Part Number Hot Search : 
AT91SAM IDT5V AD9244 OPA189 TVV030 23M050 VRE304KD FP6176
Product Description
Full Text Search
 

To Download MAX4372F Datasheet File

  If you can't view the Datasheet, Please click here to try to view without PDF Reader .  
 
 


  Datasheet File OCR Text:
  for pricing, delivery, and ordering information, please contact maxim direct at 1-888-629-4642, or visit maxim? website at www.maxim-ic.com. general description the max4372 low-cost, precision, high-side current- sense amplifier is available in a tiny, space-saving sot23-5-pin package. offered in three gain versions (t = 20v/v, f = 50v/v, and h = 100v/v), this device operates from a single 2.7v to 28v supply and con- sumes only 30?. it features a voltage output that elimi- nates the need for gain-setting resistors and is ideal for today? notebook computers, cell phones, and other systems where battery/dc current monitoring is critical. high-side current monitoring is especially useful in bat- tery-powered systems since it does not interfere with the ground path of the battery charger. the input com- mon-mode range of 0 to 28v is independent of the sup- ply voltage and ensures that the current-sense feedback remains viable even when connected to a 2-cell battery pack in deep discharge. the user can set the full-scale current reading by choosing the device (t, f, or h) with the desired volt- age gain and selecting the appropriate external sense resistor. this capability offers a high level of integration and flexibility, resulting in a simple and compact cur- rent-sense solution. for higher bandwidth applications, refer to the max4173t/f/h data sheet. applications power-management systems general-system/board-level current monitoring notebook computers portable/battery-powered systems smart-battery packs/chargers cell phones precision-current sources features  low-cost, compact current-sense solution  30? supply current  2.7v to 28v operating supply  0.18% full-scale accuracy  0.3mv input offset voltage  low 1.5 output impedance  three gain versions available 20v/v (max4372t) 50v/v (MAX4372F) 100v/v (max4372h)  high accuracy +2v to +28v common-mode range, functional down to 0v, independent of supply voltage  available in a space-saving 5-pin sot23 package and 3 x 2 ucsp (1mm x 1.5mm) package max4372t/f/h low-cost, ucsp/sot23, micropower, high-side current-sense amplifier with voltage output ________________________________________________________________ maxim integrated products 1 rs+ 15 rs- max4372t/f/h sot23-5 ucsp top view top view (bumps on bottom) 2 34 out out v cc v cc gnd gnd 23 1 a b max4372t/f/h rs+ rs- 19-1548; rev 4; 7/09 part max4372t euk-t max4372tesa -40? to +85? -40? to +85? temp range pin- package 5 sot23-5 8 so pin configurations ordering information top mark adiu rs- out a/d converter v cc v cc gnd rs+ r sense v sense i load v in 0 to 28v +2.7v to +28v 0.1 f max4372t/f/h load/ battery typical operating circuit note: gain values are as follows: 20v/v for the t version, 50v/v for the f version, and 100v/v for the h version. ordering information continued at end of datasheet. pin configurations continued at end of datasheet. ucsp is a trademark of maxim integrated products, inc. max4372tebt-t -40? to +85? 3 x 2 ucsp acx p a r t m a x 4 3 7 2 t e u k - t m a x 4 3 7 2 t e s a - 4 0 c t o + 8 5 c - 4 0 c t o + 8 5 c t e m p r a n g e p i n - p a c k a g e 5 s o t 2 3 - 5 8 s o o r d e r i n g i n f o r m a t i o n t o p m a r k a d i u m a x 4 3 7 2 t e b t - t - 4 0 c t o + 8 5 c 3 x 2 u c s p a c x
