CD4024BC 7-Stage Ripple Carry Binary Counter
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CD4024BCN (pdf) |
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CD4024BCM |
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CD4024BC 7-Stage Ripple Carry Binary Counter CD4024BC 7-Stage Ripple Carry Binary Counter The CD4024BC is a 7-stage ripple-carry binary counter. Buffered outputs are externally available from stages 1 through The counter is reset to its logical “0” stage by a logical “1” on the reset input. The counter is advanced one count on the negative transition of each clock pulse. s Wide supply voltage range 3.0V to 15V s High noise immunity VDD typ. s Low power TTL compatibility Fan out of 2 driving 74L or 1 driving 74LS s High speed 12 MHz typ. input pulse rate VDD − VSS = 10V s Fully static operation Ordering Code: Order Number Package Number Package Description CD4024BCM M14A 14-Lead Small Outline Integrated Circuit SOIC , JEDEC MS-012, Narrow CD4024BCN N14A 14-Lead Plastic Dual-In-Line Package PDIP , JEDEC MS-001, Wide Devices also available in Tape and Reel. Specify by appending the suffix letter “X” to the ordering code. Connection Diagram Top View 2002 Fairchild Semiconductor Corporation DS005957 CD4024BC Logic Diagrams Flip-flop logic 1 of 7 identical stages . Block Diagram Input Logic CD4024BC Absolute Maximum Ratings Note 1 Note 2 DC Supply Voltage VDD Input Voltage VIN Storage Temperature Range TS Power Dissipation PD Dual-In-Line Small Outline Lead Temperature Soldering, 10 seconds TL to +18 VDC to VDD VDC −65°C to +150°C 700 mW 500 mW 260°C Recommended Operating Conditions Note 1 DC Supply Voltage VDD +3 to +15 VDC Input Voltage VIN 0 to VDD VDC Operating Temperature Range TA −55°C to +125°C Note 1 “Absolute Maximum Ratings” are those values beyond which the safety of the device cannot be guaranteed, they are not meant to imply that the devices should be operated at these limits. The table of “Recommended Operating Conditions” and “Electrical Characteristics” provides conditions for actual device operation. Note 2 VSS = 0V unless otherwise specified. DC Electrical Characteristics Note 2 Parameter Conditions Quiescent Device Current VDD = 5V VDD = 10V VDD = 15V LOW Level Output Voltage |lO|<1 µA VDD = 5V VDD = 10V VDD = 15V HIGH Level Output Voltage |lO|<1 µA |
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