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  ap9211 document number: ds 37596 rev. 2 - 2 1 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 single chip solution for 1 - cell li+ battery pack description the ap9211 is a single chip protection solution specially designed for 1 - cell li+ rechargeable battery pack application . the ap9211 includes a 1 - cell li thium i on battery protect ion chip and dual n - c hannel mosfet with common drain . the ap9211 provides rich battery protection features and can turn - off the n - ch annel mosfet by detecting overcharge voltage/current, over discharge voltage/current, or load short circuit. ap9211 has built - in fixe d delay time to save external components. the ap9211 is available in u - dfn 2 0 3 0 - 6 package. features ? high voltage cmos process, up to 30v (vdd to vm) ? low quiescent current ( + 25 c ) ? in n ormal m ode, 3.0 a (typ.), 4.5 a (max.) v dd = 3.5v ? in p ower - d own m ode , 0.1 a (max.) ? high - accuracy voltage detection circuit ( + 25c) ? overcharge detection voltage: 3.5v to 4.5v (5mv steps) accuracy 25mv ? overcharge hysteresis voltage range: 0.1v to 0.4v (50mv steps) accuracy 50mv ? overdischarge detection voltage: 2.0v to 3.4 v (10mv steps) accuracy 35mv ? overdischarge hysteresis voltage range: 0v to 0.7v (40mv steps) accuracy 65mv ? discharge overcurrent detection voltage: 0.05v to 0.32v (10mv steps) accuracy 15mv ? short current detection voltage: 0.45v to 0.7v (50mv steps) acc uracy 100mv ? charge overcurrent detection voltage: - 0.2v to - 0.05v (10mv steps) accuracy 15mv ? overcharger detection voltage: 8.0v (fixed) accuracy 2v ? overcharger release voltage: 7.3v (fixed) accuracy 2v ? built - in fixed detection d elay t ime ( + 25c ), a cc uracy 20% ? power - d own mode s electable (yes or no) ? 0v b attery c harge s electable (permission or i nhibition) ? over charge protection mode s electable (auto release or latch) ? totally lead - free & fully rohs compliant (note s 1 & 2) ? halogen and antimony free. green device (note 3) pin assignments ( top view) u - dfn2030 - 6 applications ? li+ r echargeable b attery p ack notes: 1. no purposely added lead. fully eu directive 2002/95/ec (rohs) & 2011/65/eu (rohs 2) compliant. 2. see http://www.diodes.com/quality/lead_free.html for more information about diodes incorporateds definitions of halogen - and antimony - free, "green" and lead - free. 3. halogen - and antimony - free "green products are defined as those which contain <900ppm bromine, <900ppm chlorine (<1500ppm total br + cl) and <1000ppm antimony compounds . 1 2 3 5 4 s 1 v s s v d d v m s 2 n c 6 e p
ap9211 document number: ds 37596 rev. 2 - 2 2 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 typical applications circuit ( note 4 ) note: 4. r1 and c1 are used to stabilize the supply voltage of the ap 9 211 . the recommended range of r1 value is 330 to 470 and c1 value is 10nf to 1000nf, typical value is 100nf. r2 should be connected between p - to v m sense terminal to monitor the status of charger and the charge /discharge current. the r2 should be b etween 300 and 4k , typical value is 2.7 k . r1 and r2 are also used as current limit resistors if the battery or charger is connected reversely. polarity reversing may cause the power consumption of r1 and r2 t o go over their power dissipation rating, the refore r1 and r2 values should be selected appropriately for the actual application. if r2 is more than 4k resistor, charge may not be off due to the voltage drop on r2. for power down mode, w hen first connecting ap9 2 11 system board to the battery, it is necessary to use charger or to short p - to the battery negative polarity. once the ap9 2 11 is activated, the charger or connection can