Maxim Integrated's DS1010S-200 Silicon Delay Line
The DS1010S-200 is a versatile and precision silicon delay line product from Maxim Integrated, engineered to provide a reliable and programmable timing solution for a wide range of electronic applications. This high-quality component is designed to offer users a stable and predictable delay for clock signals, enabling synchronization and timing control in digital circuits.
Key Features:
- Programmable Delays: The DS1010S-200 offers five equally spaced delays ranging from 0 to 200ns, providing flexibility to match specific timing requirements.
- High Precision: With a precision of ±5ns or ±2% (whichever is greater), this delay line ensures accurate timing for critical applications.
- Temperature Stability: The delay variance is limited to a maximum of 0.35ns/°C over the full temperature range, ensuring consistent performance under varying conditions.
- Low Power Consumption: Operating with a 5V ±10% supply voltage, the DS1010S-200 is designed for energy efficiency, making it suitable for power-sensitive designs.
- Easy Integration: The device comes in a 14-pin SOIC package, which is compatible with standard surface-mount technology, facilitating easy integration into existing PCB designs.
Applications:
The DS1010S-200 is ideal for use in a variety of applications that require precise timing adjustments, including:
- Microprocessor systems
- Glitch elimination
- Pulse-width modulation
- Serial and parallel data distribution
- Communication systems
Technical Specifications:
| Parameter |
Value |
| Number of Taps |
5 |
| Delay Range |
0 to 200ns |
| Supply Voltage |
5V ±10% |
| Operating Temperature |
-40°C to +85°C |
| Package Type |
14-pin SOIC |
With the DS1010S-200, Maxim Integrated continues to demonstrate its commitment to providing high-quality timing solutions that meet the stringent requirements of modern electronic systems. Whether for design prototyping or mass production, the DS1010S-200 is a dependable choice for ensuring precise timing and synchronization.