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  general description the max1932 evaluation kit (ev kit) is a fully assembled and tested surface-mount circuit board. the ev kit con- tains a max1932 step-up switching regulator that includes an 8-bit dac with an spi-compatible serial interface. the output of the step-up switching regulator is configured for a range of 40v to 90v and can provide up to 2ma. the ev kit is powered from a dc supply providing 4.5v to 5.5v. the ev kit can be reconfigured for an input voltage down to 3v. the spi-compatible serial interface can be connected to an ibm-compatible pc parallel port for evaluation. windows 95/98/2000-compatible software provides a user-friendly interface to demonstrate the features of the max1932 ic. the program is menu driven and offers a graphics interface with control buttons. the max1932 ev kit features current-limit protection for the output. the max1932 qfn package and small external components permit the circuit area to be less than 0.6in ? 0.9in. features ? 4.5v to 5.5v input range ? output voltage ranges from 40v to 90v ? output ranges are adjustable with resistors ? overcurrent protection ? spi-compatible serial interface ? menu-driven software ? windows 95/98/2000-compatible software ? reconfigurable for input voltages down to 3v (refer to the ic data sheet) ? surface-mount components ? fully assembled and tested evaluates: max1932 max1932 evaluation kit ________________________________________________________________ maxim integrated products 1 designation qty description c1, c6 2 1? 10%, 6.3v x5r ceramic capacitors (0603) tdk c1608x5r0j105k c2 1 0.047? 10%, 100v x7r ceramic capacitor (0805) tdk c2012x7r2a473k c3 1 0.1? 10%, 100v x7r ceramic capacitor (1206) tdk c3216x7r2a104k c4 1 0.22? 10%, 10v x5r ceramic capacitor (0603) tdk c1608x5r1a224k c7 1 0.1? 10%, 16v x7r ceramic capacitor (0603) tdk c1608x7r1c104k d1 1 150ma, 100v schottky barrier diode sod123 diodes inc. bat46w d2, d3 2 200ma, 25v schottky diodes sot23 fairchild bat54c j1 1 db-25 male right-angle connector j2 1 5-pin header ju2, ju3, ju4 3 2-pin headers component list ordering information 19-2650; rev 0; 10/02 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. part temp range ic package MAX1932EVKIT 0? to +70? 12 qfn (4mm ? 4mm) designation qty description l1 1 100?, 170ma inductor sumida cmd4d13-101mc n1 1 170ma, 100v n-channel mosfet sot23 fairchild bss123 r1 1 806 ? 1% resistor (0805) r2 1 91k ? 5% resistor (0805) r3, r9, r10 3 1m ? 5% resistors (0603) r5 1 1m ? 1% resistor (0805) r6 1 24.9k ? 1% resistor (0805) r7 1 20k ? 5% resistor (0603) r8 1 32.4k ? 1% resistor (0805) r11 0 not installed, resistor (0603) u1 1 max1932etc 12-lead qfn 4mm ? 4mm u2 1 max1841eub 10-pin ?ax none 3 shunts (ju2, ju3, ju4) none 1 max1932 pc board spi is a trademark of motorola, inc. windows is a registered trademark of microsoft corp.
