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  mic5365/6 high - performance single 150ma ldo mlf and micro leadframe a re registered trademark s of amkor technology , inc. micrel inc. ? 2180 fortune drive ? san jose, ca 95131 ? usa ? tel +1 ( 408 ) 944 - 0800 ? fax + 1 (408) 474 - 1000 ? http://www.micrel.com july 16, 2013 revi sion 3.1 general description the mic5365/6 is a n advanced general purpose linear r egulator offering high power supply rejection (psrr) in an ultra - small 1mm 1mm package. the mic5366 includes an a uto - discharge feature that is activated when the enable pin is low. the mic5365/6 is capable of sourcing 150ma output current and offers high psrr making it an ideal solution for any portable electronic application. ideal for battery - powered applications, the mic5365/6 offers 2% initial accuracy, low dropout voltage (1 55 mv @ 150ma), and low ground current (typically 29a ). the mic5365/6 can also be put into a zero - off - mode current state, drawing virtually no current when disabled. the mic5365/6 is available in several advanced packages including a lead - free (rohs - compliant ) 1mm 1mm thin mlf ? occupying only 1mm 2 of pcb area, a 75% reduction in board area compared to sc - 70 and 2mm 2mm mlf packages. it is also available i n a t hin sot23 - 5 package . the mic5365/6 has an operating junction temperature range of C 40 c to 125 c. data sheets and support documentation can be found on micrels web site at: www.micrel.com . features ? tiny 1mm 1mm t hin mlf , sc - 70 -5 , and thin sot23 -5 p ackage s ? input voltage range: 2.5v to 5.5v ? 1 50ma guaranteed output current ? stable with 1f ceramic output capacitors ? low dropout voltage C 1 55 mv @ 150ma ? excellent load/line transient response ? low quiescent current C 29 a ? high psrr C 70db ? output discharge circuit C mic5366 ? high output accuracy C 2% initial accuracy ? t hermal - shutdown and current - limit protection applications ? mobile phones ? digital c ameras ? gps, pdas, pmp, h andhelds ? portable e lectronics ___________________________________________________________________________________________________________ typical a pplication downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 2 revision 3.1 block diagrams mic5365 block diagram mic5366 block diagram downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 3 revision 3.1 ordering information part number marking code output voltage temperature range package lead finish mic5365 - 1.0ymt 5c 1.0v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb- fr ee mic5365 - 1.2ymt 54 1.2v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5365 - 1.3ymt 55 1.3v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5365 - 1.5ymt 5f 1.5v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5365 - 1.8ymt 5g 1.8v C 40c to + 125c 4-pin 1 mm 1 mm thin mlf pb-free mic5365 - 2.0ymt 5h 2.0v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5365 - 2.5ymt 5j 2.5v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5365 - 2.6ymt 5k 2.6v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5365 - 2.7ymt 5l 2.7v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5365 - 2.8ymt 5m 2.8v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5365 - 2.85ymt 5n 2.85v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5365 - 2.9ymt 5o 2.9v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5365 - 3.0ymt 5p 3.0v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5365 - 3.1ymt 5q 3.1v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5365 - 3.3ymt 5s 3.3v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb- fr ee mic5365 - 1. 0 yc5 65 c 1.0v C 40c to +125c sc- 70 -5 pb-free mic5365 - 1. 2 yc5 65 4 1.2v C 40c to +125c sc- 70 -5 pb-free mic5365 - 1. 3 yc5 65 5 1.3v C 40c to +125c sc- 70 -5 pb-free mic5365 - 1.5yc5 65 f 1.5v C 40c to +125c sc- 70 -5 pb-free mic5365 - 1.8yc5 65 g 1.8v C 40c to +125c sc- 70 -5 pb-free mic5365 - 2.0yc5 65 h 2.0v C 40c to +125c sc- 70 -5 pb-free mic5365 - 2.5yc5 65 j 2.5v C 40c to +125c sc- 70 -5 pb-free mic5365 - 2.6yc5 65 k 2.6v C 40c to +125c sc- 70 -5 pb-free mic5365 - 2.7yc5 65 l 2.7v C 40c to +125c sc- 70 -5 pb-free mic5365 - 2.8yc5 65 m 2.8v C 40c to +125c sc- 70 -5 pb-free mic5365 - 2.85yc5 65 n 2.85v C 40c to +125c sc- 70 -5 pb-free mic5365 - 2.9yc5 65 o 2.9v C 40c to +125c sc- 70 -5 pb-free mic5365 - 3.0yc5 65 p 3.0v C 40c to +125c sc- 70 -5 pb-free mic5365 - 3.3yc5 65 s 3.3v C 40c to +125c sc- 70 -5 pb-free mic5365 - 1.2 yd5 64 5 1.2v C 40c to +125c 5- pin tsot23 pb-free mic5365 - 1.8yd5 6g 5 1.8v C 40c to +125c 5- pin tsot23 pb-free mic5365 - 2.8yd5 6m 5 2.8v C 40c to +125c 5- pin tsot23 pb-free mic5365 - 2.85yd5 6n 5 2.85v C 40c to +125c 5- pin tsot23 pb-free mic5365 - 3.3yd5 6s 5 3.3v C 40c to +125c 5- pin tsot23 pb-free mic5366 - 1. 