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Part Manufacturer Description Datasheet BUY
CD4020AFB Texas Instruments CMOS 14-Stage Ripple-Carry Binary Counter/Divider 16-CDIP -55 to 125 visit Texas Instruments
CD4020BNSR Texas Instruments CMOS 14-Stage Ripple-Carry Binary Counter/Divider 16-SO -55 to 125 visit Texas Instruments Buy
CD4020BF3A Texas Instruments CMOS 14-Stage Ripple-Carry Binary Counter/Divider 16-CDIP -55 to 125 visit Texas Instruments
CD4020BEE4 Texas Instruments CMOS 14-Stage Ripple-Carry Binary Counter/Divider 16-PDIP -55 to 125 visit Texas Instruments
CD4020BF Texas Instruments CMOS 14-Stage Ripple-Carry Binary Counter/Divider 16-CDIP -55 to 125 visit Texas Instruments
CD4020BE Texas Instruments CMOS 14-Stage Ripple-Carry Binary Counter/Divider 16-PDIP -55 to 125 visit Texas Instruments Buy

CD4020 divide by 2 4

Catalog Datasheet MFG & Type PDF Document Tags

CD4013 UP DOWN COUNTER

Abstract: 4017 motorola Input NOR Gate + Inverter HD-4000 CD4000 Quad 2 Input NOR HD-4001 CD4001 MM4601 Dual 4 Input NOR HD , HD-4007 CD4007 4-Bit Full Adder HD-4008 CD4008 Quad 2 Input NAND HD-4011 CD4011 MM4611 Dual 4 , MM4617 Preset/Divide by N Counter HD-4018 CD4018 Quad AND/OR Select HD-4019 CD4019 MM4619 14 Stage , Divide by 8 Counter HD-4022 CD4022 MM4622 Triple 3 Input NAND HD-4023 CD4023 MM4623 7 Stage Binary , Counter/ Divider + 10 Decoded Decimal Outputs Divide by 8 Counter/Divider with 8 Decimal Outputs
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MM4606 MM4620 CD4021 CD4024 CD4013 UP DOWN COUNTER 4017 motorola mc 4011 MC14017 cd4017 decade counter HD-4002 CD4002 MM4602 HD-4006 CD4006

mc 4011

Abstract: Mc 4049 Input NOR Gate + Inverter HD-4000 CD4000 Quad 2 Input NOR HD-4001 CD4001 MM4601 Dual 4 Input NOR HD , HD-4007 CD4007 4-Bit Full Adder HD-4008 CD4008 Quad 2 Input NAND HD-4011 CD4011 MM4611 Dual 4 , HD-4014 CD4014 MM4614 Dual 4 Static Shift Register HD-4015 CD4015 Decade Counter HD-4017 CD4017 MM4617 Preset/Divide by N Counter HD-4018 CD4018 Quad AND/OR Select HD-4019 CD4019 MM4619 14 Stage , Divide by 8 Counter HD-4022 CD4022 MM4622 Triple 3 Input NAND HD-4023 CD4023 MM4623 7 Stage Binary
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CD4013 CD4020 CD4040 CD4050 MC14006 MC14028 Mc 4049 Mc14066 MOtorola CD4000 cross REFERENCE motorola CD4007 HD-4012 CD4012 MM4612 HD-4013 MM4613

mc 4011

Abstract: Mc 4049 Input NOR Gate + Inverter HD-4000 CD4000 Quad 2 Input NOR HD-4001 CD4001 MM4601 Dual 4 Input NOR HD , HD-4007 CD4007 4-Bit Full Adder HD-4008 CD4008 Quad 2 Input NAND HD-4011 CD4011 MM4611 Dual 4 , MM4617 Preset/Divide by N Counter HD-4018 CD4018 Quad AND/OR Select HD-4019 CD4019 MM4619 14 Stage , Divide by 8 Counter HD-4022 CD4022 MM4622 Triple 3 Input NAND HD-4023 CD4023 MM4623 7 Stage Binary , MC14066 Di - 4 GATES/BUFFERS/INVERTERS Dual 3 Input NOR Gate + Inverter Quad 2 Input NOR Dual 4 Input
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CD40106 MC14584 MC14584 "cross reference" 4049 schmitt trigger HARRIS CD4066 mc14013 CD4007 hex inverter CD4021 serial input parallel output HD-4020 HD-4021 MM4621 HD-4024 HD-4025 CD4025

