9C-35.328MAAE-T Allicdata Electronics

9C-35.328MAAE-T Crystals, Oscillators, Resonators

Allicdata Part #:

887-1936-2-ND

Manufacturer Part#:

9C-35.328MAAE-T

Price: $ 0.16
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: TXC Corporation
Short Description: CRYSTAL 35.3280MHZ 12PF SMD
More Detail: 35.328MHz ±30ppm Crystal 12pF 80 Ohms HC-49S
DataSheet: 9C-35.328MAAE-T datasheet9C-35.328MAAE-T Datasheet/PDF
Quantity: 1000
1000 +: $ 0.15120
Stock 1000Can Ship Immediately
$ 0.16
Specifications
Series: 9C
Packaging: Tape & Reel (TR) 
Part Status: Active
Type: MHz Crystal
Frequency: 35.328MHz
Frequency Stability: ±30ppm
Frequency Tolerance: ±30ppm
Load Capacitance: 12pF
ESR (Equivalent Series Resistance): 80 Ohms
Operating Mode: Fundamental
Operating Temperature: -20°C ~ 70°C
Ratings: --
Mounting Type: Surface Mount
Package / Case: HC-49S
Size / Dimension: 0.449" L x 0.189" W (11.40mm x 4.80mm)
Height - Seated (Max): 0.161" (4.10mm)
Description

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9C-35.328MAAE-T Application Field and Working Principle

The 9C-35.328MAAE-T is an advanced crystalline oscillator designed to provide precision timing and frequency control functions in various applications. This oscillator has several distinct characteristics compared to other oscillators. Most notably, it utilizes a double balanced crystal transistor (DBCT) instead of an amplitude modulated quartz crystal (AMQC) as the active element. Furthermore, this oscillator has a larger package size and higher operating frequency than AMQCs.

The DBCT consists of two N-type MOSFETs that form the oscillator\'s active elements. This design gives the 9C-35.328MAAE-T a higher operating frequency and a greater frequency of stability than other oscillators. The DBCT also enhances the performance of the oscillator in terms of phase noise and temperature stability. These features make the 9C-35.328MAAE-T more suitable for use in applications where low-phase-noise and high-frequency stability are of great importance.

The 9C-35.328MAAE-T is designed to operate at frequencies of up to 35 MHz and is able to achieve low-phase noise. This oscillator also features a low power consumption, making it suitable for battery-operated devices or devices with limited power supplies. Additionally, the 9C-35.328MAAE-T is built with a galvanic isolator which helps to protect its circuitry from EMI noise.

In addition to its precision timing and frequency control functions, the 9C-35.328MAAE-T is also suitable for use in R/F (radio frequency) applications. Such applications include timing and frequency control of broadcasting, communications, and other R/F systems. As the 9C-35.328MAAE-T features a low-power consumption and a high level of low-phase noise, it is also suitable for use in critical timing and frequency control applications.

Applications of the 9C-35.328MAAE-T include timing and frequency control for medical, network, and industrial applications. It can be used for precision timing and frequency control, synchronization, and stabilization of a variety of digital data acquisition systems. Additionally, the 9C-35.328MAAE-T can be used for synchronization and frequency control applications in RF systems such as cellular, Wi-Fi and satellite communications.

The 9C-35.328MAAE-T employs a dual-modulated crystal and an active element to provide low-phase noise and high-frequency stability. The LC circuit and active element are connected to the crystal to form a resonant circuit which provides additional stability. The dual-modulated resonator also provides a low power consumption which makes the 9C-35.328MAAE-T suitable for low-power applications.

In summary, the 9C-35.328MAAE-T is a high-performance crystalline oscillator with several unique features. The double-balanced crystal transistor provides a lower-noise and more temperature-stable operation than other oscillators. Furthermore, the 9C-35.328MAAE-T features a high-operating frequency and a small package. This makes it suitable for high-precision timing and frequency control applications in medical, network, and industrial applications.

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

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