CD74HC4052E Equivalent & Substitute Parts

Part Overview

The CD74HC4052E is a 2-circuit SP4T analog switch IC manufactured by Texas Instruments, designed for signal routing and multiplexing applications. This 16-DIP through-hole package device features 130Ohm on-state resistance and operates across a wide supply voltage range of 2V to 6V (single supply) or ±1V to ±5V (dual supply). The product is classified as Last Time Buy, indicating end-of-life status. Identifying equivalent and substitute parts is necessary to ensure design continuity and maintain component availability for production and maintenance applications.

Substiute Parts

CD74HC4052E
Texas InstrumentsIn Stock: 19076CD74HC4052E Datasheet
CD74HC4052E
Current Part
CD74HC4052PWR
Texas InstrumentsIn Stock: 35150CD74HC4052PWR Datasheet
CD74HC4052PWR
MFR Recommended
MAX4052ACPE+
Analog Devices Inc./Maxim IntegratedIn Stock: 1080MAX4052ACPE+ Datasheet
MAX4052ACPE+
MFR Recommended
TC74HC4052APF
Toshiba Semiconductor and StorageIn Stock: 2028TC74HC4052APF Datasheet
TC74HC4052APF
MFR Recommended

Key Parameters

Parameter Value
Switch Circuit Configuration SP4T (Single Pole, 4-Throw)
Number of Circuits 2
Multiplexer/Demultiplexer Circuit 4:1
On-State Resistance (Max) 130Ohm
Channel-to-Channel Matching (ΔRon) 5Ohm
Voltage - Supply, Single (V+) 2V ~ 6V
Voltage - Supply, Dual (V±) ±1V ~ 5V
-3dB Bandwidth 185MHz
Channel Capacitance (CS(off), CD(off)) 12pF
Current - Leakage (IS(off)) (Max) 200nA
Operating Temperature -55°C ~ 125°C (TA)
Package / Case 16-DIP (0.300", 7.62mm)
Mounting Type Through Hole
RoHS Status ROHS3 Compliant

Substitute Part Grouping Explanation

Substitution eligibility for the CD74HC4052E is determined by the following critical parameters:

Primary Substitution Criteria:

  • Switch circuit configuration (SP4T)
  • Number of circuits (2)
  • Multiplexer/demultiplexer circuit ratio (4:1)
  • Package type and pin count (16-pin DIP)
  • Mounting type (through-hole compatibility)
  • Supply voltage range compatibility
  • On-state resistance specifications

Substitution Categories:

Category 1: Direct Package Equivalent (16-DIP Through-Hole) Parts maintaining identical package, mounting type, and electrical specifications within acceptable tolerance ranges qualify as direct substitutes. These parts support pin-for-pin replacement in existing PCB designs.

Category 2: Functional Equivalent with Enhanced Specifications Parts with superior electrical performance characteristics (lower on-state resistance, improved bandwidth, reduced leakage current) while maintaining compatible package and supply voltage parameters. These parts provide performance upgrades while preserving design compatibility.

Category 3: Package Variant (Surface Mount Alternative) Parts with identical electrical specifications but different mounting technology (surface mount vs. through-hole). These require PCB redesign and are suitable for new designs or board revisions.

Parameter Comparison

Parameter CD74HC4052E CD74HC4052PWR MAX4052ACPE+ TC74HC4052APF
Manufacturer Texas Instruments Texas Instruments Analog Devices Inc./Maxim Integrated Toshiba Semiconductor and Storage
Switch Circuit SP4T SP4T SP4T SP4T
Number of Circuits 2 2 2 2
Multiplexer/Demultiplexer 4:1 4:1 4:1 4:1
On-State Resistance (Max) 130Ohm 130Ohm 100Ohm 100Ohm
Channel-to-Channel Matching (ΔRon) 5Ohm 5Ohm 6Ohm (Max) 5Ohm
Voltage - Supply, Single (V+) 2V ~ 6V 2V ~ 6V 2V ~ 16V 2V ~ 6V
Voltage - Supply, Dual (V±) ±1V ~ 5V ±1V ~ 5V ±2.7V ~ 8V ±2V ~ 6V
-3dB Bandwidth 185MHz 185MHz Not specified 140MHz
Channel Capacitance (CS(off), CD(off)) 12pF 12pF 2pF, 2pF 2pF, 40pF
Current - Leakage (IS(off)) (Max) 200nA 200nA 100pA 100nA
Operating Temperature -55°C ~ 125°C -55°C ~ 125°C 0°C ~ 70°C -40°C ~ 85°C
Mounting Type Through Hole Surface Mount Through Hole Through Hole
Package / Case 16-DIP (0.300", 7.62mm) 16-TSSOP (0.173", 4.40mm) 16-DIP (0.300", 7.62mm) 16-DIP (0.300", 7.62mm)
Product Status Last Time Buy Active Active Active
RoHS Status ROHS3 Compliant ROHS3 Compliant ROHS3 Compliant ROHS3 Compliant

