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  datashee t product structure silicon monolithic integrated circuit this product is not designed prot ection against radioactive rays. 1/13 tsz02201-0r6r0a600140-1-2 ? 2012 rohm co., ltd. all rights reserved. tsz22111 ? 14? 001 www.rohm.com 14.feb.2012 rev.001 1.5a variable/fixed output ldo regulators baxxjc5 series(fixed) ba00jc5wt(variable) general description the baxxjc5 are low-saturation regulators with an output current of 1.5a and a voltage accuracy of 1%. a broad output voltage range is offered, from 1.5v to 12v, and built-in overcu rrent protection and thermal shutdown (tsd) circuits prevent damage due to short-circuiting and overloading, respectively. features ? output voltage accuracy: 1% ? broad output voltage range available: 1.5v -12v (baxxjc5 series) ? low saturation-voltage type with pnp output ? built-in overcurrent protection circuit ? built-in thermal shutdown circuit ? integrated shutdown switch (ba00jc5wt) key specifications ? input power supply voltage: 16.0v(max.) ? output voltage type: baxxjc5 series fixed ba00jc5wt variable ? output current: 1.5a(max.) ? shutdown current: (ba00jc5wt) 0 a(typ.) ? operating temperature range: -40 to +105 applications all electronic devices that use microcontrollers and logic circuits packages w (typ.) x d (typ.) x h (max.) to220fp-3 10.00mm x 30.50mm x 4.60mm to220fp-5 10.00mm x 30.50mm x 4.60mm lineup matrix part number output voltage (v) package 1.5 1.8 2.5 3.0 3.3 5.0 6. 0 6.3 8.0 9.0 12.0 variable baxxjc5t { { { { { { { { { { { - to220fp-3 baxxjc5wt - - - - - - - - - - - { to220fp-5 ordering information b a x x j c 5 x x - part number output voltage 00:variable other:fixed current capacity jc5:1.5a shutdown switch w : include none:without package t to220fp-3 to220fp-5 packaging and forming specification none:tube contener to220fp-3 to220fp-5
2/13 baxxjc5 series(fixed) ba00jc5wt(variable) datasheet tsz02201-0r6r0a600140-1-2 ? 2012 rohm co., ltd. all rights reserved. tsz22111 ? 15? 001 www.rohm.com 14.feb.2012 rev.001 lineup maximum output current (max.) shutdown switch package output voltage(typ.) orderable part number 1.5a no switch to220fp-3 tube of 500 1.5 v ba15jc5t 1.8 v ba18jc5t 2.5 v ba25jc5t 3.0 v ba30jc5t 3.3 v ba33jc5t 5.0 v BA50JC5t 6.0 v ba60jc5t 6.3 v ba63jc5t 8.0 v ba80jc5t 9.0 v ba90jc5t 12.0 v baj2jc5t with switch to220fp-5 variable ba00jc5wt block diagrams / standard example application ci rcuits / pin configurations / pin descriptions [baxxjc5t] [ba00jc5wt] pin no. pin name function 1 vcc power supply voltage input 2 gnd gnd 3 out voltage output pin no. pin name function 1 ctl output voltage on/off control 2 vcc power supply voltage input 3 gnd gnd 4 out voltage output 5 c adj pin to220fp-3 123 top view top view pin external capacit setting range vcc (1 pin approximately 0.33 f out (3 pin) 22 f to 1000 f tsd ocp driver vref 1 0.33 f vcc ctl gnd out 3 4 22 f 2 vcc c 5 vcc r2 r1 tsd ocp driver vre f 1 0.33 f vcc vcc gnd out 2 3 22 f vcc fig.1 fig.2 to220fp-5 123 4 5 pin external capacit setting range vcc (2 pin) approximately 0.33 f out (4 pin) 22 f to 1000 f
3/13 baxxjc5 series(fixed) ba00jc5wt(variable) datasheet tsz02201-0r6r0a600140-1-2 ? 2012 rohm co., ltd. all rights reserved. tsz22111 ? 15? 001 www.rohm.com 14.feb.2012 rev.001 absolute maximum ratings (ta = 25 ) parameter symbol ratings unit power supply voltage v cc 18 *1 v power dissipation to220fp-3 p d 2000 *2 mw to220fp-5 2000 *2 operating temperature range t opr ? 40 to +105 ambient storage temperature t stg ? 55 to +150 maximum junction temperature t jmax 150 *1 must not exceed pd *2 derated at 16mw/ at ta>25 recommended operating ratings parameter symbol ratings unit min. max. input power supply voltage v cc *3 3.0 16.0 v input power supply voltage v cc *4 v o + 1.0 16.0 v output current i o - 1.5 a variable output voltage setting value v o 1.5 12 v *3 when output voltage is 1.5 v, 1.8 v, or 2.5 v. *4 when output voltage is 3.0 v or higher. electrical characteristics baxxjc5t unless otherwise specified, ta=25 , vcc=3.3v(vo=1.5v,1.8v,2.5v), vcc=5.0v(vo=3.0v,3.3v), vcc=vo+3.0v(vo R 5.0v) parameter symbol limit unit conditions min typ max bias current ib 0.5 0.9 ma io=0ma output voltage vo vo(t) 0.99 vo(t) vo(t) 1.01 v io=200ma dropout voltage *5 vd 0.3 0.5 v io=500ma, vcc=vo 0.95v peak output current io 1.5 a ripple rejection r.r. 44 55 db f=120hz, ein *8 =-20dbv io=100ma , vo Q 6.3v 43 53 f=120hz, ein *8 =-20dbv io=100ma , vo=8.0v 42 52 f=120hz, ein *8 =-20dbv io=100ma, vo=9.0v 40 50 f=120hz, ein *8 =-20dbv io=100ma , vo=12.0v line regulation *6 reg.i 5 60 mv vcc=vo+1.0v 16v, io=200ma load regulation reg.l 5 60 mv io=5ma 1.5a temperature coefficient of output voltage *7 tcvo 0.02 %/ io=5ma,tj=0 to 125 output short current ios 0.7 a vcc=16v ( vo Q 3.3v ) 0.8 vcc=16v ( vo R 5.0v ) vo(t): output voltage *5 vo R 3.3v *6 vcc=3.0v 16v vo=1.5v, 1.8v, 2.5v *7 not 100% tested *8 ein=input voltage ripple