be removed, otherwise the battery cannot discharge current through system board. the values selected sho uld follow the recommended typical range mentioned above. it has not been confirmed whether the operation is normal or not in circuits other than the above example of connection. in addition, the example of connection shown above and the typical value do n ot exactly guarantee proper operation. please p erform the actual application to set the suitable value through your complete evaluation. pin description s pin number p in n ame function 1 s1 source pin of discharg ing mosfet, connecting this pin to bat tery negative pole. 2 v ss negative p ower supply pin 3 v dd positive p ower supply pin , connecting this pin to battery positive pole through r1 4 nc not connected, leave this pin floating 5 v m charger negative input pin, short this pin to s2 pin through r 2 6 s2 source pin of charg ing mosfet, connecting this pin to charge negative input. ep d thermal pad is common drain of charge and discharge mosfet, so in pcb layout, prefer to use large copper area to cover this pad for better thermal dissipation, then leave it open. u 1 a p 9 2 1 1 ( u - d f n 2 0 3 0 - 6 ) b a t p + c 1 1 0 0 n r 2 2 . 7 k o h m p - v d d v s s s 1 s 2 v m 1 2 3 5 6 r 1 3 3 0 o h m t o 4 7 0 o h m
ap9211 document number: ds 37596 rev. 2 - 2 3 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 functional block diagram l o g i c c i r c u i t l o g i c c i r c u i t d e l a y t i m e c i r c u i t o v c h a r g e o p t i o n l e v e l s h i f t r v m d r v m s s 1 s 2 d 2 d 1 g 1 g 2 v d d v s s s 2 s 1 v m d 1 2 3 5 6 e p
ap9211 document number: ds 37596 rev. 2 - 2 4 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 absolute maximum ratings ( note s 5 & 6 ) symbol parameter rating unit v ds supply voltage ( b etween v dd and v ss ) - 0.3 to 12 v v dm c harge input voltage ( b etween vdd and vm for p rotection c hip ) - 0.3 to 24 v v dss mosfet drain - to - source voltage 24 v v gss mosfet gate - to - source voltage 12 v i d continuous drain current, v gs = 4.5v, t a = + 25 c 9.0 a continuous drain current, v gs = 4.5v , t a = + 70 c 7.1 a p d power dissipation 1 , 000 mw t j maximum junction temperature + 150 c t stg storage temperature range - 6 5 to + 15 0 c esd ( machine model ) 3 00 v esd ( human body model) 3 , 000 v notes : 5 . stresses beyond those listed under absolute maximum ratings may cause permanent damage to the device. these are stress ratings only and functional operation of the device at these conditions is not implied. exposure to absolute - maximum - rated conditions for extended periods may affect device r eliability. 6 . ratings apply to ambient temperature at + 25c. the jedec high - k board design used to derive this data was a 2 inch x 2 inch multilayer board wit h 2 - ounce internal power and ground planes and 2 - ounce copper traces on the top and bottom of the board. recommended operating conditions symbol parameter min max unit v ds supply voltage ( between v dd and v ss ) 1.5 5.5 v v dm charge input voltage (between v dd and v m ) - 0.3 5.5 v t a operating ambient temperature - 40 + 85 c
ap9211 document number: ds 37596 rev. 2 - 2 5 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 electrical characteristics ( t a = + 25 c, v dd = 3.5v, v ss = 0v, r1 = 220 ? , r2 = 1.0k ? , c1 = 100nf, unless otherwise specified) symbol parameter conditions min typ max unit s v cu overcharge detection voltage v cu - 0.025 v cu v cu + 0.025 v v cl overcharge release voltage v cl v cu v cl - 0.050 v cl v cl + 0.050 v v cl = v cu v cl - 0.025 v cl v cl + 0.025 v v dl overdischarge detection voltage v dl - 0.035 v dl v dl + 0.035 v v du overdischarge release voltage v du v dl v du - 0.10 0 v