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  TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 1 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? applications 32-pin 5x6mm qfn package ? vsat ground terminal ? millimeter wave communications product features functional block diagram ? rf frequency: 18.3 to 20.2 ghz ? internal dual band lo sources ? 7.9 to 9.1 ghz and 9.9 to 11.1 ghz ? if frequency: 950 to 1950 mhz ? conversion gain: 8.5 db ? single side band noise figure: 6.5 db ? input ip3: -8 dbm ? differential 4 vco output for use by external pll ? single +5v supply operation ? bias 5.0 v, 305 ma ? package dimensions: 5.0 x 6.0 x 0.85mm the triquint TGC4408-SM is a low cost ku band downconverter. it provides in a single package a dual band vco, a subharmonic mixer, and all the associated gain stages required to integrate the vco and the mixer. the TGC4408-SM provides a differential signal at 1/4th the vco frequency for use in a phase-locked loop. the subharmonic mixer is manufactured using triquint?s phemt process; the vco and the prescaler are manufactured using triquint?s hbt process. the TGC4408-SM is available as a single surface mount 32 lead 5x6 qfn package and is ideally suited for vsat ground terminals and millimeter wave communication receivers. lead-free and rohs compliant. evaluation boards are available upon request. general description pin # function label 1,3,23,25 gnd 2 rf in 5 vd_down_converter 1 0 vswitch_low 11 vswitch_high 12 vcc_vco 13 vcc_prescaler 14 v_tune 18 divider_output+ (lo/4) 21 divider_output - (lo/4) 24 if out 4,6,7,8,9,15,16,17,19 20,22,26 thru 32 thru 32 n/c pin configuration ordering information part no. eccn description TGC4408-SM ear99 18 to 20 ghz block downconverter standard t/r size = 500 pieces on a 13? reel 4408 1217 1087 1 23 4 56 7 89 25 17 18 19 20 23 22 21 24 10 11 12 13 14 15 16 32 28 29 30 31 27 26 gnd vd_down_converter gnd rf in vswitch_low vswitch_high vcc_vco vcc_prescalar vtune gnd divider_output- divider_output+ if out gnd 4 low band vco high band vco lo buffer lna subharmonic mixer prescalar
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 2 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? specifications absolute maximum ratings parameter rating storage temperature -40 to 125 c mounting temperature (30 seconds) 260 c channel temperature, tch 200 c rf input power, 50 ,t = 25 c 10 dbm vcc_vco +5.5v vcc _prescaler +5.5 v vtune +5.5 v vswitch_low, vswitch_high vcc + 0.5 v current, vcc_vco 120 ma current, vcc_prescaler 140 ma current, vd_down_converter 155 ma current, vtune 0.5 ma current, vswitch_low, vswitch_high 4 ma power dissipation, pdiss 2.28 w operation of this device outside the parameter ranges given above may cause permanent damage. recommended operating conditions parameter min typ max units operating temp. range -40 +85 c vcc _vco 5.0 v vcc _prescaler 5.0 v vtune 1 2.1 4.0 v vd _down_converter 5.0 v current, vcc _vco 100 ma current, vcc_prescaler 105 ma current, vcc _vco + vcc_prescaler 205 240 ma current, vd_down_converter 100 135 ma t j (for >10 6 hours mttf) 175 c electrical specifications are measured at specified test conditions. specifications are not guaranteed ove r all recommended operating conditions.