evaluates: max1932 quick start required equipment the following equipment is required: max1932 ev kit 5v, 500ma dc power supply one voltmeter (optional) windows 95/98/2000 computer with a spare parallel (printer) port (optional) 25-pin i/o extension cable procedure with a computer do not turn on the power supply until all connec- tions are completed: 1) install shunts on jumpers ju2, ju3, and ju4. 2) with the power off, connect the 5v dc power sup- ply to the max1932 ev kit. 3) connect the 25-pin i/o extension cable from the computer? parallel port to the max1932 ev kit board. the ev kit software uses a loopback con- nection to confirm that the correct port has been selected. 4) install the evaluation software by running the install.exe program on the floppy disk. the pro- gram files are copied and icons are created for them in the windows start menu. 5) turn on the power supply. verify that v out is approximately 40v. 6) start the max1932 program by opening its icon in the start menu. 7) click on spi 3-wire parallel port diagnostic (figure 1). 8) click on bit-banging serial interface. 9) enter 0x01 into ?ata bytes to be written?and click on send now (figure 2). 10) verify that the voltage at the vout pad is approxi- mately 90v. 11) enter 0xff into the ?ata bytes to be written?box and click on send now. 12) verify that the voltage at the vout pad is approxi- mately 40v. 13) header j2 is provided to monitor the parallel port pins supplying the clk_p, cs_p, din_p (5v sig- nals), and loopback signal. the cs, sclk, and din pads on the ev kit? bottom edge are v cc level- shifted signals from the max1841 translator. both signal locations can be used for monitoring. for instructions on selecting the feedback resistors for other output voltages, see the output voltage range section. procedure without a computer do not turn on the power supply until all connections are completed: 1) remove shunts on jumpers ju2, ju3, and ju4. 2) with the power off, connect the 5v dc power sup- ply to the max1932 ev kit. 3) turn on the power supply. verify that v out is approximately 40v. max1932 evaluation kit 2 _______________________________________________________________________________________ figure 1. max1932 evaluation software? main window to access the spi 3-wire parallel port diagnostic utility component suppliers supplier phone fax website diodes inc. 805-4464800 805-381-3899 www.diodes.com fairchild semiconductor 888-522-5372 www.fairchildsemi.com sumida usa 847-545-6700 847-545-6720 www.sumida.com tdk 847-803-6100 847-390-4405 www.component.tdk.com note: please indicate that you are using the max1932 when contacting these component suppliers.
detailed description the max1932 ev kit contains a step-up switching regu- lator that includes an 8-bit dac with an spi-compatible serial interface. the output of the ev kit has two set- tings: the range voltage setting and a specific voltage setting within the range. as configured, the step-up switching regulator can generate an output range of 40v to 90v and provide up to 2ma of current to the output with 4.75v input. the step-up switching-regulator output voltage can be reconfigured to ranges of 4.5v to 15v, 4.5v to 45v, and 20v to 60v with proper resistor selection (see the output voltage range section). the voltage setting within the range is set by the 8-bit dac that receives input data from the spi-compatible interface. the ev kit connects to a compatible pc par- allel port and uses the port to control the ev kit. the ev kit? spi signals are connected to a max1841 level translator (u2). the translator level shifts the comput- er? parallel port logic 5v signals to the ev kit? logic vcc voltage level chosen by the user. the translator can function with voltages down to 2.7v. the level translator? parallel port side is powered by the parallel port? data pins 6, 7, 8, and 9, diodes d2/d3, and capac- itor c6, which provides approximately 5v to the transla- tor? input. the power supply connected to v cc provides power to the level translator? output. a 5-pin header (j2) is provided for monitoring the 5v clk_p, cs_p, din_p nonlevel-translated and loopback signals coming from the parallel port cable. the ev kit can be reconfigured for stand-alone opera- tion and connected to an external microcontroller for evaluation. pc board pads are provided for interfacing or monitoring the cs , sclk, and din level-translated pins of the max1932 ic. output voltage range step-up switching regulator output range the max1932 ev kit? step-up switching regulator output range is set from 40v to 90v by feedback resistors r5, r6, and r8. to generate output voltage ranges other than 40v to 90v (4.5v to 15v, 4.5v to 45v, or 20v to 60v), select different external voltage-divider resistors (r5, r6, and r8). refer to the output and dac adjustment range section in the max1932 data sheet for instruction on selecting resistors. jumper selection stand-alone configuration the max1932 ev kit features four