0 ymt * 6c 1.0v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5366 - 1. 2 ymt * 64 1.2v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5366 - 1. 3 ymt * 65 1.3v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5366 - 1.5ymt * 6f 1.5v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5366 - 1.8ymt * 6g 1.8v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5366 - 2.0ymt * 6h 2.0v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5366 - 2.5ymt * 6j 2.5v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5366 - 2.6ymt * 6k 2.6v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5366 - 2.7ymt * 6l 2.7v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 4 revision 3.1 ordering information (continued) part number marking code output voltage temperature range package lead finish mic5366 - 2.8ymt * 6m 2.8v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5366 - 2.85ymt * 6n 2.85v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5 366 - 2.9ymt * 6o 2.9v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5366 - 3.0ymt * 6p 3.0v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5366 - 3.1 ymt * 6q 3.1v C 40c to +125c 4-pin 1 mm 1 mm thin mlf pb-free mic5366 - 3.3ymt * 6s 3.3v C 40c to +125 c 4-pin 1 mm 1 mm thin mlf pb-free mic5366 - 1. 0 yc5 * 66 c 1.0v C 40c to +125c sc- 70 -5 pb-free mic5366 - 1. 2 yc5 * 66 4 1.2v C 40c to +125c sc- 70 -5 pb-free mic5366 - 1. 3 yc5 * 66 5 1.3v C 40c to +125c sc- 70 -5 pb-free mic5366 - 1.5yc5 * 66 f 1.5v C 40c to +125c sc- 70 -5 pb-free mic5366 - 1.8yc5 * 66 g 1.8v C 40c to +125c sc- 70 -5 pb-free mic5366 - 2.0yc5 * 66 h 2.0v C 40c to +125c sc- 70 -5 pb-free mic5366 - 2.5yc5 * 66 j 2.5v C 40c to +125c sc- 70 -5 pb-free mic5366 - 2.6yc5 * 66 k 2.6v C 40c to +125c sc- 70 -5 pb-free mic5366 - 2.7y c5 * 66 l 2.7v C 40c to +125c sc- 70 -5 pb-free mic5366 - 2.8yc5 * 66 m 2.8v C 40c to +125c sc- 70 -5 pb-free mic5366 - 2.85yc5 * 66 n 2.85v C 40c to +125c sc- 70 -5 pb-free mic5366 - 2.9yc5 * 66 o 2.9v C 40c to +125c sc- 70 -5 pb-free mic5366 - 3.0yc5 * 66 p 3.0v C 40c to +125c sc- 70 -5 pb-free mic5366 - 3.3yc5 * 66 s 3.3v C 40c to +125c sc- 70 -5 pb-free note s: 1. other v oltage s available. contact micrel for details. 2. under bar symbol ( _ ) may not be to scale . 3. thin mlf = pin 1 identifier. 4. thin mlf is a green rohs compliant package. lead finish is nipdau. mold compound is halogen free. * mic5366 offers auto - discharge function. downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 5 revision 3.1 pin configuration 4- pin 1mm 1mm thin mlf (mt) fixed version 5- pin thin sot23 (d5) fixed version 5- pin sc - 70 (c5) fixed version pin description pin number pin name thin mlf -4 pin name t sot23 -5 pin name sc- 70 -5 pin function 1 v out C C output voltage. 1 C vin vin supply input. 2 gnd gnd gnd ground 3 en en en enable input: active high. high = on; low = off. do not leave floa ting. 4 vin C C supply input. 4 C nc nc no connect. not internally connected. 5 C vout vout output voltage. ep hs pad na na exposed heatsink pad. downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 6 revision 3.1 absolute maximum ratings (1) supply voltage (v in ) ............................................... 0v to 6v enable voltage (v en ). ............................................. 0v to v in power diss ipation (p d ) ........................... internally limited (3) lead temperature (soldering, 3 sec) ........................ 260 c junction temperature (t j ) ........................ C 40c to +150 c storage temperature (t s ) ......................... C 65c to +150 c esd rating (4 ) .................................................................. 2 kv operating ratings (2) supply voltage (v in ) ......................................... 2.5 v to 5.5 v enable voltage (v en ) .............................................. 0 v to v in junction temperature (t j ) ........................ C 40c to + 12 5c junction thermal resistance 1 mm 1 mm thin mlf -4 ( ja ) ......................... 240 c/w sc - 70 -5 ( ja ) ................................................ 