4/13 baxxjc5 series(fixed) ba00jc5wt(variable) datasheet tsz02201-0r6r0a600140-1-2 ? 2012 rohm co., ltd. all rights reserved. tsz22111 ? 15? 001 www.rohm.com 14.feb.2012 rev.001 electrical characteristics - continued ba00jc5wt unless otherwise specified, ta = 25 , vcc = 3.3 v, v ctl = 3 v, vo=2.5v parameter symbol limit unit conditions min. typ. max. shut down current isd 0 10 a v ctl =0v, io=0ma (off mode) bias current ib 0.5 0.9 ma io=0ma c pin voltage vc 1.237 1.250 1.263 v io=50ma dropout voltage1 vd 0.3 0.5 v io=500ma, vcc=2.5v peak output io 1.5 a ripple rejection r.r. 45 55 db f=120hz, ein *9 =-20dbv io=100ma line regulation reg.i 5 60 mv vcc=4.5v 16v, io=200ma load regulation reg.l 5 60 mv io=5ma 1.5a temperature coefficient of output voltage *10 tcvo 0.02 %/ io=5ma,tj=0 125 output short current ios 0.6 vcc=16v ctl on mode voltage vth1 2.0 v active mode, io=0ma ctl off mode voltage vth2 0.8 v off mode, io=0ma ctl input current iin 40 80 130 a io=0ma *9 ein=input voltage ripple *10 not 100% tested
5/13 baxxjc5 series(fixed) ba00jc5wt(variable) datasheet tsz02201-0r6r0a600140-1-2 ? 2012 rohm co., ltd. all rights reserved. tsz22111 ? 15? 001 www.rohm.com 14.feb.2012 rev.001 typical performance curves (unless otherwise specified, ta = 25 ; vcc = 8v; v ctl = 3v; i o = 0ma) fig.3 circuit current fig.5 input stability (io = 1.5 a) fig.6 load stability fig.4 input stability (io=0ma)
6/13 baxxjc5 series(fixed) ba00jc5wt(variable) datasheet tsz02201-0r6r0a600140-1-2 ? 2012 rohm co., ltd. all rights reserved. tsz22111 ? 15? 001 www.rohm.com 14.feb.2012 rev.001 typical performance curves - continued fig.10 circuit current temperature fig.8 ripple rejection fig.9 output voltage vs temperature fig.7 i/o voltage difference
7/13 baxxjc5 series(fixed) ba00jc5wt(variable) datasheet tsz02201-0r6r0a600140-1-2 ? 2012 rohm co., ltd. all rights reserved. tsz22111 ? 15? 001 www.rohm.com 14.feb.2012 rev.001 typical performance curves - continued fig.14 thermal shutdown circuit (io = 5 ma) fig.12 ctl voltage vs output voltage fig.11 circuit current classified by load fig.13 ctl voltage vs ctl current
8/13 baxxjc5 series(fixed) ba00jc5wt(variable) datasheet tsz02201-0r6r0a600140-1-2 ? 2012 rohm co., ltd. all rights reserved. tsz22111 ? 15? 001 www.rohm.com 14.feb.2012 rev.001 i/o equivalence circuit power dissipation ? to220fp-3/to220fp-5 the characteristics of the ic are great ly influenced by the operating temperature. if the temperature exceeds the maximum junction temperature t jmax , deterioration or damage may occur. implement proper thermal designs to ensure that power dissipation is within the permissible range in order to prev ent instantaneous damage resulting from heat and maintain the reliability of the ic for long-term operation. the following method is used to calculate the power consumption pc (w): pc = (vcc ? vo) io + vcc icca power dissipation pd pc the load current io is calculated: calculation example: vcc = 6.0v and vo = 5.0v at ta = 85 31k 2k 27k ctl vcc r2 r1 vcc out * for the ba00jc5wt, connect r1 and r2 externally between the adj and gnd pins and between the out and adj pins. equation: v o = vc (r1 + r2) / r1 (vc = 1.25v (typ.)) the recommended r1 value is approximately 30 k to 150 k . fig.15 fig.16 ja = 62.5c/w ? 16.0mw/c 25c = 2000mw 85c = 1040mw vcc : input voltage vo : output current i o : load current icca : circuit current io 860ma (icca 30ma) fig.17 0 15 25 20 10 5 25 50 75 125 150 100 0 a mbient temperature ta [ c ] (1)20.0 (2)2.0 (2) during ic without heat sink operation. j-a = 62.5 (c/w) (1) when using an infinite heat sink. j-c = 6.25 (c/w) pow er dissipation pd [w] io pd ? vcc icca vcc ? vo 1.040 ? 6.0 icca 6.0 ? 5.0 io
