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PTH05000WAZ Datasheet(PDF) 6 Page - Texas Instruments |
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PTH05000WAZ Datasheet(HTML) 6 Page - Texas Instruments |
6 / 14 page Application Notes continued For technical support and further information visit http://power.ti.com PTH05000 Series Table 1-1: Input/Output Capacitors [1] A total capacitance of 300 µF is acceptable based on the surge current capability of ceramic capacitors. [2] A ceramic capacitor may be used to complement electrolytic types at the input to further reduce high-frequency ripple current. / e p y T , r o d n e V r o t i c a p a C ) e l y t S ( 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 R S E . x a M z H k 0 0 1 t a e l p p i R . x a M C ° 5 8 t a t n e r r u C ) s m r I ( 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 c i n o s a n a P ) D M S ( m u n i m u l A - y l o P , A W ) D M S ( m u n i m u l A , C F ) D M S ( m u n i m u l A , K F ) l a i d a R ( m u n i m u l A , C F V 0 1 V 6 1 V 6 1 V 0 1 F µ 0 3 3 F µ 0 3 3 F µ 0 3 3 F µ 0 3 3 . 05 3 0 Ω 0 5 1 . 0 Ω 0 6 1 . 0 Ω 7 1 1 . 0 Ω A m 0 0 8 2 A m 0 7 6 A m 0 0 6 A m 0 5 5 8 × 9 . 6 0 1 × 2 . 0 1 8 × 2 . 0 1 8 × 5 . 1 1 1 1 1 1 ≤3 ≤3 ≤3 ≤3 P 1 2 1 A 1 A W F E E P 1 3 3 C 1 C F V E E P 1 3 3 C 1 K F V E E 1 3 3 A 1 C F U E E n o C – i m e h C d e t i n U ) D M S ( m u l A - y l o P , A X P ) l a i d a R ( n o c - s O , S F ) l a i d a R ( m u n i m u l A , Z X L ) D M S ( n u m i m u l A , Z V M ) l a i d a R ( m u n i m u l A - y l o P , A S P V 0 1 V 0 1 V 6 1 V 5 2 V 3 . 6 0 3 3F µ F µ 0 3 3 F µ 0 3 3 0 3 3F µ F µ 0 9 3 4 2 0 . 0 Ω 5 2 0 . 0 Ω 0 2 1 . 0 Ω 0 7 1 . 0 Ω 8 0 0 . 0 Ω A m 0 7 7 3 A m 0 0 5 3 A m 5 5 5 A m 0 5 4 A m 0 8 0 5 0 1 × 7 . 7 0 1 × 5 . 0 1 8 × 2 1 8 × 0 1 8 × 5 . 1 1 1 1 1 1 1 ≤3 ≤3 ≤3 ≤3 ≤1 P T 0 8 J M 1 3 3 C V 0 1 A X P M 0 3 3 S F 0 1 L L 2 1 x 8 M 1 3 3 B V 6 1 Z X L P T 0 1 H M 1 3 3 C V 5 2 Z V M 1 1 H M 0 9 3 B V 3 . 6 A S P m u n i m u l A n o c i h c i N ) D M S ( G W ) l a i d a R ( M P V 6 1 V 0 1 0 3 3F µ 0 3 3F µ 0 5 1 . 0 Ω 0 6 1 . 0 Ω A m 0 7 6 A m 0 6 4 0 1 × 0 1 8 × 5 . 