du v du + 0.10 0 v v du = v dl v du - 0.035 v du v du + 0.035 v v doc discharge overcurrent detection voltage v doc - 0.015 v doc v doc +0.015 v v short load short - c ircuiting detection voltage v short - 0.10 v short v short +0.10 v v coc charge o vercurrent d etection v oltage v coc - 0.015 v coc v coc +0.015 v i cc current consumption d uring operation v dd =3.5v v m =0v 1.5 3.0 4.5 a i stb current consumption at power down v dd =1.8v vm pin floating power down mode 0.1 a without power down mode (auto wake up) 5.5 a r vmd resistance b etween v m pin and v dd pin v dd =1.8v v m =0v 150 300 500 k r vms r esistance b etween v m pin and v ss pin v dd =3.5v v m =1.0v 10 30 50 k v 0cha 0v battery charge starting charge voltage 0v battery charging available 1.2 v v 0inh 0v battery charge inhibition battery voltage 0v battery charging unavailable 0.45 v v ovchg over v oltage charge detection voltage v dd =3.5v 6.0 8.0 10.0 v v ovchgr over v oltage charge release voltage v dd =3.5v 5.3 7.3 9.3 v t cu overcharge detection delay time t cu * 0.8 t cu t cu * 1.2 ms t cur overcharge release delay time t cur * 0.8 t cur t c ur * 1.2 ms t dl overdischarge detection delay time t dl * 0.8 t dl t dl * 1.2 ms t dlr overdischarge release delay time t dlr * 0.8 t dlr t dlr * 1.2 ms t doc discharge overcurrent detection delay time t doc * 0.8 t doc t doc * 1.2 ms t docr discharge overcu rrent release delay time t docr * 0.8 t docr t docr * 1.2 ms t short load short detection delay time t short * 0.8 t short t short * 1.2 s t coc charge over c urrent detection delay time t coc * 0.8 t coc t coc * 1.2 ms t cocr charge over c urrent release delay time t cocr * 0.8 t cocr t cocr * 1.2 ms
ap9211 document number: ds 37596 rev. 2 - 2 6 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 electrical characteristics ( c ont inued ) ( t a = - 40 c to + 85 c, v dd = 3.5v, v ss = 0v, r1 = 220 ? , r2 = 1.0k ? , c1 = 100nf, unless otherwise specified) symbol parameter conditions min typ max unit s v cu overcharge detection voltage v cu - 0.060 v cu v cu + 0.040 v v cl overcharge release voltage v cl v cu v cl - 0.080 v cl v cl + 0.065 v v cl = v cu v cl - 0.060 v cl v cl + 0.040 v v dl overdischarge detection voltage v dl - 0. 080 v dl v dl + 0. 080 v v du overdischarge release voltage v du v dl v du - 0.150 v du v du + 0.190 v v du = v dl v du - 0. 080 v du v du + 0. 080 v v doc discharge overcurrent detection voltage v doc - 0.021 v doc v doc +0.024 v v short load short - c ircuiting detection voltage v shor t - 0.34 v short v short +0.34 v v coc charge o ver current d etection v oltage v coc - 0.040 v coc v coc +0.040 v i cc current consumption d uring operation v dd =3.5v v m =0v 1.0 3.0 7.0 a i stb current consumption at power down v dd =1.8v vm pin floating power down m ode 1.0 a without power down mode (auto wake up) 8 a r vmd resistance between v m pin and v dd pin v dd =1.8v v m =0v 100 300 650 k r vms resistance between v m pin and v ss pin v dd =3.5v v m =1.0v 5 30 65 k v 0cha 0v battery charge starting charge vo ltage 0 v battery charging available 1. 2 v v 0inh 0v battery charge inhibition battery voltage 0 v battery charging unavailable 0.3 v v ovchg over v oltage charge detection voltage v dd =3.5v 5.5 8.0 10.5 v v ovchgr over v oltage charge release voltage v dd =3.5v 5.0 7.3 9.5 v t cu overcharge detection delay time t cu * 0.6 t cu t cu * 1.4 ms t cur overcharge release delay time t cur * 0.6 t cur t cur * 1.4 ms t dl overdischarge detection delay time t dl * 0.6 t dl t dl * 1.4 ms t dlr overdischarge release d elay time t dlr * 0.6 t dlr t dlr * 1.4 ms t doc discharge overcurrent detection delay time t doc * 0.6 t doc t doc * 1.4 ms t docr discharge overcurrent release delay time t docr * 0.6 t docr t docr * 1.4 ms t short load short detection delay time t short * 0.6 t short t short * 1.4 s t coc charge overcurrent detection delay time t coc * 0.6 t coc t coc * 1.4 ms t cocr charge overcurrent release delay time t cocr * 0.6 t cocr t cocr * 1.4 ms
