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  general description the max3541/max3542 evaluation kits (ev kits) simplify the testing and evaluation of the max3541/max3542 pal, dvb-t, and hybrid tuners. the evaluation kits are fully assembled and tested at the factory. standard 50 sma connectors are included on the ev kits for the inputs and outputs to allow quick-and-easy evaluation on the test bench. this document provides a list of equipment required to evaluate the device, a straightforward test procedure to verify functionality, a description of the ev kit circuits, the circuit schematics, a components list of materials for the kits, and artwork for each layer of the pcbs. features  easy evaluation of the max3541/max3542  50 sma connectors  all critical peripheral components included  fully assembled and tested  pc control software available at www.maxim-ic.com evaluate: max3541/max3542 max3541/max3542 evaluation kits ________________________________________________________________ maxim integrated products 1 19-4430; rev 0; 2/09 for pricing, delivery, and ordering information, please contact maxim direct at 1-888-629-4642, or visit maxim? website at www.maxim-ic.com. ordering information part type max3541evkit ev kit MAX3542EVKIT ev kit component list designation qty description +3_3v, if_agc, mux, tp1 4 red test points, pc mini red keystone 5000 vcc2 (+5v) 0 not installed, pc mini red test point c1, c6, c37, c70, c71, c72, c73, c74 8 100p f ? 5% cer am i c cap aci tor s ( 0603) m ur ata g rm 1885c 1h 101j c2, c4, c5, c52, c53, c54, c56, c59, c62, c63, c64, c66, c86 13 1000pf ?% ceramic capacitors (0402) murata grm1555c1h102j c3 1 0.033f ? 5% cer am i c cap aci tor ( 0805) m ur ata g rm 21a7u 1h 333j c7 1 2.0p f ? 0.1p f cer am i c cap aci tor ( 0402) m ur ata g rm 1555c 1h 2r0b c8, c78, c87 3 1000p f 10% ceram i c capaci tor s ( 0603) m urata grm 188r71h 102k c9, c12 2 39pf ?% ceramic capacitors (0603) murata grm1885c1h390j c10, c30 2 0.1f ? 10% cer am i c cap aci tor s ( 0402) m ur ata g rm 155r71c 104k c11 1 5.6p f 0.25p f cer am i c cap aci tor ( 0402) m ur ata grm 1555c 1h 5r6c c13, c14 0 not installed, ceramic capacitors c17 1 22nf ?0% ceramic capacitor (0603) murata grm188r71h223k designation qty description c18 1 4.7p f 0.25p f cer am i c cap aci tor ( 0402) m ur ata grm 1555c 1h 4r7c c21, c25, c35 3 82pf ?% ceramic capacitors (0603) murata grm1885c1h820j c28 1 150pf ?% ceramic capacitor (0603) murata grm1885c1h151 c29, c31 1 47pf ?% ceramic capacitors (0603) murata grm1885c1h470j c45 1 22pf ?% ceramic capacitor (0402) murata grm1555c1h220j c55 1 10? ?0% ceramic capacitor (0805) murata grm21br61a106k c60, c61 2 100p f ? 5% cer am i c cap aci tor s ( 0402) m ur ata g rm 1555c 1h 101j c65 1 0.47? ? 10% cer am i c cap aci tor ( 0805) m ur ata g rm 219r71c 474k c75, c77 2 0.1f ? 10% cer am i c cap aci tor s ( 0603) m ur ata g rm 188r71c 104k c76 1 10f 10% tantal um cap aci tor ( r case) av x tajr106k006 c82 1 820p f ? 10% cer am i c cap aci tor ( 0603) m ur ata g rm 188r71h 821k c85 1 560p f ? 10% cer am i c cap aci tor ( 0402) m ur ata g rm 155r71h 561k c96 1 8.2p f 0.25p f cer am i c cap aci tor ( 0603) m ur ata grm 1885c 1h 8r2c
evaluate: max3541/max3542 max3541/max3542 evaluation kits 2 _______________________________________________________________________________________ component list (continued) designation qty description d1 1 da221 dual switching diode rohm da221tl fl2 1 x6966 bandpass filter epcos b39361x6966n201 gnd1, gnd4 2 black test points, pc mini black keystone 5001 gnd2 0 not installed, pc mini black test point j3, j19 2 connector sma end-launch jack receptacles, 0.062in johnson 142-0701-801 j13 1 db25 right-angle female connector amp 5745783-4 jp1, jp2, jp6 3 1 x 2-pin in-line headers, 100 mil centers sullins pec36saan jp11, jp12 2 1 x 3-pin in-line header, 100 mil centers sullins pec36saan l1 1 18nh ?% inductor (0603) murata lqg18hn18nj00 l2, l15 2 270nh ?% inductors (0603) toko ll1608-fslr27j l3 1 200nh ?% inductor (0603) murata lqw18anr20j00 l5 1 15nh ?% inductor (0402) murata lqw15an15nh00 l9 1 120nh ?% inductor (0603) murata lqw18anr12j0 l10 1 220nh ?% inductor (0603) murata lqw18anr22j00 l11 1 56pf ?% ceramic capacitor (0603) murata grm1885c1h560j l14 1 56nh ?