The DS1023-100 is a high-performance programmable delay line manufactured by Maxim Integrated, designed to offer precise timing adjustments in digital circuits. This versatile component is essential for engineers and designers who require accurate timing solutions in their applications, such as signal synchronization, pulse-width modulation, and time-delay generation.
Key Features
- Programmable Delay Times: The DS1023-100 provides a wide range of delay times, which can be programmed with high precision, allowing for fine-tuning of timing signals to meet specific requirements.
- High Resolution: With a resolution of 5ns per step, the device ensures that even the smallest timing adjustments can be made, delivering unparalleled accuracy in delay settings.
- Three Separate Delay Lines: It contains three separate delay lines, each programmable to 100ns, facilitating complex timing schemes within a single chip.
- Easy Integration: The DS1023-100 comes in a compact 16-pin DIP or SO package, making it easy to integrate into a wide range of electronic systems without taking up significant board space.
- Voltage Range: It operates over a wide voltage range of 4.75V to 5.25V, providing flexibility in various power supply scenarios.
- Temperature Stability: The device is designed to perform consistently across a broad temperature range, ensuring reliable operation under varying environmental conditions.
Applications
The DS1023-100 is ideally suited for a variety of applications that require precise timing adjustments, including:
- Signal Processing
- Network Synchronization
- Telecommunications
- Digital Delay and Pulse Generation
- Waveform Shaping
- Time-Domain Reflectometry
Technical Specifications
| Parameter |
Value |
| Delay Range |
0 to 100ns |
| Resolution |
5ns per step |
| Supply Voltage |
4.75V to 5.25V |
| Operating Temperature |
-40°C to +85°C |
| Package Type |
16-pin DIP, SO |
For those looking to incorporate the DS1023-100 into their designs, Maxim Integrated provides detailed datasheets and technical support to ensure seamless implementation and optimal performance.