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technical note system power supply for tv series built-in 1ch fet light load type dc/dc converters BD8622EFV description BD8622EFV has realized the high performance and reliab ility required as a power supply for thin-screen tv. due to the high-speed load response, it is most suitable for tv- purpose processors with increas ingly high performance, and due to the wide phase margin it leaves a good margin for board pattern & constant setting and so facilitates its application design. as a high-reliability design, it has various built-in protection circuits (overcurrent protection, output voltage abnormal prot ection, thermal protection, and off-latch function at the time of abnormality etc. ), therefore as an advantage it does not easily damage in eve ry possible abnormal condition such as all-pin short circ uit test etc. and hence most suitable fo r thin-screen tv which requires the high r eliability. features 1) high efficiency in all load area 2) 3.0a output current 3) pwm mode/pfm mode swit ch(automatic operation) 4) low current mode/rorripplmord switch with terminal mode 5) low rds(on) internal switches 75m ? (typ.) 6) 1% reference voltage accuracy 7) programmable frequency : 250khz-1mhz can the adjustment by an external synchron ization and the terminal rt resistance. 8) terminal rt open/short detecting function 9) over current protection function 10) output over voltage/low voltage protection function (over : fb > vref +60mv , low : fb < vref -60mv) 11) timer off latch function in abnormal circumstances 12) thermal shutdown function 13) under voltage protection 14) soft start/start delay circuit 15) soft start time out function 16) protecting bus function with terminal pdet 17) htssop-b20 package jul. 2008
2 / 15 electrical characteristic (unless otherwise noted ta=25 , vin=3.3v, gnd=0v) parameter symbol specification value unit condition min typ max vin supply current (operating) i q_active - 210 350 a v fb = 0.83v, v fc = 1v vin supply current (standby) i q _ stb y - 0 1 a v en = 0v reference voltage (vref) v ref 0.792 0.8 0.808 v output rise detection voltage v ov p 30 60 90 mv monitoring fb terminal output decrease detection voltage v lv p -90 -60 -30 mv monitoring fb terminal terminal pdet output current i pdet 0.4 - - ma v pdet < 0.3v oscillation frequency f os c 500 550 600 khz r rt = 220k ? pch fet on resistance r pfet - 75 110 m ? i sw = 1a uvlo voltage v uvl o 2.35 2.50 2.65 v sw leak current i lsw - 0 1 a v en = 0v, v in = 5.5v en terminal h threshold voltage v enh 1.1 - - v en terminal l threshold voltage v enl - - 0.4 v fc sink current i fcsi 10 20 - a fc source current i fcs o - -20 -10 a ss/delay terminal source current i sss o 2 4 6 a terminal pdet pull-up resistor r pdet 100 170 250 k ? v fb :fb terminal voltage, v en :en terminal voltage, v fc :fc terminal voltage, v pdet : pdet terminal voltage current capability should not exceed pd. 3 / 15 block diagram 10 predrive detect abnormal voltage and start error o s c e n err amp shut down pwm/pfm control e n a b l e v i n s v i n fig1 block diagram pin description no. symbol description explanation 1 sgnd signal gnd terminal small signal system gnd 2 fb feed back terminal output voltage detection 3 pdet abnormal state notification and external ic abnormality detection terminal protecting bus communication terminal 4 nc 5 sw switching output terminal 6 sw 7 sw 8 sw 9 nc 10 pgnd power gnd terminal gnd for power mosfet 11 vin power supply input terminal power supply input. the decoupling is done to pgnd 12 vin 13 vin 14 vin 15 nc 16 en enable input on/off control for device operation 17 mode mode selection terminal the operation mode is switched according to the input voltage at a light load. 18 ss/delay soft start adjustment capacity connection terminal the soft start time is adjusted with the connected capacitor 19 fc error amplifier output error amplifier phase compensation point 20 rt frequency adjustment resistance connection terminal the switching frequency is set by the connected resistance 4 / 15 pin equivalence circuit diagram no. symbol explanation terminal equivalent circuit diagram 1 sgnd gnd (connected 0v) 2 fb output voltage detection terminal 3 pdet protecting bus i/o terminal 5,6,7,8 sw output terminal 10 pgnd power gnd (same voltage as sgnd) 11,12,13 pvin power supply input terminal 14 svin power supply input terminal 5 / 15 no. symbol explanation terminal equivalent circuit diagram 16 en enable terminal 17 mode operation mode switch terminal at light load 6 / 15 no. symbol explanation terminal equivalent circuit diagram 18 ss /delay soft start time adjustment terminal 19 fc error amplifier compensation terminal 20 rt oscillator frequency adjustment