CD4020 timer circuit

Abstract: 1n4148 rt as TH drops below 2/3VS and trigger function is reasserted. By AC coupling the TR pin with a series , Micrel RT T/T 1 R1 OUT 14 1M VS 4 T/T 2 CT C1 100pF ceramic COG GND , MIC1557 GND +2.7V to 18Vdc VS 4 2 R2 AC TRG 11 100k VS GND 5 C3 0.01uF ceramic , accurate one-hour delay, for example, divide a 4.55Hz MIC1557 oscillator by 16,384 (4000hex, 214) with a , OUT [14] to T/T [1,2]. The frequency may be increased by connecting an external resistor in parallel
Micrel Semiconductor
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MIC1555 CD4020 timer circuit 1n4148 rt timer CD4020 monostable timer using cd4020 1557 b transistor CD4020 timer MIC1555/1557

and pin diagram of cd4020

Abstract: irf540 TTL , for example, divide an 4.55Hz MIC1557 oscillator by 16,384 (4000hex, 214) using a CD4020 CMOS , supplies Typical Application +5V +5V 100us 1 Standby Trigger 4 2 VS OUT 3 THR 4 Output 1k TRG GND 8kHz MIC1557 MIC1555 5 Enabled Disabled 3 2 , T/T 1 3 Part Identification T10 2 1 Part Identification T11 4 5 4 , Description Pin Number MIC1555 Pin Number Pin Name 1 4 VS 2 2 GND Pin Name
Micrel Semiconductor
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and pin diagram of cd4020 irf540 TTL pin configuration of CD4020 CD4020 internal circuit diagram Delay linear sweep generator using 555 timer schmitt trigger using 555 timer MIC1555/7 1N914 M9999-072806

irf540 TTL

Abstract: CD4020 internal circuit diagram , for example, divide an 4.55Hz MIC1557 oscillator by 16,384 (4000hex, 214) using a CD4020 CMOS , supplies Typical Application +5V +5V 100us MIC1555 1 Standby Trigger 4 2 VS OUT 3 THR 4 Output 1k TRG GND 8kHz MIC1557 5 Enabled Disabled 3 2 VS , -23 (M) Pin Description Pin Number MIC1555 Pin Number Pin Name 1 4 VS 2 2 , Output: CMOS totem-pole output. 4 TRG Trigger (Input): Sets output high. Active low (at 2/3VS
Micrel Semiconductor
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CD4020 timer circuit pin configuration CD4020 circuit pin configuration cd4020 pin diagram CD4020 internal diagram pin configuration of CD4020 timer part T11 5pin sot23 M9999-010609-C
Abstract: example, divide an 4.55Hz MIC1557 oscillator by 16,384 (4000hex, 214) using a CD4020 CMOS divider. 4.5Hz , Package Marking M IC 15 55 B M 5 -4 0 ° C to + 85°C S O T -2 3-5 T10 M IC 15 57 B M 5 -4 0 ° C to + 85°C S O T -2 3-5 T11 Typical Applications ♦5V MIC1555 1 Standby ^ Trigger â'" IT *5 +5V ! 00^s 4 2 VS OUT TRG GND THR - TC T 4. 3 , MIC1557 Pin Name 1 4 VS 2 2 GND 3 CS 5 OUT O utpu t: C M O S totem -p -
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IRF540 IC1557 IC1555 C1100

IC Cd4020

Abstract: CD4020 timer ic pin diagram counter stages. To produce an accurate one-hour delay, for example, divide an 4.55Hz MIC1557 oscillator by 16,384 ( 4 0 0 0 ^ , 2 14) using a CD4020 CMOS divider. 4.5Hz may be generated with a 1)iF CT and , MIC1557 Pin Name Pin Function 1 2 4 2 3 VS GND CS OUT TRG THR Supply (Input): +2.7 to +18V supply. Ground: Supply return. Chip Select/Reset (Input): Active high at 2/3Vs. Output off when low ( , mode, the output pulse width is precisely controlled by an external resistor and a capacitor. Time
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IC Cd4020 CD4020 timer ic pin diagram 1N414B timer ic cd4020 Timer IC CD4020 operation 1n414b diode ICI555/1557
Abstract: , for example, divide an 4.55Hz MIC1557 oscillator by 16,384 (4000hex, 214) using a CD4020 CMOS , Application +5V +5V 100Âus MIC1555 13 Standby Trigger 4 2 VS OUT 1k THR 4 , GND T/T 1 2 3 Part Identification T10 2 1 Part Identification T11 4 , ) Pin Description Pin Number MIC1555 Pin Number Pin Name 1 4 VS 2 2 GND Pin , totem-pole output. 4 TRG Trigger (Input): Sets output high. Active low (at ≤ 2/3VS nominal). 5 Micrel Semiconductor
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M9999-052610-D