max4372t/f/h low-cost, ucsp/sot23, micropower, high-side current-sense amplifier with voltage output 2 _______________________________________________________________________________________ absolute maximum ratings electrical characteristics (v rs+ = 0 to 28v, v cc = 2.7v to 28v, v sense = 0, r load = 1m , t a = t min to t max , unless otherwise noted. typical values are at t a = +25?.) (note 1) 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 , rs+, rs- to gnd ...........................................-0.3v to +30v out to gnd ...........................................................-0.3v to +15v differential input voltage (v rs+ - v rs- ) ..............................?.3v current into any pin..........................................................?0ma continuous power dissipation (t a = +70?) 5-pin sot23 (derate 7.1mw/? above +70?).............571mw 8-pin so (derate 5.88mw/? above +70?).................471mw 3 x 2 ucsp (derate 3.4mw/? above +70?) ...........273.2mw operating temperature range ...........................-40? to +85? storage temperature range .............................-65? to +150? lead temperature (soldering, 10s). ................................+300? bump temperature (soldering) infrared (15s) ................................................................+200? vapor phase (20s) ........................................................+215? v cc = 2.7v, i out = -500? v cc = 2.7v v rs+ 2v v rs+ > 2v v rs+ 2v v rs+ > 2v v rs+ > 2v v rs+ > 2v, v sense = 5mv gain = 100v/v v cc = 0 gain = 20v/v or 50v/v conditions v 0.1 0.25 v cc - v oh out high voltage 965 out low voltage mv 2.6 mv 100 v sense 150 full-scale sense voltage (note 4) v 028 v cmr common-mode input range (note 3) v 2.7 28 v cc operating voltage range (note 2) ? -50 2 i rs- input bias current 02 -25 2 i rs+ 01 db 85 cmr common-mode rejection ? 30 60 i cc supply current ? 0.05 1.2 i rs+ , i rs- leakage current units min typ max symbol parameter i out = 10? i out = 100? 0.3 ?.8 v sense = 100mv, v cc = 12v, v rs+ = 12v (note 7) ? v sense = 100mv, v cc = 28v, v rs+ = 28v (note 7) ?.15 ? v sense = 100mv, v cc = 12v, v rs+ = 0.1v (note 7) ? ?8 v sense = 6.25mv, v cc = 12v, v rs+ = 12v (note 8) % ?.15 total out voltage error (note 6) v sense = 100mv, v cc = 12v, v rs+ = 12v, t a = +25? (note 7) % ?.18 ? full-scale accuracy (note 5) t a = +25? v cc = v rs+ = 12v 0.3 ?.3 ?.1 t a = t min to t max v cc = v rs+ = 12v mv ?.9 v os input offset voltage (note 5) max4372_esa max4372_euk, _ebt max4372_esa max4372_euk, _ebt
max4372t/f/h low-cost, ucsp/sot23, micropower, high-side current-sense amplifier with voltage output _______________________________________________________________________________________ 3 electrical characteristics (continued) (v rs+ = 0 to 28v, v cc = 2.7v to 28v, v sense = 0, r load = 1m , t a = t min to t max , unless otherwise noted. typical values are at t a = +25?.) (note 1) note 1: all devices are 100% production tested at t a = +25?. all temperature limits are guaranteed by design. note 2: guaranteed by psr test. note 3: guaranteed by out voltage error test. note 4: output voltage is internally clamped not to exceed 12v. note 5: v os is extrapolated from the gain accuracy tests. note 6: total out voltage error is the sum of gain and offset voltage errors. note 7: measured at i out = -500? (r load = 4k for gain = 20v/v, r load = 10k for gain = 50v/v, r load = 20k for gain = 100v/v). note 8: 6.25mv = 1/16 of 100mv full-scale voltage (c/16). note 9: the device will not reverse phase when overdriven. v rs + = 12v, v cc = 12v, c load = 10pf conditions max4372t 20 v sens e = 20mv, gain = 20v/v khz 50 bw 275 units min typ max symbol parameter v sense = 20mv, gain = 50v/v 200 v sense = 20mv, gain = 100v/v 110 -3db bandwidth MAX4372F max4372h v/v 100 gain 50 no sustained oscillations v sense = 100mv 1.5 r out out output resistance pf 1000 capacitive-load stability v sense = 20mv to 100mv % ?.5 gain accuracy v out = 2v, v rs+ > 2v v cc = 12v, v rs+ = 12v, c load = 10pf ms 0.1 saturation recovery time (note 9) v cc = 12v, v rs+ = 12v, v sense = 100mv, c load = 10pf ms 0.5 power-up time to 1% of final value db 75 85 psr power-supply rejection v sense = 6.25mv ?.25 ?.5 t a = +25? t a = -40? to +85? v sense = 6.25mv to 100mv 20 v sense = 100mv to 6.25mv gain = 20v/v, v cc = 12v, v rs+ = 12v, c load = 10pf ? 20 out settling time to 1% of final value
