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max3514/MAX3516/max3517 ????? $"57?? 20 19 18 17 16 15 14 13 1 2 3 4 5 6 7 8 gnd v cc txen n.c. gnd gnd v cc gnd top view out+ out- cext (n.c.) n.c. cs gnd in- in+ 12 11 9 10 shdn gnd sclk sda qsop/tssop-ep max3514 MAX3516 max3517 exposed paddle* ( ) for max3517 only * MAX3516 only e?  ? ____________________________ 19-1826; rev 2; 9/01 evaluation kit available  j _______________________________ a j ?^s?x7?tgl^?om?b{ 41*x.pupspmb$psqw ? apb{ %0$4*4&vsp%0$4*40qfo$bcmfx$bcmf-bctw ? apb{ part temp range pin- package max3514 eep -40? to +85? 20 qsop MAX3516 eup -40? to +85? 20 tssop-ep* max3517 eep -40? to +85? 20 qsop *exposed paddle ???t|7 y [???3??w ? tx?3tw????]b;<^m{xxxnbyjnjddpn ????3??tgl^?h o0xz?t???3tw?s???3????`h?wpb{?t??
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max3514/MAX3516/max3517 ????? $"57?? 2 _______________________________________________________________________________________ absolute maximum ratings stresses beyond those listed under ?bsolute maximum ratings?may cause permanent damage to the device. these are stress rating s only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specificatio ns is not implied. exposure to absolute maximum rating conditions for extended periods may affect device reliability. v cc , out+, out-................................................-0.3v to +10.0v input voltage levels (all inputs) .................-0.3v to (v cc + 0.3v) continuous input voltage (in+, in-) ...................................2vp-p continuous current (out+, out-) ...................................120ma continuous power dissipation (t a = +70?) 20-pin qsop (derate 12.3mw/c above t a = +70?). .988mw 20-pin tssop-ep (derate 27mw/? above t a = +70?) .......................2200mw operating temperature range .......................... -40? to +85? junction temperature ..................................................... +150? storage temperature range ............................ -65? to +150? lead temperature (soldering, 10s) ................................ +300? parameter symbol conditions min typ max units supply voltage v cc 4.75 5.25 v d7 = 1, gain code = 125 (a v = 27db) 120 150 supply current transmit mode (max3514/max3517) i cc d7 = 0, gain code = 100 (a v = 0db) 35 ma d7 = 1, gain code = 125 (a v = 31db) 160 195 supply current transmit mode (MAX3516) i cc d7 = 0, gain code = 94 (a v = 0.5db) 30 ma supply current transmit disable mode i cc txen = low 8 12 ma supply current low-power standby i cc shdn = low 10 a logic inputs input high voltage v inh 2.0 v input low voltage v inl 0.8 v input high current i biash v inh = +3.6v 100 a input low current i biasl v inl = 0 -100 a dc electrical characteristics?ax3514/MAX3516/max3517 (typical operating circuit; v cc = +4.75v to +5.25v, v gnd = 0, txen = shdn = high, t a = -40? to +85?. typical parameters are at v cc = +5v, t a = +25?, unless otherwise specified.) (note 1)
