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  TQP9218 high linearity 0.25 w small cell pa data sheet, august 17 , 2017 | subject to change without notice - 1 of 9 - www.qorvo.com ? 14 pin 7 ? x ? 7 ? mm leadless smt package product features ? 1 805 ?C? 1880 ? mhz frequency range ? fully integrated, 2-stage power amplifier ? internally matched 50?? input/output ? ? 48 ? dbc aclr at pavg = +24 ? dbm ? 31.5 ? db gain ? 15% pae at +24 ? dbm ? >1 5db input / output return loss ? 2 12 ? ma quiescent current ? on -chip control bias and temp. comp circuit ? rohs compliant ? covers bands 3 , 9 general description the TQP9218 is a high-linearity two-stage power amplifier in a low-cost surface-mount package with on-chip bias control and temperature compensation circuits. the amplifier provides 31.5 db gain over the 1805?C?1880 mhz frequency range and be utilized without the need of linearization circuitry such as dpd it is able to achieve ?48?dbc aclr at +24 dbm output power using 20 mhz lte signal (9.5 db par). the TQP9218 integrates two high performance amplifier stages onto a module to allow for a compact system design and requires very few external components for operation. the product is bias adjustable allowing the amplifier s power consumption to be optimized and is available in a lead-free/rohs- compliant 7?x?7?mm surface mount package. the TQP9218 is targeted for small cell or enterprise femtocell basestation applications, distributed antenna systems (das), repeaters, and/or booster amplifiers. applications ? small cell?/?picocell ? enterprise femtocell ? customer premises equipment (cpe) ? data cards and terminals ? distributed antenna systems (das) ? booster amps, repeaters functional block diagram top view ordering information part no. description TQP9218 2,500 pieces on a 13 reel (standard) TQP9218-pcb 1 805 ? 1 880 ? mhz evaluation board backside paddle rf/dc gnd 7 6 1 10 8 9 11 12 13 14 23 4 5 match match match vref gnd gnd gnd gnd gnd gnd gnd gnd vcc2 vcc1 rf in rf out nc biasing circuit downloaded from: http:///
TQP9218 high linearity 0.25 w small cell pa data sheet, august 17 , 2017 | subject to change without notice - 2 of 9 - www.qorvo.com ? recommended operating conditions parameter min typ max units v cc1 , v cc2 +3.6 +4.5 +5.25 v v ref +2.75 +2.85 +2.95 v t case ?40 +85 c tj at t case max + 165 c electrical specifications are measured at specified test cond itions. specifications are not guaranteed over all recommended operating conditions. absolute maximum ratings parameter rating storage temperature ?55 to +150?c rf input power, cw, 50, t=+25 ? c + 13 dbm supply voltage (v cc ) 6 v v ref +3.5 v exceeding any one or a combination of the absolute maximu m rating conditions may cause permanent damage to the device. ext ended application of absolute maximum rating conditions to the dev ice may reduce device reliability. electrical specifications parameter conditions (1) min typ max units frequency range 1805 1880 mhz test frequency 1840 mhz gain 28.5 31.5 34.5 db input return loss 10 17 db output return loss 10 16 db output p1db +33 dbm aclr p out = +24 dbm, 20 mhz lte e-tm1.1, 9.5 db par ?48 - 45 db c aclr p out = +24 dbm, 2x 20 mhz lte e-tm1.1, 9.5 db par - 40 dbc aclr p out = +24 dbm, 15 mhz lte e-tm1.1, 9.5 db par ?52 db c aclr p out = +24 dbm, 10 mhz lte e-tm1.1, 9.5 db par ?52 db c aclr p out = +24 dbm, 5 mhz lte e-tm1.1, 9.5 db par ?52 db c efficiency p out = +24 dbm, 20 mhz lte e-tm1.1, 9.5 db par 13 15.2 % spurious output level p out = +24 dbm, 10 :1 vswr <60 dbc vswr survivability no degradation or failure 10:1 - quiescent current v cc1 + v cc2 160 212 280 ma reference current temp = ?40c to +85c, v ref = +2.85v 6.5 10 ma leakage current vcc = +4.5v, vref = 0v 1.5 5 a operational current pout = +24 dbm 365 460 ma switching speed 10% to 90% rise time 620 ns 90% to 10% fall time 610 ns harmonics 2f 0 at +24dbm, cw signal - 43 - 38 dbc 3f 0 at +24dbm, cw signal - 61 - 56 dbc 4f 0 at +24dbm, cw signal - 58 - 53 dbc thermal resistance, jc module (junction to case) 37 c/w notes: 1. test conditions unless otherwise noted: v cc 1 ? =?v cc2 = +4.5 ? v, v ref = +2.85v, temp?=?+25?c, 50? system. parameter conditions - 40 c +25c +85c units gain small signal 33.0 31.5 30.0 db aclr p out = +2 4 dbm, 20?mhz lte e -tm1.1, 9.5db par - 50 - 48 - 46 dbc pae p out = +2 4 dbm, 20?mhz lte e -tm1.1, 9.5db par 16 15 14 % test frequency = 1840mhz downloaded from: http:///
TQP9218 high linearity 0.25 w small cell pa data sheet, august 17 , 2017 | subject to change without notice - 3 of 9 - www.qorvo.com ? evaluation board C TQP9218-pcb bill of material ?C? TQP9218 -pcb reference des. value description manuf. part number n/a n/a printed circuit board u1 n/a high linearity 0.25 w power amplifier qorvo TQP9218 r1 0 resistor, chip, 0603, 5% various c1 0.01 uf capacitor, chip, 0603, 5% various c11 100 pf capacitor, chip, 0603, 5% various c3, c9 0.1 uf capacitor, chip, 0603, 5% various c5, c14 10 uf capacitor , chip, 6032, 10%, tantalum various c6, c10 1000 pf capacitor , chip, 0603, npo/cog, 5% various vcc1=vcc2=4.5v, pout=24.5dbm, signal par=9.5db, f = 1840mhz lte signal bw 5mhz 10mhz 15mhz 20mhz units aclr1- low -50.0 -51.5 -51.5 -51.5 dbc aclr1-high -51.5 -51.5 - 50. 0 -50.5 dbc c5 10uf (6032) r1 0 ? j3 vcc1 c9 0.1uf c6 1000pf j5 vpd c1 0.01uf c11 100pf j1 rf input j2 rf output r2 dnp j6 vdet c13 dnp c12 dnp c3 0.1uf c10 1000pf c14 10uf (6032) j4 vcc2 7 6 1 10 8 9 11 12 13 14 23 4 5 match match match biasing circuit downloaded from: http:///
TQP9218 high linearity 0.25 w small cell pa data sheet, august 17 , 2017 | subject to change without notice - 4 of 9 - www.qorvo.com ? performance plots C TQP9218-pcb test conditions unless otherwise noted: v cc1 = v cc2 = +4.5v, v ref = +2.85?v, i cq = 2 12 ma, i ref = 6.5 ma , temp.=?+25?c 25 27 29 31 33 35 1800 1810 1820 1830 1840 1850 1860 1870 1880 gain (db) frequncy (mhz) gain vs frequency +85c +25c ?40 c -20 -15 -10 -5 0 1800 1820 1840 1860 1880 |s11| (db) frequency (mhz) input return loss vs. frequency temp.=+25c -20 -15 -10 -5 0 1800 1820 1840 1860 1880 |s22| (db) frequency (mhz) output return loss vs. frequency temp.=+25c -65 -60 -55 -50 -45 -40 -35 15 16 17 18 19 20 21 22 23 24 25 26 27 aclr (dbc) pout (dbm) aclr vs. pout (5mhz lte) aclr1_l_1805mhz aclr1_l_1840mhz aclr1_l_1880mhz aclr1_u_1805mhz aclr1_u_1840mhz aclr1_u_1880mhz temp.=+25c lte 1ch 5mhz, adj ch ibw 4.5mhz, par 9.5db, no clipping -65 -60 -55 -50 -45 -40 -35 15 16 17 18 19 20 21 22 23 24 25 26 27 aclr (dbc) pout (dbm) aclr vs. pout (10mhz lte) aclr1_l_1805mhz aclr1_l_1840mhz aclr1_l_1880mhz aclr1_u_1805mhz aclr1_u_1840mhz aclr1_u_1880mhz temp.=+25c lte 1ch 10mhz, adj ch ibw 9.0mhz, par 9.5db, no clipping -65 -60 -55 -50 -45 -40 -35 15 16 17 18 19 20 21 22 23 24 25 26 27 aclr (dbc) pout (dbm) aclr vs. pout (15mhz lte) aclr1_l_1805mhz aclr1_l_1840mhz aclr1_l_1880mhz aclr1_u_1805mhz aclr1_u_1840mhz aclr1_u_1880mhz temp.