ap9211 document number: ds 37596 rev. 2 - 2 7 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 electrical characteristics (continued ) (n ote s 7 & 8 ) ( t a = + 25 c, v dd = 3.5v, v ss = 0v, r1 = 220 ? , r2 = 1.0k ? , c1 = 100nf, unless otherwise specified) symbol parameter conditions min typ max unit s i dss zero gate voltage drain current v ds = 20v, v gs =0 C C 1.0 a r ss(on)1 static source - source on - resistance 1 v dd = 4.0v i d = 1.0a 20 2 7 3 0 m r ss(on)2 static source - source on - resistance 2 v dd = 3.9v i d = 1.0a 2 1 2 7 3 1 m r ss(on) 3 static source - source on - resistance 3 v dd = 3. 0 v i d = 1.0a 2 1 28 3 3 m v sd diode forward voltage v gs = 0v (note 6 ) i s = 1a C 0.75 1.0 v note s : 7 . in case of gate - source voltage of charging mosfet is 0v . in case of gate - source voltage of discharging mosfet is 0v . 8 . these specifications are guaranteed by design - will not be tested in production.
ap9211 document number: ds 37596 rev. 2 - 2 8 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 application information operation mode 1. normal status the ap9211 monitors the battery voltage between the v dd pin and v ss pin as well as the voltage difference between the v m pin and v ss pin to control battery charging and dischar ging. when the battery voltage is between overdischarge detection voltage (v dl ) and overcharge detection voltage (v cu ) as well as the v m pin voltage is between th e charge overcurrent detection voltage (v coc ) and discharge overcurrent detection voltage (v do c ), the ap9211 will turn on discharging and charging mosfe t. i n th ese condition s, the battery can charge and discharge freely . also, r vmd does not connect to v dd pin and r vms does not connect to v ss pin in this status. 2. overc harge status if the battery voltage is more than v cu during charging status for the overcharge detection delay time (t cu ) or longer, the ap9211 turns off the charging mosfet to stop charging. r vmd and r vms are not connect ed in overcharge status. when v m pin voltage is lower than v doc and battery voltage falls below v cl , the ap9211 will release from overcharge status. when v m pin voltage is equal or more than v doc and battery voltage falls below v cu , the ap9211 will rele ase from overcharge status. 3. overdischarge status if the battery voltage is less than v dl during discharging status for the overdischarge detection delay time (t dl ) or longer, the ap9211 turns off the discharging mosfe t to stop discharging. in overdischarge status, r vmd is connected to v dd and v m pin voltage is pulled u p to v dd by r vmd , but r vms is not connected . for power - down mode version, the ap9211 recovers normal status from overdischar ge status only by charg ing the b attery through the charger . when v m pin voltage to v ss pin voltage is less than typical - 0.7v and the battery voltage rises over v dl , the ap9211 will release from overdischarge status . i f v m pin voltage to v ss pin voltage is higher than typical - 0.7v, the ap9211 will release from overdischarge status until the battery voltage rises over v du . for auto - wake - up version ap9211sa , the device recovers to normal status from overdischarg e status if either of these two conditions are satisfied : if charger is connected: the ap9 211sa overdischarge status is released in the same way as described above in ap9 211s overdischarge status section. if no charger is connected: 1) the battery voltage reaches the overdischarge release voltage (v du ) or higher; 2) maintains continuous time more than o verdischarge release delay time t dlr . 