max3514/MAX3516/max3517 ????? $"57?? _______________________________________________________________________________________ 3 parameter symbol conditions min typ max units d7 = 1, gain code = 125, t a = 0 c to +85 c 26.7 27.7 28.7 d7 = 1, gain code = 110, t a = 0 c to +85 c 19.2 20.2 21.2 d7 = 1, gain code = 87, t a = 0 c to +85 c 7.7 8.7 9.7 d7 = 0, gain code = 115, t a = 0 c to +85 c 6.7 7.7 8.7 d7 = 0, gain code = 100, t a = 0 c to +85 c -0.8 0.2 1.2 d7 = 0, gain code = 80, t a = 0 c to +85 c -10.8 -9.8 -8.8 d7 = 0, gain code = 60, t a = 0 c to +85 c -20.8 -19.8 -18.8 voltage gain, f in = 5mhz (note 2) a v d7 = 0, gain code = 48, t a = 0 c to +85 c -27.0 -26.0 -25.0 db voltage gain, f in = 65mhz a v d7 = 1, gain code = 127, t a = -40 c to +85 c; notes 3, 4 26.3 db v out = 61dbmv, f in = 5mhz to 42mhz (notes 3, 4) -0.3 -0.5 gain rolloff v out = 61dbmv, f in = 5mhz to 65mhz (notes 3, 4) -1.0 -1.5 db f in = 5mhz to 65mhz, a v = -26db to +27db 0.5 f in = 5mhz to 65mhz, a v = -26db to +27db, any 2-bit transition of d0, d1 0.7 1 1.3 gain step size f in = 5mhz to 65mhz, d7 = 0, gain code = 115; to d7 = 1, gain code = 87 0.7 1.0 1.3 db transmit-disable mode noise txen = low, bw = 160khz, f in = 5mhz to 65mhz; note 3 -71 dbmv isolation in transmit-disable mode txen = low, f in = 5mhz to 65mhz (note 3) 60 db transmit mode noise bw = 160khz, f in = 5mhz to 65mhz, a v = -26db to +27db; note 3 -59 dbc transmit enable transient duration txen input rise/fall time < 0.1s, t a = +25 c (note 3) 2 s transmit disable transient duration txen input rise/fall time < 0.1s, t a = +25 c (note 3) 2 s d7 = 1, gain code = 125 (a v = 27db), t a = +25 c 30 100 transmit disable/transmit enable transient step size d7 = 0, gain code = 100 (a v = 0.2db), t a = +25 c 1 mvp-p input impedance z in f in = 5mhz to 65mhz, single ended; note 3 1 1.5 k ? output return loss f in = 5mhz to 42mhz in 75 ? system, d7 = 1 gain code = 125 (a v = 27db) (note 4) 10 db ac electrical characteristics?ax3514 (max3514 ev kit; v cc = +4.75v to +5.25v, v gnd = 0, pin = +34dbmv, txen = shdn = high, t a = -40? to +85?. typical parame- ters are at v cc = +5v, t a = +25?, unless otherwise specified.) (note 1)
max3514/MAX3516/max3517 ????? $"57?? 4 _______________________________________________________________________________________ parameter symbol conditions min typ max units output return loss in transmit- disable mode f in = 5mhz to 42mhz, in 75 ? system, txen = low; note 4 10 db input tones at 42mhz and 42.2mhz, both +31dbmv, v out = +58dbmv/tone; note 3 -53 -47 two-tone third-order distortion im3 input tones at 65mhz and 65.2mhz, both +31dbmv, v out = +58dbmv/tone -49 dbc f in = 33mhz, v out = +61dbmv; note 3 -55 -53 2nd-harmonic distortion hd2 f in = 65mhz, v out = +61dbmv; note 3 -55 -52 dbc f in = 22mhz, v out = +61dbmv -55 -50.5 3rd-harmonic distortion hd3 f in = 65mhz, v out = +61dbmv -55 -50.5 dbc a v = 27db, v in = +34dbmv to +38dbmv, f in = 42mhz 0.1 am to am am/am a v = 27db, v in = +34dbmv to +38dbmv, f in = 65mhz 0.1 db a v = 27db, v in = +34dbmv to +38dbmv, f in = 42mhz 1 am to pm am/pm a v = 27db, v in = +34dbmv to +38dbmv, f in = 65mhz 1 degrees ac electrical characteristics?ax3514 (continued) (max3514 ev kit; v cc = +4.75v to +5.25v, v gnd = 0, p in = +34dbmv, txen = shdn = high, t a = -40? to +85?. typical parame- ters are at v cc = +5v, t a = +25?, unless otherwise specified.) (note 1)