=+25c lte 1ch 15mhz, adj ch ibw 13.5mhz, par 9.5db, no clipping -65 -60 -55 -50 -45 -40 -35 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 aclr (dbc) pout (dbm) aclr vs. pout vs frequency aclr1_l_1805mhz aclr1_l_1840mhz aclr1_l_1880mhz aclr1_u_1805mhz aclr1_u_1840mhz aclr1_u_1880mhz temp.=+25c lte 1ch 20mhz, adj ch ibw 18.02mhz, par 9.5db no clipping -65 -60 -55 -50 -45 -40 -35 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 aclr (dbc) pout (dbm) aclr vs. pout vs temperature aclr1_l_-40c aclr1_l_+25c aclr1_l_+85c aclr1_u_-40c aclr1_u_+25c aclr1_u_+85c freq = 1840 mhz lte 1ch 20mhz, adj ch ibw 18.02mhz, par 9.5db no clipping 0 5 10 15 20 25 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 pae (%) pout (dbm) pae vs. pout pae_1805mhz pae_1840mhz pae_1880mhz temp.=+25c lte 1ch 20mhz, adj ch ibw 18.02mhz, par 9.5db no clipping -65 -60 -55 -50 -45 -40 -35 15 16 17 18 19 20 21 22 23 24 25 26 27 aclr (dbc) pout (dbm) aclr vs. pout (20mhz lte, vcc=5v) aclr1_l_1805mhz aclr1_l_1840mhz aclr1_l_1880mhz aclr1_u_1805mhz aclr1_u_1840mhz aclr1_u_1880mhz temp.=+25c lte 1ch 20mhz, adj ch ibw 18.02mhz, par 9.5db, no clipping, vcc = 5v 0 5 10 15 20 25 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 pae (%) pout (dbm) pae vs. pout pae_-40c pae_+25c pae_+85c freq = 1840 mhz lte 1ch 20mhz, adj ch ibw 18.02mhz, par 9.5db no clipping downloaded from: http:///
TQP9218 high linearity 0.25 w small cell pa data sheet, august 17 , 2017 | subject to change without notice - 5 of 9 - www.qorvo.com ? switching speed switching speed measurement based on TQP9218 application board using shutdown circuit: v ref =2.85v, v cc = 4. 5v , c1=nl parameter turn-on transition (10% rf C 90% rf) 620ns turn-o ff transition ( 90 % rf C 10% rf) 610ns rf signal freq = 1880 mhz pout = +24 dbm rf signal freq = 1880 mhz pout = +24 dbm downloaded from: http:///
TQP9218 high linearity 0.25 w small cell pa data sheet, august 17 , 2017 | subject to change without notice - 6 of 9 - www.qorvo.com ? pin configuration and description top view pad no. label description 1 v ref sets the bias current for the amplifiers. it can also be used to power down the device. 2, 3, 6, 8, 9, 10, 13, 14 gnd rf and dc ground. 4 v cc 1 voltage supply for the active bias circuitry. 5 rf in rf input pin. the dc is internally blocked at this pin. 7 nc no internal connection. 11 v cc 2 dc voltage supply connection for amp1 and amp 2. 12 rfout rf output pin. the dc is internally blocked at this pin. backside paddle rf/dc gnd rf/dc ground. see pcb mounting pattern for suggested footprint. evaluation board pcb information qorvo pcb 11 26637 material and stack- up 50 ohm line dimensions: width = .028 spacing = .028. backside paddle rf/dc gnd 7 6 1 10 8 9 11 12 13 14 23 4 5 match match match vref gnd gnd gnd gnd gnd gnd gnd gnd vcc2 vcc1 rf in rf out nc biasing circuit 1 oz. cu bottom layer nelco n-4000-13 core nelco n-4000-13 1 oz. cu top layer 1 oz. cu inner layer 1 oz. cu inner layer 0.062" 0.006" finished board thickness 0.014" 0.014" downloaded from: http:///
TQP9218 high linearity 0.25 w small cell pa data sheet, august 17 , 2017 | subject to change without notice - 7 of 9 - www.qorvo.com ? package marking and dimensions marking: part number C tqp9 218 assembly code C yyww country code - cccc lot code C aaxxxx notes: 1. all dimensions are in millimeters. angles are in degrees. 2. dimension and tolerance formats conform to asme y14.4m-1994. 3. the terminal #1 identifier and terminal numbering conform to jesd 9 5-1 spp- 012. pin 1 location a s aa a a a a a a a a a a a a s TQP9218 yyww cccc aaxxxx downloaded from: http:///
