Description
ADS5553IPFP Texas Instruments - Yeehing Electronics
Dual-Channel, 14-Bit, 65-MSPS Analog-to-Digital Converter (ADC)
Pricing (USD)
Quantity | Unit Price |
1 — 99 | 69.609 |
100 — 249 | 61.875 |
250 — 999 | 50.865 |
1,000 + | 31.85 |
The above prices are for reference only.
Specifications
Manufacturer | Texas Instruments |
Product Category | Analog to Digital Converters - ADC |
RoHS | Y |
Series | ADS5553 |
Mounting Style | SMD/SMT |
Package / Case | HTQFP-80 |
Resolution | 14 bit |
Number of Channels | 2 Channel |
Sampling Rate | 65 MS/s |
Input Type | Differential |
Interface Type | Parallel |
Architecture | Pipeline |
Reference Type | External, Internal |
Analog Supply Voltage | 3.3 V |
Digital Supply Voltage | 3 V to 3.6 V |
SNR - Signal to Noise Ratio | 74.4 dB |
Minimum Operating Temperature | - 40 C |
Maximum Operating Temperature | + 85 C |
Packaging | Tray |
Features | High Performance |
Height | 1 mm |
Length | 12 mm |
Number of Converters | 2 Converter |
Power Consumption | 725 mW |
Width | 12 mm |
Brand | Texas Instruments |
Development Kit | ADS5553EVM |
DNL - Differential Nonlinearity | +/- 0.6 LSB |
ENOB - Effective Number of Bits | 11.9 Bit |
INL - Integral Nonlinearity | +/- 4 LSB |
Moisture Sensitive | Yes |
Operating Supply Voltage | 3.3 V |
Pd - Power Dissipation | 820 mW |
Product Type | ADCs - Analog to Digital Converters |
SFDR - Spurious Free Dynamic Range | 84 dB |
SINAD - Signal to Noise and Distortion Ratio | 73.4 dB |
Factory Pack Quantity | 96 |
Subcategory | Data Converter ICs |
Unit Weight | 0.012984 oz |
For more information, please refer to datasheet
Documents
ADS5553IPFP Datasheet |
More Information
The ADS5553 is a high-performance, dual channel, 14 bit, 65 MSPS analog-to-digital converter (ADC). To provide a complete solution, each channel includes a high-bandwidth linear sample-and-hold stage (S& H) and an internal reference. Designed for applications demanding high dynamic performance in a small space, the ADS5553 has excellent power consumption of 0.9 W at 3.3 V single-supply voltage. This allows an even higher system integration density. The provided internal reference simplifies system design requirements, yet an external reference can be used optionally to suit the accuracy and low drift requirements of the application. The outputs are parallel CMOS compatible.