max4372t/f/h low-cost, ucsp/sot23, micropower, high-side current-sense amplifier with voltage output 4 _______________________________________________________________________________________ typical operating characteristics (v cc = 12v, v rs+ = 12v, v sense = 100mv, t a = +25?, unless otherwise noted.) 25.0 27.5 30.0 32.5 35.0 supply current vs. supply voltage max4372 toc01 supply voltage (v) supply current ( a) 01216 4 8 20 24 28 a v = +100v/v a v = +50v/v a v = +20v/v v sense = 5mv 0 5 10 15 20 25 30 35 40 -40 10 60 -15 35 85 supply current vs. temperature max4372t toc02 temperature (?) supply current ( a) v sense = 5mv 28.0 29.0 28.5 30.0 29.5 31.5 31.0 30.5 32.0 supply current vs. common-mode voltage max4372 toc03 common-mode voltage (v) supply current ( a) 01216 4 8 20 24 28 a v = +100v/v a v = +50v/v a v = +20v/v v sense = 5mv -1.2 -0.8 -1.0 -0.2 -0.4 -0.6 0.4 0.2 0 0.6 010 5 15202530 total output error vs. supply voltage max4372 toc04 supply voltage (v) output error (%) g = +100v/v g = +50v/v g = +20v/v 0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 010 5 15202530 total output error vs. common-mode voltage max4372t toc07 common-mode voltage (v) output error (%) g = +100v/v g = +50v/v g = +20v/v -1.0 -0.5 0.5 0 1.0 1.5 0100 50 150 200 250 300 total output error vs. v sense max4372t toc05 v sense (mv) output error (%) a v = +100v/v a v = +20v/v a v = +50v/v -45 -90 100 100k 10k 1k power-supply rejection vs. frequency -75 -85 -55 -65 -40 -70 -80 -50 -60 max4372t toc06 frequency (hz) psr (db) -1.0 -0.9 -0.8 -0.7 -0.6 -0.5 -0.4 -0.3 -0.2 -0.1 0 gain accuracy vs. temperature max4372t toc08 temperature ( c) gain accuracy (%) -40 10 60 -15 35 85 a v = +20v/v a v = +50v/v a v = +100v/v -1.0 -0.8 -0.6 -0.4 -0.2 0 0.2 0.4 0.6 0.8 1.0 -40 10 60 -15 35 85 total output error vs. temperature max4372t toc09 temperature (?) total output error (%) a v = +50v/v a v = +100v/v a v = +20v/v
v out v sense 600mv 200mv 30mv 10mv max4372t small-signal transient response max4372t toc10 20 s/div v out v sense 1.5v 0.5v 30mv 10mv MAX4372F small-signal transient response max4372t toc11 20 s/div v out v sense 3v 1v 30mv 10mv max4372h small-signal transient response max4372t toc12 20 s/div v out v sense 1v 3v 50mv 150mv max4372t large-signal transient response max4372t toc13 20 s/div v out v sense 2.5v 7.5v 50mv 150mv MAX4372F large-signal transient response 20 s/div max4372t toc14 3 -8 1k 100k 10k 1m small-signal gain vs. frequency -7 max4372t toc16 frequency (hz) gain (db) -6 -5 -4 -3 -2 -1 0 1 2 g = 50v/v g = 20v/v g = 100v/v v sense = 20mv v out v sense 0 10v 0 100mv max4372h large-signal transient response 20 s/div max4372t toc15 max4372t/f/h low-cost, ucsp/sot23, micropower, high-side current-sense amplifier with voltage output _______________________________________________________________________________________ 5 typical operating characteristics (continued) (v cc = 12v, v rs+ = 12v, v sense = 100mv, t a = +25?, unless otherwise noted.)
_______________detailed description the max4372 high-side current-sense amplifier fea- tures a 0 to 28v input common-mode range that is inde- pendent of supply voltage. this feature allows the monitoring of current flow out of a battery in deep dis- charge, and also enables high-side current sensing at voltages far in excess of the supply voltage (v cc ). current flows through the sense resistor, generating a sense voltage (figure 1). since a1? inverting input is high impedance, the voltage on the negative terminal equals v in - v sense . a1 forces its positive terminal to match its negative terminal; therefore, the voltage across r g1 (v in - v1-) equals v sense . this creates a current to