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 3 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? specifications electrical specifications test conditions unless otherwise noted: vcc_vco, v dd_downconverter, vdd_prescaler = 5.0v, 25 o c . parameter conditions min typ max units supply voltage 4.8 5 5.2 v supply current 305 ma input frequency 18.3 20.2 ghz output frequency 950 1950 mhz return loss @ rf in (17.5 ? 21 ghz) 7 10 db vco frequency ? low band vtune +1v to +4v 8.55 8.67 8.76 ghz vco frequency ? high band vtune +1v to +4v 10.45 10.57 10.66 ghz vco tune voltage (vtune) 1 2.1 4 v vco tuning sensitivity -low band 125 260 375 mhz/v vco tuning sensitivity - high band 125 260 375 mhz/v pushing 45 70 mhz/v vco select 1,2 0 5 v lo/4 prescaler range 2.09 2.72 ghz lo/4 output power -4 dbm phase noise @ 10 khz offset -73 dbc/hz phase noise @ 100 khz offset -99 dbc/hz phase noise @ 1 mhz offset -126 dbc/hz phase noise @ 10 mhz offset -136 dbc/hz
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 4 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? specifications electrical specifications test conditions unless otherwise noted: vcc_vco, vd d_downconverter, vdd_prescaler = 5.0v, 25 o c parameter conditions min typ max units return loss @ if out (950 ? 1950 mhz) using application circuit 10 13 db conversion gain 6.5 8.5 9.5 db ssb noise figure 6.5 8 db out of band spurious: (2lo @ rf) (2lo @ if) (lo/4 @ if) -35 -45 -60 dbm dbm dbm isolation: (lo @ if) -7 dbm p1db compression point -17 -14 dbm third order input intercept point (iip3) -10 -6 dbm
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 5 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? specifications thermal and reliability information parameter conditions rating thermal resistance, jc , measured to back of package tbase = 70 c jc = 41.2 c/w channel temperature (tch), and median lifetime (tm) tbase = 70 c, vd = 5v, id = 305 ma, pdiss = 1.5 w tch = 133 c tm = 3.9e+7 hours 1.0e+04 1.0e+05 1.0e+06 1.0e+07 1.0e+08 1.0e+09 1.0e+10 1.0e+11 1.0e+12 1.0e+13 1.0e+14 1.0e+15 25 50 75 100 125 150 175 200 median lifetime, tm (hours) channel temperature, tch (c) median lifetime (tm) vs. channel temperature (tch)
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 6 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? typical performance 0 2 4 6 8 10 12 17 18 19 20 21 conversion gain (db) rf frequency (ghz) cg vs. frequency vs. temperature low band lo: 8.67 ghz -40 deg c +25 degc +85 deg c 0 2 4 6 8 10 12 17 18 19 20 21 conversion gain (db) rf frequency (ghz) cg vs. frequency vs. temperature high band lo: 10.57 ghz -40 deg c +25 deg c +85 deg c -24 -22 -20 -18 -16 -14 -12 -10 17 18 19 20 21 input p1db (dbm) rf frequency (ghz) input p1db vs. frequency vs. temperature low band lo -40 deg c +25 deg c +85 deg c -24 -22 -20 -18 -16 -14 -12 -10 17 18 19 20 21 input p1db (dbm) rf frequency (ghz) input p1db vs. frequency vs. temperature high band lo -40 deg c +25 deg c +85 deg c -12 -10 -8 -6 -4 -2 0 17 18 19 20 21 input ip3 (dbm) rf frequency (ghz) input ip3 vs. frequency vs. temperature low band lo -40 deg c +25 deg c +85 deg c -12 -10 -8 -6 -4 -2 0 17 18 19 20 21 input ip3 (dbm) rf frequency (ghz) input ip3 vs. frequency vs. temperature high band lo -40 deg c +25 deg c +85 deg c
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 7 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? typical performance 05 10 15 20 0 5 10 15 20 25 30 35 rf port return loss (db) frequency (ghz) rf port return loss vs. frequency low band lo and high band lo, +25 c low band high band 05 10 15 20 17 18 19 20 21 rf port return loss (db) frequency (ghz) rf port return loss vs. frequency low band lo and high band lo, +25 c low band high band 05 10 15 20 25 30 0 1 2 3 if port return loss (db) frequency (ghz) if port return loss vs. frequency low band lo and high band lo, +25 c low band high band 3 4 5 6 7 8 0 1 2 3 ssb noise figure (db) if frequency (ghz) ssb noise figure vs. frequency vs. temperature low band lo -40 deg c +25 deg c +85 deg c 3 4 5 6 7 8 0 1 2 3 ssb noise figure (db) if frequency (ghz) ssb noise figure vs. frequency vs. temperature high band lo -40 deg c +25 deg c +85 deg c
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 8 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? typical performance 7.9 8.1 8.3 8.5 8.7 8.9 9.1 9.3 9.5 9.7 0 1 2 3 4 5 frequency (ghz) vtune (v) vco freq. vs. vtune vs. temperature low band lo -40 deg c +25 deg c +85 deg c 9.7 9.9 10.1 10.3 10.5 10.7 10.9 11.1 11.3 11.5 0 1 2 3 4 5 frequency (ghz) vtune (v) vco freq. vs. vtune vs. temperature high band lo -40 deg c +25 deg c +85 deg c 0 100 200 300 400 500 600 700 0 1 2 3 4 5 sensitivity (mhz/v) vtune (v) tuning sensitivity vs. vtune low band lo and high band lo, +25 c low band lo high band lo
