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  designation qty description c10, c11 2 1?, 6.3v x5r ceramic capacitors (0603) taiyo yuden jmk107bj105ka j1, j2 0 not installed scope probe connectors j3, j4 2 bnc connectors a/d electronics 580-002-00 ju1, ju2, ju4, ju5 4 3-pin headers ju3, ju6 2 2-pin headers l1, l2 2 4.1?, 1.95a shielded inductors sumida cdrh5d18-4r1nc r1 1 43k ? 5% resistor (0805) r2 1 150k ? 5% resistor (0805) r3 1 20k ? 1% resistor (0805) r4 1 100k ? 1% resistor (0805) r5, r6, r7 3 51 ? 5% resistors (0805) u1 1 max1820zeub (10-pin ?ax) u2 1 MAX1821eub (10-pin ?ax) none 4 shunts (ju1?u6) none 1 max1820 pc board none 1 max1820 data sheet none 1 max1820evkit data sheet general description the max1820 evaluation kit (ev kit) is a fully assembled and tested surface-mount circuit board that contains two separate buck switching-regulator circuits. the top circuit utilizes a max1820 and is configured for a +0.4v to +3.4v dynamically variable output voltage and pro- vides up to 600ma of guaranteed current. the bottom circuit uses a MAX1821 and is configured for a +1.5v output that provides up to 600ma of guaranteed cur- rent. a +2.7vdc to +5.5vdc source could be utilized to power either circuit? input. the max1820/MAX1821 feature an internal mosfet switch and synchronous rectifier. the max1820 ev kit demonstrates low quiescent current and high efficiency up to 97% for maximum battery life. pwm operation at 1mhz allows the use of tiny surface-mount components. features +2.7v to +5.5v input range output voltages +0.4v to +3.4v output at 600ma (top circuit) +1.5v output at 600ma (bottom circuit) dynamically variable output voltage (top circuit) adjustable output voltage through resistive voltage-divider (bottom circuit) internal switch and synchronous rectifier 0.1a (typ) ic shutdown current 1mhz pwm switching frequency syncable to 13mhz oscillator normal and forced pwm mode all surface-mount components fully assembled and tested evaluates: max1820/MAX1821 max1820 evaluation kit 19-2146; rev 4; 3/04 component list ordering information part t em p r an g e ic package max1820evkit 0 c to +70 c 10 max designation qty description c1, c12 2 10f, 6.3v low-esr electrolytic capacitors (poscap) sanyo 6apa10m c2 1 4.7f, 6.3v x5r ceramic capacitor (0805) taiyo yuden jmk212bj475kg c3, c7 2 330p f, 50v x7r cer am i c cap aci tor s ( 0603) murata grm188r71h331k c4, c8 2 10p f, 50v cog cer am i c cap aci tor s ( 0805) taiyo yuden umk107c6100dz c5 1 0.01f, 50v x7r ceramic capacitor (0603) murata grm188r71h103k c6 1 10f, 6.3v x5r ceramic capacitor (1206) taiyo yuden lmk316bj106kl c9 1 0.047f, 16v x7r ceramic capacitor (0603) taiyo yuden emk107bj473ka component suppliers supplier phone fax murata 770-436-1300 770-436-3030 sanyo usa 619-661-6835 619-661-1055 sumida 708-956-0666 708-956-0702 taiyo yuden 408-573-4150 408-573-4159 for pricing, delivery, and ordering information, please contact maxim/dallas direct! at 1-888-629-4642, or visit maxim? website at www.maxim-ic.com. ________________________________________________________________ maxim integrated products 1
evaluates: max1820/MAX1821 max1820 evaluation kit 2 _______________________________________________________________________________________ quick start the max1820 ev kit is fully assembled and tested. follow these steps to verify board operation. do not turn on the power supply until all connections are completed. variable output (top circuit) 1) verify that shunts are across pins 1 and 2 of jumpers ju1 ( shdn ) and ju2 ( skip ). 2) verify that a shunt is installed on jumper ju3 (sync). 3) connect a +2.7vdc to +5.5vdc power supply to the vin pad. set the power supply to more than +3.6v. connect the supply ground to the pgnd pad. 4) connect a voltmeter to the vout pad. 5) connect an external voltage reference or dac out- put to the reference (ref) bnc connector. the volt- age reference or dac must have an adjustable range of +0.227v to +1.932v. 6) turn on the power supply first, then the voltage ref- erence source. 7) set the reference voltage to +0.227v and verify that vout is at +0.4v. 8) set the reference voltage to +1.932v and verify that vout is at +3.4v +1.5v output (bottom circuit) 1) verify that shunts are across pins 1 and 2 of jumpers ju4 ( shdn ) and ju5 ( skip ). 2) verify that a shunt is installed on jumper ju6 (sync). 3) connect a +2.7vdc to +5.5vdc power supply to the vin pad. connect the supply ground to the pgnd pad. 4) connect a voltmeter to the vout pad. 5) turn on the power supply and verify that vout is at +1.5v. for instructions on selecting the feedback resistors for other output voltages, see the evaluating other output voltages (bottom circuit) section. detailed description the max1820 ev kit contains two separate buck switching-regulator circuits. either circuit can be pow- ered from a dc power supply with an input range of +2.7v to +5.5v. pc board pads for the shdn signal are provided on both circuits to interface with an external controller. the top circuit provides a dynamically variable dc out- put voltage in the +0.4v to +3.4v range and provides up to 600ma as configured. a max1820 in a 10-pin max package is used for this circuit. to obtain up to +3.4v at the output, +3.6v to +5.5v must be fed to the input; 50 ? terminated bnc connectors are provided for the sync and ref signal pins that synchronize the cir- cuit to an external sine-wave source and adjust the out- put voltage with an external reference source, (for eval- uating the max1820x