DS4625P+150/200 Allicdata Electronics
Allicdata Part #:

DS4625P+150/200-ND

Manufacturer Part#:

DS4625P+150/200

Price: $ 17.83
Product Category:

Integrated Circuits (ICs)

Manufacturer: Maxim Integrated
Short Description: IC OSC CLOCK DUAL FREQ 10-LCCC
More Detail: Clock Oscillator IC 150MHz, 200MHz 10-LCCC (5x3.2)
DataSheet: DS4625P+150/200 datasheetDS4625P+150/200 Datasheet/PDF
Quantity: 612
1 +: $ 16.20990
10 +: $ 15.29390
25 +: $ 12.23510
50 +: $ 11.62340
100 +: $ 10.70570
250 +: $ 10.15520
500 +: $ 7.76937
Stock 612Can Ship Immediately
$ 17.83
Specifications
Series: --
Packaging: Tube 
Part Status: Obsolete
Type: Clock Oscillator
Count: --
Frequency: 150MHz, 200MHz
Voltage - Supply: 2.97 V ~ 3.63 V
Current - Supply: 120mA
Operating Temperature: -40°C ~ 85°C
Package / Case: 10-LCCC Exposed Pad
Supplier Device Package: 10-LCCC (5x3.2)
Mounting Type: Surface Mount
Base Part Number: DS4625
Description

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Modern technology and advances in science have created numerous opportunities for scientists and engineers to explore new applications for clocks and oscillators. The DS4625P+150/200 is a sample-level, programmable low-power clock and oscillator designed for microcontrollers and embedded systems. This device allows for versatile, low-power and accurate clock operation in a single, small package.

This device is a natural choice for applications that require accurate and high-frequency clock or oscillator timing. It can be used in microcontrollers and embedded systems to provide an efficient and reliable reference signal. It can also be used to provide digital processing and communications timing and clock control in computer components. Its small size and low voltage operation make it an ideal choice for many applications.

The DS4625P+150/200’s configuration can be customized for applications requiring various clock and oscillator frequencies. The device can be operated over a wide range of voltage ranges, from 0.3V to 5V, and can be operated from a single 3.3V supply. It features fast rise time, low skew, and low-logic output current. Additionally, the device includes an internal oscillator, crystal oscillator, or an external oscillator.

At the core of the DS4625P+150/200 is an integrated circuit (IC). The IC sends and receives data to and from the device’s I/O pins at a pre-determined rate, allowing the IC to accurately encode and process input signals. By traditional means, the generated clock signal is sent to other components in the system and may be used to control the data flow and processing speed of those components. The clock signal from the IC may also be adjusted or scaled depending on the application. The four output pins of the IC can be individually configured to contain a clock signal of frequency, period, or activity. The output pins can be configured for synchronous or asynchronous operation depending on the clock rate required for the application.

The DS4625P+150/200 can be used for a wide range of applications and it is particularly suitable for use in battery-powered applications. It can be used for frequency synthesis, for example, in digital radios. Additionally, its low-power capabilities make it suitable for use in medical applications, where minimal power consumption is a must. The device is also useful in communication and computer circuits, providing accurate clock and timing signals for high-speed data transmission. Finally, its low clock rate, low-voltage requirements, and low-skew levels make it an ideal choice for use in embedded systems, where reliability and accuracy are essential.

In summary, the DS4625P+150/200 is an effective clock and oscillator device. It is a versatile, low-power and accurate device that can be used in a wide range of applications. Its programmable settings, small size, and low voltage operation make it an ideal choice for microcontrollers and embedded systems, as well as battery-powered applications. Its application field is further enhanced by its ability to provide an accurate and reliable reference signal. This makes it a great choice for clock and oscillator operation.

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

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