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 9 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? typical performance -150 -140 -130 -120 -110 -100 -90 -80 -70 -60 -50 -40 1.0e+3 1.0e+4 1.0e+5 1.0e+6 1.0e+7 phase noise (dbc/hz) frequency (hz) phase noise vs. offset frequency vs. vtune low band lo, +25 c vtune = 1.0v vtune = 2.5v vtune = 5.0v -150 -140 -130 -120 -110 -100 -90 -80 -70 -60 -50 -40 1.0e+3 1.0e+4 1.0e+5 1.0e+6 1.0e+7 phase noise (dbc/hz) frequency (hz) phase noise vs. offset frequency vs. vtune high band lo, +25 c vtune = 1.0v vtune = 2.5v vtune = 5.0v -80 -79 -78 -77 -76 -75 -74 -73 -72 -71 -70 -69 -68 -67 -66 -65 0 1 2 3 4 5 10 khz phase noise (dbc/hz) vtune (v) 10 khz phase noise vs. vtune low band lo and high band lo, +25 c low band high band -105 -104 -103 -102 -101 -100 -99 -98 -97 -96 -95 -94 -93 -92 -91 -90 0 1 2 3 4 5 100 khz phase noise (dbc/hz) vtune (v) 100 khz phase noise vs. vtune low band lo and high band lo, +25 c low band high band -135 -134 -133 -132 -131 -130 -129 -128 -127 -126 -125 -124 -123 -122 -121 -120 0 1 2 3 4 5 1 mhz phase noise (dbc/hz) vtune (v) 1 mhz phase noise vs. vtune low band lo and high band lo, +25 c low band high band
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 10 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? typical performance -150 -140 -130 -120 -110 -100 -90 -80 -70 -60 -50 1.0e+3 1.0e+4 1.0e+5 1.0e+6 1.0e+7 phase noise (dbc/hz) offset frequency (hz) phase noise vs. offset frequency vs. temp low band lo, vtune = 3.0 v -40 deg c +25 degc +85 deg c -150 -140 -130 -120 -110 -100 -90 -80 -70 -60 -50 1.0e+3 1.0e+4 1.0e+5 1.0e+6 1.0e+7 phase noise (dbc/hz) offset frequency (hz) phase noise vs. offset frequency vs. temp high band lo, vtune = 3.0 v -40 deg c +25 deg c +85 deg c -80 -78 -76 -74 -72 -70 -68 -66 -64 -62 -60 0 1 2 3 4 5 10 khz phase noise (dbc/hz) vtune (v) 10 khz phase noise vs. vtune vs. temp low band lo -40 deg c +25 degc +85 deg c -80 -78 -76 -74 -72 -70 -68 -66 -64 -62 -60 0 1 2 3 4 5 10 khz phase noise (dbc/hz) vtune (v) 10 khz phase noise vs. vtune vs. temp high band lo -40 deg c +25 degc +85 deg c -105 -104 -103 -102 -101 -100 -99 -98 -97 -96 -95 -94 -93 -92 -91 -90 0 1 2 3 4 5 100 khz phase noise (dbc/hz) vtune (v) 100 khz phase noise vs. vtune vs. temp low band lo -40 deg c +25 degc +85 deg c -105 -104 -103 -102 -101 -100 -99 -98 -97 -96 -95 -94 -93 -92 -91 -90 0 1 2 3 4 5 100 khz phase noise (dbc/hz) vtune (v) 100 khz phase noise vs. vtune vs. temp high band lo -40 deg c +25 degc +85 deg c
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 11 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? typical performance -135 -134 -133 -132 -131 -130 -129 -128 -127 -126 -125 -124 -123 -122 -121 -120 0 1 2 3 4 5 1 mhz phase noise (dbc/hz) vtune (v) 1 mhz phase noise vs. vtune vs. temp low band lo -40 deg c +25 deg c +85 deg c -135 -134 -133 -132 -131 -130 -129 -128 -127 -126 -125 -124 -123 -122 -121 -120 0 1 2 3 4 5 1 mhz phase noise (dbc/hz) vtune (v) 1 mhz phase noise vs. vtune vs. temp high band lo -40 deg c +25 deg c +85 deg c -80 -75 -70 -65 -60 -55 -50 -45 -40 -35 -30 -25 -20 -15 -10 -5 0 0 1 2 3 4 5 pushing (mhz/v) vtune (v) pushing vs. vtune low band lo, vcc = 5.0 v -40 deg c +25 deg c +85 deg c -80 -75 -70 -65 -60 -55 -50 -45 -40 -35 -30 -25 -20 -15 -10 -5 0 0 1 2 3 4 5 pushing (mhz/v) vtune (v) pushing vs. vtune high band lo, vcc = 5.0 v -40 deg c +25 deg c +85 deg c -5 -4 -3 -2 -1 0 0 1 2 3 4 5 output power (dbm) vtune (v) prescalar port output power vs. vtune vs. temperatu re low band lo, single ended -40 deg c +25 deg c +85 deg c -5 -4 -3 -2 -1 0 0 1 2 3 4 5 output power (dbm) vtune (v) prescalar port output power vs. vtune vs. temperatu re high band lo, single ended -40 deg c +25 deg c +85 deg c
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 12 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? typical performance spur tables spur tables are n f rf ? m f lo mixer spurious products for -36 dbm rf input power . (subharmonic mixer, if is at 1rf x 2lo) rf = 18.3 ghz @ -36 dbm lo = 8.67 ghz all values in dbc below the if output power level. m x f lo 0 1 2 3 4 5 n 0 -- -19 34 4 10 22 1 30 41 0 40 44 -- 2 -- -- -- -- -- -- 3 -- -- -- -- -- -- rf = 18.3 ghz @ -36 dbm lo = 8.67 ghz all values in dbc below the if output power level. m x f lo /4 1 2 3 4 5 6 7 8 9 10 11 n 0 14 57 34 -19 52 50 34 34 50 44 46 1 -- -- -- -- -- -- 0 -- -- --