max3514/MAX3516/max3517 ????? $"57?? _______________________________________________________________________________________ 5 parameter symbol conditions min typ max units d7 = 1, gain code = 125, t a = 0 c to +85 c 30 31 32 d7 = 1, gain code = 119, t a = 0 c to +85 c 27 28 29 d7 = 1, gain code = 104, t a = 0 c to +85 c 19.5 20.5 21.5 d7 = 1, gain code = 81, t a = 0 c to +85 c 8 9 10 d7 = 0, gain code = 109, t a = 0 c to +85 c 7 8 9 d7 = 0, gain code = 94, t a = 0 c to +85 c -0.5 0.5 1.5 d7 = 0, gain code = 74, t a = 0 c to +85 c -10.5 -9.5 -8.5 d7 = 0, gain code = 54, t a = 0 c to +85 c -20.5 -19.5 -18.5 voltage gain, f in = 5mhz (note 2) a v d7 = 0, gain code = 42, t a = 0 c to +85 c -26.5 -25.5 -24.5 db voltage gain, f in = 65mhz a v d7 = 1, gain code = 127, t a = -40 c to +85 c (notes 3, 4) 28.1 db v out = 64dbmv, f in = 5mhz to 42mhz (notes 3, 4) -0.3 -0.6 gain rolloff v out = 64dbmv, f in = 5mhz to 65mhz (notes 3, 4) -1.1 -1.7 db f in = 5mhz to 65mhz, a v = -26db to +30db 0.5 f in = 5mhz to 65mhz, a v = -26db to +30db, any 2-bit transition of d0, d1 0.7 1.0 1.3 gain step size f in = 5mhz to 42mhz, a v = -26db to +30db, d7 = 0, gain code = 109; to d7 = 1, gain code = 81 0.7 1.0 1.3 db transmit-disable mode noise txen = low, bw = 160khz, f in = 5mhz to 65mhz -71 dbmv isolation in transmit-disable mode txen = low, f in = 5mhz to 65mhz (note 3) 60 db transmit mode noise bw = 160khz, f in = 5mhz to 65mhz, a v = -26db to 27db (note 3) -59 dbc ac electrical characteristics?ax3516 (MAX3516 ev kit; v cc = +4.75v to +5.25v, v gnd = 0, p in = +34dbmv, txen = shdn = high, t a = -40? to +85?. typical parame- ters are at v cc = +5v, t a = +25?, unless otherwise specified.) (note 1)
max3514/MAX3516/max3517 ????? $"57?? 6 ____________________________________________________________________________________________________ parameter symbol conditions min typ max units transmit enable transient duration txen input rise/fall time < 0.1s, t a = +25 c (note 3) 2 s transmit disable transient duration txen input rise/fall time < 0.1s, t a = +25 c (note 3) 2 s d7 = 1, gain code = 119, (a v = 28db), t a = +25 c 30 100 transmit disable/transmit enable transient step size d7 = 0, gain code = 94, (a v = 0.5 db), t a = +25 c 1 mvp-p input impedance z in f in = 5mhz to 65mhz, single-ended (note 3) 1 1.5 k ? output return loss f in = 5mhz to 65mhz in 75 ? system d7 = 1, gain code = 125, (a v = 31db) (note 4) 10 db output return loss in transmit- disable mode f in = 5mhz to 65mhz in 75 ? system, txen = low (note 4) 10 db inp ut tones at 42m h z and 42.2m h z, b oth + 31d bm v , v out = + 58d bm v /tone -53.5 two-tone third-order distortion (note 3) im3 inp ut tones at 65m h z and 65.2m h z, b oth + 31d bm v , v out = + 58d bm v /tone -48.8 dbc f in = 33mhz, v out = +61dbmv -55 -53 f in = 33mhz, v out = +64dbmv -55 2nd-harmonic distortion (note 3) hd2 f in = 65mhz, v out = +61dbmv -55 -52 dbc f in = 22mhz, v out = +61dbmv -55 -50.5 f in = 22mhz, v out = +64dbmv -50 3rd-harmonic distortion hd3 f in = 65mhz, v out = +61dbmv -55 -50.5 dbc am to am am/am a v = 27db, v in = +34dbmv to +38dbmv, f in = 42mhz 0.1 db am to am am/am a v = 27db, v in = +34dbmv to +38dbmv, f in = 65mhz 0.1 db am to pm am/pm a v = 27db, v in = +34dbmv to +38dbmv, f in = 42mhz 1 degrees am to pm am/pm a v = 27db, v in = +34dbmv to +38dbmv, f in = 65mhz 1 degrees ac electrical characteristics?ax3516 (continued) (MAX3516 ev kit; v cc = +4.75v to +5.25v, v gnd = 0, p in = +34dbmv, txen = shdn = high, t a = -40? to +85?. typical parame- ters are at v cc = +5v, t a = +25?, unless otherwise specified.) (note 1)