9/13 baxxjc5 series(fixed) ba00jc5wt(variable) datasheet tsz02201-0r6r0a600140-1-2 ? 2012 rohm co., ltd. all rights reserved. tsz22111 ? 15? 001 www.rohm.com 14.feb.2012 rev.001 refer to the above and implement proper thermal designs so that the ic will not be used under excessive power dissipation conditions under the entire operating temperature range. the power consumption pc of the ic in the event of shorting (i.e. the vo and g nd pins are shorted) can be obtained from the following equation: pc = vcc (icca + ishort) (ishort: short current) peripheral circuit considerations ? vcc pin insert a capacitor (0.33 f approx.) between v cc and gnd. the capacitance will vary depending on the application. use a suitable capacitance and implement designs with sufficient margins. ? gnd pin verify that there is no potential difference betwe en the ground of the application board and the ic. if there is a potential difference, the se t voltage will not be output accurately, resulting in unstable ic operation. therefore, lower the impedance by designing the ground pattern as wide and as short as possible. ? ctl terminal the ctl terminal turns on at an operating power supply volt age of 2.0 v or higher and turns off at 0.8 v or lower. there is no particular order when turning the power supply and ctl terminals on or off. fig.18 input equivalent circuit vo terminal insert a capacitor between the vo and gnd pins in order to prevent output oscillation. fig.19 output equivalent circuit fig.20 io vs. esr the capacitance may vary greatly with temperature changes, t hus making it impossible to completely prevent oscillation. therefore, use a tantalum aluminum electrolytic capacitor with a low esr (equivalent serial resistance). the output will oscillate if the esr is too high or too low, so refer to the esr characterist ics in fig.20 and operate the ic within the stable region. use a capacitor within a capacitance between 22 f and 1,000 f. out 22 f ic 200 400 600 800 1000 0 0.05 0.075 0.1 0.2 0.5 1.0 2.0 io [ma] esr [ ] oscillation region oscillation region stable region 10.0 31 k 2 k 27 k ctl
10/13 baxxjc5 series(fixed) ba00jc5wt(variable) datasheet tsz02201-0r6r0a600140-1-2 ? 2012 rohm co., ltd. all rights reserved. tsz22111 ? 15? 001 www.rohm.com 14.feb.2012 rev.001 operational notes 1. absolute maximum ratings an excess in the absolute maximum ratings, such as supply voltage, temperature range of operating conditions, etc., can break down the devices, thus maki ng impossible to identify breaking mode, such as a short circuit or an open circuit. if any over rated values will expect to exceed the ab solute maximum ratings, consider adding circuit protection devices, such as fuses. 2. gnd voltage the potential of gnd pin must be minimu m potential in all operating conditions. 3. thermal design use a thermal design that allows for a sufficient margin in light of the power dissipation (pd) in actual operating conditions. 4. inter-pin shorts and mounting errors use caution when positioning the ic fo r mounting on printed circuit boards. the ic may be damaged if there is any connection error or if pi ns are shorted together. 5. actions in strong electromagnetic field use caution when using the ic in the presence of a strong electromagnetic field as doing so may cause the ic to malfunction. 6. testing on application boards when testing the ic on an application board, connecting a capa citor to a pin with low impedance subjects the ic to stress. always discharge capacitors after each process or step. always turn the ic's power supply off before connecting it to or removing it from a jig or fixture during the inspection process. ground the ic during assembly steps as an antistatic measure. use similar precauti on when transporting or storing the ic. 7. regarding input pin of the ic this monolithic ic contains p+ isolation and p substrat e layers between adjacent elements in order to keep them isolated.p-n junctions are formed at the intersection of thes e p layers with the n layers of other elements, creating a parasitic diode or transistor. for example, the relation between each potential is as follows: when gnd > pin a and gnd > pin b, the p-n junction operates as a parasitic diode. when gnd > pin b, the p-n junction operates as a parasitic transistor. parasitic diodes can occur inevitable in the structure of th e ic. the operation of parasitic diodes can result in mutual interference among circuits, operational faults, or physical damage. accordingly, methods by which parasitic diodes operate, such as applying a voltage that is lower than the gnd (p substrate) voltage to an input pin, should 8. ground wiring pattern when using both small signal and large current gnd patterns, it is recommended to isolate the two ground patterns, placing a single ground point at the grou nd potential of application so that the pattern wiring resistance and voltage variations caused by large currents do not cause variations in the small signal ground voltage. be careful not to change the gnd wiring pattern of any external components, either. 