IC CD4020 timer circuit

Abstract: timer ic cd4020 Applications +5V o MIC1555 1 S tandby t-â"¢ Trigg er rrr . Dâ'" 4 2 vs +5V 100ps _ l i , Pin Function Pin Number MIC1555 Pin Number MIC1557 Pin Name 1 4 VS 2 2 , stages. To produce an accurate one-hour delay, for example, divide an 4.55Hz MIC1557 oscillator by 16 , I W I 47k oâ'" 4-WV-4-wv10k r 2 0.01 mF- vs TRG GND OUT 10 0 Ã2 Figure , precisely controlled by an external resistor and a capacitor. Time delays may be accurately controlled from
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IC CD4020 timer circuit c1555 I555/1557
Abstract: oscillator by 16,384 (4000hex, 2 14) using a CD4020 CMOS divider. 4.5Hz may be generated with a 1(aF CT and , MIC1557 Pin Nam e 1 4 VS 2 2 GND 3 CS 5 OUT Output: CMOS totem-pole output. 4 TRG Trigger (Input): Sets output high. 5 THR Threshold (Dominant Input): Sets , inputs. In the one-shot mode, the output pulse width is precisely controlled by an external resistor and , P ackage M arking MIC1555BM5 -4 0 °C to +85°C SOT-23-5 T10 MIC1557BM5 -4 0 -
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IRF540 p-channel MOSFET

Abstract: CD4020 timer circuit pin configuration , for example, divide an 4.55Hz MIC1557 oscillator by 16,384 (4000hex, 214) using a CD4020 CMOS , MIC1555 1 Standby Trigger 4 2 VS OUT MIC1557 3 Enabled Disabled 1k TRG GND 4 Output THR 5 3 2 VS OUT 5 CS GND Output 1k T/T 1 0.1uF , ) Pin Description Pin Number MIC1555 Pin Number MIC1557 Pin Name 1 4 VS 2 2 , VOLTAGE (V) 1000 MIC1557 Chip Select vs. Supply Voltage 14 12 10 ON 8 6 4 2 0
Micrel Semiconductor
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IRF540 p-channel MOSFET description and pin diagram of cd4020 transistor d 1557 555 missing pulse detector irf540 27 MHz cd4020 operation data sheet only

description and pin diagram of cd4020

Abstract: CD4020 Applications delay, for example, divide an 4.55Hz MIC1557 oscillator by 16,384 (4000hex, 214) using a CD4020 CMOS , MIC1555 1 Standby Trigger 4 2 VS OUT MIC1557 3 Enabled Disabled 1k TRG GND 4 Output THR 5 3 2 VS OUT 5 CS GND 1k T/T 1 0.1uF 0.1uF , Identification MIC1555BM5 T10 MIC1557BM5 2 1 Part Identification T11 T11 4 5 4 , MIC1557 Pin Name 1 4 VS 2 2 GND 3 CS 5 OUT Output: CMOS totem-pole
Micrel Semiconductor
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CD4020 Applications led drive with irf540 mosfet triggering circuit for inverter sot T11 variable dutycycle square wave generator circuit led blinker using 555 timer

MIC1557

Abstract: IRF540 100us 8kHz MIC1555 1 Standby Trigger 4 2 VS OUT MIC1557 3 Enabled Disabled 1k TRG GND 4 Output THR 5 3 2 VS OUT 5 CS GND 1k T/T 1 , Identification MIC1555BM5 T10 MIC1557BM5 2 1 Part Identification T11 T11 4 5 4 , MIC1557 Pin Name 1 4 VS 2 2 GND 3 CS 5 OUT Output: CMOS totem-pole output. 4 TRG Trigger (Input): Sets output high. Active low (at 2/3VS nominal). 5 THR
Micrel Semiconductor
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1N4148

variable dutycycle square wave generator circuit

Abstract: CD4020 timer circuit pin configuration , for example, divide an 4.55Hz MIC1557 oscillator by 16,384 (4000hex, 214) using a CD4020 CMOS , MIC1555 1 Standby Trigger 4 2 VS OUT MIC1557 3 Enabled Disabled 1k TRG GND 4 Output THR 5 3 2 VS OUT 5 CS GND Output 1k T/T 1 0.1uF , ) Pin Description Pin Number MIC1555 Pin Number MIC1557 Pin Name 1 4 VS 2 2 , VOLTAGE (V) 1000 MIC1557 Chip Select vs. Supply Voltage 14 12 10 ON 8 6 4 2 0
Micrel Semiconductor
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sot-23-5 marking t11 CD4020 Datasheet missing pulse detector using 555 high voltage constant current source