% inductor (0603) toko ll1608-fsl56nj designation qty description r1 1 2k ?% resistor* (0603) r3, r8, r48 3 100 ?% resistors* (0402) r4, r55 2 0 ?% resistors?hort* (0603) r5 1 75 ?% resistor* (0402) r6, r13, r40, r41, r42 5 100 ?% resistors* (0603) r7, r9 2 10k ?% resistors* (0402) r10 1 86.6 ?% resistor* (0603) r11 1 43.2 ?% resistor* (0603) r12, r28, r49 3 1k ?% resistors* (0603) r14 1 300 ?% resistor* (0603) r15, r16 2 36 ?% resistors* (0603) r38 1 2.2k ?% resistor* (0402) r39 1 4.3k ?% resistor* (0402) r43, r44, r58 3 5.1k ?% resistors* (0603) r45, r46, r47 3 2.7k ?% resistors* (0603) r56, r59, r60 3 not installed, resistors r61, r62 2 39 ?% resistors (0603) t8 1 4:1 transformer toko 617pt-1664 u3 1 sn74lv07adr ?% hex buffer/driver texas instruments sn74lv07adr u4 1 s ee the e v ki t- s p eci fi c c om p onent li st y2 1 8m h z cr ystal c i ti zen am er i ca h c m 49- 8.000m abj- u t ? shunts, shorting jumper (jp2, jp11, jp12) sullins ssc02syan 1 pcb: max3541/42 evaluation kit * use lead-free parts only. ** ep = exposed pad. ev kit part number designation description max3541evkit complete single-conversion television tuner (48 fclga-ep) maxim max3541elm+ MAX3542EVKIT u4 complete single-conversion television tuner (48 fclga-ep) maxim max3542ulm+ ev kit-specific component list
quick start required equipment one power supply capable of supplying at least 500ma at +3.3v one dual-output power supply capable of supply- ing up to 3v at least 5ma (to apply gain control voltages) one rf signal generator capable of delivering at least 0dbm of output power at frequency. (hp 8482a or equivalent) one rf spectrum analyzer capable of covering the operating frequency range of the device. a pc (486dx33 or better) with windows 95/98, 2000, nt 4.0, xp or later operating system, 64mb of memory, and an available parallel port one 25-pin parallel cable ?0 sma cables (optional) one multichannel digital oscilloscope (optional) a network analyzer to measure return loss (optional) an ammeter to measure supply current connections and setup this section provides a step-by-step guide to testing the basic functionality of the ev kits in uhf mode. caution: do not turn on dc power or rf signal gen- erators until all connections are completed. 1) verify that the jp1 and jp6 shunts are removed, the jp2 shunt is installed, and jp11 and jp12 have shunts across pins 1-2. 2) with its output disabled, set the dc power supply to +3.3v. connect the power supply to the v cc (through an ammeter if desired) and gnd termi- nals on the ev kits. if available, set the current limit to 500ma. 3) with its output disabled, set both outputs of the dual-output dc power-supply voltages to +3v. connect one of the outputs to the tp1 connector and the other output to the if_agc connector. 4) with its output disabled, set the rf signal genera- tor to a 50.5mhz frequency and a -80dbm power level. connect the output of the rf signal genera- tor to the sma connector labeled rfin on the eval- uation board. 5) connect a 25-pin parallel cable between the pc? parallel port and the max3541/max3542 evalua- tion board. 6) turn on the +3.3v v cc power supply, followed by the +3v dual-output gain-control power supply. the supply current from the +3.3v v cc supply should read approximately 230ma. be sure to adjust the power supply to account for any voltage drop across the ammeter. evaluate: max3541/max3542 max3541/max3542 evaluation kits _______________________________________________________________________________________ 3 supplier phone website avx corporation 843-946-0238 www.avxcorp.com citizen america corp. 310-781-1460 www.citizencrystal.com epcos ag 732-906-4300 www.epcos.com johnson components 507-833-8822 www.johnsoncomponents.com keystone electronics corp. 209-796-2032 www.keyelco.com murata electronics north america, inc. 770-436-1300 www.murata-northamerican.com rohm co., ltd. 858-625-3630 www.rohm.com sullins electronics corp. 760-744-0125 www.sullinselectronics.com texas instruments inc. 972-644-5580 www.ti.com toko america, inc. 847-297-0070 www.tokoam.com note: indicate that you are using the max3541/max3542 when contacting these component suppliers. component suppliers windows is a registered trademark of microsoft corp.