and max1820y) respectively. the bottom circuit supplies a +1.5v output at up to 600ma as configured. a MAX1821 in a 10-pin max package is used for this circuit. a pc board pad is pro- vided for the sync signal, which synchronizes the cir- cuit to an external sine-wave source (for evaluating the MAX1821x). the max1820 ev kit provides two jumper-selectable operational modes, normal and forced pwm. in normal mode, the circuit operates in pulse skip mode for light loads and pwm mode for heavy loads. in forced pwm mode, the circuit always operates in pwm mode for all loads. jumper selection shutdown mode (top and bottom circuits) the max1820 ev kit features a shutdown mode that reduces the max1820/MAX1821 quiescent current to 0.1a (typ), thus preserving battery life. the 3-pin jumpers, ju1 and ju4, select the shutdown mode for the max1820 ev kit. table 1 lists the selectable jumper options. shunt location shdn pin max1820/MAX1821 output 1, 2 connected to vin max1820, MAX1821 enabled 2, 3 connected to gnd shutdown mode, disabled none external controller connected to shdn pad logic high = enabled logic low = disabled table 1. jumpers ju1 and ju4 functions
evaluates: max1820/MAX1821 max1820 evaluation kit _______________________________________________________________________________________ 3 operating mode (top and bottom circuits) the max1820 ev kit provides a jumper-selectable operating mode feature. jumpers ju2 and ju5 select the operating mode for the top and bottom circuits, respectively. options include low-noise forced pwm mode and normal mode. table 2 lists the jumper options. caution: do not connect an external controller to the shdn pad while a shunt is on jumper ju1 or ju4 since the external controller may be damaged. clock select (top and bottom circuits) the max1820 ev kit features a selectable clock input. the max1820/MAX1821 s internal clock can operate the ev kit or the ev kit can be synchronized to an external clock when evaluating the max1820x, max1820y, and MAX1821x. the 2-pin jumpers ju3 and ju6 determine the top and bottom circuits operating clock, respective- ly. table 3 lists the selectable jumper options. the sine-wave generator should provide the following signal qualities: output voltage = 0.2v p-p to 0.8v p-p with approxi- mately 1vdc offset output frequency = 10mhz to 16mhz (max1820x and MAX1821x) output frequency = 15mhz to 21mhz (max1820y) duty cycle = 40% to 60% evaluating other output voltages (bottom circuit) the MAX1821 buck switching-regulator output is set to +1.5v by feedback resistors (r3, r4). to generate out- put voltages other than +1.5v (+1.25v to +5.5v), select different external voltage-divider resistors (r3, r4). refer to the setting the output voltages section in the MAX1821 data sheet for instructions on selecting the resistors. the minimum input voltage must be +150mv above the selected output voltage at vout to avoid possible dropout conditions. variable output voltage (top circuit) the max1820 ev kit top circuit uses the max1820z ic and features a dynamically variable output voltage in the +0.4v to +3.4v range. an external voltage refer- ence source must be connected to the top circuit s volt- age reference (ref) bnc connector. the reference source can be an external voltage reference or the out- put of a dac. the range of the voltage reference is +0.227v to +1.932v. this reference voltage range will provide an output voltage in the +0.4v to +3.4v range at vout. the output voltage (v out ) settles within 30s when changing v ref . when vin is equal or lower than the desired v out , the max1820 operates at 100% duty cycle and v out will track vin. shunt location skip pin operating mode 1, 2 connected to vin forced pwm mode: pwm operation at all loads 2, 3 connected to gnd normal mode: pulse skipping at light load and pwm at heavy load table 2. jumpers ju2 and ju5 functions shunt location sync pin operating mode installed connected to vin internal 1mhz clock used none connected to sync pad through c4, c8 external 13mhz sine- wave generator used to synchronize internal clock table 3. jumpers ju3 and ju6 functions
evaluates: max1820/MAX1821 max1820 evaluation kit 4 _______________________________________________________________________________________ vin c1 10 f 6.3v pgnd shdn c10 1 f 1 2 3 j3 sync r5 51 ? r6 51 ? ref j4 gnd c5 0.01 f 8 9 10 4 vin 12 3 ju2 1 skip gnd 5 shdn batt sync ref comp c3 330pf r1 43k ? 2 pgnd out lx 7 3 5 l1 4.1 h c2 4.7 f vout j1 pgnd max1820z u1 ju1 c4 10pf ju3 vin c12 10 f 6.3v pgnd shdn c11 1 f 1 2 3 8 9 10 4 vin2 12 3 ju5 1 skip gnd 5 shdn batt sync ref comp c7 330pf r2 150k ? 2 pgnd lx 7 6 l2 4.1 h c6 10 f vout j2 pgnd MAX1821 u2 sync pgnd c9 0.047 f r3 20k ? 1% r4 100k ? 1% r7 51 ? 3 fb ju4 c8 10pf ju6 figure 1. max1820 ev kit schematic (top) figure 2. MAX1821 ev kit schematic (bottom)
evaluates: max1820/MAX1821 figure 3. max1820 ev kit component placement guide component side figure 4. max1820 ev kit pc board layout?omponent side max1820 evaluation kit _______________________________________________________________________________________ 5
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. 6 _____________________maxim integrated products, 120 san gabriel drive, sunnyvale, ca 94086 408-737-7600 ? 2004 maxim integrated products printed usa is a registered trademark of maxim integrated products. evaluates: max1820/MAX1821 max1820 evaluation kit figure 5. max1820 ev kit pc board layout?older side


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