PARALLEL - 3RD OVERTONE Crystal Oscillators 11

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Part RoHS Manufacturer Crystal or Resonator Type Mounting Feature Frequency Tolerance Minimum Operating Frequency Maximum Operating Frequency Aging Load Capacitance Additional Features Series Resistance Frequency Stability Minimum Operating Temperature Terminal Finish JESD-609 Code Nominal Operating Frequency Drive Level Physical Dimension Manufacturer Series Maximum Operating Temperature

MP320B-E

Cts

PARALLEL - 3RD OVERTONE

THROUGH HOLE MOUNT

30 ppm

5 PPM/YEAR

18 pF

AT CUT; BULK

25 ohm

50 %

-40 Cel

Tin/Silver/Copper (Sn/Ag/Cu)

e1

32 MHz

100 uW

L10.85XB4.5XH13.46 (mm)/L0.427XB0.177XH0.53 (inch)

85 Cel

VXD1-3A6-71M0375000

Microchip Technology

PARALLEL - 3RD OVERTONE

THROUGH HOLE MOUNT

10 ppm

5 PPM/FIRST YEAR

30 pF

40 ohm

100 %

-20 Cel

71.0375 MHz

10 uW

L7.9XB3.2XH8.1 (mm)/L0.311XB0.126XH0.319 (inch)

70 Cel

FP6400002

Diodes Incorporated

PARALLEL - 3RD OVERTONE

SURFACE MOUNT

3 PPM/FIRST YEAR

AT-CUT; TR

64 MHz

10 uW

L7.0XB5.0XH1.0 (mm)/L0.276XB0.197XH0.039 (inch)

GB4000022

Diodes Incorporated

PARALLEL - 3RD OVERTONE

THROUGH HOLE MOUNT

30 ppm

3 PPM/FIRST YEAR

AT-CUT

40 MHz

100 uW

L11.2XB5.0XH3.5 (mm)/L0.441XB0.197XH0.138 (inch)

GB4800023

Diodes Incorporated

PARALLEL - 3RD OVERTONE

THROUGH HOLE MOUNT

30 ppm

3 PPM/FIRST YEAR

AT-CUT

48 MHz

100 uW

L11.2XB5.0XH3.5 (mm)/L0.441XB0.197XH0.138 (inch)

GB4800024

Diodes Incorporated

PARALLEL - 3RD OVERTONE

THROUGH HOLE MOUNT

30 ppm

3 PPM/FIRST YEAR

AT-CUT

48 MHz

100 uW

L11.2XB5.0XH3.5 (mm)/L0.441XB0.197XH0.138 (inch)

GB5000012

Diodes Incorporated

PARALLEL - 3RD OVERTONE

THROUGH HOLE MOUNT

30 ppm

3 PPM/FIRST YEAR

AT-CUT

50 MHz

100 uW

L11.2XB5.0XH3.5 (mm)/L0.441XB0.197XH0.138 (inch)

GB5000016

Diodes Incorporated

PARALLEL - 3RD OVERTONE

THROUGH HOLE MOUNT

30 ppm

3 PPM/FIRST YEAR

AT-CUT

50 MHz

100 uW

L11.2XB5.0XH3.5 (mm)/L0.441XB0.197XH0.138 (inch)

GB6400014

Diodes Incorporated

PARALLEL - 3RD OVERTONE

THROUGH HOLE MOUNT

30 ppm

3 PPM/FIRST YEAR

AT-CUT

64 MHz

100 uW

L11.2XB5.0XH3.5 (mm)/L0.441XB0.197XH0.138 (inch)

FX6400001

Diodes Incorporated

PARALLEL - 3RD OVERTONE

SURFACE MOUNT

3 PPM/FIRST YEAR

AT-CUT; TR

64 MHz

10 uW

L6.0XB3.5XH1.1 (mm)/L0.236XB0.138XH0.043 (inch)

FY5400014

Diodes Incorporated

PARALLEL - 3RD OVERTONE

SURFACE MOUNT

3 PPM/FIRST YEAR

AT-CUT; TR

54 MHz

10 uW

L5.0XB3.2XH0.9 (mm)/L0.197XB0.126XH0.035 (inch)

Crystal Oscillators

Crystal oscillators are electronic components that generate stable and precise frequency signals for various applications. They are widely used in electronic devices and systems that require a precise frequency source, such as clocks, radios, and telecommunications equipment.

Crystal oscillators consist of a quartz crystal resonator, which is cut to vibrate at a specific frequency when an AC voltage is applied across it. The resonance frequency is determined by the dimensions of the crystal and the properties of the quartz material, which have a high Q-factor and temperature stability. The crystal resonator is connected to an amplifier circuit that provides feedback and controls the frequency of the output signal.

Crystal oscillators offer several advantages over other types of frequency sources, including high accuracy, stability, and low phase noise. They can operate at a wide range of frequencies, ranging from a few kilohertz to several gigahertz, and they are available in different package sizes and configurations, including through-hole and surface-mount.

Crystal oscillators come in different types, such as Pierce, Colpitts, and Butler, each with different characteristics and performance levels. They are also available in different tolerances and stability levels, depending on the application and the required performance