Product Description
Specification
| Architecture | Multiplying DAC |
| Mounting Type | Through Hole |
| Voltage Supply Digital | 9 V ~ 36 V |
| Voltage Supply Analog | +-4.5 V ~ 18 V |
| Supplier Device Package | 16-PDIP |
| Settling Time | 150us |
| Reference Type | External |
| Part Status | Obsolete |
| Packaging | Tube |
| Package Case | 16-DIP (0.300", 7.62mm) |
| Output Type | Current - Unbuffered |
| Operating Temperature | -40 deg C ~ 85 deg C |
| Number of DA Converters | 1 |
| Number of Bits | 8 |
| Differential Output | Yes |
| Data Interface | Parallel |
| Base Part Number | DAC08 |
High-Precision and Speed PerformanceThe DAC08CP stands out with its fast 85 ns settling time and high accuracy, making it suitable for rigorous signal processing environments. Its 8-bit resolution and 0.19% linearity error provide precise control for both professional audio and industrial data acquisition needs. The converters monolithic design ensures consistent and reliable operation, even under demanding workloads.
Versatile Connectivity and ConfigurationFeaturing a parallel 8-bit digital interface and binary weighted input coding, the DAC08CP is compatible with a wide range of microcontrollers and digital systems. Its flexible power supply options, supporting both single and dual configurations from 5V to 18V, further extend its versatility. The standard 16-pin DIP package simplifies integration into various through-hole-mounted circuit boards.
Robust and Reliable ConstructionBuilt to withstand standard ESD levels according to JEDEC guidelines, the DAC08CPs sturdy black plastic housing provides durability and thermal stability. RoHS compliance ensures environmentally responsible design while making it suitable for global applications. Its compact and lightweight constructionapproximately 2grenders it ideal for high-density electronic systems.
FAQs of DAC08CP:
Q: How is the DAC08CP typically used in electronic systems?
A: The DAC08CP is used for converting 8-bit digital signals into precise current outputs, commonly applied in digital signal processing, data acquisition systems, and high-fidelity audio applications. Its fast settling time and high accuracy make it ideal for systems requiring reliable digital-to-analog conversion.
Q: What process ensures the DAC08CP provides high accuracy?
A: The DAC08CPs accuracy arises from its monolithic architecture, which minimizes internal mismatches, and its low linearity error of 0.19% of full scale. Binary weighted input coding helps achieve precise digital-to-analog conversion, suitable for critical signal processing tasks.
Q: When should a designer choose the DAC08CP over other DAC types?
A: Designers should select the DAC08CP when high-speed operation, low power requirements, and high linearity are crucial. Its 85 ns settling time, wide supply voltage range, and current output capability make it superior for applications demanding fast, accurate DAC performance.
Q: Where can the DAC08CP be mounted, and what package does it use?
A: The DAC08CP is designed for through-hole mounting and comes in a standard 16-pin DIP package. This form factor is widely compatible with most circuit boards, enabling easy installation for prototyping, manufacturing, or repairs.
Q: What benefits does the standard JEDEC ESD protection offer in the DAC08CP?
A: Standard JEDEC ESD protection ensures the DAC08CP is protected against static discharge events during handling or assembly, increasing the reliability and longevity of the device when deployed in electronic systems.
Q: How does the DAC08CPs power supply versatility support different applications?
A: The DAC08CP accepts both dual and single power supply configurations from 5V up to 18V, providing flexibility for use in various system designs and ensuring proper operation in both legacy and modern electronic equipment.
Q: What interface and logic levels are supported by the DAC08CP?
A: The DAC08CP features an 8-bit parallel interface and supports both TTL and CMOS logic levels, making it compatible with a wide array of digital control circuits in data and audio processing applications.