max3514/MAX3516/max3517 ????? $"57?? _______________________________________________________________________________________ 7 parameter symbol conditions min typ max units d7 = 1, gain code = 125, t a = 0 c to +85 c 26.7 27.7 28.7 d7 = 1, gain code = 110, t a = 0 c to +85 c 19.2 20.2 21.2 d7 = 1, gain code = 90, t a = 0 c to +85 c 9.2 10.2 11.2 d7 = 1, gain code = 70, t a = 0 c to +85 c -0.8 0.2 1.2 d7 = 1, gain code = 115, t a = 0 c to +85 c 6.7 7.7 8.7 d7 = 1, gain code = 100, t a = 0 c to +85 c -0.8 0.2 1.2 d7 = 1, gain code = 80, t a = 0 c to +85 c -10.8 -9.8 -8.8 d7 = 0, gain code = 60, t a = 0 c to +85 c -20.8 -19.8 -18.8 voltage gain, f in = 5mhz a v d7 = 0, gain code = 48, t a = 0 c to +85 c -27.0 -26.0 -25.0 db gain step size f in = 5mhz to 65mhz, a v = -26db to +27db 0.5 db transmit-disable mode noise txen = low, bw = 160khz, f in = 5mhz to 65mhz -71 dbmv isolation in transmit-disable mode txen = low, f in = 5mhz to 65mhz 50 58 db transmit mode noise bw = 160khz, f in = 5mhz to 65mhz, a v = -26db to +27db; note 3 -60 -59 dbc transmit enable transient duration txen input rise/fall time < 0.1s, t a = +25 c; note 3 2 s ac electrical characteristics?ax3517 (max3517 ev kit; v cc = +4.75v to +5.25v, v gnd = 0, p in = +34dbmv, txen = shdn = high, t a = -40? to +85?. typical parame- ters are at v cc = +5v, t a = +25?, unless otherwise specified.) (note 1)
max3514/MAX3516/max3517 ????? $"57?? 8 _______________________________________________________________________________________ parameter symbol conditions min typ max units transmit disable transient duration txen input rise/fall time < 0.1s, t a = +25 c 2 s d7 = 1, gain code = 125, (a v = 27db), t a = +25 c 30 100 transmit disable/transmit enable transient step size d7 = 0, gain code = 100, (a v = 0.2 db), t a = +25 c 1 mvp-p input impedance z in f in = 5mhz to 65mhz, single ended; note 3 1 1.5 k ? output return loss f in = 5mhz to 65mhz in 75 ? system d7 = 1, gain code = 125, (a v = 27db); note 4 8.3 db output return loss in transmit- disable mode f in = 42mhz, in 75 ? system txen = low; note 4 10.5 db inp ut tones at 42m h z and 42.2m h z, b oth + 31d bm v , v out = + 58d bm v /tone -49.5 two-tone third-order distortion (note 2) im3 inp ut tones at 65m h z and 65.2m h z, b oth + 31d bm v , v out = + 58d bm v /tone -46.3 dbc f in = 33mhz, v out = +61dbmv -55 2nd-harmonic distortion hd2 f in = 65mhz, v out = +61dbmv -55 dbc f in = 22mhz, v out = +61dbmv -55 3rd-harmonic distortion hd3 f in = 65mhz, v out = +61dbmv -55 dbc am to am am/am a v = 27db, v in = +34dbmv to +38dbmv, f in = 42mhz 0.1 db am to am am/am a v = 27db, v in = +34dbmv to +38dbmv, f in = 65mhz 0.1 db am to pm am/pm a v = 27db, v in = +34dbmv to +38dbmv, f in = 42mhz 1 degrees am to pm am/pm a v = 27db, v in = +34dbmv to +38dbmv, f in = 65mhz 1 degrees ac electrical characteristics?ax3517 (continued) (max3517 ev kit; v cc = +4.75v to +5.25v, v gnd = 0, p in = +34dbmv, txen = shdn = high, t a = -40? to +85?. typical parame- ters are at v cc = +5v, t a = +25?, unless otherwise specified.) (note 1)