jumpers (ju1?u4) to reconfigure the ev kit for stand-alone operation mode or pc/software control mode. tables 1 and 2 list the options for the desired evaluation mode. note: all jumpers must be configured for only one mode at a time. a suitable voltage must be selected for stand- alone mode. configure all jumpers for either stand- alone or pc/software control mode. detailed description of software the max1932 ev kit software? main window has a but- ton to start the spi 3-wire parallel port diagnostic utility used for bit-banging data into the max1932. click on spi 3-wire parallel port diagnostic to start the utility. spi/3-wire diagnostic the spi/3-wire diagnostic screen allows you to send spi or 3-wire commands, or manipulate the parallel port pins directly. each of the 25 pins is represented by a checkbox. a checkmark means that the corresponding pin is at a logic-high level. unused and grounded pins are gray. evaluates: max1932 max1932 evaluation kit _______________________________________________________________________________________________________ 3 figure 2. parallel port diagnostic window? bit-banging serial interface tab
evaluates: max1932 the bit-banging spi diagnostic utility transmits data using synchronous serial format (similar to motorola? 68hc11 spi interface). the spi interface sends and receives data simultaneously on separate pins. parallel port pin 2 drives the clk_p, pin 3 drives cs_p, and pin 4 drives din_p. the data to be sent is 8-bit data represented by a two- digit hexadecimal dac code. the dac code ranges from 0x01 to 0xff. the output is at the higher limit, 90v, when the dac code is 0x01, and at the lower limit, 40v, when the dac code is 0xff. the dac code is entered in the ?ata bytes to be written?box and transmitted by clicking on send now. troubleshooting problem: cannot find the max1932 ev kit parallel port connection. ensure that the i/o extension cable is connected to a parallel port and not to a scsi or other type of port. verify that the supplied lptcon.vxd is in the same directory as max1932.exe. if a local printer driver is installed, temporarily disable it. the software does not work if the program icon is dragged onto the windows desktop. max1932 evaluation kit 4 _______________________________________________________________________________________ table 1. stand-alone mode jumper shunt jumper function ev kit mode ju1 cut open u2 level translator vcc pin isolated u2 power disconnected ju2 not installed u2 level translator sclk signal isolated from ev kit stand-alone, external controller connected to sclk pad ju3 not installed u2 level translator cs signal isolated from ev kit stand-alone, external controller connected to cs pad ju4 not installed u2 level translator din signal isolated from ev kit stand-alone, external controller connected to din pad table 2. pc/software control mode jumper shunt jumper function ev kit mode ju1 shorted u2 level translator powered from vcc rail u2 power connected ju2 installed u2 level translator provides sclk signal pc/software control through parallel port ju3 installed u2 level translator provides cs signal pc/software control through parallel port ju4 installed u2 level translator provides din signal pc/software control through parallel port
evaluates: max1932 max1932 evaluation kit _______________________________________________________________________________________ 5 max1932 vin vin vin sclk c1 1 f 6.3v pgnd cl cs sclk cs r3 1m ? r9 1m ? din din gnd r10 1m ? 3 11 cl 12 cs 1 sclk 2 9 din gnd v in l1 100 h c2 0.047 f 100v c3 0.1 f 100v gate 10 cs+ 4 cs- 5 1 3 2 n1 d1 r1 806 ? 1% r2 91k ? r5 1m ? 1% r8 32.4k ? 1% r11 short (pc trace) vout gnd therm gnd fb 7 comp 8 dacout 6 r6 24.9k ? 1% r7 20k ? c4 0.22 f u1 figure 3. max1932 ev kit schematic (sheet 1 of 2)
evaluates: max1932 max1932 evaluation kit 6 _______________________________________________________________________________________ max1841 sclk ju2 ju1 8 clk ju3 7 rst din ju4 10 io 6 gnd 9 3 4 5 1 2 v cc cin rin ddrv data dv cc cs vin j2? j1? j1? j1? j2? j2? clk_p j1? j1? j1? j2? j1?3 j2? din_p loop_bk gnd cs_p l r 1 2 d3 3 j1? j1? l r 1 2 d2 3 c6 1 f c7 0.1 f n.c. 5-pin header u2 j1? j1?0 j1?1 j1?2 j1?4 j1?5 j1?6 j1?7 j1?8 j1?9 j1?0 j1?1 j1?2 j1?3 j1?4 j1?5 n.c. n.c. n.c. n.c. n.c. n.c. n.c. n.c. db-25 male right- angle connector figure 4. max1932 ev kit schematic (sheet 2 of 2)
evaluates: max1932 max1932 evaluation kit 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. maxim integrated products, 120 san gabriel drive, sunnyvale, ca 94086 408-737-7600 _____________________ 7 2002 maxim integrated products printed usa is a registered trademark of maxim integrated products. figure 5. max1932 ev kit component placement guide component side figure 6. max1932 ev kit component placement guide solder side figure 7. max1932 ev kit pc board layout?omponent side figure 8. max1932 ev kit pc board layout?older side


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