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NXP Semiconductors 74HC153N,652

Part No.:
74HC153N,652
Manufacturer:
NXP Semiconductors
Category:
Signal Switches, Multiplexers, Decoders
Package:
16-DIP (0.300", 7.62mm)
Datasheet:
Aetrix74HC153N,652.pdf
Description:
IC MULTIPLEXER 2 X 4:1 16DIP
Quantity:
Payment:
Payment
Shipping:
Shipping

Inventory:1,433

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Product details

Overview

74HC153N,652 from NXP Semiconductors is a dual 4-input CMOS multiplexer in a 16-pin DIP package, operating from 2.0 V to 6.0 V with propagation delays as low as 14 ns at VCC = 6.0 V and CL = 50 pF. It features independent active-low enable inputs (1E, 2E), shared binary select lines (S0, S1), non-inverting outputs, and clamp diodes enabling interface to voltages exceeding VCC using current-limiting resistors - used in digital logic routing, data path selection, and address decoding in industrial control systems.

For engineers reviewing the 74HC153N,652 datasheet, 74HC153N,652 pinout, 74HC153N,652 application, or 74HC153N,652 equivalent, this page delivers verified functional behavior, JEDEC-compliant timing specs, temperature-rated performance (−40 °C to +125 °C), real-world ESD robustness (HBM > 2000 V), and precise pin-level design meaning for layout and signal integrity validation.

Technical Context

The 74HC153N,652 implements two independent 4:1 multiplexers sharing S0/S1 select lines but with separate enable inputs (1E, 2E), allowing asynchronous gating of each channel. Its CMOS input structure accepts rail-to-rail logic levels, while outputs drive standard TTL/CMOS loads with VOH ≥ 5.9 V and VOL ≤ 0.1 V at VCC = 6.0 V and IO = ±20 µA.

Designed for deterministic digital routing, it supports cascading via enable lines to build larger multiplexing trees (e.g., 8:1 or 16:1), and its input transition rate specification (up to 625 ns/V at VCC = 2.0 V) ensures reliable operation with slow-slew microcontroller GPIOs or noisy industrial signals.

Key Specifications

Parameter Value and Actual Design Meaning
Supply voltage 2.0 V to 6.0 V - supports mixed-voltage system interfacing and battery-backed operation down to 2 V.
Propagation delay (1In → 1Y) 14 ns typical at VCC = 6.0 V, CL = 50 pF - enables sub-35 MHz switching in synchronous data paths.
Output drive strength ±4.0 mA at VCC = 4.5 V - sufficient to drive 10+ CMOS inputs or one standard TTL load without buffering.
Input clamp diode rating ±20 mA - permits safe interface to signals up to VCC + 0.5 V or below GND using external current-limiting resistors.
Operating temperature −40 °C to +125 °C - qualified for under-hood automotive modules and industrial PLC backplanes.
ESD protection HBM > 2000 V, MM > 200 V - meets IEC 61000-4-2 Level 2 for handling in uncontrolled environments.
Power dissipation capacitance 30 pF - enables accurate dynamic power estimation (PD = CPD × VCC² × fi × N) for thermal budgeting.

Pinout & Package

74HC153N,652 uses the plastic dual in-line package (DIP16, SOT38-4) with 300-mil lead spacing, through-hole mounting, and 16 leads arranged in two parallel rows. The package is RoHS-compliant and rated for reflow and wave soldering per JEDEC J-STD-020.

Pin/Terminal Circuit Role Design Meaning
1, 15 1E, 2E - output enable (active LOW) Asynchronous channel disable: pulls corresponding Y output LOW regardless of select state; enables cascading and power-gating.
2, 14 S1, S0 - data select inputs Binary address lines selecting one of four inputs (00→I0, 01→I1, 10→I2, 11→I3); shared across both multiplexers.
3–6, 10–13 1I0–1I3, 2I0–2I3 - data inputs Eight independent digital inputs; each group of four feeds one multiplexer; no internal pull-ups/pull-downs.
7, 9 1Y, 2Y - multiplexer outputs Non-inverting, CMOS-compatible outputs; high-impedance only when respective E is HIGH - no tri-state mode.
8 GND Ground reference for all inputs, outputs, and internal logic; must be low-impedance for noise immunity.
16 VCC Positive supply rail; decoupling capacitor (100 nF ceramic) required within 10 mm for stable switching.

