TZA3047BVH/C1,551 Allicdata Electronics

TZA3047BVH/C1,551 Integrated Circuits (ICs)

Allicdata Part #:

568-1189-ND

Manufacturer Part#:

TZA3047BVH/C1,551

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: NXP USA Inc
Short Description: IC LASER DRIVER 1.25GBPS 32-HBCC
More Detail: Laser Driver IC 1.25Gbps 1 Channel 3.14 V ~ 3.47 V...
DataSheet: TZA3047BVH/C1,551 datasheetTZA3047BVH/C1,551 Datasheet/PDF
Quantity: 1000
Moisture Sensitivity Level (MSL): 3 (168 Hours)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Voltage - Supply: 3.14 V ~ 3.47 V
Base Part Number: TZA3047
Mounting Type: Surface Mount
Supplier Device Package: 32-HBCC (5x5)
Package / Case: 32-HBCC
Operating Temperature: -40°C ~ 85°C
Current - Bias: 100mA
Current - Modulation: 100mA
Current - Supply: 40mA
Series: --
Number of Channels: 1
Data Rate: 1.25Gbps
Type: Laser Diode Driver (Fiber Optic)
Moisture Sensitivity Level (MSL): --
Part Status: Obsolete
Lead Free Status / RoHS Status: --
Packaging: Tray 
Description

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PMIC’s - Laser Drivers are widely used in a variety of industries, such as consumer electronics and medical applications, due to their wide variety of features and capabilities. One of the most popular is the TZA3047BVH/C1,551. This article will discuss the application field and working principle of this powerful unit.

The TZA3047BVH/C1,551 is a laser driver specifically designed for the laser applications. It can be used to control high speed IR laser diodes for various high-end applications. It is best suitable for consumer applications requiring high speed optical switching and modulation because of its efficient self-protection algorithm and wide dynamic range. Its key features include extremely fast switching with no distortion and long term reliability.

This laser driver is designed with a wide selection of optimized laser parameters. It is suitable for any number of different application fields, including precision laser cutting, laser welding, laser annealing, laser soldering, and more. Additionally, it is also suitable for optical communications applications. It works with ultra-fast pulsewidths of up to 100 ps, with pulse durations sufficient enough to actuate high speed switching in the optical transmission lanes.

The TZA3047BVH/C1,551 boasts an efficient control system architecture, which makes it a superior choice for high-precision industrial applications. Its power consumption is low, at only 7 W, meaning that it does not require as much power as other laser drivers. It also features a high dynamic range across a wide range of applications. This allows it to be utilizedfor a wide variety of applications, without the need to constantly adjust the settings.

This laser driver also features an innovative on-chip self-protection algorithm. This algorithm enhances the accuracy of the laser, ensuring the highest quality output. Moreover, its robust power management features allow the driver to maintain its operations even in the most extreme environments. It also provides adjustable overcurrent, overvoltage, and overtemperature protection, ensuring maximum reliability and safe operation.

The TZA3047BVH/C1,551 laser driver’s working principle is based on a pulse-width modulation (PWM) method. This technology allows the user to control the laser by setting the frequency, duty cycles, and pulse width. When these settings are combined with a pin, input current can be adjusted to achieve the desired frequency and power. Moreover, by setting the pre-charge voltage and current, the output power of the laser can be finely adjusted to meet the needs of the application.

The TZA3047BVH/C1,551 is an excellent choice for a variety of industrial applications. It is compatible with high speed IR laser diodes, features an efficient control system architecture, and has an innovative on-chip self-protection algorithm. It also boasts a high dynamic range across all applications and an adjustable overcurrent, overvoltage, and overtemperature protection. Its working principle is based on a PWM technique, allowing it to be utilized in a wide range of applications with superior accuracy and reliability.

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

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