256.5 c/w thin sot23 - 5 ( ja ) .......................................... 253 c/w electrical characteristics (5) v in = v en = v out + 1v; c in = c out = 1f ; i out = 100 a ; t j = 25 c, bold values indicate C 40c to + 12 5c, unless noted. parameter condition min . typ . max . units output voltage accuracy variation from nominal v out C 2.0 +2.0 % variation from nominal v out ; C 40c to +125c C3 .0 +3 .0 % line regulatio n v in = v out +1v t o 5.5v ; i out = 100a 0.02 0.3 % load regulation (6) i out = 100 a to 150ma 0.3 1 % dropout voltage (7 ) i out = 50ma; v out 2.8 v i out = 1 50ma; v out 2.8 v i out = 50ma; v out < 2.8 v i out = 1 50ma; v out < 2.8 v 55 155 60 180 110 310 135 380 mv mv mv mv ground pin current (8 ) i out = 0ma 29 39 a ground pin current in shutdown v en 0.2v 0.05 1 a ripple rejection f = up to 1k hz; c out = 1f f = 1khz C 1 0khz; c out = 1f 80 65 db db current limit v out = 0v 200 325 550 ma output voltage noise c out = 1 f, 10hz to 100khz 20 0 v rms auto- discharge nfet resistance mic5366 only; v en = 0v; v in = 3.6v; i out = C 3ma 30 ? enable in put enable input voltage logic low 0.2 v logic high 1.2 v enable input current v il 0.2v 0 .01 1 a v ih 1. 2v 0 .01 1 a turn - on time c out = 1 f; i out = 1 50 ma 50 125 s notes: 1. exceeding the absolute maximum rating may damage the device. 2. the device is not guaranteed to function outside its operating rating. 3. the maximum allowable power dissipation of any t a (ambient temperature) is p d(max) = t j(max) C t a ) / ja . exceeding the maximum allowable power dissipation will result in excessive die temperature, and the regulator will go into therm al shutdown. 4 . devices are esd sensitive. handling precautions recommended. human body model, 1.5k in series with 100pf. 5 . specification for packaged product only. 6. regulation is meas ured at constant junction temperature using low duty cycle pulse testing, changes in out put voltage due to heating effects ar e covered by the thermal regulation specification. 7. dropout voltage is defined as the input - to - output differential at which the output voltage drops 2% below its nominal value measured at 1v di fferential. for outputs below 2.5v, dropout voltage is the input - to - output differential with the minimum input voltage 2.5v. 8. ground pin current is the regulator quiescent current. the total current drawn from the supply is the sum of the load current plus the ground pin current. downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 7 revision 3.1 typical characteristics 0 power supply rejection ratio 100 frequency (hz) 10 1k 10k 1m v in = v out +1v v out = 2.5v c out = 1f 75ma 100a 150ma 100k 0 20 40 60 80 100 120 140 160 02 55 07 5 100 125 150 load current (ma) dropout voltage vs. load current v out = 3.3v c in = c out = 1f 0 150 200 dropout voltage vs. temperature -40 -20 0 20 40 60 80 100 120 temperature (c) v out = 3.3v c in = c out = 1f 10m a 150m a 100m a 50m a 50 100 20 22 24 26 28 30 32 34 36 38 2.5 3.0 3.5 4.0 4.5 5.0 5.5 supply voltage (v) ground current vs. supply voltage v en = v in v out = 3.3v c in = c out = 1f 150ma 100a 28 30 32 34 36 38 40 02 55 07 5 100 125 150 load current (ma) ground current vs. load current v in = v en = v out + 1v v out = 3.3v c in = c out = 1f 20 22 24 26 28 30 32 34 36 38 40 ground current vs. temperature -40 -20 0 20 40 60 80 100 120 temperature (c) v in = v en = v out + 1v v out = 3.3v c in = c out = 1f 50ma 100a 100ma 150ma 3.10 3.15 3.20 3.25 3.30 3.35 3.40 3.45 3.50 output voltage vs. load current v in = v en = v out + 1v v out = 3.3v c in = c out = 1f c out = 1f/10v 0 20 40 60 80 100 120 140 160 load current (ma) 2.6 2.7 2.8 2.9 3.0 3.1 3.2 3.3 3.4 3.0 3.5 4.0 4.5 5.0 5.5 supply voltage (v) output voltage vs. supply voltage v en = v in v out = 3.3v c in = c out = 1f 1ma 50ma 150ma 2.5 2.5 3.0 3.1 3.2 3.4 3.5 output voltage vs. temperature -40 -20 0 20 40 60 80 100 120 temperature (c) v in = v out + 1v v out = 3.3v c in = c out = 1f i out = 150m a 3.3 downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 8 revision 3.1 typical characteristics (continued) 200 250 300 350 400 3.0 3.5 4.0 4.5 5.0 5.5 supply voltage (v) current limit vs. supply voltage v out = 3.3v c in = c out = 1f 0.001 0.01 0.1 1 10 0.001 output noise spectral density 100 frequency (hz) 10 1k 10k 1m 100k 10m v in = v en = 4.5v v out = 2.8v c in = c out = 1f noise (10hz