terminal 7 / 15 operation description enable control the device can be controlled on/off by en terminal (16 pin) voltage. an internal circuit starts when ven reaches 1.1v. when standing up of vin is too st eep (1msec or less), a defecti ve start might be caused accordin g to the state of pascon betwe en gnd substrate pattern and power s upply-when the terminal en is short-circuited to the terminal vin and it is used. fig.2 on/off transition wave form in en controlling 8 / 15 soft start time set function as for BD8622EFV, output can do soft start without overshoot by charging soft start capacity (css) connected between ss and sgnd terminal. also, soft start time (tss) can be set by se tting soft start capacity (css) arbitrarily. osc oscillation frequency setting function the output oscillation frequency can be set by connecting resistance between terminal rt (20 pins) and sgnd (range = 250khz - 1mhz) the relation between rt terminal resistance a nd the oscillation frequency follows fig.4. 10 1000 10 100 1000 10000 rt??[k] ??[khz] fig.4 rt resistance-oscillation frequency rt terminal resistance [k ? ] frequency [khz] 9 / 15 light load mode operation ? low current mode when the terminal mode (17 pins) is made "h", low current mo de operation becomes effective. the characteristic of the efficiency valuing is obtained in low current mode operation at a light load. fig.5 low current mode operation ? low ripple mode when the terminal mode is made "l", the low ripple mode operation becomes effective. it becomes operation of valuing a low ripple in the low ripple mode operation at a light load. fig.6 low ripplemord operation 0 10 20 30 40 50 60 70 80 90 100 110100 ?[ma] [%] vin=3.3v vo=1.8v io=0100ma sw_f=550khz(r11=220k) `??` `?` fig7 light load mode efficiency comparison v out [20mv/div] sw [2v/div] i l [200ma/div] v out [20mv/div] sw [2v/div] i l [200ma/div] low ripple mord low current mode efficiency [%] negative overcurrent [ma] 10 / 15 protection function protection circuit is effective for destruction prevention due to accident so that avoid using under continuous protection operation. low voltage protection function (lvp) the voltage of the terminal fb (2 pins) is compared with internal reference voltage vref. if fb terminal voltage falls below v lvp (= vref -60mv) and the state continues for 500us, output changes to low voltage and the state is fixed. in that case , pdet (3pin) output changes to l. table 4-1 output low voltage protection function en terminal ss terminal fb terminal low voltage protection function low voltage protection operation >v enh >1.4v(typ) v lvp effective on v lvp off <1.4v(typ) - invalidity off 12 / 15 protecting bus function with terminal pdet the terminal pdet (3 pins) monitors whether ic is norm al or not. when ic becomes abnormal, the pdet output is reduced at "l" level with the output voltage fixed ?l? level at the same time. moreover, it is possible to make the output fix in a low level by compulsorily reducing the terminal pdet at "l" level from the outside. when two or more BD8622EFV is used in the application, this function prevents the ic from destroying, because one ic error transmits all other ics by pdet line in the condition that pdet terminals are connected each other. fig.6 protecting bus communication please give the terminal pdet as open when you do not use protecting bus function. error detection (off latch) release method BD8622EFV enters the state of an off latch when the protection function operates. to release the off latch state, en terminal voltage should be changed to low level once time. 13 / 15 each characteristic reference data fig.11 output load response fig.12 output ripple 0 10 20 30 40 50 60 70 80 90 100 1 10 100 1000 10000 efficiency ? [%] load ? current ? [ma] fig.13 efficiency fig.14 soft start 1.5 ? 1.6 ? 1.7 ? 1.8 ? 1.9 ? 2.0 ? 0.0 0.5 1.0 1.5 2.0 2.5 3.0 output ? voltage ? : ? vo ? [v] load ? current ? [a] fig.15 regulation vout : 100mv/div io = 1a/div vin = 5v io = 3a vout : 20mv/div vin = 2v/div vout = 0.5v/div ss = 2v/div vin = 5.0v vin = 3.3v vout = 1.8v fosc = 550khz lc mode 100usec/div 1usec/div 10msec/div vin = 5.0v vout = 1.8v 14 / 15 0.790 ? 0.792 ? 0.794 ? 0.796 ? 0.798 ? 0.800 ? 0.802 ? 0.804 ? 0.806 ? 0.808 ? 0.810 ? -25 0 25 50 75 100 125 150 error ? amp ? reference ? voltage ? : ?? vref ? [v] ambient ? temperature ? : ? ta ? [ ] 3.0 ? 3.3 ? 3.5 ? 3.8 ? 4.0 ? 4.3 ? 4.5 ? 4.8 ? 5.0 ? -25 0 25 50 75 100 125 150 ss ? charge ? current ?? : ? iss ? [ a] ambient ? temperature ? : ? ta ? [ ] fig.16 reference volta g e- tem p erature characteristic fig.17 ss char g in g current - te m p erature characteristic 500.0 ? 510.0 ? 520.0 ? 530.0 ? 540.0 ? 550.0 ? 560.0 ? 570.0 ? 580.0 ? 590.0 ? 600.0 ? 