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Delay Lines & Timing Circuits

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CY23S05SXC-1HT
Infineon Technologies
3V 3.6V SOP
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CY23EP09SXI-1HT
Infineon Technologies
2.3V 3.6V SOP
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CY2308SXC-1T
Infineon Technologies
3V 3.6V SOP
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CY2308SXI-3T
Infineon Technologies
3V 3.6V SOP
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CY2309SXI-1T
Infineon Technologies
3V 3.6V SOP
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CY23S05SXI-1T
Infineon Technologies
3V 3.6V SOP
Quantity: 0
Ship Date: 7-12 working days
2500+ $10.5486
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Ext. Price: $26371.50
MOQ: 2500
Mult: 2500
SPQ: 1

Delay Lines & Timing Circuits

Delay Lines are electronic components that introduce a time delay in the transmission of signals. They are crucial in various applications where signal synchronization, timing control, and signal processing are required.

Definition:
A delay line is a device that stores and then releases a signal after a predetermined time interval. It operates by converting an electrical signal into another form that can be delayed, such as an acoustic wave in a medium or an optical pulse in a fiber.

Function:
1. Signal Synchronization: Delay lines are used to align signals from different sources or to compensate for propagation delays in distributed systems.
2. Echo Cancellation: They mimic the time delay of an echo to cancel it out in telecommunication systems.
3. Pulse Shaping: In digital communication, delay lines can be used to shape the pulse response of a system, improving signal integrity.
4. Phase Shifting: They can introduce a controlled phase shift in signals, which is useful in phased array antennas and signal processing.

Applications:
1. Telecommunications: For signal processing and timing in telephone exchanges and communication systems.
2. Audio Processing: In music production and sound design to create echoes and delays.
3. and Radar Systems: To synchronize radar pulses and process signals for target tracking.
4. Instrumentation: In test and measurement equipment for signal timing and control.

Selection Criteria:
1. Delay Range: The required time delay that the delay line must provide.
2. Frequency Response: The ability of the delay line to maintain signal integrity across a range of frequencies.
3. Resolution: The minimum time increment that the delay line can accurately represent.
4. Insertion Loss: The reduction in signal strength as it passes through the delay line.
5. Stability: The consistency of the delay over time and under varying conditions.
6. Size and Power Consumption: For practical implementation, especially in portable or space-constrained applications.
7. Cost: The budgetary constraints often influence the choice of delay line technology.

In summary, delay lines are versatile components that play a significant role in ensuring the proper timing and synchronization of signals in a wide array of electronic systems. The choice of a delay line is influenced by the specific requirements of the application, including the desired delay, frequency response, and environmental conditions.
Please refer to the product rule book for details.