?C ? 2 7 00? mhz bypass lna datasheet: rev . f 0 9 - 25 - 14 - 2 of 10 - disclaimer: subject to change without notice ? 201 4 triquint www.triquint.com absolute maximum ratings parameter rating storage temperature ?65 to + 150 ? c drain voltage (v dd ) +7 ? v input power (cw) +2 4 ?dbm operation of this device outside the parameter ranges given above may cause permanent damage. recommended operating conditions parameter min typ max units dra in voltage (v dd ) +3.3 +5.0 +5.25 v operating temp. range ?40 +85 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 ot herwise noted: v dd ? = ? +5 ? v, temp. ? = ? +25 ? c. tested in an unmatched 50 ? ? fixture. input trace loss up to package pin de - embedded on noise figure data. parameter conditions min typ max units operational frequency range 1500 2700 mhz test frequency 1900 mhz gain bypass off , lna on 1 6 17.5 19 db input return loss bypass off , lna on 7.2 db output return loss bypass off , lna on 13 db noise figure bypass off , lna on 0.6 0.9 db output p1db bypass off , lna on +19.4 dbm output ip3 bypass off, ln a on pout=+5 dbm ? / ? tone, f=1 ? mhz +28.5 +33 dbm insertion loss bypass on , lna off 1.6 3. 0 db return loss bypass on , lna off 10 db input ip3 bypass on , lna off pin ? = ? +6.5 ? dbm ? / ? tone, f=1 ? mhz +41 dbm isolation lna off, bypass off 13. 5 db drain voltage, v dd + 5 v control voltage, v 1 , v 2 ? (1) v ih 2.4 v dd v v il 0 0.4 v current, i d lna on, bypass off 40 80 120 ma current, i d bypass on, lna off 3 ma switching speed bypass to lna mode 960 ns lna to bypass mode 76 ns thermal resistance, jc channel t o case 44 c/w notes: 1. the limits shown are true when using the external resistive divider values as shown on the triquint app board. control truth table v ctrl2 v ctrl1 state low high lna off, bypass off high high lna off, bypass on low low lna on, bypass off high low reserved (do not use) control voltage limits (at device pins) state bias condition v ctrl1 low 0.1 v high 0.52 v v ctrl2 low 0.4 v high 1.3 v
t q l9043 1500?C ? 2 7 00? mhz bypass lna datasheet: rev . f 0 9 - 25 - 14 - 3 of 10 - disclaimer: subject to change without notice ? 201 4 triquint www.triquint.com tql9043 - pcb evaluation board u1 c3 c4 r4 r3 r2 l1 c1 c2 c5 c6 r1 j2 rf output j8 gnd j3 v dd j1 rf input l1 18 nh (0603) c2 100 pf c1 100 pf c6 1 uf c5 100 pf r2 0 ? r1 0 ? u1 10 9 8 7 1 2 3 4 5 6 j4 v2 r3 39k ? j5 v1 r4 10k ? bill of material C tql9043 - pcb reference des. value description manuf. part number u1 n/a bypass lna triquint tql9043 c1, c 2, c3, c4, c5 100 pf cap, 0402, +/ - 5%, 50v panasonic ecj - 0ec1h101j c6 1.0 uf cap., chip, 0402, 10%, 10v, x5r various r1, r2 0 ? res, 0402, +/ - 5%, 1/10w various r3 3 9 k res, 0402, +/ - 5%, 1/10w various r4 10k res, 0402, +/ - 5%, 1/10w various l1 18 nh ind, 0603, +/ - 5% coilcraft 0603cs - 18nxjl power - up and power - d own s equencing v dd v ctrl1 & v ctrl2 lna on, bypass off power - up 1 st 2 nd power - down 1 st 2 nd lna off, bypass on power - up 1 st 2 nd power - down 1 st 2 nd
t q l9043 1500?C ? 2 7 00? mhz bypass lna datasheet: rev . f 0 9 - 25 - 14 - 4 of 10 - disclaimer: subject to change without notice ? 201 4 triquint www.triquint.com typical performance (bypass mode ) test conditions unless otherwise noted: v dd ? = ? +5 ? v, i d ? = ? 3 ? ma, temp. ? = ? +25 ? c. parameter typical value units frequency 1700 1900 2100 mhz insertion loss 1. 6 1. 8 1. 9 db input return loss 9 8.5 8.2 db output return loss 1 0.4 1 0 9.8 db input ip3 (pin ? / ? tone ? = ? +6.5 ? dbm, f ? = ? 1 ? mhz) +40. 7 +4 0. 8 +4 0.8 dbm typical performance (lna mode) test cond itions unless otherwise noted: v dd ? = ? +5 ? v, i d ? = ? 