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ICS873990 Datasheet(PDF) 6 Page - Integrated Circuit Systems |
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ICS873990 Datasheet(HTML) 6 Page - Integrated Circuit Systems |
6 / 16 page 873990AY www.icst.com/products/hiperclocks.html REV. B JUNE 13, 2005 6 Integrated Circuit Systems, Inc. ICS873990 LOW VOLTAGE, LVCMOS/ CRYSTAL-TO-LVPECL/ECL CLOCK GENERATOR TABLE 5. CRYSTAL CHARACTERISTICS r e t e m a r a Ps n o i t i d n o C t s e Tm u m i n i Ml a c i p y Tm u m i x a Ms t i n U n o i t a ll i c s O f o e d o M l a t n e m a d n u F y c n e u q e r F 0 15 2z H M ) R S E ( e c n a t s i s e R s e i r e S t n e l a v i u q E 0 5 Ω e c n a t i c a p a C t n u h S 7F p l e v e L e v i r D 1W m TABLE 4A. POWER SUPPLY DC CHARACTERISTICS, V CC = VCCA = VCCO = 3.3V ± 5%, VEE = 0V, T A = 0°C TO 70°C ABSOLUTE MAXIMUM RATINGS Supply Voltage, V CC 4.6V Inputs, V I -0.5V to V CC + 0.5 V Outputs, I O Continuous Current 50mA Surge Current 100mA Package Thermal Impedance, θ JA 42.3°C/W (0 lfpm) Storage Temperature, T STG -65°C to 150°C NOTE: Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. These ratings are stress specifications only. Functional operation of product at these conditions or any conditions beyond those listed in the DC Characteristics or AC Characteristics is not implied. Exposure to absolute maxi-mum rating conditions for extended periods may affect product reliability. TABLE 4B. LVPECL DC CHARACTERISTICS, V CC = VCCA = VCCO = 3.3V ± 5%, VEE = 0V, T A = 0°C TO 70°C TABLE 4B. LVCMOS/LVTTL DC CHARACTERISTICS, V CC = VCCA = VCCO = 3.3V ± 5%, VEE = 0V, T A = 0°C TO 70°C l o b m y Sr e t e m a r a Ps n o i t i d n o C t s e Tm u m i n i Ml a c i p y Tm u m i x a Ms t i n U V H I t u p n I e g a t l o V h g i H , L E S _ C N Y S , L E S _ F E R , N E _ L L P , 2 B F : 0 B F _ L E S F L E S _ O C V , R M , 3 : 0 L E S F 2V C C 3 . 0 +V K L C _ T S E T2 V C C 3 . 0 +V V L I t u p n I e g a t l o V w o L , L E S _ C N Y S , L E S _ F E R , N E _ L L P , 2 B F : 0 B F _ L E S F L E S _ O C V , R M , 3 : 0 L E S F 3 . 0 -8 . 0V K L C _ T S E T3 . 0 -3 . 1V I H I t n e r r u C h g i H t u p n IV C C V = N I V 5 6 4 . 3 =0 5 1A µ I L I t u p n It n e r r u C w o LV N I V , V 0 = C C V 5 6 4 . 3 =5 -A µ l o b m y Sr e t e m a r a Ps n o i t i d n o C t s e Tm u m i n i Ml a c i p y Tm u m i x a Ms t i n U V H O 1 E T O N , e g a t l o V h g i H t u p t u OV C C 4 . 1 -V C C 9 . 0 -V V L O 1 E T O N , e g a t l o V w o L t u p t u OV C C 0 . 2 -V C C 7 . 1 -V V G N I W S g n i w S e g a t l o V t u p t u O k a e P - o t - k a e P 6 . 00 . 1V 0 5 h t i w d e t a n i m r e t s t u p t u O : 1 E T O N Ω V o t O C C . V 2 - l o b m y Sr e t e m a r a Ps n o i t i d n o C t s e Tm u m i n i Ml a c i p y Tm u m i x a Ms t i n U V C C e g a t l o V y l p p u S e r o C 5 3 1 . 33 . 35 6 4 . 3V V A C C e g a t l o V y l p p u S g o l a n A 5 3 1 . 33 . 35 6 4 . 3 V O C C e g a t l o V y l p p u S t u p t u O 5 3 1 . 33 . 35 6 4 . 3V I C C t n e r r u C y l p p u S r e w o P 0 5 1A m I A C C t n e r r u C y l p p u S g o l a n A 5 1A m I O C C t n e r r u C y l p p u S t u p t u O 5 9A m |
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