9. thermal shutdown circuit the ic incorporates a built-in thermal shutdown circuit (tsd circuit). the thermal shutdown circuit (tsd circuit) is designed only to shut the ic off to prevent thermal runawa y. it is not designed to protect the ic or guarantee its operation. do not continue to use the ic after operating this circuit or us e the ic in an environment where the operation of this circuit is assumed. 10. overcurrent protection circuit an overcurrent protection circuit is incorporated in order to prevention destruction due to short-time overload currents. continued use of the protection circuits should be avoided. please note that the current increases negatively impact the temperature. 11. damage to the internal circuit or element may occur when the polarity of the vcc pin is opposite to that of the other pins in applications. (i.e. vcc is shorted with the gnd pin while an external capacitor is charged.) use a maximum capacitance of 1000 f for the output pins. inserting a diode to prevent back-current flow in series with vcc or bypass diodes between vcc and each pin is recommended.
11/13 baxxjc5 series(fixed) ba00jc5wt(variable) datasheet tsz02201-0r6r0a600140-1-2 ? 2012 rohm co., ltd. all rights reserved. tsz22111 ? 15? 001 www.rohm.com 14.feb.2012 rev.001 vcc output pin back current prevention diode bypass diode parasitic element fig.21 bypass diode fig.22 example of simple bipolar ic architecture status of this document the japanese version of this document is fo rmal specification. a customer may use this translation version only for a reference to help reading the formal version. if there are any differences in translation version of this document formal version takes priority. ( pin a ) gnd parasitic element gnd (pin b) b c e parasitic elements or transistors gnd p n p n n p p a ? gnd n p p b ??? ( npn ) b n e c gnd p transistor (npn) resistor pin a p substrate parasitic element pin b n p n p substrate n
12/13 baxxjc5 series(fixed) ba00jc5wt(variable) datasheet tsz02201-0r6r0a600140-1-2 ? 2012 rohm co., ltd. all rights reserved. tsz22111 ? 15? 001 www.rohm.com 14.feb.2012 rev.001 physical dimension tape and reel information marking diagrams orderable part number package part number marking ba15jc5t to220fp-3 ba15jc5 ba18jc5t ba18jc5 ba25jc5t ba25jc5 ba30jc5t ba30jc5 ba33jc5t ba33jc5 BA50JC5t BA50JC5 ba60jc5t ba60jc5 ba63jc5t ba63jc5 ba80jc5t ba80jc5 ba90jc5t ba90jc5 baj2jc5t baj2jc5 ba00jc5wt to220fp-5 00jc5w (unit : mm) to220fp-3 23 1 +0.4 3.20.1 0.55 17.0 12.00.2 8.00.2 2.540.5 13.5min. 5.00.2 0.8 2.540.5 1.3 ?0.1 +0.3 10.0 7.0 1.80.2 ?0.2 ?0.1 +0.3 2.60.5 ?0.05 +0.1 +0.2 ?0.1 ?0.1 +0.3 4.5 2.8 ? order quantity needs to be multiple of the minimum quantity. tube container quantity direction of feed 500pcs direction of products is fixed in a container tube (unit : mm) to220fp-5 7.0 10.0 2.8 4.5 1.778 0.50.1 1.2 0.8 1.80.2 8.00.2 0.7 12.00.2 17.0 13.5min. 3.20.1 ?0.2 +0.4 +0.3 ?0.1 ?0.1 +0.2 +0.3 ?0.1 +0.3 ?0.1 2345 1 2.85 ? order quantity needs to be multiple of the minimum quantity. tube container quantity direction of feed 500pcs direction of products is fixed in a container tube to220fp-3 (top view) part number marking lot number to220fp-5 (top view) part number marking lot number
13/13 baxxjc5 series(fixed) ba00jc5wt(variable) datasheet tsz02201-0r6r0a600140-1-2 ? 2012 rohm co., ltd. all rights reserved. tsz22111 ? 15? 001 www.rohm.com 14.feb.2012 rev.001 revision history date revision changes 26.jun.2012 001 new release
