505~CP-8-11~CP~8.JPG
Image shown is a representation only. Exact specifications should be obtain- ed from the product data sheet.

Analog Devices Inc. ADM7151ACPZ-02-R7

Manufacturer Part Number : ADM7151ACPZ-02-R7
Manufacturer : Analog Devices Inc.
Description : IC REG LIN POS ADJ 800MA 8LFCSP
Lead Free Status / RoHS Status : Lead free / RoHS Compliant
Datasheet : ADM7151ACPZ-02-R7.PDF ADM7151ACPZ-02-R7 PDF
EDA / CAD Models : ADM7151ACPZ-02-R7 by SnapEDA
Quantity:
1 152 7623312 http://www.analog.com/media/en/technical-documentation/data-sheets/ADM7151.pdf Analog-Devices-Inc/ADM7151ACPZ-02-R7 7623312
Output Configuration:Positive
Output Type:Adjustable
Voltage - Input (Max):16V
Voltage - Output (Min/Fixed):1.5V
Voltage - Output (Max):4V
Voltage Dropout (Max):1.2V @ 800mA
Current - Output:800mA
PSRR:94dB ~ 50dB (1kHz ~ 1MHz)
Control Features:Enable
Protection Features:Over Temperature, Short Circuit
Operating Temperature:-40~C ~ 125~C
Mounting Type:Surface Mount
Package / Case:8-WFDFN Exposed Pad, CSP
Supplier Device Package:8-LFCSP-WD (3x3)

Introduction to ADM7151ACPZ-02-R7

The ADM7151ACPZ-02-R7 is a remarkable product manufactured by the reputable company Analog Devices Inc. This device is a high precision voltage regulator, meaning it helps control the voltage supplied to an electronic device. It's an integral part of many electrical systems, providing stable and reliable power supply.

Technical Features

The ADM7151ACPZ-02-R7 excels in its performance because of its superior technical specifications. It operates with an impressive output current of 1.5A, ensuring that it has the capacity to sustain significant power demands. The device also ensures an output voltage of 2V, maintaining a stable power supply. Moreover, it possesses an ultralow noise operation which makes it ideal for sensitive applications. It also provides remarkable stability over a wide range of conditions, thanks to its fast transience response.

Application Scenarios

The ADM7151ACPZ-02-R7 from Analog Devices Inc. is versatile and finds applications in several scenarios. It is commonly used in high precision instruments, where maintaining accurate voltage is critical. Its high-frequency RF applications and noise-sensitive instrumentation make it a suitable choice for communication systems. Moreover, it's utilized in data acquisition and conversion systems, radar systems, and medical devices where stable and reliable power supply is crucial.

Models in the Same Series

  • The ADM7150: This model operates with an output current of 800mA and offers a voltage output of 1.2V to 3.3V. Like the ADM7151ACPZ-02-R7, it is also incredibly stable and reliable.
  • The ADM7151ACPZ-1.2-R7: This is another variant in the series with an output current of 1.5A. However, it offers an output voltage of 1.2V, making it ideal for applications that require less voltage.
  • The ADM7151ACPZ-3.3-R7: This model provides an output current of 1.5A and a higher output voltage of 3.3V, catering to needs for a higher voltage supply.

All models from this series abide by the same outstanding quality and performance standards set by Analog Devices Inc.

Request for Quotation

Technical Parameters of ADM7151ACPZ-02-R7

Output Configuration:Positive
Output Type:Adjustable
Voltage - Input (Max):16V
Voltage - Output (Min/Fixed):1.5V
Voltage - Output (Max):4V
Voltage Dropout (Max):1.2V @ 800mA
Current - Output:800mA
PSRR:94dB ~ 50dB (1kHz ~ 1MHz)
Control Features:Enable
Protection Features:Over Temperature, Short Circuit
Operating Temperature:-40~C ~ 125~C
Mounting Type:Surface Mount
Package / Case:8-WFDFN Exposed Pad, CSP
Supplier Device Package:8-LFCSP-WD (3x3)

Product Details

Introduction to ADM7151ACPZ-02-R7

The ADM7151ACPZ-02-R7 is a remarkable product manufactured by the reputable company Analog Devices Inc. This device is a high precision voltage regulator, meaning it helps control the voltage supplied to an electronic device. It's an integral part of many electrical systems, providing stable and reliable power supply.

Technical Features

The ADM7151ACPZ-02-R7 excels in its performance because of its superior technical specifications. It operates with an impressive output current of 1.5A, ensuring that it has the capacity to sustain significant power demands. The device also ensures an output voltage of 2V, maintaining a stable power supply. Moreover, it possesses an ultralow noise operation which makes it ideal for sensitive applications. It also provides remarkable stability over a wide range of conditions, thanks to its fast transience response.

Application Scenarios

The ADM7151ACPZ-02-R7 from Analog Devices Inc. is versatile and finds applications in several scenarios. It is commonly used in high precision instruments, where maintaining accurate voltage is critical. Its high-frequency RF applications and noise-sensitive instrumentation make it a suitable choice for communication systems. Moreover, it's utilized in data acquisition and conversion systems, radar systems, and medical devices where stable and reliable power supply is crucial.

Models in the Same Series

  • The ADM7150: This model operates with an output current of 800mA and offers a voltage output of 1.2V to 3.3V. Like the ADM7151ACPZ-02-R7, it is also incredibly stable and reliable.
  • The ADM7151ACPZ-1.2-R7: This is another variant in the series with an output current of 1.5A. However, it offers an output voltage of 1.2V, making it ideal for applications that require less voltage.
  • The ADM7151ACPZ-3.3-R7: This model provides an output current of 1.5A and a higher output voltage of 3.3V, catering to needs for a higher voltage supply.

All models from this series abide by the same outstanding quality and performance standards set by Analog Devices Inc.

ADM7151ACPZ-02-R7 Related Products

Popular Categories

Hot Sale

Related Manufacturers

Electronic Parts Index
More
# 0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z

We value your privacy

Our website uses cookies to ensure you are getting the best browsing experience, serve personalized content, and analyze our traffic.
By clicking "Accept Cookies", you consent to our use of cookies. Privacy Policy