to 100khz) = 198.19v rms downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 9 revision 3.1 functional characteristics downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 10 revision 3.1 application information mic5365 and mic5366 are low noise 150ma ldo s . the mic5366 includes an auto - discharge circuit that is switched on when the regulator is disabled through the enable pin. the mic5365/6 regulator is fully protected from damage due to fault conditions, offering linear current limiting and thermal shutdown . input capacitor the mic5365/6 is a high - performance, high bandwidth device. a n input capacitor of 1 f is required from the input to ground to provide stability. low - esr ceramic capacitors provide optimal performance at a minimum of space. additional high - frequency capacitors, such as small - valued npo dielectric - type capacitors, help filter out high - frequency noise and are good practice in any rf - based circuit. x5r or x7r dielectrics are recomme nded for the input capacitor. y5v dielectrics lose most of their capacitance over temperature and are therefore, not recommended . output capacitor the mic5365/6 requires an output capacitor of 1 f or greater to maintain stability. the design is optimized for use with low - esr ceramic chip capacitors. high esr capacitors are not recommended because they may cause high frequency oscillation. the output capacitor can be increased, but performance has been optimized for a 1 f ceramic output capacitor and does n ot improve significantly with larger capacitance. x7r/x5r dielectric - type ceramic capacitors are recommended because of their temperature performance. x7r - type capacitors change capacitance by 15% over their operating temperature range and are the most stable type of ceramic capacitors. z5u and y5v dielectric capacitors change value by as much as 50% and 60%, respectively, over their operating temperature ranges. to use a ceramic chip capacitor with y5v dielectric, the value must be much higher than an x7r ceramic capacitor to ensure the same minimum capacitance over the equivalent operating temperature range . no - load stability unlike many other voltage regulators, the mic5365/6 will remain stable and in regulation with no load. this is especially important in cmos ram keep - alive applications . enable/shutdown the mic5365/6 comes with an active - high enable pin that allows the regulator to be disabled. forcing the enable pin low disables the regulator and sends it into a zero off - mode - current state. in this state, current consumed by the regulator goes nearly to zero. forcing the enable pin high enables the output voltage. the active - high enable pin uses cmos technology and the enable pin cannot be left floating; a floating enable pin may cause an indeterminate state on the output . thermal considerations the mic5365/6 is designed to provide 150ma of continuous current in a very small package. maximum ambient operating temperature can be calculated based on the output current and the voltage drop across the pa rt. for example if the input voltage is 3.6v, the output voltage is 2.8v, and the output current = 150ma. the actual power dissipation of the regulator circuit can be determined using the equation: p d = (v in C v out1 ) i out + v in i gnd because this device is cmos and the ground current is typically <100a over the load range, the power dissipation contributed by the ground current is < 1% and can be ignored for this calculation: p d = ( 3.6 v C 2.8 v) 150ma p d = 0. 120 w to determine the maximum ambient ope rating temperature of the package, use the junction - to - ambient thermal resistance of the device and the following basic equation: ? ?? ? ? ?? ? ? = ja a j(max) d(max) t t p t j(max) = 125c, the maximum junction temperature of the die , ja thermal resistance = 25 0c/w for the ymt package, 256.5 c/w for the sc - 70 - 5 package and 235 c/w for the mic5365/6 in the tsot23 - 5 package . downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 11 revision 3.1 substituting p d for p d(max) and solving for the ambient operating temperature will give the maximum operating conditions for the regulator circuit. the junction - to - ambient thermal resistance for the minimum footprint is 250c/w. the maximum power dissipation must not be exceeded for proper operation. for example, when operating the mic5365 - 2.8ymt at an input voltage of 3.6v