Key Features

Feature Design Value
Dual independent 4:1 multiplexers Enables simultaneous routing of two separate 4-channel data streams (e.g., sensor banks or ADC channels) with shared address control.
Separate active-LOW enable inputs Allows per-channel power gating or hierarchical enable logic - e.g., 1E controlled by system clock domain, 2E by safety watchdog.
Clamp diodes on all inputs Permits direct connection to overvoltage sources (e.g., 12 V sensor outputs) using simple series resistors - eliminates need for external level shifters.
JEDEC Standard No. 7A compliance Guarantees interoperability with legacy TTL/CMOS logic families and compatibility with industry-standard test equipment and protocols.
−40 °C to +125 °C operation Validated performance across full industrial temperature range - suitable for motor drives, power converters, and outdoor infrastructure.

Applications

Industrial PLC I/O Expansion Microcontroller Peripheral Multiplexing

Use Scenario: Expanding limited GPIO count on an ARM Cortex-M4 MCU to manage 16 discrete sensors via time-division sampling.

IC Role / Device Role / Timing Role: 74HC153N,652 acts as a programmable input selector, routing four sensor signals per cycle to two ADC inputs under S0/S1 control.

Use Value: Reduces BOM cost vs. adding multiple ADCs; enables synchronized sampling of grouped sensors without firmware overhead.

Use Scenario: Sharing a single UART TX line among four peripheral modules (e.g., GPS, BLE, CAN transceiver, display driver) in a compact IoT gateway.

IC Role / Device Role / Timing Role: 74HC153N,652 functions as a serial data switch, selecting one peripheral's TX output to the host UART RX based on firmware-selectable S0/S1 states.

Use Value: Eliminates need for software-controlled bus arbitration; avoids UART collision and simplifies interrupt handling.

Digital Test Equipment Signal Routing Legacy System Bus Interface Adapter

Use Scenario: Configurable signal injection into DUT pins during automated boundary-scan testing of FPGA-based boards.

IC Role / Device Role / Timing Role: 74HC153N,652 serves as a precision digital stimulus selector, choosing between calibrated logic patterns generated by pattern memory.

Use Value: Enables repeatable, glitch-free signal switching at up to 35 MHz - critical for setup/hold timing validation.

Use Scenario: Adapting a Z80 CPU's 16-bit address bus to access multiple memory-mapped peripherals with overlapping decode windows.

IC Role / Device Role / Timing Role: 74HC153N,652 implements dynamic address remapping: upper address bits select which peripheral responds to lower-address accesses.

Use Value: Allows reuse of legacy Z80 firmware without hardware redesign; maintains cycle-accurate timing due to sub-20 ns propagation.

Equivalent & Alternatives

The following parts are listed as comparable options for similar dual 4-input multiplexer applications.

Alternative Part Technical Difference Application Difference Selection Advice
74HCT153N,652 TTL-compatible inputs (VIH = 2.0 V min), identical pinout and function; higher input current draw on select lines. Better suited for direct interface to legacy 5 V TTL microcontrollers without level translation. Select when driving from 5 V TTL sources; avoid if system uses mixed 3.3 V/5 V logic with strict input leakage limits.
SN74LS153N Bipolar TTL technology; higher ICC (19 mA typ), slower propagation (25 ns min), narrower VCC range (4.75–5.25 V). Compatible only in 5 V-only systems; unsuitable for low-power or wide-voltage designs. Choose only for drop-in replacement in legacy LS-TTL boards where power and speed margins allow.

Compared with 74HC153N,652, the 74HCT153N,652 offers superior TTL input compatibility at the cost of slightly higher static current, while SN74LS153N trades CMOS efficiency for guaranteed legacy TTL interoperability - making 74HC153N,652 optimal for modern low-voltage, low-power, and wide-temperature embedded systems.

Availability

74HC153N,652 is available at Aetrix Electronics and suitable for industrial automation, test instrumentation, and embedded control applications requiring stable component supply across extended temperature ranges and long production lifecycles.

Supply support for 74HC153N,652 includes scheduled delivery planning, volume procurement assistance, BOM continuity management, traceable sourcing, and lifecycle availability coordination for OEM customers, industrial embedded developers, connected-device designers, and electronics production programs.

Manufacturer

NXP Semiconductors is a global semiconductor leader focused on secure connectivity solutions for automotive, industrial, and IoT markets, with deep expertise in logic, interface, and power management ICs.

The 74HC153N,652 belongs to NXP's high-speed CMOS logic family, designed specifically for robust, low-power digital signal routing in harsh environments where reliability, wide supply range, and ESD resilience are critical.

FAQ

What is the maximum supply voltage rating for the 74HC153N,652?

The 74HC153N,652 has an absolute maximum supply voltage (VCC) of +7.0 V, but its recommended operating range is 2.0 V to 6.0 V. Operation above 6.0 V voids parametric guarantees and risks accelerated aging; sustained use at 7.0 V is not advised. All DC and AC specifications in the datasheet are validated only within the 2.0–6.0 V window.

