MAX2031ETP+T Overview
The MAX2031ETP+T is a high-performance, low-noise RF front-end module designed for wireless communication systems. It integrates a low-noise amplifier (LNA), a mixer, and a voltage-controlled oscillator (VCO) to deliver superior sensitivity and signal quality in demanding RF applications. The device operates within a wide frequency range, providing excellent gain and low phase noise, making it ideal for use in cellular and wireless infrastructure. With its compact design and robust electrical characteristics, this module supports efficient system integration and reliable operation. For more detailed technical information, visit IC Manufacturer.
MAX2031ETP+T Technical Specifications
| Parameter | Specification |
|---|---|
| Operating Frequency Range | 824MHz to 849MHz |
| Low-Noise Amplifier (LNA) Gain | 18dB typical |
| Mixer Conversion Gain | 10dB typical |
| Noise Figure | 1.5dB typical |
| Voltage-Controlled Oscillator (VCO) Phase Noise | -95dBc/Hz at 100kHz offset |
| Supply Voltage | 3V to 5V |
| Current Consumption | 25mA typical |
| Package | 16-pin TSSOP |
MAX2031ETP+T Key Features
- Integrated RF Front-End Components: Combines LNA, mixer, and VCO to reduce external component count and simplify design.
- Wide Frequency Coverage: Covers 824MHz to 849MHz band, supporting multiple wireless communication standards.
- Low Noise Figure: Ensures high sensitivity and signal clarity, critical for weak signal reception.
- Low Phase Noise VCO: Enables stable frequency synthesis, improving overall system performance.
- Compact 16-Pin TSSOP Package: Facilitates space-efficient PCB layouts and easy assembly.
- Low Power Consumption: Optimized for minimal current draw, enhancing battery life in portable applications.
- Stable Operation Across Supply Voltages: Operates reliably from 3V to 5V, providing design flexibility.
MAX2031ETP+T Advantages vs Typical Alternatives
This module offers superior sensitivity and low noise figure compared to typical RF front-end components, enhancing signal reception quality. Its integrated design reduces overall system complexity and improves reliability by minimizing interconnect losses. The low phase noise VCO supports stable frequency generation, which is critical for precise wireless communication. Additionally, low power consumption and a compact package make it advantageous for space-constrained and power-sensitive industrial applications.
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Typical Applications
- Cellular Base Stations: Enhances signal reception and frequency stability in GSM and other cellular networks, ensuring reliable wireless communication.
- Wireless Infrastructure Equipment: Provides critical RF amplification and mixing functions for repeaters and transceivers.
- Portable Wireless Devices: Supports low power operation and compact design needs in handheld radios and communication terminals.
- RF Signal Processing Modules: Used in modules requiring integrated low-noise amplification and frequency conversion for improved signal integrity.
MAX2031ETP+T Brand Info
The MAX2031ETP+T is a precision RF front-end module developed by a leading semiconductor manufacturer known for innovative wireless solutions. This product reflects a commitment to high-quality design and manufacturing standards, targeting communication engineers and system integrators who demand reliable performance in RF applications. The brand??s portfolio includes a range of integrated circuits optimized for wireless infrastructure, ensuring compatibility and streamlined development cycles.
FAQ
What frequency bands does the MAX2031ETP+T support?
This device operates primarily in the 824MHz to 849MHz frequency range, making it suitable for cellular and other wireless communication applications that utilize this band.
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How does the integrated VCO improve system performance?
The low phase noise voltage-controlled oscillator provides stable and precise frequency generation, which reduces signal distortion and enhances overall wireless communication reliability.
What is the typical current consumption of the module?
The module typically consumes around 25mA, allowing for energy-efficient operation suitable for portable and battery-powered devices.