8 0 ? ma, temp. ? = ? +25 ? c. input trace loss de - embedded in noise figure data. parameter typical value units frequency 1700 1900 2100 mhz gain 1 8.4 1 7.5 1 6.6 db noise figure 0. 55 0.5 9 0. 65 db input return loss 6.8 7. 1 7. 2 db output return loss 1 3.2 1 3 1 3 db output p1db +19.5 +19.4 +19.6 dbm oip3 (pout ? / ? tone ? = ? +5 ? dbm, f ? = ? 1 ? mhz) +3 3.2 +3 3 + 3 3 dbm typical performance (lna off, bypass off mode) test conditions unless otherwise noted: v dd ? = ? +5 ? v, temp. ? = ? +25 ? c. parameter typical value units frequency 1700 1900 2100 mhz isolation 12.7 13.5 14 db
t q l9043 1500?C ? 2 7 00? mhz bypass lna datasheet: rev . f 0 9 - 25 - 14 - 5 of 10 - disclaimer: subject to change without notice ? 201 4 triquint www.triquint.com performance plots test conditions unless otherwise noted: v dd ? = ? +5 ? v, i d ? = ? 8 0 ? ma 5 10 15 20 25 30 1500 1700 1900 2100 2300 2500 2700 gain (db) gain vs. frequency (lna mode) +85 c +25 c ?40 c -15 -10 -5 0 1500 1700 1900 2100 2300 2500 2700 return loss (db) input return loss vs. frequency (lna mode) +85 c +25 c ?40 c -20 -15 -10 -5 0 1500 1700 1900 2100 2300 2500 2700 return loss (db) output return loss vs. frequency (lna mode) +85 c +25 c ?40 c -5 -4 -3 -2 -1 0 1500 1700 1900 2100 2300 2500 2700 gain (db) gain vs. frequency (bypass mode) +85 c +25 c ?40 c -15 -10 -5 0 1500 1700 1900 2100 2300 2500 2700 return loss (db) input return loss vs. frequency (bypass mode) +85 c +25 c ?40 c -15 -10 -5 0 1500 1700 1900 2100 2300 2500 2700 return loss (db) output return loss vs. frequency (bypass mode) +85 c +25 c ?40 c 30 32 34 36 38 40 1700 1800 1900 2000 2100 2200 oip3 (dbm) oip3 vs. frequency (lna mode) 1mhz tone spacing pout/tone = +5 dbm +85 c +25 c ?40 c 30 33 36 39 42 45 1700 1800 1900 2000 2100 2200 iip3 (dbm) iip3 vs. frequency (bypass mode) 1mhz tone spacing pin/tone = +6.5 dbm +85 c +25 c ?40 c 15 17 19 21 23 25 1700 1800 1900 2000 2100 2200 p1db (dbm) frequency (mhz) p1db vs. frequency +85 c +25 c ?40 c 0 0.2 0.4 0.6 0.8 1 1.2 1.4 1700 1800 1900 2000 2100 2200 nf (db) noise figure vs. frequency +85 c +25 c ?40 c -20 -15 -10 -5 0 1500 1700 1900 2100 2300 2500 2700 isolation (db) isolation vs. frequency lna off, bypass off temp.=+25 c
t q l9043 1500?C ? 2 7 00? mhz bypass lna datasheet: rev . f 0 9 - 25 - 14 - 6 of 10 - disclaimer: subject to change without notice ? 201 4 triquint www.triquint.com reference design C optimized return loss u1 c3 c4 r4 r3 r2 l1 c1 c2 c5 c6 r1 c7 l2 j2 rf output j8 gnd j3 v dd l1 5.6 nh (0603) c2 100 pf c6 1 uf c5 100 pf r3 39k ? j5 v1 r2 0 ? r1 0 ? u1 10 9 8 7 1 2 3 4 5 6 j4 v2 c7 1 pf l2 2.7 nh j1 rf input c1 3.3 pf r4 10k ? performance plots test conditions unless otherwise noted: v dd ? = ?+5 ? v, i d ?= ?8 0 ?ma - 5 0 5 10 15 20 1700 1800 1900 2000 2100 gain (db) frequency (mhz) gain vs. frequency bypass mode lna mode - 30 - 25 - 20 - 15 - 10 - 5 0 1700 1800 1900 2000 2100 |s11| (db) frequency (mhz) input return loss vs. frequency bypass mode lna mode - 20 - 15 - 10 - 5 0 1700 1800 1900 2000 2100 |s22| (db) frequency (mhz) output return loss vs. frequency bypass mode lna mode 32 34 36 38 40 42 44 46 1700 1800 1900 2000 2100 oip3 (dbm) frequency (mhz) oip3 vs frequency bypass mode lna mode 19 20 21 22 23 1700 1800 1900 2000 2100 p1db (dbm) frequency (mhz) p1db vs frequency lna mode 0.0 0.2 0.4 0.6 0.8 1.0 1700 1800 1900 2000 2100 noise figure (db) frequency (mhz) noise figure vs frequency lna mode