and 150ma load with a minim um footprint layout, the maximum ambient operating temperature t a can be determined as follows: 0.120w = (125c C t a )/(250c/w) t a = 95c therefore the maximum ambient operating temperature of 95c is allowed in a 1mm x 1mm mlf package. for a full disc ussion of heat sinking and thermal effects on voltage regulators, refer to the regulator thermals section of micrels designing with low - dropout voltage regulators handbook. this information can be found on micrel's website at: http://www.micrel.com/_pdf/other/ldobk_ds.pdf downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 12 revision 3.1 typical application (ymt) bill of materials item part number manufacturer description qty. c1, c2 grm1 55 r6 1a10 5ke15d murata (1) capacitor, 1 f ce ramic , 10 v, x5 r, size 0 402 2 u1 mic53 65/6 - xxymt micrel , inc. (2) high - performance single 150 ma ldo 1 notes: 1. murata : www.murata.com . 2. micrel, inc.: www.micrel.com . downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 13 revision 3.1 typical applicatio n (yc5) bill of materials item part number manufacturer description qty. c1, c2 c1005x5r1a105k tdk (1) capacitor, 1 f ceramic, 10v, x5 r, size 0 402 2 u1 mic53 65/6 - xxy c5 micrel, inc. (2) high -perfor mance single 150ma ldo 1 notes: 1. tdk: www.tdk.com . 2. micrel, inc.: www.micrel.com . downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 14 revision 3.1 typical application (yd5) bill of materials item part number manufacturer description qty. c1, c 2 c1005x5r1a105k tdk (1) capacitor, 1f ceramic, 10v, x5 r, size 0 402 2 u1 mic53 65/6 - xxyd5 micrel, inc. (2) high - performance single 150ma ldo 1 notes: 1. tdk: www.tdk.com . 2. micrel, inc.: www.m icrel.com . downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 15 revision 3.1 pcb layout recommendations (1mm x 1mm thin mlf) top layer bottom layer downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 16 revision 3.1 pcb layout recommendations (sc- 70 - 5) top layer bottom layer downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 17 revision 3.1 package information (1) 4-pin 1 mm 1 mm thin mlf ( mt ) note: 1. package information is correct as of the publication date. for updates and most current infor mation, go to www.micrel.com . downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 18 revision 3.1 package information (1) (continued) 5-pin sc- 70 ( c5 ) downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 19 revision 3.1 package information (1) (continued) 5-pin thin sot23 ( d5 ) downloaded from: http:///
micrel, inc. mic5365/6 july 16, 2013 20 revision 3.1 micrel, inc. 2180 fortune drive san jose, ca 95131 usa tel +1 (408) 944 - 0800 fax +1 (408) 474 - 1000 web http://www.micrel.com micrel makes no representations or warranties with respect to the accuracy or com pleteness of the information furnished in this data sheet. this information is not intended as a warranty and micrel does not assume responsibility for its us e. micrel reserves the right to change circuitry, specific ations and descriptions at any time without notice. no license, whether express, implied, arising by estoppel or otherwise, to any intellectual property rights is granted by this document. except as provided in micrels terms and conditions of sale for such products, mic rel assumes no liability whatsoever, and micrel disclaims any express or implied warranty relating to the sale and/ or use of micrel products including liability or warranties relating to fitness for a particular purpose, merchantability, or infringement of any paten t, copyright or other intellectual property right . micrel products are not designed or authorized for use as components in life support appl iances, devices or systems where malfunction of a product can reasonably be expected to result in personal injury. life support devices or systems are device s or systems that (a) are intended for surgical implant into the body or (b) support or sustain life, and whose failure to perform can be reasonably expect ed to result in a significant in jury to the user. a purchasers use or sale of micrel products for use in life support appliances, devic es or systems is a purchasers own risk and purchaser agrees to fully indemnify micrel for any damages resulting from such use or sale. ? 2008 micrel, incorporated. downloaded from: http:///


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