CD4052QPWRQ1 - AEC-Q100 Dual 4:1 Analog Mux | TI
MPN: CD4052QPWRQ1 β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $0.55 | $0.55 |
| 10 | $0.5 | $5.00 |
| 100 | $0.42 | $42.00 |
| 500 | $0.36 | $180.00 |
| 1,000 | $0.3 | $300.00 |
Drop-in alternatives for CD4052QPWRQ1 β same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Quick Comparison Tool β Select alternative parts for side-by-side comparison:
CD4052BQPWR
β Drop-Inπ Reference alternative (not in catalog)
CD4052BPWR
β Drop-Inβ In Stock
$0.18 / Unit
View Datasheet βCD74HC4052QPWRQ1
β Drop-Inπ Reference alternative (not in catalog)
HEF4052BTT
β Drop-Inπ Reference alternative (not in catalog)
MC14052BDR2G
β Drop-Inπ Reference alternative (not in catalog)
CD4052QPWRQ1 Maximum Ratings & Electrical Characteristics
| Function | Dual 4-channel differential analog multiplexer/demultiplexer |
| Supply Voltage Range (VDD - VEE) | 3 V to 20 V |
| Channels | 2 x 4:1 differential |
| Logic-Level Conversion | Yes (VEE pin) |
| On-Resistance Typ | [DATA_NEEDED: Ron typ at specified VDD] |
| Control Inputs | A, B address; INH active-low inhibit |
| Switching Configuration | Break-before-make |
| Analog Signal Range | VEE to VDD |
| Qualification | AEC-Q100 (automotive) |
| Operating Temperature | -40C to +125C |
| Package | TSSOP-16 (PW) |
| Mounting Type | Surface Mount |
| Technology | CMOS (4000B series) |
| RoHS Status | [DATA_NEEDED: RoHS status] |
| Quiescent Current | [DATA_NEEDED: IDD typ] |
CD4052QPWRQ1 Pin Configuration
| Pin 1 | Y0 β Channel Y input/output 0 |
| Pin 2 | Y2 β Channel Y input/output 2 |
| Pin 3 | Y (common) β Y common output/input |
| Pin 4 | Y3 β Channel Y input/output 3 |
| Pin 5 | Y1 β Channel Y input/output 1 |
| Pin 6 | INH β Inhibit, active low (high disables all switches) |
| Pin 7 | VEE β Negative supply for logic-level conversion |
| Pin 8 | GND (VSS) β Ground reference |
| Pin 9 | B β Address select input B |
| Pin 10 | A β Address select input A |
| Pin 11 | X3 β Channel X input/output 3 |
| Pin 12 | X0 β Channel X input/output 0 |
| Pin 13 | X (common) β X common output/input |
| Pin 14 | X1 β Channel X input/output 1 |
| Pin 15 | X2 β Channel X input/output 2 |
| Pin 16 | VDD β Positive supply |
Safe Operating Area (SOA) & Thermal Characteristics
No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.
Typical Applications
CD4052QPWRQ1 is suitable for 6 applications: Automotive Sensor Signal Routing, Differential Data Acquisition Front End, Audio Signal Source Selection, Industrial Control Multiplexing, Battery-Powered Portable Instrumentation, Test and Measurement Signal Switching.
Automotive Sensor Signal Routing
The CD4052QPWRQ1 routes multiple differential automotive sensors (pressure, position, temperature) into a single ADC input pair. Its AEC-Q100 qualification and -40C to +125C rating address underhood and chassis environments, while the 20V VDD-VEE span tolerates transient-rich 12V vehicle rails. Using the differential 4:1 configuration preserves signal integrity for bridge and thermocouple-type sensors, and the INH pin allows the MCU to isolate all sensors during diagnostic self-test.
Recommended
Differential Data Acquisition Front End
In multi-channel data acquisition systems, the CD4052QPWRQ1 selects one of four differential signal pairs ahead of a precision ADC, reducing ADC channel count and cost. The CMOS switch architecture passes signals from VEE to VDD rail-to-rail, and logic-level conversion allows a 5V MCU to control switches running at higher analog rails. Break-before-make switching prevents momentary channel-to-channel shorts during address transitions, protecting measurement accuracy.
