CMG632 Series, Crystals

Results:
144
Manufacturer
Series
Frequency
Load Capacitance
ESR (Equivalent Series Resistance)
Frequency Stability
Frequency Tolerance
Type
Operating Temperature
Height - Seated (Max)
Mounting Type
Size / Dimension
Ratings
Package / Case
Operating Mode
Results remaining144
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CMG632
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ImageProduct DetailPriceAvailabilityECAD ModelMounting TypeOperating TemperatureRatingsPackage / CaseHeight - Seated (Max)Frequency StabilityTypeFrequencySize / DimensionSeriesFrequency ToleranceLoad CapacitanceESR (Equivalent Series Resistance)Operating Mode
XP13M56000S418
CRYSTAL 13.56MHZ 30ppm, 18pF 2 P
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±50ppm
MHz Crystal
13.56 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
18pF
70 Ohms
Fundamental
XP12M00000S418
CRYSTAL 12MHZ 20ppm, 18pF 2 Pads
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
12 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±20ppm
18pF
50 Ohms
Fundamental
XP13M56000S410
CRYSTAL 13.56MHZ 30ppm, 10pF 2 P
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±50ppm
MHz Crystal
13.56 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
10pF
70 Ohms
Fundamental
XP12M000S32418
12MHz 30ppm 18pF Glass Seal, 2 P
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±20ppm
-
12 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
18pF
-
Fundamental
XP30M00000S416
CRYSTAL 30MHZ 30ppm, 16pF 2 Pads
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
30 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
16pF
50 Ohms
Fundamental
XP12M28800S420
CRYSTAL 12.288MHZ 30ppm, 20pF 2
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
12.288 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
20pF
70 Ohms
Fundamental
XP20M00000S412
CRYSTAL 20MHZ 30ppm, 12pF 2 Pads
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
20 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
12pF
70 Ohms
Fundamental
XP19M66080S410
CRYSTAL 19.6608MHZ 30ppm, 10pF 2
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
19.6608 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
10pF
70 Ohms
Fundamental
XP19M66080S418
CRYSTAL 19.6608MHZ 30ppm, 18pF 2
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
19.6608 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
18pF
70 Ohms
Fundamental
XP32M00000S408
CRYSTAL 32MHZ 30ppm,8pF 2 Pads.
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
32 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
8pF
50 Ohms
Fundamental
XP10M00000S408
CRYSTAL 10MHZ 30ppm, 8pF 2 Pads.
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
10 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
8pF
70 Ohms
Fundamental
XP30M00000S408
CRYSTAL 30MHZ 30ppm, 8pF 2 Pads.
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
30 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
8pF
50 Ohms
Fundamental
XP13M56000S420
CRYSTAL 13.56MHZ 30ppm,20pF 2 Pa
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
13.56 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
20pF
70 Ohms
Fundamental
XP12M28800S412
CRYSTAL 12.288MHZ 30ppm, 12pF 2
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
12.288 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
12pF
70 Ohms
Fundamental
XP40M00000S416
CRYSTAL 40MHZ 30ppm, 16pF 2 Pads
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
40 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
16pF
50 Ohms
Fundamental
XP48M00000S418
CRYSTAL 48MHZ 30ppm, 18pF 2 Pads
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
48 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
18pF
50 Ohms
Fundamental
XP28M63636S410
CRYSTAL 28.63636MHZ 30ppm, 10pF
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
28.63636 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
10pF
50 Ohms
Fundamental
XP27M00000S416
CRYSTAL 27MHZ 30ppm, 16pF 2 Pads
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
27 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
16pF
50 Ohms
Fundamental
XP24M57600S408
CRYSTAL 24.576MHZ 30ppm, 8pF 2 P
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
24.576 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
8pF
50 Ohms
Fundamental
XP8M192000S412
CRYSTAL 8.192MHZ 30ppm, 12pF 2 P
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-40°C ~ 85°C
-
2-SMD, No Lead
0.047" (1.20mm)
±30ppm
MHz Crystal
8.192 MHz
0.236" L x 0.138" W (6.00mm x 3.50mm)
CMG632
±30ppm
12pF
80 Ohms
Fundamental

About  Crystals

Crystal products are passive components commonly used as time or frequency references in electronic systems. They consist of a piezoelectric crystal, typically made of quartz, that exhibits the property of mechanical vibration when subjected to an applied electric field. This mechanical vibration occurs at a specific frequency, known as the resonant frequency, which is determined by the size, shape, and material properties of the crystal. To utilize a crystal as a frequency reference, an external oscillator circuit is required. This circuit provides the necessary electrical excitation to the crystal, allowing it to vibrate at its resonant frequency. The oscillator circuit is carefully designed to match the characteristics of the crystal, including its capacitance, drive voltage, and series resistance. The capacitance in the oscillator circuit is adjusted to resonate with the crystal's inherent capacitance, forming a parallel resonance circuit that allows maximum energy transfer between the crystal and the circuit. The drive voltage, which is applied across the crystal, must be within a specified range to ensure proper operation and avoid damaging the crystal element. The series resistance is carefully chosen to control the damping of the crystal's vibrations, optimizing its stability and frequency accuracy. By providing a stable and precise oscillation at the resonant frequency of the crystal, the external oscillator circuit allows the crystal to function as a reliable frequency reference. This reference signal can be used for various purposes, such as clock synchronization, frequency generation, and timing applications in digital systems, communication devices, and scientific instruments. It's worth noting that while crystal products are passive components, there are also active devices called crystal oscillators. These oscillators integrate the necessary oscillator circuitry, including amplifiers and feedback elements, into a single package. Crystal oscillators offer the convenience of a complete and self-contained solution, simplifying the design and implementation process for frequency reference applications. In summary, crystal products serve as passive components that rely on an external oscillator circuit to generate a stable and precise frequency reference. Their careful design and integration into electronic systems ensure accurate timing and reliable operation in a wide range of applications.