flow through r g1 equal to v sense / r g1 . the transistor and current mirror amplify the current by a factor of . this makes the current flowing out of the current mirror equal to: i m = v sense / r g1 a2? positive terminal presents high impedance, so this current flows through r gd , with the following result: v2+ = r gd v sense / r g1 r1 and r2 set the closed-loop gain for a2, which ampli- fies v2+, yielding: v out = r gd v sense / r g1 (1 + r2 / r1) the gain of the device equals: v out = r gd (1 + r2 / r1) / r g1 v sense __________applications information recommended component values the max4372 operates over a wide variety of current ranges with different sense resistors. table 1 lists com- mon resistor values for typical operation of the max4372. choosing r sense given the gain and maximum load current, select r sense such that v out does not exceed v cc - 0.25v or 10v. to measure lower currents more accurately, use a high value for r sense . a higher value develops a higher sense voltage, which overcomes offset voltage errors of the internal current amplifier. in applications monitoring very high current, ensure r sense is able to dissipate its own i 2 r losses. if the resistor? rated power dissipation is exceeded, its value may drift or it may fail altogether, causing a differential voltage across the terminals in excess of the absolute maximum ratings. max4372t/f/h low-cost, ucsp/sot23, micropower, high-side current-sense amplifier with voltage output 6 _______________________________________________________________________________________ max4372t/f/h gnd to load v in 0 to 28v 2.7v to 28v r1 r gd r g2 100k rs+ rs- r g1 100k r2 out v2+ v1+ v1- v2- v cc r sense i load i m v sense current mirror a1 a2 pin description 1 3 ground 2 4 output voltage. v out is proportional to the magnitude of v sense (v rs+ - v rs- ). a2 a3 so function sot23 ucsp 3 1 supply voltage. use at least a 0.1? capacitor to decouple v cc from fast transients. 4 8 power connection to the external sense resistor a1 b1 5 6 load-side connection to the external sense resistor 2, 5, 7 no connection. not internally connected. b3 figure 1. functional diagram gnd out name v cc rs+ rs- n.c. pin
max4372t/f/h using a pc board trace as r sense if the cost of r sense is an issue and accuracy is not critical, use the alternative solution shown in figure 2. this solution uses copper pc board traces to create a sense resistor. the resistivity of a 0.1-inch-wide trace of 2-ounce copper is about 30m /ft. the resistance tem- perature coefficient of copper is fairly high (approxi- mately 0.4%/?), so systems that experience a wide temperature variance must compensate for this effect. in addition, self-heating will introduce a nonlinearity error. do not exceed the maximum power dissipation of the copper trace. for example, the max4372t (with a maximum load cur- rent of 10a and an r sense of 5m ) creates a full-scale v sense of 50mv that yields a maximum v out of 1v. r sense , in this case, requires about 2 inches of 0.1- inch-wide copper trace. ucsp applications information for the latest application details on ucsp construction, dimensions, tape carrier information, printed circuit board techniques, bump-pad layout, and recommend- ed reflow temperature profile, as well as the latest infor- mation on reliability testing results, go to the maxim's website at www.maxim-ic.com/ucsp to find the application note: ucsp? wafer-level chip-scale package. table 1. recommended component values full-scale load current, i load (a) gain (v/v) current-sense resistor, r sense (m ) 2.0 full-scale output voltage (full-scale v sense = 100mv), v out (v) 5.0 10.0 0.1 1000 20 100 50 2.0 100 50 5.0 10.0 1 100 20 2.0 100 50 5.0 2.0 100 50 5.0 10.0 5 20 20 10.0 10 10 20 0.1in copper 0.3in copper 0.3in copper input load/battery v cc v sense r sense gnd 2.7v to 28v rs+ rs- out max4372t/f/h figure 2. connections showing use of pc board low-cost, ucsp/sot23, micropower, high-side current-sense amplifier with voltage output _______________________________________________________________________________________ 7