max3514/MAX3516/max3517 ????? $"57?? _______________________________________________________________________________________ 9 parameter symbol conditions min typ max units sen to sclk setup time t sens 20 ns sen to sclk hold time t senh 10 ns sda to sclk setup time t sdas 10 ns sda to sclk hold time t sdah 20 ns sda pulse width high t datah 50 ns sda pulse width low t datal 50 ns sclk pulse width high t sclkh 50 ns sclk pulse width low t sclkl 50 ns note 1: guaranteed by design and characterization to ? sigma for t a < +25?, unless otherwise specified. note 2: ac gain correlated to dc gain measurements to ? sigma. note 3: guaranteed by design and characterization to ? sigma. note 4: does not include output matching; see output match in the applications section. 0 40 20 80 60 120 100 140 -50 0 25 -25 50 75 100 supply current vs. temperature max3514 toc01 temperature ( c) supply current (ma) transmit-enable mode high-power, gain code = 125 transmit-enable mode low-noise, gain code = 100 transmit-disable mode 0 40 20 80 60 120 100 140 04060 20 80 100 120 140 supply current vs. gain code max3514 toc02 gain code supply current (ma) high-power mode low-noise mode 28.0 28.2 28.4 28.6 28.8 29.0 29.2 29.4 29.6 4.6 4.8 5.0 5.2 5.4 voltage gain vs. supply voltage high-power mode max3514 toc03 supply voltage (v) voltage gain (db) t a = -40 c t a = +25 c t a = +85 c gain code = 127 a j ?^ ?
q _______________________________________________________________ (typical operating circuit; v cc = +5v, v in = +34dbmv, txen = shdn = high, f in = 20mhz, z load = 75 ? , t a = +25?, unless otherwise noted.) max3514/max3517 timing characteristics (v cc = 4.75v to 5.25v, v gnd = 0, txen = shdn = high, d7 = x, t a = +25?, unless otherwise specified.)
max3514/MAX3516/max3517 ????? $"57?? 10 ______________________________________________________________________________________ -27.0 -26.4 -26.6 -26.8 -26.2 -26.0 -25.8 -25.6 -25.4 -25.2 -25.0 4.6 4.8 5.0 5.2 5.4 voltage gain vs. supply voltage low-noise mode max3514 toc04 supply voltage (v) voltage gain (db) t a = -40 c t a = +25 c t a = +85 c gain code = 48 28.2 28.5 28.4 28.3 28.6 28.7 28.8 28.9 29.0 29.1 29.2 -40 10 -15 35 60 85 voltage gain vs. temperature high-power mode max3514 toc05 temperature ( c) voltage gain (db) gain code = 127 v cc = +4.75v v cc = +5.00v v cc = +5.25v -11.0 -10.4 -10.6 -10.8 -10.2 -10.0 -9.8 -9.6 -9.4 -9.2 -9.0 -40 10 -15 35 60 85 voltage gain vs. temperature low-noise mode max3514 toc06 temperature ( c) voltage gain (db) gain code = 80 v cc = +4.75v v cc = +5.00v v cc = +5.25v 1 100 1000 voltage gain vs. frequency high-power mode max3514 toc07 frequency (mhz) voltage gain (db) 10 40 -30 -20 -10 0 10 30 20 a b c d gain code: a = 125 b = 100 c = 87 d = 60 20 -70 1 1000 100 10 voltage gain vs. frequency low-noise mode -40 -60 0 -20 30 -30 -50 10 -10 max3514 toc08 frequency (mhz) voltage gain (db) a b c d e f gain code: a = 120, b = 115, c = 95, d = 75, e = 55, f = 35 -30 -35 -40 -20 -25 -15 -10 -5 0 5 10 15 20 25 30 30 50 70 90 110 voltage gain vs. gain code max3514 toc09 gain code voltage gain (db) 60 40 80 100 120 high-power mode low- noise mode 0 0.3 0.2 0.1 0.5 0.4 0.9 0.8 0.7 0.6 1.0 60 70 80 90 100 110 120 gain step vs. gain code high-power mode max3514 toc10 gain code gain step (db) 0 0.2 0.1 0.4 0.3 0.6 0.5 0.7 0.9 0.8 1.0 30 50 60 70 40 80 90 100 110 120 gain step vs. gain code low-noise mode max3514 toc11 gain code gain step (db) -55 -45 -50 -35 -40 -25 -30 -20 30 70 50 90 110 130 transmit noise vs. gain code max3514 toc12 gain code output noise (dbmv in 160khz) low-noise mode high-power mode a j ?^ ?
