NXP Semiconductors_NX3L4684GM,132
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NXP Semiconductors
NX3L4684GM,132

747-NX3L4684GM,132
PDF Datasheet
IC SWITCH SPDTX2 750MOHM 10XQFN

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Tech Specifications

Current - Leakage (IS(off)) (Max)
10nA
Crosstalk
-90dB @ 100kHz
Product Status
Obsolete
Supplier Device Package
10-XQFN (1.55x2)
Voltage - Supply, Dual (V±)
-
Channel-to-Channel Matching (ΔRon)
40mOhm
Channel Capacitance (CS(off), CD(off))
35pF
Package / Case
10-XFQFN
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NX3L4684GM,132 Description

NX3L4684GM,132 Description

The NX3L4684GM,132 is a high-performance, dual-channel Single-Pole Double-Throw (SPDT) switch designed by NXP Semiconductors. This interface IC chip is ideal for applications requiring low on-state resistance and high channel-to-channel matching. The device features a maximum on-state resistance of 750 mOhm, ensuring minimal power loss and efficient signal transmission. With a leakage current of only 10 nA, the NX3L4684GM,132 maintains high reliability and performance even in low-power environments.

The NX3L4684GM,132 is housed in a compact 10xQFN package, making it suitable for space-constrained designs. It operates within a supply voltage range of1 .4V to 4.3V, providing flexibility for various power supply configurations. The device also boasts a fast switch time of 45 ns for turn-on and 20 ns for turn-off, enabling rapid signal switching without compromising signal integrity.

NX3L4684GM,132 Features

  • Low On-State Resistance: With a maximum on-state resistance of 750 mOhm, the NX3L4684GM,132 ensures efficient signal transmission and minimal power loss.
  • High Channel-to-Channel Matching: The device offers a channel-to-channel matching of 40 mOhm, ensuring consistent performance across both channels.
  • Low Leakage Current: A maximum leakage current of 10 nA ensures high reliability and performance in low-power applications.
  • Fast Switching: The NX3L4684GM,132 features a switch time of 45 ns for turn-on and 20 ns for turn-off, enabling rapid signal switching.
  • Wide Operating Voltage Range: The device operates within a supply voltage range of 1.4V to 4.3V, providing flexibility for various power supply configurations.
  • Compact Packaging: Housed in a 10xQFN package, the NX3L4684GM,132 is ideal for space-constrained designs.
  • High Bandwidth: The device supports a -3dB bandwidth of 20 MHz, making it suitable for high-frequency applications.
  • Low Charge Injection: With a charge injection of 50 pC, the NX3L4684GM,132 minimizes signal distortion during switching.
  • Compliance: The device is REACH unaffected and RoHS3 compliant, ensuring environmental safety and regulatory compliance.

NX3L4684GM,132 Applications

The NX3L4684GM,132 is ideal for a variety of applications requiring high-performance switching and signal routing. Its low on-state resistance and fast switching capabilities make it suitable for:

  • RF and Microwave Systems: The device's high bandwidth and low charge injection make it ideal for applications in RF and microwave systems where signal integrity is critical.
  • Telecommunications: The NX3L4684GM,132 is well-suited for telecom applications requiring efficient signal routing and switching.
  • Automotive Electronics: The device's compact size and high reliability make it suitable for automotive applications where space and performance are critical.
  • Industrial Control Systems: The NX3L4684GM,132 can be used in industrial control systems for signal switching and routing, ensuring efficient and reliable operation.

Conclusion of NX3L4684GM,132

The NX3L4684GM,132 is a high-performance SPDT switch designed to meet the demands of modern electronic systems. Its low on-state resistance, high channel-to-channel matching, and fast switching capabilities make it an ideal choice for applications requiring efficient signal transmission and routing. The device's compact packaging and wide operating voltage range further enhance its versatility and suitability for a variety of applications. While the NX3L4684GM,132 is now obsolete, its technical specifications and performance benefits continue to make it a valuable reference for engineers and designers in the electronics industry.

FAQ

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