Recommended
Audio Signal Source Selection
The CD4052QPWRQ1 selects among four stereo audio sources (differential L/R pairs) in head units and amplifiers. CMOS switches add negligible distortion at audio-band signal levels when VDD is kept high, and the absence of switching charge injection artifacts typical of smaller switches helps preserve signal purity. The VEE pin can be tied to a negative rail for AC-coupled audio designs centered at ground.
Recommended
Industrial Control Multiplexing
Factory automation and process-control boards use the CD4052QPWRQ1 to share one measurement or drive path across four differential field signals. The 4000B CMOS family offers high noise immunity against industrial EMI, and the 20V supply span supports direct interface with 15V analog subsystems common in legacy industrial equipment. INH-based channel isolation simplifies safety interlocks during maintenance modes.
Recommended
Battery-Powered Portable Instrumentation
With the extremely low static power draw of the 4000B CMOS process, the CD4052QPWRQ1 suits battery-powered portable meters and loggers. A low-voltage MCU can level-shift control signals to switch higher analog rails, and placing INH high fully disconnects signal paths to cut system leakage. Designers should size series resistance for the supply-dependent on-resistance to minimize gain error in the signal chain.
Recommended
Test and Measurement Signal Switching
Bench instruments and automated test equipment use the CD4052QPWRQ1 to route differential test signals between measurement circuits. The wide 3V to 20V span supports multiple instrument rail standards, while break-before-make switching ensures clean channel transitions during scan sequences. Pairing the mux with a high-impedance buffer downstream minimizes the impact of the channel on-resistance on measurement accuracy.
Recommended
Recommended Products Summary
Engineering reference data for CD4052QPWRQ1 β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | CD4052BQPWR | CD74HC4052QPWRQ1 | HEF4052BTT | MC14052BDR2G |
|---|---|---|---|---|---|
| Package | TSSOP-16 (PW) | TSSOP-16 (PW) - same | TSSOP-16 (PW) - same | TSSOP-16 - same | TSSOP-16 - same |
| Brand | Texas Instruments | Texas Instruments | Texas Instruments | NXP Semiconductors | onsemi |
| Configuration | Dual 4:1 differential | Dual 4:1 differential | Dual 4:1 differential | Dual 4:1 differential | Dual 4:1 differential |
| Supply Range (VDD-VEE) | 3 V to 20 V | 3 V to 20 V | 2 V to 10 V | 3 V to 15 V | 3 V to 18 V |
| AEC-Q100 | Yes (Q1) | No | Yes (Q1) | No | No |
| Logic-Level Conversion | Yes (VEE pin) | Yes | No VEE pin function as 4052B | Yes | Yes |
| Operating Temperature | -40C to +125C | -40C to +125C | -40C to +125C | -40C to +125C | -55C to +125C |
| Family Technology | 4000B CMOS | 4000B CMOS | HC CMOS | HEF4000B CMOS | 14000B CMOS |
Key Differentiators
- AEC-Q100 automotive qualification (vs CD4052BPWR)
- Logic-level conversion via VEE pin (vs CD74HC4052QPWRQ1)
- True trade-off: higher on-resistance than modern switches (vs TS3A5018QPWRQ1)
Design Notes
Never leave INH, A, or B inputs floating. Undriven CMOS control inputs on the CD4052 family can float to indeterminate levels, causing both X and Y channels to glitch or cross-conduct during transitions. In automotive designs, add 10k pull-down or pull-up resistors and route control traces away from switching noise sources. Ensure VDD-VEE never exceeds the 20V absolute maximum, including load-dump transients on 12V vehicle rails - add a series resistor and clamp if needed.
On-resistance of the CD4052 varies significantly with VDD and analog signal level, and is highest at low supply voltages. Account for Ron in gain-error budgets by keeping downstream input impedance at least 100x the worst-case Ron, or buffer the common output with a high-impedance op-amp such as the TLV2888-Q1. For differential signals, Ron mismatch between X and Y channels appears as common-mode error; matching source impedances minimizes this.
Place a 100nF ceramic decoupling capacitor directly across VDD (pin 16) and GND (pin 8). If VEE is used for negative-rail logic-level conversion, decouple VEE separately with 100nF. Keep analog signal traces short and guard the high-impedance common outputs; the break-before-make switching means the common node floats briefly during address changes, so a small hold capacitor (10-100pF) at the output can prevent transients from propagating to the ADC.
Compliance Information
AEC-Q100 qualification confirmed by TI Q1 designation. RoHS/REACH/lead-free status must be verified on the TI CD4052B product page quality documents.