Part Number: 74HC4053D

Manufacturer: Nexperia USA Inc.

Description: IC SWITCH SPDT X 3 120OHM 16SO

Shipped from: Shenzhen/HK Warehouse

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Technical Specifications of 74HC4053D,652

Datasheet  74HC4053D,652 datasheet
Category Integrated Circuits (ICs)
Family Interface – Analog Switches, Multiplexers, Demultiplexers
Manufacturer NXP Semiconductors
Packaging Tube
Part Status Active
Switch Circuit SPDT
Multiplexer/Demultiplexer Circuit 2:1
Number of Circuits 3
On-State Resistance (Max) 120 Ohm
Channel-to-Channel Matching (ΔRon) 6 Ohm
Voltage – Supply, Single (V+) 2 V ~ 10 V
Voltage – Supply, Dual (V±) ±1.5 V ~ 5 V
Switch Time (Ton, Toff) (Max) 31ns, 29ns
-3db Bandwidth 170MHz
Charge Injection
Channel Capacitance (CS(off), CD(off)) 3.5pF
Current – Leakage (IS(off)) (Max) 100nA
Crosstalk -60dB @ 1MHz
Operating Temperature -40°C ~ 125°C (TA)
Package / Case 16-SOIC (0.154″, 3.90mm Width)
Supplier Device Package 16-SO

74HC4053D Introduction

The 74HC4053D is an integrated circuit (IC) that functions as a CMOS analog multiplexer/demultiplexer, selecting and routing analog signals between various input and output channels. It is widely used in audio, video, and communication circuits to switch and route analog signals. There are three analog switches in the device, each with its own input for selecting channels. The 74HC4053D is ideally suited for low-voltage and battery-powered applications due to its wide operating voltage range, low on-resistance, and low power consumption.


The 74HC4053 and 74HCT4053 are used as analog switches with triple single-pole double-throw configurations when an analog or digital 2:1 multiplexer or demultiplexer is needed (3x SPDT). Each switch has a digital select input (Sn), two separate inputs/outputs (nY0 and nY1), and an extra input and output on top of the standard ones (nZ).

Each switch has a digital input with the letter “E” and the word “enable” written on it. When E is in the HIGH position, none of the switches work. Each of the inputs has a clamp diode built into it. So, if current-limiting resistors are used to connect the inputs, they can be linked to voltages higher than V CC.

The key features of the 74HC4053D are as follows

There are three analog switches on the 74HC4053D, and each one has its own control input. So, you can choose any one of the three analog signals and send it to one of the three different output channels.

  • Because it works with a wide range of voltages, the device can be used in a wide range of battery-powered and low-voltage applications (from 2V to 12V).
  • The 74HC4053D doesn’t use much power at all. About 0.5 milliwatts of power are used by each switch on average. Because of this, it works great in portable electronics and other gadgets that don’t need a lot of power.
  • The device’s low on-resistance, which is usually around 125, helps keep signals clean and makes it possible to switch signals precisely.
  • Since the 74HC4053D is very resistant to noise, noise from the outside has less of an effect on how well it works.
  • Break-before-make switching is used so that when the device changes states, the input and output signals don’t get mixed up. This will make it less likely that signal glitches and distortion will happen.

The 74HC4053D is a great choice for a wide range of analog signal routing and switching applications because it works well and can be used in many different ways. This is true because it works so well. The component can be used in a wide range of electronic circuits because it has a wide voltage range and switches in a break-before-make way. When it comes to making sure that signal switching is accurate and reliable, this part’s low power consumption, low on-resistance, and superior noise immunity are all very important.

Here are the most important things about the way the 74HC4053D works electrically:

  • 2V to 12V is the range of supply voltage.
  • Range of input and output voltage: 0V to VCC
  • On-resistance: 125 is typical.
  • Typical off-leakage current is 1nA
  • Enable input voltage range: 0V to VCC
  • Allow input current, which is usually 1A
  • Usually, the input capacitance is 10pF
  • Usually, it takes 200ns to switch.

The range of voltages that a device can accept as its power source is called its input voltage range. The 74HC4053D works well with a wide range of supply voltages, from 2V all the way up to 12V. Because of this, it works well for a wide range of applications that use low voltage or batteries.

The range of voltages that the device can handle at its input and output pins is the input/output voltage range. The 74HC4053D can switch analog signals accurately and can work with other parts of the circuit because it can handle voltages from 0V to VCC. This makes sure that the device can talk to the rest of the parts in the circuit.

When we talk about a device’s “on-resistance,” we mean the resistance of the switch when it is in the “on” position. The 74HC4053D has a low on-resistance, which is usually around 125. This helps reduce signal distortion and provides accurate signal switching.

Off-leakage current is the current that flows through the device even when the switch is turned off. The 74HC4053D has a low off-leakage current of about 1 nA. This makes it harder for outside noise sources to affect how the device works.

The enable input voltage range is the range of voltages that the device can handle at its enable input pins. The enable input voltage range for the 74HC4053D is from to VCC, which can be positive or negative.

When the enable input switch is turned on, the device lets a current in. This current is called the “enable input current.” Most of the time, the amount of current that flows through the enable input of the 74HC4053D is 1 microampere.

When talking about the input capacitance of a device, what is being measured is the capacitance at the device’s input pins. In high-speed switching applications, the 74HC4053D’s performance could be hurt if its input capacitance, which is usually 10 pF, is too high.

The switching time is the amount of time it takes for the device to switch from monitoring one channel to monitoring another. The time it takes for the 74HC4053D to switch is usually measured in microseconds (ns).

Some of the most important electrical parts of the 74HC4053D are shown in the tables below:

Parameter Condition Min Typ Max Unit
Supply voltage 2 5 12 V
Input/output voltage 0 VCC V
On-resistance VCC = 4.5V 125 Ω
Off-leakage current VCC = 4.5V 1 nA


Parameter Condition Min Typ Max Unit
Enable voltage 0 VCC V
Enable current 1 µA
Input capacitance 10 pF
Switching time VCC = 4


In conclusion, the 74HC4053D is a strong and flexible analog switch that can make designing circuits easier and switching signals more efficient. Its features make it ideal for use in a wide range of applications, and its reliability and performance make it an important component for any electronic design project.

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