q v
__________________________________________________________ (typical operating circuit; v cc = +5v, v in = +34dbmv, txen = shdn = high, f in = 20mhz, z load = 75 ? , t a = +25?, unless otherwise noted.) max3514/max3517 (continued)
max3514/MAX3516/max3517 ????? $"57?? ______________________________________________________________________________________ 11 a j ?^ ?
q v
__________________________________________________________ (typical operating circuit; v cc = +5v, v in = +34dbmv, txen = shdn = high, f in = 20mhz, z load = 75 ? , t a = +25?, unless otherwise noted.) max3514/max3517 (continued) -80 -70 -75 -60 -65 -55 -50 03040 10 20 50 60 70 2nd harmonic distortion vs. input frequency max3514 toc13 input frequency (mhz) 2nd harmonic distortion (dbc) 6dbmv, ln 20dbmv, ln 50dbmv, hp 61dbmv, hp -80 -70 -75 -60 -65 -55 -50 03040 10 20 50 60 70 3rd harmonic distortion vs. input frequency max3514 toc14 input frequency (mhz) 3rd harmonic distortion (dbc) 6dbmv, ln 20dbmv, ln 50dbmv, hp 61dbmv, hp 0.1 0140 80 40 power-up/down transients vs. gain code 1 10 100 max3514 toc15 gain code transient level (mvp-p) 20 60 100 120 high-power mode low-noise mode 0 -16 1 10 100 output return loss vs. frequency (75 ? system) -12 -14 max3514 toc16 frequency (mhz) output return loss (db) -8 -10 -6 -4 -2 high-power mode low-noise mode/ transmit disable max3514 toc17 output impedance (75 ? system) low noise mode/ transmit disable mode high-power mode -100 -80 -90 -60 -70 -40 -50 -30 -10 -20 0 500khz/div output spectrum max3514 toc18 (db) vout = 61dbmv = 0.25 1280ksps -100 -80 -90 -60 -70 -40 -50 -30 -10 -20 0 100khz/div output spectrum max3514 toc19 (db) vout = 61dbmv = 0.25 160ksps -100 -80 -90 -60 -70 -40 -50 -30 -10 -20 0 5.5mhz/div output spectrum max3514 toc20 (db) vout = 61dbmv = 0.25 1280ksps
max3514/MAX3516/max3517 ????? $"57?? 12 ______________________________________________________________________________________ 0 30 150 120 90 60 180 -50 0 25 -25 50 75 100 supply current vs. temperature max3514 toc21 temperature ( c) supply current (ma) transmit-enable mode, high-power, gain code = 125 transmit-enable mode, low-noise, gain code = 100 transmit-disable mode 0 60 30 120 90 150 180 06080 20 40 100 120 140 supply current vs. gain code max3514 toc22 gain code supply current (ma) high-power mode low-power mode 30.0 30.6 30.4 30.2 30.8 31.0 31.2 31.4 31.6 31.8 32.0 4.6 4.8 5.0 5.2 5.4 voltage gain vs. supply voltage high-power mode max3514 toc23 supply voltage (v) voltage gain (db) t a = -40 c t a = +25 c t a = +85 c gain code = 125 -27.0 -26.0 -26.5 -25.0 -25.5 -24.5 -24.0 4.6 5.0 4.8 5.2 5.4 voltage gain vs. supply voltage low-noise mode max3514 toc24 supply voltage (v) voltage gain (db) t a = -40 c t a = +25 c t a = +85 c gain code = 42 30.0 30.6 30.4 30.2 30.8 31.0 31.2 31.4 31.6 31.8 32.0 -40 10 -15 35 60 85 voltage gain vs. temperature high-power mode max3514 toc25 temperature ( c) voltage gain (db) v cc = 4.75v v cc = 5.25v v cc = 5.00v gain code = 125 -7.0 -6.4 -6.6 -6.8 -6.2 -6.0 -5.8 -5.6 -5.4 -5.2 -5.0 -40 10 -15 35 60 85 voltage gain vs. temperature low-noise mode max3514 toc26 temperature ( c) voltage gain (db) v cc = 4.75v v cc = 5.25v v cc = 5.00v gain code = 80 1 100 1000 voltage gain vs. frequency high-power mode max3514 toc27 frequency (mhz) voltage gain (db) 10 40 -30 -20 -10 0 10 30 20 a gain code: a = 125, b = 119, c = 100, d = 80, e = 60 b c d e 1 100 1000 voltage gain vs. frequency low-noise mode max3514 toc28 frequency (mhz) voltage gain (db) 10 20 -50 -40 -30 -20 -10 10 0 a gain code: a = 120, b = 109, c = 90, d = 70, e = 50, f =30 b c d e f -35 0 -5 -10 -15 -20 -25 -30 10 5 20 15 25 30 35 voltage gain vs. gain mode max3514 toc29 gain code voltage gain (db) 30 70 60 50 40 90 100 80 110 120 high-power mode low-noise mode a j ?^ ?
q v
__________________________________________________________ (typical operating circuit; v cc = +5v, v in = +34dbmv, txen = shdn = high, f in = 20mhz, z load = 75 ? , t a = +25?, unless otherwise noted.) MAX3516
max3514/MAX3516/max3517 ????? $"57?? ______________________________________________________________________________________ 13 0 0.3 0.2 0.1 0.5 0.4 0.9 0.8 0.7 0.6 1.0 60 70 80 90 100 110 120 gain step vs. gain mode high-power mode max3514 toc30 gain code gain step (db) 0 0.2 0.1 0.4 0.3 0.6 0.5 0.7 0.9 0.8 1.0 30 50 60 70 40 80 90 100 110 120 gain step vs. gain code low-noise mode max3514 toc31 gain code gain step (db) -55 -45 -50 -35 -40 -25 -30 -20 30 70 50 90 110 130 transmit noise vs. gain code max3514 toc32 gain code output noise (dbmv in 160khz) high-power mode low-noise mode -85 -75 -80 -65 -70 -55 -60 -50 02030 10 40 50 60 70 2nd harmonic distortion vs. input frequency, v cc = 5.0v max3514 toc33 input frequency (mhz) 2nd harmonic distortion (dbc) 20dbmv, ln 50dbmv, hp 61dbmv, hp 64dbmv, hp -80 -70 -75 -60 -65 -50 -55 -45 02030 10 40 50 60 70 3rd harmonic distortion vs. input frequency, v cc = 5.0v max3514 toc34 input frequency (mhz) 3rd harmonic distortion (dbc) 64dbmv, hp 61dbmv, hp 50dbmv, hp 20dbmv, ln -80 -70 -75 -60 -65 -55 -50 03040 10 20 50 60 70 2nd harmonic distortion vs. input frequency, v cc = 7.0v max3514 toc35 input frequency (mhz) 2nd harmonic distortion (dbc) 20dbmv, ln 50dbmv, hp 61dbmv, hp 64dbmv, hp -80 -70 -75 -60 -65 -55 -50 03040 10 20 50 60 70 3rd harmonic distortion vs. input frequency, v cc = 7.0v max3514 toc36 input frequency (mhz) 3rd harmonic distortion (dbc) 64dbmv, hp 50dbmv, hp 20dbmv, ln 61dbmv, hp 0 100 140 power-up/down transients vs. gain code max3514 toc37 gain code transient level (mvp-p) 40 100 0.1 1 10 20 60 120 80 high-power mode low-noise mode 0 -16 1 10 100 output return loss vs. frequency (75 ? system) -12 -14 max3514 toc38 frequency (mhz) output return loss (db) -8 -10 -6 -4 -2 high-power mode low-noise mode/ transmit-disable mode a j ?^ ?