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 13 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? pin description pin symbol description 1,3,23,25 gnd gnd 2 rf in rf input, matched to 50 ohms 5 vd_down_converter +5v supply for mixer 10 vswitch_low +5v on pin 10 and 0 v on pin 11 en ables the 8.675 ghz vco 11 vswitch_high +5v on pin 11 and 0 v on pin 10 e nables the 10.575 ghz vco 12 vcc_vco +5v supply for vco 13 vcc_prescaler +5v supply for prescaler 14 v_tune adjustment voltage for the lo frequency. vtune is c ommon to both vcos. 18 divider_output+ (lo/4) divider_output+ (lo/4). 50 ohm impedance. different ial output of the vco frequency divided by 4 for use by an external p hase locked loop. may be left unterminated for single ended app lications. 21 divider_output- (lo/4) divider_output- (lo/4). ). 50 ohm impedance. differ ential output of the vco frequency divided by 4 for use by an extern al phase locked loop. may be left unterminated for single ended app lications. 24 if out if output, requires external matching to 50 ohm imp edance. see ?application circuit?. 4,6,7,8,9,15, 16,17,19,20,22, 26 thru 32 n/c no internal connection; can be grounded on pcb or left open 33 gnd backside paddle. multiple vias should be employed to minimize inductance and thermal resistance; see mounting con figuration on page 17 for suggested footprint. 21 5 14 11 10 12 13 9 16 15 17 78 6 19 18 20 24 24 3 22 23 28 1 31 32 30 29 25 27 26 33
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 14 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? application circuit note a: 50 microstrip transmission line note b: 104 microstrip transmission line, 6.0 at 950 mhz note c: 104 microstrip transmission line, 5.1 at 950 mhz vcc vswitch_low gnd 3 low band vco 7 8 9 13 10 11 12 15 14 16 high band vco 4 6 5 vd_down_converter 4 lo buffer prescalar 2 1 gnd subharmonic mixer lna 29 32 31 30 27 28 26 gnd 23 19 17 divider_output+ 18 divider_output- 21 20 22 gnd 25 if out 24 c1 100 pf c2 1.0 f c4 1.0 f c3 100 pf vswitch_high c8 1.0 f c7 100 pf c6 1.0 f c5 100 pf 147 o r1 c10 100 pf c9 1.0 f 1/ 2/ vtune c13 1.0 pf l1 10 nh j2 j3 j4 j1 rf in see note a see note b see note c see note a see note a
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 15 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? application circuit pc board layout single core layer board using 0.020? thick rogers r o4003, ? r = 3.38. metal layers are 0.5-oz copper with patterning on top layer as shown. bottom layer is u npatterned and is the rf and dc ground. for further technical information, refer to the TGC4408-SM product information page . bill of material ref des value description manufacturer part number c1, c3, c5, c7, c10 100 pf cap, 0402, 50 v, 5%, c0g smd various c2, c4, c6, c8 1.0 f cap, 0603, 25 v, 10%, x5r smd various c9 1/ 1.0 f cap, 0603, 25 v, 10%, x5r smd 1 / various c9 2/ no pop 2/ c13 1.0 pf cap, 0402, 25 v, 0.25 pf, c0g smd various r1 147 res, 0402, 0.06 w, 5%, smd various l1 10 nh ind, 0603, smd coilcraft 0603cs-10nxj rf in, if out, div out, tune in 2.92mm or sma rf connector end launch connector southwest microwave 1092-02a-5 or 292-05a-5 100 pf cap, 0402, 50 v, 5%, c0g smd various 1/ when using fixed voltage for vtune 2/ when using pll to set vtune 4408 1217 1087
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 16 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? mechanical information package marking and dimensions all dimensions are in millimeters. this package is lead-free/rohs-compliant with a cop per alloy base (cda194), and the plating material o n the leads is sn. it is compatible with both lead-free (maximum 260 c refl ow temperature) and tin-lead (maximum 245 c reflow temperature) soldering processes. the TGC4408-SM will be marked with the ?4408? desig nator and a lot code marked below the part designat or. the ?yy? represents the last two digits of the year the part was manufactured, the ?ww? is the work week, and t he ?xxxx? is an auto- generated number 4408 yyww xxxx
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 17 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? mechanical information pcb mounting pattern notes: 1. the pad pattern shown has been developed and tes ted for optimized assembly at triquint semiconducto r. the pcb land pattern has been developed to accommodate lead and package tolerances. since surface mount proce sses vary from company to company, careful process developmen t is recommended. 2. ground vias are critical for the proper performa nce of this device. vias should use a .35mm (#80 / .0135?) diameter drill and have a final plated thru diameter of .25 mm (.010?).