2.533.544.555.5 frequency ? : ? fosc ? [khz] input ? voltage ? : ? vin ? [v] 500.0 ? 510.0 ? 520.0 ? 530.0 ? 540.0 ? 550.0 ? 560.0 ? 570.0 ? 580.0 ? 590.0 ? 600.0 ? -25 0 25 50 75 100 125 150 frequency ? : ? fosc ? [khz] ambient ? temperature ? : ? ta ? [ ] fig.18 switchin g fre q uenc y - p ower-su pp l y volta g e characteristic fig.19 switchin g fre q uenc y -tem p erature characteristic 0.0 ? 10.0 ? 20.0 ? 30.0 ? 40.0 ? 50.0 ? 60.0 ? 70.0 ? 80.0 ? 90.0 ? 100.0 ? 2.533.544.555.5 on \ resistance: ? ron ? [m ] input ? voltage ? : ? vin ? [v] 30.00 ? 40.00 ? 50.00 ? 60.00 ? 70.00 ? 80.00 ? 90.00 ? 100.00 ? 110.00 ? -25 0 25 50 75 100 125 150 on \ resistance: ? ron ? [m ] ambient ? temperature ? : ? ta ? [ ] fig.20 pmos on resistance- p ower-su pp l y volta g e fig.21 pmos on resistance-tem p erature characteristic 0.00 ? 0.10 ? 0.20 ? 0.30 ? 0.40 ? 0.50 ? 0.60 ? 0.70 ? 0.80 ? 0.90 ? 1.00 ? -25 0 25 50 75 100 125 150 en ? voltage ? high: ? v enh ? [v] ambient ? temperature ? : ? ta ? [ ] 0.0 ? 50.0 ? 100.0 ? 150.0 ? 200.0 ? 250.0 ? 300.0 ? 350.0 ? 400.0 ? 2.533.544.555.5 circuit ? current: ? icc ? [ua] input ? voltage ? : ? vin ? [v] fig.22 terminal en h volta g e-tem p erature characteristic fig.23 circuit current- p ower-su pp l y volta g e characteristic ta = 25 vin = 3.3v vin = 3.3v vin = 3.3v ta = 25 vin = 3.3v vin = 3.3v ta = 25 v fb = 0.83v v fc = 1.0v sw = h catalog no.08t274a '08.7 rohm ? notes no technical content pages of this document may be reproduced in any form or transmitted by any means without prior permission of rohm co.,ltd. the contents described herein are subject to change without notice. the specifications for the product described in this document are for reference only. upon actual use, therefore, please request that specifications to be separately delivered. application circuit diagrams and circuit constants contained herein are shown as examples of standard use and operation. please pay careful attention to the peripheral conditions when designing circuits and deciding upon circuit constants in the set. any data, including, but not limited to application circuit diagrams information, described herein are intended only as illustrations of such devices and not as the specifications for such devices. rohm co.,ltd. disclaims any warranty that any use of such devices shall be free from infringement of any third party's intellectual property rights or other proprietary rights, and further, assumes no liability of whatsoever nature in the event of any such infringement, or arising from or connected with or related to the use of such devices. upon the sale of any such devices, other than for buyer's right to use such devices itself, resell or otherwise dispose of the same, no express or implied right or license to practice or commercially exploit any intellectual property rights or other proprietary rights owned or controlled by rohm co., ltd. is granted to any such buyer. products listed in this document are no antiradiation design. appendix1-rev2.0 thank you for your accessing to rohm product informations. more detail product informations and catalogs are available, please contact your nearest sales office. rohm customer support system the americas / europe / asia / japan contact us : webmaster@ rohm.co. jp www.rohm.com copyright ? 2008 rohm co.,ltd. the products listed in this document are designed to be used with ordinary electronic equipment or de vices (such as audio visual equipment, office-automation equipment, communications devices, electrical appliances and electronic toys). should you intend to use these products with equipment or devices which require an extremely high level of reliability and the malfunction of which would directly endanger human life (such as medical instruments, transportation equipment, aerospace machinery, nuclear-reactor controllers, fuel controllers and other safety devices), please be sure to consult with our sales representative in advance. it is our top priority to supply products with the utmost quality and reliability. however, there is always a chance of failure due to unexpected factors. therefore, please take into account the derating characteristics and allow for sufficient safety features, such as extra margin, anti-flammability, and fail-safe measures when designing in order to prevent possible accidents that may result in bodily harm or fire caused by component failure. rohm cannot be held responsible for any damages arising from the use of the products under conditions out of the range of the specifications or due to non-compliance with the notes specified in this catalog. 21 saiin mizosaki- cho, ukyo-ku, kyoto 615-8585, japan tel : +81-75-311-2121 fax : +81-75-315-0172 appendix |
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