CD4013BPW Allicdata Electronics
Allicdata Part #:

296-32863-5-ND

Manufacturer Part#:

CD4013BPW

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Texas Instruments
Short Description: IC FF D-TYPE DUAL 1BIT 14TSSOP
More Detail: N/A
DataSheet: CD4013BPW datasheetCD4013BPW Datasheet/PDF
Quantity: 1766
Stock 1766Can Ship Immediately
Specifications
Max Propagation Delay @ V, Max CL: 90ns @ 15V, 50pF
Base Part Number: 4013
Package / Case: 14-TSSOP (0.173", 4.40mm Width)
Mounting Type: Surface Mount
Operating Temperature: -55°C ~ 125°C (TA)
Input Capacitance: 5pF
Current - Quiescent (Iq): 4µA
Voltage - Supply: 3 V ~ 18 V
Current - Output High, Low: 6.8mA, 6.8mA
Trigger Type: Positive Edge
Series: 4000B
Clock Frequency: 24MHz
Number of Bits per Element: 1
Number of Elements: 2
Output Type: Differential
Type: D-Type
Function: Set(Preset) and Reset
Part Status: Active
Packaging: Tube 
Description

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CD4013BPW is a part of the 4000 series CMOS logic integrated circuits, which belongs to the Logic - Flip Flops family. This component is produced by a CMOS device technology and is a dual D-type flip-flop with separate data, clock, reset and set inputs and complementary Q Q outputs. It is used in the design and construction of a wide range of applications related to microprocessors, logic controllers, logic gates and counters.

The CD4013BPW component is a dual D-type flip-flop with separate datainput, clock input, reset input and set input. The component also has complementary Q and Q outputs. The component features low power consumption and a high speed operation. The component is designed for applications with low power supply voltage. The component has a power supply voltage range from 3V to 15V and a maximum power supply current of 250mA.

The CD4013BPW also has a wide range of applications in logic circuits such as logic controllers, microprocessors and logic gates. It is commonly used in control systems, digital signal processing systems, logic controllers and logic gates. This component is also used in counter circuits, counters, flip flop circuits and sequential logic circuits.

The CD4013BPW component has two flip-flops, each of which has two outputs that can be used to construct non-timed and timed circuits. This two-stage flip-flop has two complementary outputs, one for the rising edge and one for the falling edge clock input. The rising edge output is the Q output and the falling edge output is the Q output.

The CD4013BPW working principle is based on the logic level changes that happen when the clock input signal changes from a low logic level to a high logic level. The logic level in the data and set inputs can be changed by connecting either a high or a low logic level signal to their respective inputs. The output changes state when the clock input transitions to a high logic level. The timing of the output is controlled by the set and reset inputs. If the reset input is high, the outputs will go to a low logic level. If the set input is high, the outputs will go to a high logic level

The CD4013BPW can also be used with other flip-flops like the CD400 Nand and CD4014 NOR. The CD4013BPW can also be cascaded with the CD4013BPW to form oscillators and multivibrators. This component is used in the construction of a wide range of logic circuits, from simple logic gates to advanced logic controllers.

The CD4013BPW component is a very useful component for the construction of a wide range of applications. It is used in a wide range of applications related to microprocessors, logic controllers, logic gates and counters. It is easy to use, has low power consumption and a high speed operation. The component has two flip-flops, each of which has two outputs that can be used to construct non-timed and timed circuits. The timing of the output is controlled by the set and reset inputs while the logic level in the data and set inputs can be changed by connecting either a high or a low logic level signal to their respective inputs. Thus, the CD4013BPW is an essential component for the construction of a wide range of logic circuits.

The specific data is subject to PDF, and the above content is for reference

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