Monolithic Crystals

Results:
224
Manufacturer
Series
Bandwidth
Impedance
Operating Temperature
Insertion Loss
Frequency - Center
Height (Max)
Package / Case
Size / Dimension
Ripple
Mounting Type
Number of Poles
Results remaining224
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ImageProduct DetailPriceAvailabilityECAD ModelSeriesMounting TypePackage / CaseOperating TemperatureNumber of PolesInsertion LossRippleImpedance
AM70CR292
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Chassis Mount
Module
-40°C ~ 85°C
-
20dB
-
-
AM70CR359
70 MHZ CRYSTAL BAND PASS FILTER
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Chassis Mount
Module, SMA Connectors
-30°C ~ 60°C
-
5dB
1dB
50 Ohms
AM36CR308
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Chassis Mount
Module, SMA Connectors
-
-
4dB
1dB
50 Ohms
AM89.2CR137
FM BAND PASS CRYSTAL FILTER
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Chassis Mount
Module, SMA Connectors
0°C ~ 70°C
-
3dB
1dB
50 Ohms
AM48CR356
48.26 MHZ CRYSTAL BAND PASS FILT
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Chassis Mount
Module
-30°C ~ 75°C
-
3dB
1dB
50 Ohms
AM120CR255
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
4-DIP Module
-40°C ~ 85°C
-
9dB
1dB
50 Ohms
AM864CR144
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
4-DIP Module
0°C ~ 70°C
-
7dB
1dB
1 kOhms
AM1.70CR297
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Chassis Mount
BNC In-Line Module
15°C ~ 40°C
-
10dB
0.5dB
50 Ohms
AM060CR150
60MHZ BAND PASS CRYSTAL FILTER
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Chassis Mount
Module, SMA Connectors
-
-
5dB
1.5dB
50 Ohms
AE70CN808
70 MHZ CRYSTAL NOTCH FILTER
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Chassis Mount
Module, SMA Connectors
-
-
-
-
-
AM10CR220
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Chassis Mount
BNC In-Line Module
-40°C ~ 85°C
-
1dB
-
50 Ohms
AM70CR169
70 MHZ BAND PASS CRYSTAL FILTER
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
4-DIP Module
-35°C ~ 65°C
-
6dB
1dB
50 Ohms
AM45.96CR205
45.96 MHZ CRYSTAL FILTER
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Chassis Mount
Module
-
-
4dB
0.5dB
50 Ohms
AM155CR151
155.52 MHZ CRYSTAL BAND PASS FIL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Chassis Mount
Module, SMA Connectors
-
-
7dB
-
-
AM455CR152
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
4-DIP Module
-20°C ~ 60°C
-
7dB
-
-
AM44CR289
44 MHZ CRYSTAL BAND PASS FILTER
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Chassis Mount
Module
-10°C ~ 70°C
-
10dB
-
-
AM1044CR237
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
4-DIP Module
0°C ~ 70°C
-
7dB
-
50 Ohms
AM70CR189
70 MHZ BAND PASS CRYSTAL FILTER
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
4-DIP Module
-
-
4dB
0.2dB
50 Ohms
AM3.10CR295
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Chassis Mount
BNC In-Line Module
15°C ~ 40°C
-
10dB
0.5dB
50 Ohms
AM165.5375CR340
165.5375 MHZ CRYSTAL BAND PASS F
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Chassis Mount
0°C ~ 50°C
-
8dB
2dB
50 Ohms

Monolithic Crystals

Monolithic crystal filter (MCF) products play a crucial role in radio and related applications by serving as bandpass filters. These filters are closely related to quartz crystal resonators, which are commonly used for frequency generation. MCF filters leverage the piezoelectric and mechanical resonance properties of quartz material to achieve exceptional selectivity while maintaining a compact form factor. The fundamental principle behind MCF filters lies in the unique properties of quartz crystals. Quartz exhibits piezoelectricity, meaning it can generate an electric charge when subjected to mechanical stress or vibration. Furthermore, quartz crystals have inherent mechanical resonance frequencies that depend on their size and shape. To construct an MCF, a quartz crystal is cut and shaped into a specific geometry that allows it to vibrate at a desired resonant frequency. The crystal is then placed within an electrical circuit to create a bandpass filter. As an input signal passes through the MCF, only frequencies within a narrow range, centered around the crystal's resonant frequency, are allowed to pass through while attenuating signals outside this range. The design of MCF filters enables them to achieve extremely high selectivity, effectively isolating the desired frequency band from unwanted interference or noise. This exceptional selectivity is essential in applications where precise frequency control and signal purity are critical, such as in radio receivers, transceivers, and communication systems. One significant advantage of MCF filters is their compact package. By exploiting the properties of quartz crystals, these filters can be built in small form factors, making them suitable for integration into space-constrained devices and circuits. In summary, MCF filters are vital components used in radio and related applications as bandpass filters. By capitalizing on the piezoelectric and mechanical resonance properties of quartz material, these filters provide excellent selectivity in a compact package. Their ability to isolate specific frequency bands makes them indispensable for achieving accurate frequency control and maintaining signal purity in various electronic systems.