4. discharge overcurrent and short cu rrent status when battery is in discharge over current status, if the voltage of the v m pin to v ss pin is equal or more than v doc to v short and detection lasts for the discharge overcurrent detection delay time (t doc ) or longer, the ap9211 turns off the discharging mosfet to stop discharging. when the battery is in short cu rrent status, if the voltage of the v m pin to v ss pin is equal to or more than v short , and the detection lasts for the short current detection delay time or longer , the ap9 211 turns off the discharg e mosfet t o stop discharging. in discharge overcurrent or short current status, r vms is connected to v ss but r vmd is not connected. the voltage of v m pin is almost equal to v dd as long as the load is connected. when the load is disconnected, the voltage of v m pin will become almost equal to v ss ( due to r vms bein g connected ) and then the ap9 211 will release from discharge overcurrent or short current status . 5. charge overcurrent status when the battery is in charge current status, if the voltage of the v m pin to v ss pin is equal to or less than v coc and the d etection continues for the charge overcu rrent detection delay time (t coc ) or longer, the ap9211 turns off the charging mosfet to stop charging. 6. 0v battery charging function (option) this function is available as an option and can be factory set i nternally. ap9 211 has this function built in. 0v charging function permits charger to recharge the battery whose voltage is 0v due to self - discharge. if 0v charging function is not present, the device will prevent charger to recharge the battery whose volt age is 0v due to self - discharge. (if a device without 0v charging function is needed, please contact diodes sales team)
ap9211 document number: ds 37596 rev. 2 - 2 9 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 operation description (cont inued ) 7. over v oltag e charge r detection circuit this function is used to monitor the charge r vo ltage between the v dd pin and v m pin, and when this voltage exceeds overvoltage charge r detection voltage (8.0v typ.), the ap9211 will turn off charging mosfet, when this voltage drops below overvoltage charge r release voltage (7.3v typ.), it then turns on charg ing mosfet. there are no delay times set for detection and release. 8. power - down mode or auto - wake - up function option in device with power - down function, during p ower - down mode, device enters the overdischarge status. the ic enters sleep mode and the cu rrent consumption becomes very low , typically 0.1 a . to release from power - down status to the normal status, charger connection is required. in device with auto - wakeup mode, t he ic remains active in the o verdischarge state. the ic is released into the nor mal state by the operation that increases the battery voltage more than o verdischarge release voltage.
ap9211 document number: ds 37596 rev. 2 - 2 10 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 application information (timing chart) 1. overcharge and overdischarge detection v c u v c l v d l v d u v d d v s s v s s v d d v v m v d d v d o c v s s v p - v c o c v d d d o c o v m 2 1 r e d l i n e i s f o r n o s h u t d o w n m o d e v e r s i o n 1 : t d l 2 : t c u 3 : t c u r 4 : t d l r 2 1 s 1 s 1 s 2 s 2 3 4 3 3 s 1 : c h a r g e r c o n n e c t i o n s 2 : l o a d c o n n e c t i o n p 1 : r v m d p u l l - u p c o n n e c t i o n p 1 p 1