CD4020 timer circuit pin configuration

Abstract: description and pin diagram of cd4020 supplies Typical Application +5V +5V 100us MIC1555 13 Standby Trigger 4 2 VS OUT 1k THR 4 Output TRG GND 8kHz MIC1557 5 Enabled Disabled 3 2 VS OUT , T/T 1 3 Part Identification T10 2 1 Part Identification T11 4 5 4 , Description Pin Number MIC1555 Pin Number Pin Name 1 4 VS 2 2 GND Pin Name , . 4 TRG Trigger (Input): Sets output high. Active low (at 2/3VS nominal). 5 THR
Micrel Semiconductor
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MIC1555YM5 MIC1557YM5

MIC1557YM5

Abstract: , divide a 4.55Hz MIC1557 oscillator by 16,384 (4000hex, 214) using a CD4020 CMOS divider. 4.5Hz may be , totem-pole output. 4 TRG Trigger (Input): Sets output high. Active low (at ≤2/3VS nominal). 5 , precisely controlled by an external resistor and a capacitor. Time delays may be accurately controlled from , ) Monostable (with Enable) Astable (Oscillator) March 11, 2014 2 Revision 6.0 Micrel, Inc. MIC1555/1557 Ordering Information Part Number Top Marking (1, 2) Temperature Range Package
Micrel Semiconductor
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monostable timer using cd4020

Abstract: led blinker using 555 timer , divide an 4.55Hz MIC1557 oscillator by 16,384 (4000hex, 214) using a CD4020 CMOS divider. 4.5Hz may be , Applications +5V +5V 100us 8kHz MIC1555 1 Standby Trigger 4 2 VS OUT MIC1557 3 Enabled Disabled 1k TRG GND 4 Output THR 5 3 2 VS OUT 5 CS GND 1k , Pin Number MIC1555 Pin Number MIC1557 Pin Name 1 4 VS 2 2 GND 3 CS , () CAPACITANCE (uF) RT=1k 12 10 ON 8 6 4 2 0 OFF 3 6 9 12 15 SUPPLY VOLTAGE (V
Micrel Semiconductor
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pin configuration 1K variable resistor irf540 "27 MHz" MOSFET IRF540

FZK101

Abstract: FZK105 Circuit Type Numbers 2 Index Of Groups 3 Equivalents L ist 4 Equivalents too Late for Classification , 7 0 3 O P /A 7 2 3 O P /A 7 4 1 F a irc h ild 914 IC 555 LM 565 7490 7420 7402 7440 7476' 74121 709C , 0 4 S S 2 7 6 -1 8 0 5 B S 2 7 6 -1 8 0 8 R S 2 7 6 -1 8 0 7 R S 2 7 6 -0 0 8 R S 2 7 6 -0 0 9 o r , 6 -1 8 0 9 R S 2 7 6 -1 8 1 1 R S 2 7 6 -1 8 1 2 R S 2 7 6 -1 8 1 3 R S 2 7 6 -1 8 1 4 R S 2 7 6 -0 1 7 o r 1739 R S 2 7 6 -0 1 0 o r 1 7 4 1 o r 0 0 7 R S 2 7 6 -0 2 3 R S 2 7 6 -1 8 3 0 R S 2 7 6 -0
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FZK101 FZK105 SNF10 SN76131 TAA700 MFC8001 CN50-51 ZSS58-86-116 CN52-53 ZSS57-87-117-137 CN54-55 ZST51-81-11-131

Toshiba DC MOTOR DGM 3520 2A

Abstract: tdc1007j 1656-43 16 Bit 1656-84 16/32 Bit 1658-10 2 Bit Slice 1642-39 32 Bit 1658-36 4 Bit 1643-97 4 Bit , to find the right application notes by looking in IC MASTER because the application note directory is organized by function. There are two ways to look up an application note. An engineer can turn to the index , , RAMs, ROMs and other types of memories. Each device is characterized by organization (words and bit , . When devices are available made by various processes such as NMOS, CMOS, ECL, TTL, etc., the engineer
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Toshiba DC MOTOR DGM 3520 2A tdc1007j M5L8042 LM566 SY6845 Z86D3 J26487 S-17103 54070Z CH-5404
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