evaluate: max3541/max3542 7) install and run the max3541/max3542 control software. software is available for download at www.maxim-ic.com/evkitssoftware . 8) load the default register settings from the control software by clicking edit: load defaults. 9) connect the sma connector labeled if_out on the evaluation board to a spectrum analyzer or to an oscilloscope. 10) enable the rf signal generator? output. 11) set the center frequency to the if frequency set on the control software. check the output. gain adjustment calculations add an additional 6db to the voltage gain to account for the 2:1 transformer on the output. add another 3.96db to the voltage gain to account for the minimum loss pad (r10 and r11) on the input. when measuring noise figure, account for 5.7db power loss of the mini- mum loss pad. a 36mhz if anti-aliasing filter is provided on the ev kits (c9, c12, c21, c25, c28, c29, c31, c35, l3, l9, l10, and l11). anti-aliasing filter requirements vary depend- ing on applications; users should consult their demodu- lator vendors for more specific information. layout considerations the max3541/max3542 ev kits serve as a guide for pcb layout. keep rf signal lines as short as possible to minimize losses and radiation. use controlled imped- ance on all high-frequency traces. the exposed pad must be soldered evenly to the board? ground plane for proper operation. use abundant vias beneath the exposed pad for maximum heat dissipation. use abun- dant ground vias between rf traces to minimize unde- sired coupling. to minimize coupling between different sections of the ic, the ideal power-supply layout is a star configuration, which has a large decoupling capacitor at the central v cc node. the v cc traces branch out from this node, with each trace going to separate v cc pins of the max3541/max3542. each v cc pin must have a bypass capacitor with low impedance to ground at the frequen- cy of interest. do not share ground vias among multiple connections to the pcb ground plane. max3541/max3542 evaluation kits 4 _______________________________________________________________________________________
evaluate: max3541/max3542 max3541/max3542 evaluation kits _______________________________________________________________________________________ 5 figure 1. max3541/max3542 ev kits schematic - ifout2+ ifin- ifin+ v cc v cc v cc v cc v cc v cc ifout1- ifout1+ v cc v cc v cc gnd agc agc
evaluate: max3541/max3542 max3541/max3542 evaluation kits 6 _______________________________________________________________________________________ figure 2. max3541/max3542 ev kits pcb layout?omponent placement guide
evaluate: max3541/max3542 max3541/max3542 evaluation kits _______________________________________________________________________________________ 7 figure 3. max3541/max3542 ev kits pcb layout?rimary component side
evaluate: max3541/max3542 max3541/max3542 evaluation kits 8 _______________________________________________________________________________________ figure 4. max3541/max3542 ev kits pcb layout?nner layer 2
evaluate: max3541/max3542 max3541/max3542 evaluation kits _______________________________________________________________________________________ 9 figure 5. max3541/max3542 ev kits pcb layout?nner layer 3
figure 6. max3541/max3542 ev kits pcb layout?econdary component side evaluate: max3541/max3542 max3541/max3542 evaluation kits maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a maxim product. no circu it patent licenses are implied. maxim reserves the right to change the circuitry and specifications without notice at any time. 10 __________________ maxim integrated products, 120 san gabriel drive, sunnyvale, ca 94086 408-737-7600 2009 maxim integrated products maxim is a registered trademark of maxim integrated products, inc. springer


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