Allicdata Part #: | ONET1101LRGER-ND |
Manufacturer Part#: |
ONET1101LRGER |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Texas Instruments |
Short Description: | IC LASER DRIVER 11.3GBPS 24VQFN |
More Detail: | Laser Driver IC 11.3Gbps 1 Channel 2.97 V ~ 3.63 V... |
DataSheet: | ONET1101LRGER Datasheet/PDF |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 2 (1 Year) |
Series: | -- |
Packaging: | Tape & Reel (TR) |
Lead Free Status / RoHS Status: | -- |
Part Status: | Active |
Moisture Sensitivity Level (MSL): | -- |
Type: | Laser Diode Driver (Fiber Optic) |
Data Rate: | 11.3Gbps |
Number of Channels: | 1 |
Voltage - Supply: | 2.97 V ~ 3.63 V |
Current - Supply: | 95mA |
Current - Modulation: | 85mA |
Current - Bias: | 100mA |
Operating Temperature: | -25°C ~ 100°C |
Package / Case: | 24-VFQFN Exposed Pad |
Supplier Device Package: | 24-VQFN (4x4) |
Mounting Type: | Surface Mount |
Base Part Number: | ONET1101L |
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ONET1101LRGER is an integrated laser driver developed in the field of Power Management Integrated Circuit (PMIC) - Laser Drivers. It comprises an efficient monolithic power stage and a dedicated control IC. The device can drive a wide range of laser diode configurations in various applications, as it offers high accuracy (<0.5%) current and voltage regulation, wide supply range and fast transient response. With its small size, high reliability and low power consumption, it is suitable for many applications like spectrom x-ray imaging, scanning microscopy, fingerprint authentication, fibre optical communication, machine vision and material processing.
The ONET1101LRGER laser driver features wide input voltage range and high accuracy output current and voltage regulation. It is built with a high efficiency monolithic power stage that integrates the input voltage regulation, high voltage power supply, current driver and logic control. This ensures that the laser driver can reliably maintain the output current and voltage with just minimal power dissipation. The output current range of the device is adjustable from 0 to 5A and the output voltage range is adjustable from 0V to 20V. It has a fast transistor response time of 5ns, which enables stable and quick modulation of the pulses.
The power supply and the input voltage can be managed and configured via I2C interface. This makes it possible to program and control the laser driver settings from any compatible microcontroller. The I2C interface also provides a low power mode, which reduces the power consumption of the device when it is not in use. Its small size and integrated logic makes it easy to install, test and use. Furthermore, the device features an overtemperature protection so that it will automatically shut down when the temperature of the device exceeds a certain threshold.
The ONET1101LRGER laser driver is capable of driving a wide range of laser diode configurations. It has high efficiency that ensures minimal heating and power dissipation. The overall size of the device is minimized, which helps in reducing cost. The fast transient response enables the device to support higher modulation frequencies and supports various modulation techniques. With its wide input voltage range, it can easily be used in different applications. Lastly, it provides reliable and accurate control of the output current and voltage, which makes it suitable for many applications.
In conclusion, ONET1101LRGER is an integrated laser driver developed in the field of Power Management Integrated Circuit (PMIC) – Laser Drivers. It is equipped with a range of features such as high accuracy current and voltage regulation, wide input voltage range, and fast transient response, which enable it to drive a wide range of laser diode configurations in various applications. It is suitable for applications such as spectrometry, x-ray imaging, and scanning microscopy. The device has high efficiency and a small profile, making it suitable for space constrained applications.
The specific data is subject to PDF, and the above content is for reference
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