Does the 74HC153N,652 support tri-state outputs?

No, the 74HC153N,652 does not provide true tri-state (high-impedance) outputs. When enabled (nE = LOW), it drives 1Y or 2Y actively to HIGH or LOW; when disabled (nE = HIGH), the output is forced LOW - not high-Z. For bidirectional bus applications requiring high-impedance states, a dedicated bus switch or 3-state multiplexer like the 74HC257 should be used instead of the 74HC153N,652.

Can the 74HC153N,652 be used with 3.3 V microcontrollers?

Yes, the 74HC153N,652 operates reliably at 3.3 V: VIH is 2.1 V min (at VCC = 4.5 V) and scales downward, ensuring clean recognition of 3.3 V logic HIGHs; VOH exceeds 3.2 V at IO = −4 mA, fully compatible with 3.3 V CMOS inputs. Its 2.0–6.0 V range makes it ideal for mixed-voltage systems interfacing 3.3 V MCUs to 5 V peripherals.

How does the enable input (nE) affect propagation delay in the 74HC153N,652?

The 74HC153N,652 exhibits distinct timing behavior depending on enable state: propagation delay from nE to nY is faster (10 ns typical at VCC = 6.0 V) than data-path delays (14 ns typical), meaning the output responds more quickly to enable assertion than to input changes. This asymmetry supports fast channel activation in time-critical routing applications where latency from control signal to output matters most.

Is the 74HC153N,652 pin-compatible with the 74LS153?

Yes, the 74HC153N,652 is pin-compatible with the 74LS153 in the DIP16 package (SOT38-4), sharing identical pin numbering and function mapping. However, electrical differences exist: 74HC153N,652 draws far less supply current (µA vs. mA), operates over wider voltage/temperature ranges, and requires no pull-up resistors on inputs - making it a functional upgrade, not a blind drop-in replacement without verifying timing and loading conditions.

74HC153N,652 Specifications

Product attributes
Attribute value
Manufacturer:
NXP Semiconductors
Series:
74HC
Package/Case:
16-DIP (0.300", 7.62mm)
Packaging:
Tube
Product Status:
Obsolete
Type:
Multiplexer
Circuit:
2 x 4:1
Independent Circuits:
1
Current - Output High, Low:
5.2mA, 5.2mA
Voltage Supply Source:
Single Supply
Voltage - Supply:
2V ~ 6V
Operating Temperature:
-40°C ~ 125°C
Grade:
-
Qualification:
-
Mounting Type:
Through Hole
Supplier Device Package:
16-DIP

74HC153N,652 FAQ

1.How can I place an order for 74HC153N,652 through Aetrix?

Please submit a Request for Quotation (RFQ) for 74HC153N,652 on Aetrix. Our sales agent will provide a competitive quotation and guide you through the order confirmation once you accept the terms.

2.Are the price and stock information for 74HC153N,652 reliable?

The price and inventory of 74HC153N,652 are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for 74HC153N,652 is usually 5 days.

3.What payment methods are accepted for 74HC153N,652?

We accept Wire Transfer, PayPal, Credit Card, Western Union, MoneyGram, and Escrow for 74HC153N,652 transactions.

Note: Certain payment methods may incur a processing fee.

4.How is shipping managed for 74HC153N,652?

74HC153N,652 orders can be shipped via leading logistics carriers, including DHL, UPS, FedEx, TNT, or Registered Mail.

Once your 74HC153N,652 order is processed, you will receive an email with the shipment details and tracking number.

Note: Tracking information may take up to 24 hours to appear. Express delivery typically takes 3–5 business days.

5.How can I obtain technical support or documentation for 74HC153N,652?

For technical support, including 74HC153N,652 datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your 74HC153N,652 requirements.

6.How does Aetrix verify that 74HC153N,652 is sourced from the original manufacturer or authorized distributors?

All 74HC153N,652 products on Aetrix are procured from qualified distributors and authorized channels. Our dedicated quality assurance team conducts strict verification, including traceability checks and, if necessary, third-party testing. This ensures that 74HC153N,652 meets industry standards.

7.What is the process for return or replacement of 74HC153N,652?

All 74HC153N,652 units undergo pre-shipment inspection (PSI). If there is an issue with 74HC153N,652, returns or replacements are accepted under the following conditions:

1.Quantity discrepancies, incorrect items, or visible external defects (such as breakage or corrosion), acknowledged by Aetrix.

2.The issue is reported within 90 days of delivery.

3.The 74HC153N,652 part is unused and in its original packaging.

Return procedure for 74HC153N,652:

1.Submit a request within 90 days.

2.Obtain a Return Material Authorization (RMA) from Aetrix.

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