1 1 1 1 ≤3 ≤3 S G 1 R N M 1 3 3 C 1 G W U H H M 1 3 3 A 1 M P U o y n a S ) D M S ( n o c - s O , P V S ) l a i d a R ( n o c - s O , P S ) D M S ( r e m y l o P p a c s o P , E P T V 0 1 V 0 1 V 3 . 6 0 3 3F µ F µ 0 7 4 F µ 0 3 3 5 2 0 . 0 Ω 5 1 0 . 0 Ω 5 2 0 . 0 Ω A m 0 0 7 3 A m 0 0 5 4 A m 0 0 4 2 0 1 ×8 0 1 × 5 . 0 1 L 3 . 7 × W 3 . 4 1 1 1 ≤3 ≤2 ≤3 X M 0 3 3 P V S 0 1 M 0 7 4 P S 0 1 L M 0 3 3 E P T 6 S P T m u l a t n a T X V A ) D M S ( V 0 1 V 0 1 F µ 0 3 3 F µ 0 3 3 0 1 . 00 Ω 0 6 0 . 0 Ω A m 0 0 1 1 A m 0 0 0 2 L 3 . 7 × W 3 . 4 × H 1 . 4 1 1 ≤3 ≤3 0 0 1 0 R 0 1 0 M 7 3 3 V S P T 0 6 0 0 R 0 1 0 M 7 3 3 V S P T ) D M S ( t e m e K , 0 2 5 Tm u n i m u l A y l o P . m u l A - y l o P c i n a g r O , 0 3 5 T V 0 1 V 0 1 F µ 0 3 3 F µ 0 3 3 0 4 0 . 0 Ω 5 1 0 . 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 ≤3 ≤2 S A 0 1 0 M 7 3 3 X 0 2 5 T S A 0 1 0 M 7 3 3 X 0 3 5 T e u g a r p S - y a h s i V ) D M S ( m u l a t n a T , D 4 9 5 ) D M S ( m u l a t n a T , D 5 9 5 ) D M S ( n o c - s O , P V S 4 9 ) l a i d a R ( n o c - s O , A S 4 9 V 0 1 V 0 1 V 3 . 6 V 3 , 6 F µ 0 3 3 F µ 0 3 3 F µ 0 3 3 F µ 0 3 3 5 4 0 . 0 Ω 0 4 1 . 0 Ω 5 2 0 . 0 Ω 5 2 0 . 0 Ω A m 0 0 4 1 A m 0 0 0 1 A m 0 0 3 3 A m 0 0 5 3 L 3 . 7 × W 0 . 6 × H 1 . 4 0 1 ×8 0 1 × 5 . 0 1 1 1 1 1 ≤3 ≤3 ≤3 ≤3 T 2 R 0 1 0 0 X 7 3 3 D 4 9 5 T 2 D 0 1 0 0 X 7 3 3 D 5 9 5 8 F 3 R 6 0 X 7 3 3 P V S 4 9 P B F 3 R 6 0 X 7 3 3 A S 4 9 ) D M S ( R 5 X c i m a r e C , t e m e KV 6 1 V 3 . 6 0 1 7 4 2 0 0 . 0 Ω 2 0 0 . 0 Ω —e s a c 0 1 2 1 m m 5 2 2 3 1 ] 2 [ 1 ] 2 [ ≤3 ≤2 C A P 4 M 6 0 1 C 0 1 2 1 C C A P 9 K 6 7 4 C 0 1 2 1 C c i m a r e C , a t a r u MR 5 X) D M S (V 3 . 6 V 3 . 6 V 6 1 V 6 1 0 0 1 7 4 2 2 0 1 2 0 0 . 0 Ω —e s a c 0 1 2 1 m m 5 2 2 3 3 ] 1 [ 1 ] 2 [ 1 ] 2 [ 1 ] 2 [ 1 ≤ ≤2 ≤3 ≤3 M 7 0 1 J 0 6 R E 2 3 M R G M 6 7 4 J 0 6 R E 2 3 M R G K 6 2 2 C 1 6 R E 2 3 M R G K 6 0 1 C 1 6 R D 2 3 M R G c i m a r e C , K D TR 5 X) D M S (V 3 . 6 V 3 . 6 V 6 1 V 6 1 0 0 1 7 4 2 2 0 1 2 0 0 . 0 Ω —e s a c 0 1 2 1 m m 5 2 2 3 3 ] 1 [ 1 ] 2 [ 1 ] 2 [ 1 ] 2 [ 1 ≤ ≤2 ≤3 ≤3 T M 7 0 1 J 0 R 5 X 5 2 2 3 C T M 6 7 4 J 0 R 5 X 5 2 2 3 C T M 6 2 2 C 1 R 5 X 5 2 2 3 C T M 6 0 1 C 1 R 5 X 5 2 2 3 C |
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