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LTC7130 Datasheet(PDF) 21 Page - Linear Technology |
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LTC7130 Datasheet(HTML) 21 Page - Linear Technology |
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21 / 36 page ![]() LTC7130 21 7130fb For more information www.linear.com/LTC7130 maximum RMS current of one channel must be used. The maximum RMS capacitor current is given by: CIN Required IRMS ≈ IMAX VIN VOUT ( ) VIN – VOUT ( ) ⎡⎣ ⎤⎦ 1/2 This formula has a maximum at VIN = 2VOUT, where IRMS = IOUT/2. This simple worst-case condition is com- monly used for design because even significant deviations donotoffermuchrelief.Notethatcapacitormanufacturers’ ripple current ratings are often based on only 2000 hours of life. This makes it advisable to further derate the capaci- tor, or to choose a capacitor rated at a higher temperature thanrequired.Severalcapacitorsmaybeparalleledtomeet size or height requirements in the design. Due to the high operating frequency of the LTC7130, ceramic capacitors can also be used for CIN. Always consult the manufacturer if there is any question. Ceramic capacitors are becoming very popular for small designsbutseveralcautionsshouldbeobserved.X7R,X5R and Y5V are examples of a few of the ceramic materials used as the dielectric layer, and these different dielectrics have very different effect on the capacitance value due to thevoltageandtemperatureconditionsapplied.Physically, if the capacitance value changes due to applied voltage change, there is a concomitant piezo effect which results in radiating sound! A load that draws varying current at an audible rate may cause an attendant varying input volt- age on a ceramic capacitor, resulting in an audible signal. A secondary issue relates to the energy flowing back into a ceramic capacitor whose capacitance value is being reducedbytheincreasingcharge.Thevoltagecanincrease ataconsiderablyhigherratethantheconstantcurrentbeing supplied because the capacitance value is decreasing as thevoltageisincreasing!Nevertheless,ceramiccapacitors, when properly selected and used, can provide the lowest overall loss due to their extremely low ESR. A small (0.1µF to 1µF) bypass capacitor, CIN, between the chip VIN pin and ground, placed close to the LTC7130, is also suggested. A 2.2Ω to 10Ω resistor placed between CIN and VIN pin provides further isolation. The selection of COUT is driven by the required effective series resistance (ESR). Typically once the ESR require- ment is satisfied the capacitance is adequate for filtering. The steady-state output ripple (∆VOUT) is determined by: ∆VOUT ≈ ∆IRIPPLE ESR+ 1 8fCOUT ⎛ ⎝ ⎜ ⎞ ⎠ ⎟ where f = operating frequency, COUT = output capacitance and ∆IRIPPLE = ripple current in the inductor. The output ripple is highest at maximum input voltage since ∆IRIPPLE increases with input voltage. The output ripple will be less than 50mV at maximum VIN with ∆IRIPPLE = 0.4IOUT(MAX) assuming: COUT required ESR < N • RSENSE and COUT > 1 8f ( ) RSENSE ( ) TheemergenceofverylowESRcapacitorsinsmall,surface mount packages makes very small physical implementa- tions possible. The ability to externally compensate the switching regulator loop using the ITH pin allows a much wider selection of output capacitor types. The impedance characteristic of each capacitor type is significantly differ- ent than an ideal capacitor and therefore requires accurate modelingorbenchevaluationduringdesign.Manufacturers suchasNichicon,NipponChemi-ConandSanyoshouldbe consideredforhighperformancethrough-holecapacitors. TheOS-CONsemiconductordielectriccapacitorsavailable from Sanyo and the Panasonic SP surface mount types have a good (ESR)(size) product. OncetheESRrequirementforCOUThasbeenmet,theRMS currentratinggenerallyfarexceedstheIRIPPLE(P-P)require- ment. Ceramic capacitors from AVX, Taiyo Yuden, Murata and TDK offer high capacitance value and very low ESR, especially applicable for low output voltage applications. In surface mount applications, multiple capacitors may have to be paralleled to meet the ESR or RMS current handling requirements of the application. Aluminum electrolytic and dry tantalum capacitors are both available in surface mount configurations. New special polymer surface mount capacitors offer very low ESR also but have much lower capacitive density per unit volume. In the case of tantalum, it is critical that the capacitors are surge tested for use in switching power supplies. Several APPLICATIONS INFORMATION |
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