ap9211 document number: ds 37596 rev. 2 - 2 11 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 application information (timing chart) ( c ont inued ) 2. discharge overcurrent detec tion v c u v c l v d l v d u o n v s s o f f o n o f f v d d v s h o r t v s s v d o c v d d d i s c h a r g e f e t c h a r g e f e t v m 1 2 s 1 s 2 1 : t d o c 2 : t s h o r t 3 : t d o c r s 1 : c o n n e c t o v e r c u r r e n t l o a d s 2 : c o n n e c t s h o r t c u r r e n t l o a d p 1 : r v m s p u l l - d o w n c o n n e c t i o n 3 3 p 1 p 1 1
ap9211 document number: ds 37596 rev. 2 - 2 12 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 application information (timing chart) ( c ont. ) 3. c harge overcurrent detection v c u v c l v d l v d u v d d v s s v s s v d d v v m v d d v s s v p - v c o c v d d d i s c h a r g e f e t c h a r g e f e t v m 1 s 1 1 : t c o c 2 : t c o c r s 1 : c o n n e c t o v e r c u r r e n t c h a r g e r 2
ap9211 document number: ds 37596 rev. 2 - 2 13 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 ordering information ( note 9 ) part number package code packaging 7 tape and reel quantity ap9211 xx - x x - hac - 7 hac u - dfn 2030 - 6 3 , 000/tape & reel voltage combination part number overcharge detection voltage v cu overcharge release voltage v cl over - discharge detection voltage v dl over - discharge release voltage v du discharge overcurrent detection voltage v doc load short detection voltage v short charge overurrent detection voltage v coc over voltage charger detection voltage v ovchg over voltage charger release voltage v ovchgr power - down function overcharge protection mode d elay time 0v battery charge function ap9211 xx - aa - hac - 7 4.375v 4.175v 2.500v 2.900v 0.150v 0.700v - 0.150v 8.0v 7.3v selectable auto r elease option 1 permission ap9211 xx - ab - hac - 7 4.425v 4.225v 2.500v 2.900v 0.150v 0.700v - 0.150v 8.0v 7.3v selectable auto r elease option 1 permission ap9211 xx - ac - hac - 7 4.375v 4.175v 2.500v 2.900v 0.095v 0.700v - 0.095v 8.0v 7.3v selectable auto r elease option 1 permission ap9211 xx - ad - hac - 7 4.375v 4.175v 2.500v 2.900v 0.120v 0.700v - 0.120v 8.0v 7.3v selectable auto r elease opt ion 1 permission ap9211 xx - ae - hac - 7 4.200v 4.100v 2.500v 3.000v 0.300v 0.550v - 0.100v 8.0v 7.3v selectable auto r elease option 1 permission ap9211 xx - af - hac - 7 4.375v 4.175v 2.500v 2.900v 0.180v 0.700v - 0.180v 8.0v 7.3v selectable auto r elease option 1 perm ission ap9211 xx - ag - hac - 7 4.375v 4.175v 2.500v 2.900v 0.075v 0.700v - 0.075v 8.0v 7.3v selectable auto r elease option 1 permission ap9211 xx - ah - hac - 7 4.425v 4.225v 2.500v 2.900v 0.075v 0.700v - 0.075v 8.0v 7.3v selectable auto r elease option 1 permission ap 9211 xx - a i - hac - 7 4.500v 4.300v 2.400v 2.800v 0.150v 0.700v - 0.075v 8.0v 7.3v selectable auto r elease option 1 permission ap9211 xx - a j - hac - 7 4.375v 4.175 v 2.400v 2.800v 0.125 v 0.700v - 0.125v 8.0v 7.3v selectable auto r elease option 1 permission ap9211 xx - a k - hac - 7 4.250v 4.050 v 2.400v 3.000v 0.150v 0.700v - 0.150v 8.0v 7.3v selectable auto r elease option 1 permission ap9211 xx - a l - hac - 7 4.275v 4.175v 2.300v 2.400v 0.180 v 0.700v - 0.180v 8.0v 7.3v selectable auto r elease option 1 permission ap9211 xx - a m - hac - 7 4.375v 4.175v 2.300v 2.400v 0.180 v 0.700v - 0.180v 8.0v 7.3v selectable auto r elease option 1 permission ap9211 xx - a n - hac - 7 4.225v 4.0 25v 3. 2 00v 3. 4 00v 0.06 0 v 0.450v - 0.0 6 0v 8.0v 7.3v selectable auto r elease option 1 permission note : 9 . current voltage versions are built by delay time option 1. if any other voltage versions or delay time option products are needed, please con tact with the local sales office. a p 9 2 1 1 x x - x x - x x x - x p r o d u c t c o d e v o l t a g e & d e l a y t i m e c o m b i n a t i o n c o d e h a c : u - d f n 2 0 3 0 - 6 p a c k i n g 7 : t a p e & r e e l p o w e r d o w n m o d e b l a n k : y e s a : n o ( a u t o - w a k e - u p ) p a c k a g e s : s t a n d a r d r s s ( o n )