TQP9218 high linearity 0.25 w small cell pa data sheet, august 17 , 2017 | subject to change without notice - 8 of 9 - www.qorvo.com ? 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 devi ce for proper rf/dc grounding and thermal dissipation. we recommend a 0.35mm (#80/.0135") diamet er bit for drilling via holes and a final plated thru diameter o f 0.25 mm (0.10). 4. ensure good package backside paddle solder attach for re liable operation and best electrical performance. 0.175 pin 1 location a a s s aa a a a a a a a a a a a pin 1 location a a s s aa a a a a a a a a a a a recommended land pattern recommended land pattern mask downloaded from: http:///
TQP9218 high linearity 0.25 w small cell pa data sheet, august 17 , 2017 | subject to change without notice - 9 of 9 - www.qorvo.com ? handling precautions parameter rating standard caution! esd -sensitive device esd?C?human body model (hbm) class 2 esda?/?jedec js - 001 -2012 esd?C?charged device model ( cd m) class c3 jedec jesd22-c101f msl?C?moisture sensitivity level level 3 ipc/jedec j-std- 020 solderability compatible with both lead-free (260c max. reflow temp.) and tin/lead (2 45c max. reflow temp.) soldering processes. solder profiles available upon request. contact plating: electrolytic plated au over ni rohs compliance this part is compliant with eu 20 11 /65/eu rohs directive (restrictions on the use of certain hazardous substances in electrical and electronic equipment) as amended by directive 2015/863/eu. th is product also has the following attributes: ? product uses rohs exemption 7c-i to meet rohs compliance requirements ? halogen free (chlorine, bromine ) ? antimony free ? tbbp-a (c 15 h 12 br 4 0 2 ) free ? pfos free ? svhc free contact information for the latest specifications, additional product information, worl dwide sales and distribution locations: tel: 1- 844 -890-8163 web: www.qorvo.com email: customer.support@qorvo.com for technical questions and application information: email: appsupport@qorvo.com important notice the information contained herein is believed to be reli able; however, qorvo makes no warranties regarding the informa tion contained herein and assumes no responsibility or liability whatsoe ver for the use of the information contained herein. all infor mation contained herein is subject to change without notice. customers shoul d obtain and verify the latest relevant information before pl acing orders for qorvo products. the information contained herein or any u se of such information does not grant, explicitly or imp licitly, to any party any patent rights, licenses, or any other intellectual property rights, whether with regard to such information itself or anythin g described by such information. this information does not constitute a warranty with respect to the products described herein, and qorvo hereby disclaims any and all warranties with respect to such products whether express or implied by law, course of dealing, course of performance, usage of trade or otherwise, including the implied warranties of merchantability and fitness for a particular purpose. without limiting the generality of the foregoing, qorvo pro ducts are not warranted or authorized for use as critical compo nents in medical, life-saving, or life-sustaining applications, or other appl ications where a failure would reasonably be expected to cause severe personal injury or death. copyright 2016 ? qorvo, inc. | qorvo is a registered trademark of qorvo, in c. downloaded from: http:///


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