max4372t/f/h low-cost, ucsp/sot23, micropower, high-side current-sense amplifier with voltage output 8 _______________________________________________________________________________________ rs- n.c. out 1 2 8 7 rs+ n.c. n.c. gnd v cc so 3 4 6 5 max4372t/f/h chip information transistor count: 225 process: bicmos part MAX4372F euk-t -40? to +85? temp range pin-package 5 sot23-5 top mark adiv MAX4372Fesa max4372h euk-t max4372hesa -40? to +85? -40? to +85? -40? to +85? 8 so 5 sot23-5 8 so MAX4372Febt-t -40? to +85? 3 x 2 ucsp adiw acy max4372hebt-t -40? to +85? 3 x 2 ucsp acz pin configurations (continued) ordering information (continued) 6l, ucsp.eps g 1 1 21-0097 package outline, 3x2 ucsp package information for the latest package outline information and land patterns, go to www.maxim-ic.com/packages . note that a ?? ?? or ??in the package code indicates rohs status only. package drawings may show a different suffix character, but the drawing pertains to th e package regardless of rohs status. note : max4372_ebt uses package code b6-2.
max4372t/f/h low-cost, ucsp/sot23, micropower, high-side current-sense amplifier with voltage output _______________________________________________________________________________________ 9 soicn .eps package outline, .150" soic 1 1 21-0041 b rev. document control no. approval proprietary information title: top view front view max 0.010 0.069 0.019 0.157 0.010 inches 0.150 0.007 e c dim 0.014 0.004 b a1 min 0.053 a 0.19 3.80 4.00 0.25 millimeters 0.10 0.35 1.35 min 0.49 0.25 max 1.75 0.050 0.016 l 0.40 1.27 0.394 0.386 d d min dim d inches max 9.80 10.00 millimeters min max 16 ac 0.337 0.344 ab 8.75 8.55 14 0.189 0.197 aa 5.00 4.80 8 n ms012 n side view h 0.244 0.228 5.80 6.20 e 0.050 bsc 1.27 bsc c h e e b a1 a d 0-8 l 1 variations: package information (continued) for the latest package outline information and land patterns, go to www.maxim-ic.com/packages . note that a ?? ?? or ??in the package code indicates rohs status only. package drawings may show a different suffix character, but the drawing pertains to th e package regardless of rohs status.
max4372t/f/h low-cost, ucsp/sot23, micropower, high-side current-sense amplifier with voltage output 10 ______________________________________________________________________________________ sot-23 5l .eps package information (continued) for the latest package outline information and land patterns, go to www.maxim-ic.com/packages . note that a ?? ?? or ??in the package code indicates rohs status only. package drawings may show a different suffix character, but the drawing pertains to th e package regardless of rohs status.
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 ____________________ 11 2009 maxim integrated products maxim is a registered trademark of maxim integrated products, inc. low-cost, ucsp/sot23, micropower, high-side current-sense amplifier with voltage output revision history revision number revision date description pages changed 4 7/09 updated feature in accordance with actual performance of the product 1


▲Up To Search▲   

 
Price & Availability of MAX4372F

All Rights Reserved © IC-ON-LINE 2003 - 2022  

[Add Bookmark] [Contact Us] [Link exchange] [Privacy policy]
Mirror Sites :  [www.datasheet.hk]   [www.maxim4u.com]  [www.ic-on-line.cn] [www.ic-on-line.com] [www.ic-on-line.net] [www.alldatasheet.com.cn] [www.gdcy.com]  [www.gdcy.net]


 . . . . .
  We use cookies to deliver the best possible web experience and assist with our advertising efforts. By continuing to use this site, you consent to the use of cookies. For more information on cookies, please take a look at our Privacy Policy. X