t q l9043 1500?C ? 2 7 00? mhz bypass lna datasheet: rev . f 0 9 - 25 - 14 - 7 of 10 - disclaimer: subject to change without notice ? 201 4 triquint www.triquint.com switching speed switching speed measurement on t riquint application board transition measurements units bypass to lna mode (50% v1/v2 C 10% rf) 960 ns lna to bypass mode (50% v1/v2 C 90% rf) 76 ns bypass to lna mode (50% v1/v2 C 10% rf) lna to bypass mode (50% v1/v2 C 90% rf) rf signal control signal control signal rf signal freq = 1900 mhz fm = 1 khz pout = 5 dbm freq = 1900 mhz fm = 1 khz pout = 5 dbm
t q l9043 1500?C ? 2 7 00? mhz bypass lna datasheet: rev . f 0 9 - 25 - 14 - 8 of 10 - disclaimer: subject to change without notice ? 201 4 triquint www.triquint.com pin configuration and descript ion backside pad - rf/dc gnd pin 1 reference mark package topside v ctrl1 n/c rf out n/c v dd v ctrl2 n/c rf in n/c gnd 10 9 8 7 1 2 3 4 5 6 pin no. label description 1 v ctrl2 control pin for bypass mode and lna mode. internal resistor divider. refer to truth table. 2, 4, 7, 9 n/c no internal connection. these pins can be grounded to provide pcb mounting integrity. 3 rfin rf inp ut pin. dc block required. 5 gnd rf/dc ground pin. 6 v dd supply voltage pin. 8 rfout rf output pin . dc block required. 10 v ctrl1 control pin for bypass mode and lna mode. requires external resistor divider. refer to truth table. 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 1100233 material and stack - up rogers 4350b 1 oz. cu bottom layer rogers 4350b rogers 4450f 1 oz. cu top layer 1 oz. cu inner layer 1 oz. cu inner layer 0.062" 0.006" finished board thickness 0.010" 0.010" 50 ohm line dimensions: width = .020, spaci ng = .032
t q l9043 1500?C ? 2 7 00? mhz bypass lna datasheet: rev . f 0 9 - 25 - 14 - 9 of 10 - disclaimer: subject to change without notice ? 201 4 triquint www.triquint.com mechanical information package marking and dimensions marking: part number C 9043 year/week C yyww lot code C axxxx 1. all dimensions are in millimeters. angles are in degrees. 2. except where noted, this part outline conforms to jedec standard mo - 229. 3. dimension and tolerance formats conform to asme y14.4m - 1994. 4. the terminal #1 identifier and terminal numbering conform to jesd 95 - 1 spp -012. pcb mounting pattern notes: 1. all dimensions are in millimeters. angles are in degrees. 2. use 1 oz. copper minimum for top and bottom layer metal. 3. vias are required under the backside paddle of this device for proper rf/dc grounding and thermal dissipation. we recommend a 0.35mm (#80/.0135") diameter bit for drilling via holes and a final pl ated thru diameter of 0.25 mm (0.10). 4. ensure good package backside paddle solder attach for reliable operation and best electrical performance.
t q l9043 1500?C ? 2 7 00? mhz bypass lna datasheet: rev . f 0 9 - 25 - 14 - 10 of 10 - disclaimer: subject to change without notice ? 201 4 triquint www.triquint.com product compliance information esd sensitivity caution! esd - sensitive device e sd rating: class 1 a value: 250 v to 500 v test: human body model (hbm) standard: jedec standard jesd22 - a114 esd rating: class c3 value: > 1000v test: charged device model (cdm) standard: jedec standard jesd22 - c101 solderability compatible with both lead - free (260 ? c max imum reflow temperature) and tin/lead (245 ? c max imum 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 information, 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 believed 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 whatsoever for the use of the information contained herein. the information contained herein is provi ded "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 inform ation 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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