ADS9120IRGER

Texas Instruments
595-ADS9120IRGER
ADS9120IRGER

Mfr.:

Description:
Analog to Digital Converters - ADC 16-Bit 2.5-MSPS 1- C h SAR ADC with Enha A 595-ADS9120IRGET

ECAD Model:
Download the free Library Loader to convert this file for your ECAD Tool. Learn more about the ECAD Model.

Availability

Stock:
Non-Stocked
Factory Lead Time:
12 Weeks Estimated factory production time.
Minimum: 3000   Multiples: 3000
Unit Price:
-,-- €
Ext. Price:
-,-- €
Est. Tariff:
This Product Ships FREE

Pricing (EUR)

Qty. Unit Price
Ext. Price
Full Reel (Order in multiples of 3000)
11,40 € 34.200,00 €
6.000 Quote

Alternative Packaging

Mfr. Part No.:
Packaging:
Reel, Cut Tape, MouseReel
Availability:
In Stock
Price:
21,62 €
Min:
1

Similar Product

Texas Instruments ADS9120IRGET
Texas Instruments
Analog to Digital Converters - ADC 16-Bit 2.5-MSPS 1- C h SAR ADC with Enha A 595-ADS9120IRGER

Product Attribute Attribute Value Select Attribute
Texas Instruments
Product Category: Analog to Digital Converters - ADC
RoHS:  
ADS9120
SMD/SMT
VQFN-24
1.65 V to 1.95 V
- 40 C
+ 125 C
Reel
Brand: Texas Instruments
Features: Daisy-Chainable, Oscillator
Moisture Sensitive: Yes
Power Consumption: 15 mW
Product Type: ADCs - Analog to Digital Converters
SINAD - Signal to Noise and Distortion Ratio: 96 dB
Factory Pack Quantity: 3000
Subcategory: Data Converter ICs
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Attributes selected: 0

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CNHTS:
8542390000
CAHTS:
8542390000
USHTS:
8542390030
MXHTS:
8542399901
ECCN:
EAR99

ADS9120 16-Bit 2.5MSPS SAR ADC

Texas Instruments ADS9120 16-Bit 2.5MSPS SAR Analogue-to-Digital Converter (ADC) comes with ±0.25LSB INL and 96dB SNR specifications under typical operating conditions. The high throughput enables developers to oversample the input signal to improve the dynamic range and accuracy of the measurement. The device supports unipolar, fully differential analogue input signals. It also operates with a 2.5V to 5V external reference, offering a wide selection of input ranges without additional input scaling. This device consumes only 15.5mW of power when operating at the full 2.5MSPS throughput. The power consumption at lower throughputs can be reduced by using the flexible low-power modes (NAP and PD).
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