ADSD-1410S Functionally complete 10MSPS dual sampling a/d converter delivers class leading performance in high-speed data acquisition systems
High-Speed Dual 14-Bit, 10MSPS Sampling A/D Converter
- July 11, 2006
- 14-bit resolution; 10MSPS sampling rate
- Functionally complete; ±2.5V input range
- No missing codes over full temperature range
- Edge-triggered
- ±5V supplies, 1.6 Watts
- 76dB SNR, -83dB THD
- Ideal for both time and frequency domain applications


DATEL has introduced a new fully integrated, dual sampling 10MSPS (mega sample per second), 14-bit resolution analog-to-digital-converter (A/D Converter). The ADSD-1410S complements DATEL 2MSPS A/D Converter, the ADSD-1402S.
The functionally complete ADSD-1410S is ideally suited for use in high-speed data acquisition systems that demand low-noise and high performance. Typical applications include medical instruments, radar I/Q, Digital Signal Processors, plus other instrumentation and ATE for both commercial and military applications.
Housed in a standard 40-pin triple-wide SMT DIP, the ADSD-1410S is available in two versions. The standard product is rated for use between ambient temperatures of 0ºC and +70ºC, while the ADSD-1410S-EX is suitable for use between -55ºC and +125ºC. The module delivers 'no-missing-code' performance across its full operating temperature range.
Ideal for both time and frequency domain applications, the ADSD-1410S has an input range of ±2.5V and boasts a comprehensive list of standard features. Included are two fast-settling sample/hold amplifiers, two 14-bit A/D Converters, multiplexed output buffers, a precision reference, edge triggering, and all the necessary timing and control logic to operate from either two, or a single-start convert pulse.
The modules provide a range pin function that allows easy changes to be made to the analog input range. The digital output power supply of the ADSD-1410S is capable of directly driving either 5V or 3V logic systems.
The class leading specification of the ADSD-1410S includes a signal-to-noise ratio of 76dB and total harmonic distortion of -83dB, as well as superior integral non-linearity and differential non-linearity performance.
The modules, which require only a ±5V supply and typically consume just 1.6W, are optimized for wideband frequency domain applications and are fully FFT tested.