q v
__________________________________________________________ (typical operating circuit; v cc = +5v, v in = +34dbmv, txen = shdn = high, f in = 20mhz, z load = 75 ? , t a = +25?, unless otherwise noted.) MAX3516 (continued)
max3514/MAX3516/max3517 ????? $"57?? 14 ______________________________________________________________________________________ output impedance, 5mhz?5mhz (75 ? system) max3514 toc39 low-noise mode/transmit- disable mode high-power mode -100 -80 -90 -60 -70 -40 -50 -30 -10 -20 0 500khz/div output spectrum max3514 toc40 (db) vout = 61dbmv = 0.25 1280ksps -100 -80 -90 -60 -70 -40 -50 -30 -10 -20 0 100khz/div output spectrum max3514 toc41 (db) vout = 61dbmv = 0.25 160ksps -100 -80 -90 -60 -70 -40 -50 -30 -10 -20 0 5.5mhz/div output spectrum max3514 toc42 (db) vout = 61dbmv = 0.25 1280ksps a j ?^ ?
q v
__________________________________________________________ (typical operating circuit; v cc = +5v, v in = +34dbmv, txen = shdn = high, f in = 20mhz, z load = 75 ? , t a = +25?, unless otherwise noted.) MAX3516 (continued)
max3514/MAX3516/max3517 ????? $"57?? ______________________________________________________________________________________ 15 z?
? ___________________________________________________________________ pin name function 1, 3, 7, 11 gnd ground 2v cc programmable-gain amplifier (pga) +5v supply. bypass to pin 4 with a decoupling capacitor as close to the part as possible. 4 gnd pga rf ground. as with all ground connections, maintain the shortest possible (low-inductance) length to the ground plane. 5 in+ positive pga input. along with in-, this port forms a high-impedance differential input to the pga. driving this port differentially increases the rejection of second-order distortion at low output levels. 6 in- negative pga input. when not used, this port must be ac-coupled to ground. see in+. 8 cs serial-interface enable. ttl-compatible input. see serial interface section. 9 sda serial-interface data. ttl-compatible input. see serial interface section. 10 sclk serial-interface clock. ttl-compatible input. see serial interface section. 12 shdn shutdown. when shdn is set low, all functions (including the serial interface) are disabled. 13, 17 n.c. no connection 14 cext rf output bypass. bypass to ground with a 0.1f capacitor. (n.c. for max3517.) 15 out- negative output. along with out+, this port forms a 300 ? impedance output. this port is matched to a 75 ? load using a 2:1 (voltage ratio) transformer. 16 out+ positive output. see out-. 18 txen transmit enable. drive txen high to place the device in transmit-enable mode. 19 v cc output amplifier bias, +5v supply. bypass to pin 20 with a decoupling capacitor as close to the part as possible. 20 gnd output amplifier bias ground. as with all ground connections, maintain the shortest possible (low- inductance) length to the ground plane. exposed paddle gnd ground (MAX3516 only) z?  ? ; ???? ???????? 1("
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* ?`?b{ a j ?^s? _______________________________________________________________ 12 shdn control logic max3514 MAX3516 max3517 18 5 txen in+ 6 2 4 3 in- +5v v cc gnd gnd 20 gnd 19 output rext* rext* +5v 2:1 0.1 f 0.1 f 0.1 f 0.001 f 0.001 f control logic * max3517 only ** max3514/MAX3516 only 0.1 f +5v v cc 16 15 out+ out- 14 ** cext 11 10 9 8 gnd sclk sda cs 7 gnd 1 gnd input + - anti-alias filter ?? ?c @@@@@@@@@@@@@@@@@@@@@@@@@@@@@ transistor count: 1006
max3514/MAX3516/max3517 ????? $"57?? 20 ______________________________________________________________________________________ ?-? _________________________________________________________________ tssop.eps
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5's`ts?t|?7?!?b?vb?-y`?b{ 21 ____________________maxim integrated products, 120 san gabriel drive, sunnyvale, ca 94086 408-737-7600 ? 2001 maxim integrated products is a registered trademark of maxim integrated products. b  eg 3 ?   f? n y s
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