ap9211 document number: ds 37596 rev. 2 - 2 14 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 ordering information ( note 7 , c ont inued ) ap9211 delay t ime combination part n umber overcharge detection delay time t cu overcharge release delay time t cur overdischarge detection delay time t dl overdischarge release delay time t dlr discharge overcurrent detection delay time t doc discharge overcurrent release delay time t docr charge overcurrent detection delay time t coc charge overcurrent release delay time t cocr load short detection delay time t short ap9211 xx - xx - hac - 7 1.0s 2.0ms 115ms 2.0ms 10.0ms 2.0ms 10.0ms 2.0ms 3 6 0 s other delay t ime combination table (optional) delay time option overc harge detection delay time (t c u ) overd ischarge detection delay time (t dl ) discharge over current detect ion delay time (t doc ) charge over current detection delay time (t coc ) load short circuiting detection delay time (t short ) 1 1 s 115ms 10ms 10ms 3 6 0s 2 125ms 32ms 8ms 8ms 1 8 0 s 3 1 s 20ms 12ms 10ms 3 6 0s 4 1 s 42ms 10ms 10ms 3 6 0 s 5 1 s 11 5ms 10ms 10ms 1 8 0 s
ap9211 document number: ds 37596 rev. 2 - 2 15 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 marking information part number package identification code ap9211s - aa - hac - 7 u - dfn 2 0 3 0 - 6 p5 ap9211s - ab - hac - 7 u - dfn 2 0 3 0 - 6 p6 ap9211s - a c - hac - 7 u - dfn 2 0 3 0 - 6 6b ap 9211s - a d - hac - 7 u - dfn 2 0 3 0 - 6 6c ap9211s - a e - hac - 7 u - dfn 2 0 3 0 - 6 6d ap9211s - a f - hac - 7 u - dfn 2 0 3 0 - 6 6e ap9211s - a g - hac - 7 u - dfn 2 0 3 0 - 6 6f ap9211s - a h - hac - 7 u - dfn 2 0 3 0 - 6 6g ap9211s - a i - hac - 7 u - dfn 2 0 3 0 - 6 6h ap9211s - a j - hac - 7 u - dfn 2 0 3 0 - 6 6y ap9211s - a k - hac - 7 u - df n 2 0 3 0 - 6 6z ap9211s - a l - hac - 7 u - dfn 2 0 3 0 - 6 5t ap9211s - a m - hac - 7 u - dfn 2 0 3 0 - 6 5u ap9211s - a n - hac - 7 u - dfn 2 0 3 0 - 6 5v ap9211sa - aa - hac - 7 u - dfn 2 0 3 0 - 6 m3 ap9211sa - ab - hac - 7 u - dfn 2 0 3 0 - 6 m4 ap9211sa - a c - hac - 7 u - dfn 2 0 3 0 - 6 m6 ap9211sa - a d - hac - 7 u - dfn 2 0 3 0 - 6 m 7 ap9211sa - a e - hac - 7 u - dfn 2 0 3 0 - 6 m8 ap9211sa - a f - hac - 7 u - dfn 2 0 3 0 - 6 n3 ap9211sa - a g - hac - 7 u - dfn 2 0 3 0 - 6 n4 ap9211sa - a h - hac - 7 u - dfn 2 0 3 0 - 6 n6 ap9211s a - a i - hac - 7 u - dfn 2 0 3 0 - 6 n7 ap9211s a - a j - hac - 7 u - dfn 2 0 3 0 - 6 n8 ap9211s a - a k - hac - 7 u - dfn 2 0 3 0 - 6 ne ap9211s a - a l - hac - 7 u - dfn 2 0 3 0 - 6 7x ap9211s a - a m - hac - 7 u - dfn 2 0 3 0 - 6 p7 ap9211s a - a n - hac - 7 u - dfn 2 0 3 0 - 6 p8 y : y e a r : 0 ~ 9 ( t o p v i e w ) x : a ~ z : i n t e r n a l c o d e y w x x x x x : i d e n t i f i c a t i o n c o d e w : w e e k : a ~ z : 1 ~ 2 6 w e e k ; a ~ z : 2 7 ~ 5 2 w e e k ; z r e p r e s e n t s 5 2 a n d 5 3 w e e k
ap9211 document number: ds 37596 rev. 2 - 2 16 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 package outline dimensions please see ap02002 at http://www.diodes.com/datasheets/ap02002.pdf for the latest version. u - dfn2030 - 6 (type c) dim min max typ a 0.50 0.60 -- a1 0.00 0.05 0.02 a3 -- -- 0.127 b 0.25 0.35 0.30 b2 0.60 0.70 0.65 d 1.90 2.10 2.00 d2 1.60 1.80 1.70 e 2.90 3.10 3.00 e2 1.60 1.80 1.70 e -- -- 0.60 e1 -- -- 0.775 l 0.25 0.35 0.30 z 0. 0 500 ref all dimensions in mm suggested pad layout please see ap02001 at http://www.diodes.com/datasheets/ap02001.pdf for the latest version. dimensions value (in mm) c 0.600 c1 0.775 g 0.200 g1 0.200 x 0.400 x1 0.750 x2 1.800 y 0.500 y1 1.800 a a3 seating plane d e d2 e2 b b2 a1 z r0.150 l pin1 id e1 e 1 x1 x g1 c1 c y1 x2 g y
