Texas Instruments_ADC10D1500CIUT

Texas Instruments
ADC10D1500CIUT  
Analog to Digital Converters

Texas Instruments
ADC10D1500CIUT
700-ADC10D1500CIUT
Ersa
Texas Instruments-ADC10D1500CIUT-datasheets-11406042.pdf
IC ADC 10BIT FOLD INTERP 292BGA
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ADC10D1500CIUT Description

ADC10D1500CIUT Description

The ADC10D1500CIUT from Texas Instruments is a high-performance 10-bit, dual-channel analog-to-digital converter (ADC) designed for demanding applications requiring ultra-high-speed signal acquisition. With a staggering 1.5 GSPS (Giga Samples Per Second) sampling rate per channel, this ADC leverages a folding interpolating architecture to deliver exceptional dynamic performance while minimizing power consumption. It operates with differential inputs and supports simultaneous sampling of two channels, making it ideal for phase-coherent systems. The device features internal reference generation and operates from 1.8V to 2V analog/digital supplies, ensuring compatibility with low-power designs. Packaged in a 292-ball BGA, it is suited for surface-mount applications in high-frequency environments.

ADC10D1500CIUT Features

  • Dual 10-bit ADCs with 1.5 GSPS per channel for high-speed data conversion.
  • Simultaneous sampling capability for precise multi-channel signal acquisition.
  • Folding interpolating architecture optimizes speed and power efficiency.
  • Differential inputs enhance noise immunity and signal integrity.
  • Internal reference simplifies system design by eliminating external components.
  • Low-voltage operation (1.8V–2V) reduces power consumption.
  • RoHS3 compliant and REACH unaffected, meeting environmental standards.
  • MSL 3 (168 hours) moisture sensitivity ensures reliability in storage and assembly.

ADC10D1500CIUT Applications

The ADC10D1500CIUT excels in applications requiring ultra-high-speed digitization with low latency and high accuracy, such as:

  • Radar and electronic warfare systems for real-time signal processing.
  • High-speed data acquisition in test and measurement equipment.
  • Medical imaging (e.g., ultrasound) where simultaneous multi-channel sampling is critical.
  • Communications infrastructure (5G, satellite, and broadband systems) for RF signal digitization.
  • Scientific instrumentation requiring precise time-domain analysis.

Conclusion of ADC10D1500CIUT

The ADC10D1500CIUT stands out as a high-speed, low-power, dual-channel ADC with exceptional performance for mission-critical applications. Its simultaneous sampling, folding interpolating architecture, and robust packaging make it a superior choice over conventional ADCs in high-frequency systems. Engineers designing radar, communications, or medical imaging systems will benefit from its speed, accuracy, and integration advantages, ensuring reliable operation in the most demanding environments.

Tech Specifications

Configuration
Data Interface
PPAP
Voltage - Supply, Analog
Product Status
Automotive
Supplier Package
Package / Case
Signal to Noise Ratio
REACH Status
Number of Inputs
Number of Bits
EU RoHS
Sampling Rate (Per Second)
Moisture Sensitivity Level (MSL)
Operating Temperature
Full Scale Error
Architecture
Converter Type
Digital Interface Type
ECCN
Input Voltage
Supplier Temperature Grade
Mounting Type
Standard Package Name
No Missing Codes (bit)
Reference Type
Pin Count
Mounting
Number of Input Channels
Input Signal Type
Typical Power Dissipation (mW)
Lead Shape
SVHC
HTSUS
Package
Resolution
Number of A/D Converters
PCB changed
HTS
ECCN (US)
Maximum Power Dissipation (mW)
Voltage Supply Source
Supplier Device Package
Single-Ended Input
Minimum Operating Temperature (°C)
Maximum Operating Temperature (°C)
Process Technology
Ratio - S/H:ADC
Package Height
Mfr
Sampling Rate
Integral Nonlinearity Error
Features
RoHS Status
Input Type
Voltage - Supply, Digital
Number of ADCs
Sample and Hold
SVHC Exceeds Threshold
Package Length
Series
Part Status
Package Width
Voltage Reference
Base Product Number
Number of ADC Inputs
SFDR - Spurious Free Dynamic Range
Output Type
Analog Supply Voltage
RoHS
Supply Voltage - Min
Number of Channels
Gain Error
Height
Maximum Operating Temperature
INL - Integral Nonlinearity
Supply Voltage - Max
Width
Interface Type
Mounting Style
DNL - Differential Nonlinearity
SINAD - Signal to Noise and Distortion Ratio
Minimum Operating Temperature
Digital Supply Voltage
Type
Number of Converters
Moisture Sensitive
Length
Operating Supply Voltage
ENOB - Effective Number of Bits
SNR - Signal to Noise Ratio
Power Consumption
Pd - Power Dissipation
USHTS

ADC10D1500CIUT Documents

Download datasheets and manufacturer documentation for ADC10D1500CIUT

Ersa ADC10D1000,1500 Datasheet      
Ersa ADC10D1000,1500 Datasheet      

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