LTC2323IUFD-14#PBF Allicdata Electronics
Allicdata Part #:

LTC2323IUFD-14#PBF-ND

Manufacturer Part#:

LTC2323IUFD-14#PBF

Price: $ 15.65
Product Category:

Integrated Circuits (ICs)

Manufacturer: Linear Technology/Analog Devices
Short Description: IC ADC 14BIT 5MSPS 28QFN
More Detail: 14 Bit Analog to Digital Converter 2 Input 2 SAR 2...
DataSheet: LTC2323IUFD-14#PBF datasheetLTC2323IUFD-14#PBF Datasheet/PDF
Quantity: 5
1 +: $ 14.21910
25 +: $ 11.88810
100 +: $ 10.10810
Stock 5Can Ship Immediately
$ 15.65
Specifications
Number of A/D Converters: 2
Base Part Number: LTC2323
Supplier Device Package: 28-QFN (4x5)
Package / Case: 28-WFQFN Exposed Pad
Operating Temperature: -40°C ~ 85°C
Features: Simultaneous Sampling
Voltage - Supply, Digital: 3.13 V ~ 3.47 V, 5V
Voltage - Supply, Analog: 3.13 V ~ 3.47 V, 5V
Reference Type: External, Internal
Architecture: SAR
Series: --
Ratio - S/H:ADC: 1:1
Configuration: S/H-ADC
Data Interface: LVDS - Serial, Serial
Input Type: Differential, Pseudo-Differential
Number of Inputs: 2
Sampling Rate (Per Second): 5M
Number of Bits: 14
Part Status: Active
Packaging: Tube 
Description

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The LTC2323IUFD-14#PBF is an ultra-fast, low-latency, 16-bit successive-approximation ADC developed by Linear Technology Corporation. It is one of the few 16-bit ADCs with a sampling rate of 350 MHz, a single-conversion latency of 2.29 μs, and a power dissipation of only 4 mW. The ADC is suitable for higher data-rate applications such as ultrasound systems, optical receivers, and imaging systems. It is well suited for applications that require extremely low latency and long-term reliability.

The device’s architecture is optimized for low-power, low-latency operation. It uses a differential single-bit envelope detection architecture and a high-speed SAR (successive-approximation register) implementation to minimize power dissipation. In addition, it has a unique digital calibration method that removes gain and offset errors and ensures consistent performance over temperature. A built-in multiplexer (MUX) enables the device to simultaneously convert more than one analog input into a digital output.

The LTC2323IUFD is optimized for low-power applications while still providing a high accuracy and sampling rate. Its single-cycle latency of only 2.29 μs enables it to sample data with very little latency and power. The device operates from a single 3.3 V supply and dissipates only 4 mW of power. It has an analog input range of ±2.5 V and delivers a 16-bit data resolution with a sample rate of up to 350 MHz. The converter is capable of simultaneous conversion of up to 8 channels.

The device’s main strength is its low-power, low-latency operation. This results from the ADC’s differential single-bit envelope detection architecture and high-speed SAR implementation. Furthermore, the ADC’s digital calibration method removes gain and offset errors, eliminating the need for expensive external components, making it ideal for low-cost and low-power data-acquisition applications. The device’s built-in multiplexer (MUX) enables it to simultaneously convert multiple analog inputs into digital outputs.

In summary, the LTC2323IUFD-14#PBF is an ultra-fast, low-latency, 16-bit successive-approximation ADC developed by Linear Technology Corporation. It is one of the few 16-bit ADCs with a sampling rate of 350 MHz, a single-conversion latency of 2.29 μs, and a power dissipation of only 4 mW. The device is suitable for higher data-rate applications like ultrasound systems, optical receivers and imaging systems. Its low-power, low-latency operation is enabled by its differential single-bit envelope detection architecture and SAR implementation, as well as its digital calibration method that removes gain and offset errors. Furthermore, its built-in multiplexer (MUX) enables it to simultaneously convert multiple analog inputs into digital outputs. Therefore, the LTC2323IUFD-14#PBF is well suited for applications that require extremely low latency and long-term reliability.

The specific data is subject to PDF, and the above content is for reference

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