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CD4049 Buffer and Converter: Datasheet PDF, CAD Models, Pinout [Video&FAQ]

  • Contents

Catalog

CD4049UB Description

CD4049UB Related Video Instruction

CD4049UB CAD Models

CD4049UB Pin Configuration

CD4049UB Functional Block Diagram

CD4049UB Features

CD4049UB Applications

CD4049UB Datasheet

CD4049UB Specifications

CD4049UB Manufacturer

Using Warning

CD4049UB FAQ

CD4049UB Description

The CD4049UB and CD4050B devices are inverting and noninverting hex buffers, and feature logic-level conversion using only one supply voltage (VCC). The input-signal high level (VIH) can exceed the VCC  supply voltage when these devices are used for logiclevel conversions. These devices are intended for use as CMOS to DTL or TTL converters and can drive directly two DTL or TTL loads. (VCC = 5 V, VOL ≤ 0.4 V, and IOL ≥ 3.3 mA.)

 

Video: CD4049 Hex Inverting Buffer. Function, PinOut, Test, How to Test Inverter Buffer CD4049

CD4049UB Video Description:

In this video i explained function of CD4049 Hex Inverting Buffer. Function, PinOut, Test, How to Test Inverter Buffer CD4049 what is inverting buffer. it is a NOT gate / inverter but due to its wide input range it is used as a buffer IC to interface different circuits CD4049UBC Hex Inverting Buffer & CD4050BC • Hex Non-Inverting Buffer The CD4049UBC and CD4050BC hex buffers are monolithic complementary MOS (CMOS) integrated circuits constructed with N- and P-channel enhancement mode transistors.

 

CD4049UB CAD Models

CD4049UB-PCB-Symbol

 

Figure: PCB Symbol

 

CD4049UB-PCB-Footprint

 

Figure: Footprint

 

CD4049UB-3D-Model

 

Figure: 3D Model

 

CD4049UB Pin Configuration

CD4049UB-Pin-Configuration

 

Figure: Pin Configuration

 

CD4049UB Functional Block Diagram

CD4049UB-Functional-Block-Diagram

 

Figure: Functional Block Diagram

 

CD4049UB Features

  • CD4049UB Inverting
  • CD4050B Noninverting
  • High Sink Current for Driving 2 TTL Loads
  • High-to-Low Level Logic Conversion
  • 100% Tested for Quiescent Current at 20 V
  • Maximum Input Current of 1 µA at 18 V Over FullPackage Temperature Range ; 100 nA at 18 V and 25°C
  • 5-V, 10-V, and 15-V Parametric Ratings

 

CD4049UB Applications

  • CMOS to DTL or TTL Hex Converters
  • CMOS Current Sink or Source Drivers
  • CMOS High-to-Low Logic Level Converters

 

CD4049UB Datasheet

You can download the datasheet from the link given below.

CD4049UB-Datasheet

 

CD4049UB Specifications

Product Category: Buffers & Line Drivers
Number of Input Lines: 6 Input
Number of Output Lines: 6 Output
Polarity: Inverting
High Level Output Current: - 5.2 mA
Low Level Output Current: 25 mA
Quiescent Current: 40 nA
Supply Voltage - Max: 20 V
Supply Voltage - Min: - 0.5 V
Operating Supply Current: 30 uA
Minimum Operating Temperature: - 55 ℃
Maximum Operating Temperature: + 125 ℃
Mounting Style: Through Hole
Package / Case: PDIP-16
Packaging: Tube
Function: Buffer/Converter
Height: 4.57 mm
Input Signal Type: Single-Ended
Length: 19.3 mm
Logic Family: CD4000
Logic Type: CMOS
Number of Channels: 5
Operating Supply Voltage: 3 V to 18 V
Operating Temperature Range: - 55 ℃ to + 125 ℃
Output Type: CMOS
Product Type: Buffers & Line Drivers
Propagation Delay Time: 120 ns at 5 V, 65 ns at 10 V, 50 ns at 15 V
Series: CD4049UB
Factory Pack Quantity: 25
Subcategory: Logic ICs
Supply Current - Max: 20 uA
Technology: CMOS
Width: 6.35 mm
Unit Weight: 0.033510 oz

 

CD4049UB Manufacturer

Texas Instruments Incorporated (TI) is an American technology company headquartered in Dallas, Texas, that designs and manufactures semiconductors and various integrated circuits, which it sells to electronics designers and manufacturers globally. It is one of the top 10 semiconductor companies worldwide based on sales volume.The company's focus is on developing analog chips and embedded processors, which account for more than 80% of its revenue.TI also produces TI digital light processing technology and education technology products including calculators, microcontrollers and multi-core processors.

 

Using Warning

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

CD4049UB FAQ

How do I create a new buffer?

There are a few ways to create new buffers: This buffer is initialized and contains 8 bytes of zero. This initializes the buffer to the contents of this array.

 

How do you get a single byte from a buffer?

To access one byte of a buffer, we pass the index or location of the byte we want. Buffers store data sequentially like arrays. They also index their data like arrays, starting at 0. We can use array notation on the buffer object to get an individual byte.

 

How do you read and write a buffer?

When buffer.write has 3 arguments, the second argument indicates an offset, or the index of the buffer to start writing at. Probably the most common way to read buffers is to use the toString method, since many buffers contain text: Again, the first argument is the encoding.

 

PCB Symbol, Footprint & 3D Model

 

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