Engineering Selection Recommendations

CD74HC4052PWR (Texas Instruments) This part is a direct electrical equivalent to the CD74HC4052E with identical on-state resistance (130Ohm), channel-to-channel matching (5Ohm), supply voltage ranges, and bandwidth specifications. The primary difference is packaging: CD74HC4052PWR uses 16-TSSOP surface-mount technology versus the through-hole 16-DIP package of the CD74HC4052E. This substitute is suitable for new designs requiring surface-mount assembly or board revisions. Both parts maintain ROHS3 compliance and active product status from Texas Instruments.

MAX4052ACPE+ (Analog Devices Inc./Maxim Integrated) This part provides enhanced electrical performance with lower on-state resistance (100Ohm vs. 130Ohm) and significantly reduced leakage current (100pA vs. 200nA). The MAX4052ACPE+ maintains the 16-DIP through-hole package, enabling direct PCB compatibility. However, the operating temperature range is narrower (0°C ~ 70°C vs. -55°C ~ 125°C), which may limit suitability for extended temperature applications. The expanded single supply voltage range (2V ~ 16V) provides additional design flexibility. This substitute is appropriate for applications where lower on-state resistance and leakage current are beneficial and operating temperature requirements fall within the specified range.

TC74HC4052APF (Toshiba Semiconductor and Storage) This part offers improved on-state resistance (100Ohm vs. 130Ohm) and maintains the 16-DIP through-hole package for direct PCB replacement. The TC74HC4052APF provides a moderate operating temperature range (-40°C ~ 85°C) and active product status. Channel capacitance specifications differ from the CD74HC4052E (2pF and 40pF vs. 12pF), and crosstalk performance is specified at -50dB @ 1MHz. This substitute is suitable for applications requiring lower on-state resistance within the specified temperature operating window.

Frequently Asked Questions (FAQ)

Q: Can CD74HC4052PWR replace CD74HC4052E in existing designs? A: CD74HC4052PWR is electrically equivalent but uses surface-mount 16-TSSOP packaging instead of through-hole 16-DIP. Direct PCB replacement is not possible without board redesign. For new designs or board revisions, CD74HC4052PWR is a suitable substitute.

Q: What are the key differences between MAX4052ACPE+ and CD74HC4052E? A: MAX4052ACPE+ provides superior electrical performance with 100Ohm on-state resistance (vs. 130Ohm) and 100pA leakage current (vs. 200nA). Both use 16-DIP through-hole packages. The operating temperature range for MAX4052ACPE+ is narrower (0°C ~ 70°C vs. -55°C ~ 125°C). Verify temperature requirements before substitution.

Q: Is TC74HC4052APF a pin-for-pin replacement for CD74HC4052E? A: Yes, TC74HC4052APF maintains the 16-DIP through-hole package and pin configuration, enabling pin-for-pin replacement. Electrical specifications differ slightly; verify channel capacitance and crosstalk performance requirements for your application.

Q: Why is CD74HC4052E classified as Last Time Buy? A: Last Time Buy status indicates the manufacturer is discontinuing this product. Substitute parts with Active status (CD74HC4052PWR, MAX4052ACPE+, TC74HC4052APF) ensure long-term component availability for future production and maintenance requirements.

Q: Which substitute part offers the best performance upgrade? A: MAX4052ACPE+ provides the lowest on-state resistance (100Ohm) and leakage current (100pA). TC74HC4052APF also offers 100Ohm on-state resistance. Selection depends on specific application requirements including operating temperature range, supply voltage range, and signal integrity specifications.

Q: Are all substitute parts RoHS3 compliant? A: Yes, CD74HC4052PWR, MAX4052ACPE+, and TC74HC4052APF are all ROHS3 compliant, matching the compliance status of the CD74HC4052E.

Q: What is the impact of different channel capacitance values on circuit performance? A: Channel capacitance affects high-frequency signal integrity and switching characteristics. CD74HC4052E and CD74HC4052PWR specify 12pF, while MAX4052ACPE+ specifies 2pF and TC74HC4052APF specifies 2pF and 40pF. Lower capacitance generally improves high-frequency performance. Verify capacitance specifications against your circuit's frequency requirements.

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