MAX2901ETI+ Allicdata Electronics
Allicdata Part #:

MAX2901ETI+-ND

Manufacturer Part#:

MAX2901ETI+

Price: $ 4.19
Product Category:

RF/IF and RFID

Manufacturer: Maxim Integrated
Short Description: IC TX 915MHZ 200MW 28TQFN
More Detail: RF Transmitter ASK, BPSK 902MHz ~ 928MHz 20dBm PC...
DataSheet: MAX2901ETI+ datasheetMAX2901ETI+ Datasheet/PDF
Quantity: 43
1 +: $ 3.80520
10 +: $ 3.61494
25 +: $ 2.97990
50 +: $ 2.83097
250 +: $ 2.74713
500 +: $ 2.47278
Stock 43Can Ship Immediately
$ 4.19
Specifications
Series: --
Packaging: Tube 
Part Status: Active
Frequency: 902MHz ~ 928MHz
Applications: ISM
Modulation or Protocol: ASK, BPSK
Data Rate (Max): --
Power - Output: 20dBm
Current - Transmitting: 200mA
Data Interface: PCB, Surface Mount
Antenna Connector: PCB, Surface Mount
Memory Size: --
Features: --
Voltage - Supply: 2.7 V ~ 4.5 V
Operating Temperature: -40°C ~ 85°C
Package / Case: 28-WFQFN Exposed Pad
Description

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RF transmitters operate in both commercial and military industries for communication, data transfer and multiple applications. The MAX2901ETI+, which stands for the Multi-Network Pulse Amplitude Modulation (PAM)-Based Single-Chip Transmitter System, is a highly integrated FM or FSK transmitter with multiple I/O interfaces. This device is designed for both commercial and military grade applications and offers a versatile and powerful system for a range of different uses.

The MAX2901ETI+ is a fully integrated transmitter system that consists of two main components: a high power RF power amplifier (PA) rated to output up to 40dBm and a two-channel modulator, which includes a PAM demodulator, a programmable frequency modulator, an adjustable linearizer, and a digital I/O port. This system supports a range of modulation techniques, from simple modulation schemes such as amplitude-shift keying (ASK) and frequency-shift keying (FSK) to more complex ones, such as pulse-shaping modulation (PSK) and pulse-width modulation (PWM).

The main advantage of the MAX2901ETI+ is that it offers high performance in a very small package. The device is based on a low-voltage, low-power CMOS technology and includes several features such as a low-noise amplifier, a two-channel modulator, a high-level RF output stage, and several digital I/O ports. This makes the MAX2901ETI+ a very efficient device for many applications. Additionally, it requires no external components, making it an ideal choice for design-in applications.

The working principle of the MAX2901ETI+ is based on the same principles found in all transmitter systems. At its most fundamental level, a transmitter system consists of several components working together to amplify, modulate and transmit signals. The MAX2901ETI+ is no different – it takes an input signal, amplifies it, and then modulates the signal using the two-channel modulator before transmitting the signal using the high-power RF PA stage. The two-channel modulator is responsible for the modulation of the data, while the PA stage is responsible for amplifying the signal so that it can be transmitted further.

The MAX2901ETI+ can be used in a number of different applications, from the military to commercial grade. It is ideal for long range communication systems, as its high-power output ensures that the signal can reach its intended destination. Additionally, the MAX2901ETI+ can be used for applications such as remote control systems, data transmission, and medical and fitness applications. The device’s small form factor and its efficient design make it ideal for design-in applications. Additionally, its wide range of supported modulation techniques make it a good choice for any number of applications.

The MAX2901ETI+ is an ideal choice for a variety of uses due to its high power, small form factor and efficient design. Its two-channel modulator, powerful RF PA stage and wide range of supported modulation techniques make it well suited for applications in both the commercial and military markets. The device offers a powerful system that requires no external components, making it an ideal choice for design-in applications.

The specific data is subject to PDF, and the above content is for reference

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