ap9211 document number: ds 37596 rev. 2 - 2 17 of 17 www.diodes.com december 2015 ? di odes incorporated ap9211 important notice diodes incorporated makes no warranty of any kind, express or implied, with regards to this document, including, but not limited to, the implied warranties of merchantability and fitness for a particular purpose (and th eir equivalents under the laws of any jurisdiction). diodes incorporated and its subsidiaries reserve the right to make modifications, enhancements, improvements, corrections or other changes without further notice to this document and any product descr ibed herein. diodes incorporated does not assume any liability arising out of the application or use of this document or any product described herein; neither does diodes incorporated convey any license unde r its patent or trademark rights, nor the rights of others. any customer or user of this document or products described herein in such applications shall assume all risks of such use and will agree to hold diodes incorporated and all the companies whose products are represented on diod es incorporated we bsite, harmless against all damages. diodes incorporated does not warrant or accept any liability whatsoever in respect of any products purchased through unauthor ized sales channel. should customers purchase or use diodes incorporated products for any u nintended or unauthorized application, customers shall indemnify and hold diodes incorporated and its representatives harmless against all claims, damages, expenses, and attorney fees arising ou t of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized application. products described herein may be covered by one or more united states, international or foreign patents pending. product names and markings noted herein may also be covered by one or more united states, international or foreign trademarks. this document is written in english but may be translated into multiple languages for reference. only the english version of this document is the final and determinative format released by diodes incor porated. life support diodes incorporated products are specifically not authorized for use as critical components in life support devices or system s without the express written approval of the chief executive officer of diodes incorporated. as used herei n: a. life support devices or systems are devices or systems which: 1. are intended to implant into the body, or 2. support or sustain life and whose failure to perform when properly used in accordance with instructions for use provided i n the labeling can be reasonably expected to result in significant injury to the user. b. a critical component is any component in a life support device or system whose failure to perform can be reasonably expe cted to cause the failure of the life sup port device or to affect its safety or effectiveness. customers represent that they have all necessary expertise in the safety and regulatory ramifications of their life support d evices or systems, and acknowledge and agree that they are solely responsibl e for all legal, regulatory and safety - related requirements concerning their products and any use of diodes incorporated products in such safety - critical, life support devices or systems, notwithstanding any devices - or systems - related information or suppo rt that may be provided by diodes incorporated. further, customers must fully indemnify diodes incorporated and its representatives against any damages arising out of the use of diodes incorporated products in such safety - critical, life support devices or systems. copyright ? 201 5 , diodes incorporated www.diodes.com


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