ADS5553IPFP


YeeHing #: Y004-ADS5553IPFP
Inventory: 2600

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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.

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