datasheet datasheet notice - rev.003 ? 2012 rohm co., ltd. all rights reserved. notice general precaution 1) before you use our products, you are requested to care fully read this document and fully understand its contents. rohm shall not be in any way responsible or liable for fa ilure, malfunction or accident arising from the use of any rohm?s products against warning, caution or note contained in this document. 2) all information contained in this document is current as of the issuing date and subjec t to change without any prior notice. before purchasing or using rohm?s products, please confirm the la test information with a rohm sales representative. precaution on using rohm products 1) our products are designed and manufactured for applicat ion in ordinary electronic equipments (such as av equipment, oa equipment, telecommunication equipment, home electroni c appliances, amusement equipment, etc.). if you intend to use our products in devices requiring extremel y high reliability (such as medical equipment, transport equipment, traffic equipment, aircraft/spacecra ft, nuclear power controllers, fuel c ontrollers, car equipment including car accessories, safety devices, etc.) and whose malfunction or failure may cause loss of human life, bodily injury or serious damage to property (?specific applications?), please consult with the rohm sale s representative in advance. unless otherwise agreed in writing by rohm in advance, rohm shall not be in any way responsible or liable for any damages, expenses or losses incurred by you or third parties arising from the use of any ro hm?s products for specific applications. 2) rohm designs and manufactures its products subject to strict quality control system. however, semiconductor products can fail or malfunction at a certain rate. please be sure to implement, at your own responsibilities, adequate safety measures including but not limited to fail-safe desi gn against the physical injury, damage to any property, which a failure or malfunction of our products may cause. the following are examples of safety measures: [a] installation of protection circuits or other protective devices to improve system safety [b] installation of redundant circuits to reduce the impact of single or multiple circuit failure 3) our products are designed and manufactured for use under standard conditions and not under any special or extraordinary environments or conditio ns, as exemplified below. accordin gly, rohm shall not be in any way responsible or liable for any damages, expenses or losses arising from the use of an y rohm?s products under any special or extraordinary environments or conditions. if you intend to use our products under any special or extraordinary environments or conditions (as exemplified below), your independent verification and confirmation of product performance, reliability, etc, prior to use, must be necessary: [a] use of our products in any types of liquid, incl uding water, oils, chemicals, and organic solvents [b] use of our products outdoors or in places where the products are exposed to direct sunlight or dust [c] use of our products in places where the products ar e exposed to sea wind or corrosive gases, including cl 2 , h 2 s, nh 3 , so 2 , and no 2 [d] use of our products in places where the products are exposed to static electricity or electromagnetic waves [e] use of our products in proximity to heat-producing components, plastic cords, or other flammable items [f] sealing or coating our products with resin or other coating materials [g] use of our products without cleaning residue of flux (ev en if you use no-clean type fluxes, cleaning residue of flux is recommended); or washing our products by using water or water-soluble cleaning agents for cleaning residue after soldering [h] use of the products in places subject to dew condensation 4) the products are not subjec t to radiation-proof design. 5) please verify and confirm characteristics of the final or mounted products in using the products. 6) in particular, if a transient load (a large amount of load applied in a short per iod of time, such as pulse) is applied, confirmation of performance characteristics after on-boar d mounting is strongly recomm ended. avoid applying power exceeding normal rated power; exceeding the power rating under steady-state loading c ondition may negatively affect product performance and reliability. 7) de-rate power dissipation (pd) depending on ambient temper ature (ta). when used in seal ed area, confirm the actual ambient temperature. 8) confirm that operation temperature is within t he specified range described in the product specification. 9) rohm shall not be in any way responsible or liable for fa ilure induced under deviant condi tion from what is defined in this document.