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 18 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? tape and reel information tape and reel specifications for this part are also available on the triquint website in the ?applicat ion notes? section. standard t/r size = 500 pieces on a 13? reel. material cavity (mm) distance between centerline (mm) carrier tape (mm) cover tape (mm) vendor vendor p/n length (a0) width (b0) depth (k0) pitch (p1) length direction (p2) width direction (f) width (w) width (w) advantek ml0506-d 5.30 6.30 1.30 8.0 2.00 5.50 12.0 9.20
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 ? 2012 triquint semiconductor, inc. product compliance information esd information esd rating: 1b value: passes 600 v and < 700 test: human body model (hbm) standard: jedec standard jesd22 esd rating: c4 value: passes 500 v and < 700 v test: charged device model (cdm) standard: jedec standard jesd22 esd rating: m2 value: passes 100 v and < 200 v min. test: machine model (mm) standar d: jedec standard jesd22 msl rating moisture sensitivity level (msl) 3 at 260c reflow per jedec standard ipc/jedec j recommended soldering temperature profile downconverter - 19 of 20 - disclaimer: subject to change without notice connecting the digital world to the global network product compliance information 600 v and < 700 v min. human body model (hbm) jedec standard jesd22 -a114 and < 700 v min. charged device model (cdm) jedec standard jesd22 -c101 100 v and < 200 v min. jedec standard jesd22 -a115 solderability compatible with both lead reflow temp.) and tin/lead (245 c max. reflow temp.) soldering processes. package lead plating: sn rohs compliance this part is compliant with eu 2002/95/ec 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 at 260c convection per jedec standard ipc/jedec j -std-020. recommended soldering temperature profile disclaimer: subject to change without notice world to the global network ? compatible with both lead -free (260 c max. reflow temp.) and tin/lead (245 c max. reflow compliant with eu 2002/95/ec rohs directive (restrictions on the use of certain hazardous substances in electrical and this product also has the following attributes: halogen free (chlorine, bromine) ) free
TGC4408-SM 18 - 20 ghz block downconverter preliminary data sheet: rev - 6/11/12 - 20 of 20 - disclaimer: subject to change witho ut notice ? 2012 triquint semiconductor, inc. connecting the digital world to the global network ? contact information for the latest specifications, additional product i nformation, worldwide sales and distribution locati ons, and information about triquint: web: www.triquint.com tel: +1.972.994.8465 email: info-sales@tqs.com fax: +1.972.994.8504 for technical questions and application information : email: info-networks@tqs.com important notice the information contained herein is believed to be reliable. triquint makes no warranties regarding t he information contained herein. triquint assumes no responsibility or liability whatsoever for any of t he information contained herein. triquint assumes no responsibili ty or liability whatsoever for the use of the infor mation 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 ent irely with the user. all information contained her ein is subject to change without notice. customers should obtain and verify the latest relevant information before plac ing orders for triquint products. the information contained herei n or any use of such information does not grant, ex plicitly or implicitly, to any party any patent rights, license s, or any other intellectual property rights, wheth er with regard to such information itself or anything described by su ch information. triquint products are not warranted or authorized f or use as critical components in medical, life-savi ng, or life- sustaining applications, or other applications wher e a failure would reasonably be expected to cause s evere personal injury or death.


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