E2CA-AL4C Allicdata Electronics
Allicdata Part #:

E2CA-AL4C-ND

Manufacturer Part#:

E2CA-AL4C

Price: $ 0.00
Product Category:

Sensors, Transducers

Manufacturer: Omron Automation and Safety
Short Description: AMP DC 4-20MA FOR E2CA-X1R5A/-5M
More Detail: Standard Sensor Amplifier Panel Mount
DataSheet: E2CA-AL4C datasheetE2CA-AL4C Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: E2CA
Part Status: Obsolete
Amplifier Type: Standard
Voltage - Supply: 10 V ~ 30 V
Output Type: Linear
Current - Supply: 70mA
Operating Temperature: -10°C ~ 55°C (TA)
Mounting Type: Panel Mount
Description

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An electronic amplifier, such as the E2CA-AL4C, is a device that increases the magnitude of a signal. It is commonly used in applications such as electronic signal processing, communications, signal synchronization, noise reduction, sound production, and radar systems. In general, amplifiers take an input signal, increase its power, and deliver an output signal with improved performance. Amplifier technology is a vital component of many electronics designs and applications.

The E2CA-AL4C is a multi-stage amplifier with two bipolar-junction transistors (BJTs) in a cascode configuration. The BJTs consist of a PNP transistor and an NPN transistor connected together in a common emitter configuration. The amplifier\'s output is taken from the PNP transistor\'s collector. The E2CA-AL4C is designed to provide a gain of approximately 30dB over a frequency range of 500Hz to 2GHz. The amplifier is ideal for applications such as direct-to-antenna transmission or reception and LNA-output amplifiers.

The E2CA-AL4C is a high-speed, low-noise amplifier that is optimized for linear operation. The amplifier\'s bandwidth is typically limited to a range of frequencies, as opposed to a single frequency. This limitation is due to the amplifier\'s gain and bandwidth response, which varies depending on the supply and bias control voltages. When these supply and bias voltages are set appropriately, the amplifier can be used for linear applications with a gain bandwidth of up to 2GHz.

The main advantage of the E2CA-AL4C is its lower noise figure, compared to other standard amplifiers. Moreover, it combines high output, low distortion and low noise figure with a linear performance. Furthermore, the E2CA-AL4C offers good gain stability over temperature and power supply range etc, offering better performance over a wide range of applications.

The E2CA-AL4C is a key component in the design of radios, signal processing systems, communication systems and navigation systems, providing improved gain and noise figure performance. In mobile phone applications, the E2CA-AL4C is used for low noise amplification, because it provides better signal input-to-noise ratio performance. In broadcast applications, the E2CA-AL4C is used to increase signal strength before transmission. Additionally, the E2CA-AL4C is used for transmitting and receiving broadband signals in radar systems.

The E2CA-AL4C amplifiers can be operated in a variety of configurations, such as single ended or differential. The amplifier also has a number of protection measures, including parasitic thermal interlock protection and input over-voltage protection, which protect the device from damage or malfunction.

In summary, the E2CA-AL4C is a multi-stage, high-speed, low-noise amplifier with two bipolar-junction transistors (BJTs) in a cascode configuration. It offers good linear performance with a gain of approximately 30dB over a frequency range of 500Hz to 2GHz. The device is designed for low-noise amplification, having a lower noise figure than many other standard amplifiers. The E2CA-AL4C is suitable for use in a wide range of applications, including direct-to-antenna transmission, broadcast applications, mobile radio, signal processing systems, communication systems, and radar systems. The amplifier is protected by several safety features, including parasitic thermal interlock protection and input over-voltage protection.

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

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