datasheet datasheet notice - rev.003 ? 2012 rohm co., ltd. all rights reserved. precaution for mounting / circuit board design 1) when a highly active halogenous (chlori ne, bromine, etc.) flux is used, the resi due of flux may negatively affect product performance and reliability. 2) in principle, the reflow soldering method must be used; if flow soldering method is preferred, please consult with the rohm representative in advance. for details, please refer to rohm mounting specification precautions regarding application examples and external circuits 1) if change is made to the constant of an external circuit, pl ease allow a sufficient margin considering variations of the characteristics of the products and external components, including transient characteri stics, as well as static characteristics. 2) you agree that application notes, re ference designs, and associated data and in formation contained in this document are presented only as guidance for products use. theref ore, in case you use such information, you are solely responsible for it and you must exercise your own indepen dent verification and judgment in the use of such information contained in this document. rohm shall not be in any way responsible or liable for any damages, expenses or losses incurred by you or third parties arising from the use of such information. precaution for electrostatic this product is electrostatic sensitive product, which may be damaged due to electrostatic discharge. please take proper caution in your manufacturing process and storage so that voltage exceeding t he products maximum rating will not be applied to products. please take special care under dry condit ion (e.g. grounding of human body / equipment / solder iron, isolation from charged objects, se tting of ionizer, friction prevention and temperature / humidity control). precaution for storage / transportation 1) product performance and soldered connections may deteriora te if the products are stor ed in the places where: [a] the products are exposed to sea winds or corros ive gases, including cl2, h2s, nh3, so2, and no2 [b] the temperature or humidity exceeds those recommended by rohm [c] the products are exposed to di rect sunshine or condensation [d] the products are exposed to high electrostatic 2) even under rohm recommended storage c ondition, solderability of products out of recommended storage time period may be degraded. it is strongly recommended to confirm sol derability before using products of which storage time is exceeding the recommended storage time period. 3) store / transport cartons in the co rrect direction, which is indicated on a carton with a symbol. otherwise bent leads may occur due to excessive stress applied when dropping of a carton. 4) use products within the specified time after opening a humidity barrier bag. baking is required before using products of which storage time is exceeding the recommended storage time period. precaution for product label qr code printed on rohm products label is for rohm?s internal use only. precaution for disposition when disposing products please dispose them proper ly using an authorized industry waste company. precaution for foreign exchange and foreign trade act since our products might fall under cont rolled goods prescribed by the applicable foreign exchange and foreign trade act, please consult with rohm representative in case of export. precaution regarding intellectual property rights 1) all information and data including but not limited to application example contained in this document is for reference only. rohm does not warrant that foregoi ng information or data will not infringe any intellectual property rights or any other rights of any third party regarding such information or data. rohm shall not be in any way responsible or liable for infringement of any intellectual property rights or ot her damages arising from use of such information or data.: 2) no license, expressly or implied, is granted hereby under any intellectual property rights or other rights of rohm or any third parties with respect to the information contained in this document.
datasheet datasheet notice - rev.003 ? 2012 rohm co., ltd. all rights reserved. other precaution 1) the information contained in this document is provi ded on an ?as is? basis and rohm does not warrant that all information contained in this document is accurate and/or error-free. rohm shall not be in any way responsible or liable for any damages, expenses or losses incurred by you or third parties resulting from inaccuracy or errors of or concerning such information. 2) this document may not be reprinted or reproduced, in whol e or in part, without prior written consent of rohm. 3) the products may not be disassembled, converted, modified, reproduced or otherwise changed without prior written consent of rohm. 4) in no event shall you use in any way whatsoever the pr oducts and the related technical information contained in the products or this document for any military purposes, incl uding but not limited to, the development of mass-destruction weapons. 5) the proper names of companies or products described in this document are trademarks or registered trademarks of rohm, its affiliated companies or third parties.


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