Allicdata Part #: | SD110024-ND |
Manufacturer Part#: |
SD110024 |
Price: | $ 114.35 |
Product Category: | Sensors, Transducers |
Manufacturer: | Carlo Gavazzi Inc. |
Short Description: | SENSOR RLY 24VAC SPDT NAMUR |
More Detail: | General Purpose Sensor Amplifier DIN Rail |
DataSheet: | SD110024 Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 103.95000 |
Series: | -- |
Part Status: | Active |
Amplifier Type: | General Purpose |
Voltage - Supply: | 24VAC |
Output Type: | Relay |
Current - Supply: | 1.2mA |
Operating Temperature: | -20°C ~ 50°C |
Mounting Type: | DIN Rail |
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Amplifiers are one of the most commonly used electronic devices in a variety of applications. SD110024 is an integrated amplifier used in various consumer and industrial electronics applications. This article examines its application field and working principle.
Application field
The SD110024 audio amplifier is a single-chip module amplifier designed for stereo audio applications. It provides a versatile solution for audio amplifiers used in consumer electronics, automotive audio systems, radio receivers, and medical devices. It has a low noise amplifier and wide frequency response of up to 20 kHz, making it suitable for sensitive audio applications. Its power supply voltage ranges from 2.8V to 5.9V, making it a low-price solution for many portable applications. It also provides class D output for easy control and high efficiency.
The SD110024 amplifier can be used in automotive applications, such as audio systems for cars, providing high-quality sound amplification. Its low distortion and low-noise characteristics make it suitable for radio receivers with high sensitivity. It can also be used for medical applications, such as hearing aids, providing high accuracy to the sound and clear amplifications.
Working principle
SD110024 is an integrated amplifier that combines a low-noise amplifier and class D output amplifier. The low-noise amplifier amplifies the signal from an input device, such as a microphone, and drives the class D amplifier to generate an output waveform. The class D amplifier produces a much more efficient output waveform than conventional class A or AB amplifiers and is known as a class D topology.
The SD110024 amplifier is capable of converting incoming analog signals into digital signals and then generating an output waveform from the digital signal. This conversion is accomplished by a low-noise amplifier that amplifies the signal and then sends it to a class D amplifier. The class D amplifier then takes the digital signal and converts it into an analog output waveform. The output waveform produced by the class D amplifier is much more efficient than an analog output waveform. The amplifier is then able to convert the output waveform back into analog signals for the speaker.
SD110024 has been designed to be able to support multiple audio inputs and output. It can be used in both synchronous and asynchronous playback modes. The amplifier can process incoming audio signals of 2V peak-to-peak and transmits them as voltage signals of up to 24V peak-to-peak. It also features a current limiter which will limit output currents to 30 mA RMS.
The SD110024 amplifier is capable of high efficiency and low distortion, making it ideal for a variety of applications. Its high efficiency allows it to operate at lower voltages, while the low distortion ensures clear amplification of signals. It also offers Total Harmonic Distortion + Noise (THD+N) of 0.02% (typical) and a Signal-to-Noise Ratio of 103 dB (typical). This provides high-quality sound output for users in all kinds of applications.
Conclusion
The SD110024 amplifier is a low-price, integrated amplifier with features and performance that make it suitable for use in a variety of applications. It can provide high efficiency and low distortion for sensitive audio applications and is capable of supporting multiple inputs and outputs. It also offers a high signal-to-noise ratio and total harmonic distortion + noise for clear and crisp audio. This makes the SD110024 a versatile and cost-effective option for many audio amplifiers.
The specific data is subject to PDF, and the above content is for reference
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