| 전자부품 데이터시트 검색엔진 |
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ATH06T033 데이터시트(PDF) 6 Page - Astec America, Inc |
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ATH06T033 데이터시트(HTML) 6 Page - Astec America, Inc |
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6 / 14 page ![]() Application Notes North America (USA): 1-888-41-ASTEC Europe (UK): 44(1384)842-211 Asia (HK): 852-2437-9662 ATH06T033 & ATH06T05 Series Table 2-1: Recommended Input/Output Capacitors ATH06T033/T05: Capacitor Recommendations Input Capacitor The recommended input capacitance is determined by 100 µF minimum capacitance, and 300 mA (rms) mini- mum ripple current rating. Ripple current and less than 300 m Ω equivalent series resistance (ESR) values are the major considerations, along with temperature, when designing with different types of capacitors. Tantalum capacitors have a recommended minimum volt- age rating of twice 2 × (the maximum DC voltage + AC ripple). This is standard practice for tantalum capacitors to insure reliability. Output Capacitors (Optional) The ESR of the recommended capacitors is equal to or less than 300 m Ω. Electrolytic capacitors have marginal ripple performance at frequencies greater than 400 kHz but excellent low frequency transient response. Above the ripple frequency, ceramic capacitors are necessary to improve the transient response and reduce any high frequency noise components apparent during higher current excursions. Tantalum/ Ceramic Capacitors Tantalum capacitors are acceptable on the output bus. Tantalum, Os-con, or ceramic capacitor types are recom- mended for applications where ambient temperatures fall below 0 °C. Ceramic capacitors may be used instead of electrolytic types on both the input and output bus. The input bus must have the minimum amount of capacitance. A single 10 µF ceramic capacitor may also be used on the output bus to reduce output ripple. Capacitor Table Table 2-1 identifies the characteristics of capacitors from a number of vendors with acceptable ESR and ripple current (rms) ratings. The number of capacitors required at both the input and output buses is identified for each capacitor type. This is not an extensive capacitor list. Capacitors from other vendors are available with comparable specifications. Those listed are for guidance. The RMS ripple current rating and ESR are the critical parameters necessary to insure both opti- mum regulator performance and long capacitor life. / r o d n e V r o t i c a p a C t n e n o p m o C s e i r e S s c i t s i r e t c a r a h C r o t i c a p a Cy t i t n a u Q g n i k r o W e g a t l o V) F µ ( e u l a V t n e l a v i u q E ) R S E ( e c n a t s i s e R s e i r e S e l p p i R x a M C ° 5 8 t a ) s m r I ( t n e r r u C e z i S l a c i s y h P ) m m ( t u p n I s u B t u p t u O s u B r e b m u N r o d n e V T M S ( C F c i n o s a n a P ) T M S ( A W V 5 2 V 0 1 F µ 0 0 1 F µ 0 2 1 0 0 3 . 0 Ω 5 3 0 . 0 Ω A m 0 5 4 A m 0 0 8 2 8 × 0 1 3 . 8 × 9 . 6 1 1 1 1 P 1 0 1 E 1 C F V E E P 1 2 1 A 1 A W F E E C F c i n o s a n a P ) T M S ( K F V 6 1 V 6 1 0 2 2F µ 0 3 3F µ 0 5 1 . 0 Ω 0 6 1 . 0 Ω A m 5 5 5 A m 0 0 6 0 1 × 2 . 0 1 8 × 2 . 0 1 1 1 1 1 1 2 2 C 1 C F U E E P 1 3 3 C 1 K F V E E n o C – i m e h C d e t i n U S F ) T M S ( A X P ) T M S ( Z V M S P V 0 1 V 0 1 V 6 1 V 0 1 F µ 0 0 1 0 2 1F µ 0 2 2F µ F µ 0 7 2 0 4 0 . 0 Ω 7 2 0 . 0 Ω 0 7 1 . 0 Ω 4 1 0 . 0 Ω A m 0 0 1 2 A m 0 3 4 2 A m 0 5 4 A m 0 2 4 4 3 . 6 × 8 . 9 8 × 7 . 6 8 × 0 1 8 × 5 . 1 1 1 1 1 1 1 1 1 1 M 0 0 1 S F 0 1 P T 0 8 H M 1 2 1 C V 0 1 A X P P T 0 1 H M 1 2 2 C V 5 2 Z V M 1 1 H M 0 7 2 S P 0 1 n o c i h c i N ) T M S ( G W 5 5 F M P V 5 3 V 0 1 V 5 2 0 0 1F µ 0 0 1F µ 0 5 1F µ 0 5 1 . 0 Ω 5 5 0 . 0 Ω 0 6 1 . 0 Ω A m 0 7 6 A m 0 0 0 2 A m 0 6 4 0 1 × 0 1 3 , 4 x 7 , 7 0 1 × 5 . 1 1 1 1 1 1 1 1 S G 1 R N M 1 0 1 V 1 G W U N M 7 0 1 A 1 5 5 F H P M 1 5 1 E 1 M P U ® n o c - s O o y n a S ) T M S ( P V S P S A P T V 0 1 V 6 1 V 0 1 0 2 1F µ F µ 0 0 1 µ 0 0 1F 0 4 0 . 0 Ω 5 2 0 . 0 Ω 0 8 0 . 0 Ω A m 0 0 5 2 > A m 0 0 8 2 > A m 0 0 2 1 > 7 ×8 3 . 6 × 8 . 9 3 . 7 × 8 . 4 1 1 1 1 1 1 M 0 2 1 P V S 0 1 M 0 0 1 S P S 6 1 M 0 0 1 A P T 0 1 S P T m u l a t n a T X V AV 0 1 V 0 1 F µ 0 0 1 F µ 0 2 2 0 1 . 00 Ω 0 0 1 . 0 Ω A m 0 9 0 1 > A m 4 1 4 1 > L 3 . 7 × W 3 . 4 × H 1 . 4 1 1 1 1 0 0 1 0 R 0 1 0 M 7 0 1 D S P T 0 0 1 0 R 0 1 0 M 7 2 2 V S P T t e m e K0 2 5 T 5 9 4 T V 0 1 V 0 1 F µ 0 0 1 F µ 0 0 1 0 8 0 . 0 Ω 0 0 1 . 0 Ω A m 0 0 2 1 A m 0 0 1 1 > L 3 . 7 × W 7 . 5 × H 0 . 4 1 1 1 1 S A 0 1 0 M 7 0 1 D 0 2 5 T S A 0 1 0 M 7 0 1 X 5 9 4 T D 5 9 5 / D 4 9 5 e u g a r p SV 0 1 V 0 1 F µ 0 5 1 F µ 0 2 1 0 9 0 . 0 Ω 0 4 1 . 0 Ω A m 0 0 1 1 A m 0 0 0 1 > L 3 . 7 × W 0 . 6 × H 1 . 4 1 1 1 1 T 2 C 0 1 0 0 X 7 5 1 D 4 9 5 T 2 D 0 1 0 0 X 7 2 1 D 5 9 5 R 5 X c i m a r e C - K D T R 5 X c i m a r e C a t a r u M e s a C 0 1 2 1 V 3 . 6 V 3 . 6 F µ 7 4 F µ 7 4 2 0 0 . 0 Ω 2 0 0 . 0 Ω A m 0 0 4 1 > A m 0 0 0 1 > L 6 . 3 × W 8 . 2 × H 8 . 2 2 2 2 2 T M / T K 6 7 4 J 0 R 5 X 5 2 2 3 C 3 . 6 / M 6 7 4 J 0 6 R E 2 3 M R G |
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