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Analog-to-Digital Converters (ADC)

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ADC1213D125HN/C1,1
NXP Semiconductors
2.85V~3.4V 69.6dB 125Msps 12bit 12 JESD204A Differential,Single-Ended 1.65V~1.95V Pipelined QFN SMD mount 8mm*8mm*830μm
Quantity: 41
Ship Date: 15-19 working days
12+
1+ $34.2568
25+ $32.8643
50+ $31.4717
100+ $30.9147
300+ $30.6362
500+ $30.3577
1000+ $29.5221
5000+ $29.5221
- +
x $34.2568
Ext. Price: $137.02
MOQ: 4
Mult: 1
SPQ: 1
TDA8763M/4/C4,112
NXP Semiconductors
5V 58dB 40Msps 10bit 1 10 Parallel Single-Ended 5V Sigma-Delta SSOP-28 SMD mount 10.4mm*5.4mm*1.8mm
Quantity: 616
Ship Date: 15-19 working days
08+
1+ $14.7993
25+ $14.1977
50+ $13.5961
100+ $13.3554
300+ $13.2351
500+ $13.1148
1000+ $12.7538
5000+ $12.7538
- +
x $14.7993
Ext. Price: $133.19
MOQ: 9
Mult: 1
SPQ: 1
ADC1010S080HN/C1,5
NXP Semiconductors
2.85V~3.4V 61.7dB 80Msps 10bit 1 10 LVDS,Parallel Differential,Single-Ended 1.65V~3.6V Pipelined QFN SMD mount 950μm(height)
Quantity: 374
Ship Date: 15-19 working days
10+
1+ $8.6885
25+ $8.3353
50+ $7.9821
100+ $7.8409
300+ $7.7702
500+ $7.6996
1000+ $7.4877
5000+ $7.4877
- +
x $8.6885
Ext. Price: $130.32
MOQ: 15
Mult: 1
SPQ: 1
TDA8766G/C1,118
NXP Semiconductors
3V~5.25V 60dB 20Msps 10bit 1 10 Parallel Single-Ended 3V~5.25V Sigma-Delta LQFP-32 SMD mount 5mm*5mm*1.4mm
Quantity: 1874
Ship Date: 15-19 working days
08+
1+ $14.7993
25+ $14.1977
50+ $13.5961
100+ $13.3554
300+ $13.2351
500+ $13.1148
1000+ $12.7538
5000+ $12.7538
- +
x $14.7993
Ext. Price: $133.19
MOQ: 9
Mult: 1
SPQ: 1
ADC1412D105HN/C1,5
NXP Semiconductors
2.85V~3.4V 105Msps 14 LVDS,Parallel Differential,Single-Ended 1.65V~3.6V Pipelined SMD mount
Quantity: 1
Ship Date: 15-19 working days
11+
1+ $31.5482
25+ $30.2657
50+ $28.9833
100+ $28.4703
300+ $28.2138
500+ $27.9573
1000+ $27.1879
5000+ $27.1879
- +
x $31.5482
Ext. Price: $126.19
MOQ: 4
Mult: 1
SPQ: 1
MC144110DWR2
NXP Semiconductors
4.5V~15V 6 SPI 4.5V~15V R-2R SOIC-20 SMD mount,glue mount
Quantity: 0
Ship Date: 7-12 working days
1000+ $2.7754
2000+ $2.7126
3000+ $2.6812
- +
x $2.7754
Ext. Price: $2775.40
MOQ: 1000
Mult: 1000
SPQ: 1
ADC1015S065HNC1:5
NXP Semiconductors
2.85V~3.4V,5V 65Msps 10 LVDS,Parallel Differential,Single-Ended 1.65V~3.6V Pipelined SMD mount,glue mount
Quantity: 0
Ship Date: 7-12 working days
4000+ $7.1719
- +
x $7.1719
Ext. Price: $28687.60
MOQ: 4000
Mult: 4000
SPQ: 1
TDA8444P/N4,112
NXP Semiconductors
4.5V~13.2V 6bit 6 I²C 4.5V~13.2V Current Steering DIP-16 Through hole mounting 3.7mm(height)
Quantity: 0
Ship Date: 7-12 working days
- +
x $
Ext. Price:
MOQ: 1
Mult: 1
MC144111DWR2
NXP Semiconductors
4.5V~15V 6 SPI 4.5V~15V R-2R SOIC-16 SMD mount,glue mount
Quantity: 0
Ship Date: 7-12 working days
1000+ $2.7324
2000+ $2.6705
3000+ $2.6395
- +
x $2.7324
Ext. Price: $2732.40
MOQ: 1000
Mult: 1000
SPQ: 1

Analog-to-Digital Converters (ADC)

ADCs (Analog-to-Digital Converters)

Definition:
An Analog-to-Digital Converter (ADC) is an electronic component that converts continuous signals from the real world (analog signals) into discrete digital values that can be processed by digital systems, such as microcontrollers or computers.

Function:
The primary function of an ADC is signal conversion. It samples an analog signal at regular intervals and quantizes it to a digital value, which is typically represented in binary form. This digital value can then be used for further processing, storage, or transmission.

Applications:
1. Data Acquisition: In systems that monitor physical phenomena, such as temperature, pressure, or sound, ADCs are used to digitize sensor outputs for analysis.
2. Audio Processing: ADCs are crucial in digital audio systems for converting analog audio signals into digital formats for processing, storage, or transmission.
3. Image Processing: In digital cameras, ADCs convert the analog signals from the image sensor into digital images that can be stored or displayed.
4. Medical Equipment: Medical devices often use ADCs to digitize signals from patient monitors for analysis and diagnosis.
5. Industrial Control: In automation and control systems, ADCs are used to interface with analog sensors and actuators.

Selection Criteria:
1. Resolution: The number of bits the ADC can output, which determines the precision of the digital representation.
2. Sample Rate: The speed at which the ADC can convert analog signals, measured in samples per second or Hertz (Hz).
3. Input Range: The voltage range that the ADC can accept, which must match the output of the analog source.
4. Linearity: How accurately the ADC represents the input signal across its full range.
5. Noise Performance: The level of noise introduced by the ADC, which affects the signal-to-noise ratio.
6. Power Consumption: Important for battery-operated devices or systems where energy efficiency is critical.
7. Cost: The budget for the project can influence the choice of ADC, as higher performance often comes with a higher price tag.
8. Interface: The type of digital interface the ADC uses, such as SPI, I2C, or parallel, which must be compatible with the system's architecture.

When selecting an ADC, it's essential to consider the specific requirements of the application to ensure the chosen component meets the necessary performance criteria.
Please refer to the product rule book for details.