ADC12C170CISQ
- Mfr.Part #
- ADC12C170CISQ
- Manufacturer
- National Semiconductor
- Package / Case
- 48-WFQFN Exposed Pad
- Datasheet
- Download
- Description
- ADC, PROPRIETARY METHOD, 12-BIT,
- Stock
- 485
- In Stock :
- 485
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- Manufacturer :
- National Semiconductor
- Product Category :
- Analog to Digital Converters (ADC)
- Linearity Error-Max (EL) :
- 0.072%
- Reference Type :
- External, Internal
- Differential Nonlinearity :
- 1.3 LSB
- Polarity :
- Unipolar
- Operating Supply Voltage :
- 3.3V
- Terminal Pitch :
- 0.5mm
- Termination :
- SMD/SMT
- Package / Case :
- 48-WFQFN Exposed Pad
- Sample and Hold / Track and Hold :
- SAMPLE
- Lifecycle Status :
- ACTIVE (Last Updated: 3 days ago)
- Converter Type :
- ADC, PROPRIETARY METHOD
- Nominal Supply Current :
- 207mA
- Supply Type :
- Analog, Digital
- Number of Terminations :
- 48
- Contact Plating :
- Tin
- Lead Free :
- Lead Free
- Peak Reflow Temperature (Cel) :
- 260
- Factory Lead Time :
- 6 Weeks
- Mount :
- Surface Mount
- Voltage - Supply, Analog :
- 3V~3.6V
- JESD-609 Code :
- e3
- Number of Analog In Channels :
- 1
- Architecture :
- Pipelined
- Conversion Rate :
- 170 Msps
- Terminal Position :
- QUAD
- Number of Bits :
- 12
- RoHS Status :
- ROHS3 Compliant
- Input Type :
- Differential
- Sampling Rate :
- 170 Msps
- Number of Functions :
- 1
- Mounting Type :
- Surface Mount
- Configuration :
- S/H-ADC
- Data Interface :
- Parallel
- Resolution :
- 1.5 B
- Min Supply Voltage :
- 3V
- Base Part Number :
- ADC12C170
- Pin Count :
- 48
- Height :
- 800μm
- Number of Channels :
- 1
- Packaging :
- Tape and Reel (TR)
- Integral Nonlinearity (INL) :
- -3.29 LSB
- Length :
- 7mm
- Analog Input Voltage-Max :
- 2.6V
- Max Power Dissipation :
- 5.2W
- Width :
- 7mm
- Thickness :
- 750μm
- Supply Voltage :
- 3.3V
- Power Consumption :
- 715mW
- Radiation Hardening :
- No
- Sampling Rate (Per Second) :
- 170M
- Voltage - Supply, Digital :
- 1.6V~3.6V
- Signal to Noise Ratio (SNR) :
- 67.5 dB
- Moisture Sensitivity Level (MSL) :
- 3 (168 Hours)
- Operating Temperature :
- -40°C~85°C
- Number of Pins :
- 48
- Analog Input Voltage-Min :
- -2V
- REACH SVHC :
- No SVHC
- Power Dissipation :
- 5.2W
- Pbfree Code :
- yes
- Output Bit Code :
- OFFSET BINARY, 2'S COMPLEMENT BINARY
- Ratio - S/H:ADC :
- 1:1
- Max Supply Voltage :
- 3.6V
- Datasheets
- ADC12C170CISQ

Analog to Digital Converters (ADC) National Semiconductor ADC12C170CISQ Overview
Introducing the ADC12C170CISQ by National Semiconductor, a high-performance Analog to Digital Converter (ADC) that harnesses a proprietary conversion method to deliver precision 12-bit resolution. This product stands out in the ADC market for its advanced design, tailored specifically for applications that require high-speed data acquisition and precise signal conversion. The ADC12C170CISQ integrates seamlessly into various digital environments, offering robust reliability and superior performance that National Semiconductor is known for. Its ability to efficiently process complex analog signals makes it a cornerstone for developing sophisticated electronic systems.
ADC12C170CISQ Features
The ADC12C170CISQ features include high-speed performance with a proprietary conversion method that ensures rapid and accurate data handling. This 12-bit ADC is designed to operate over a wide temperature range, making it suitable for challenging industrial environments. Additionally, its low power consumption and small form factor contribute to enhanced system efficiency and ease of integration in space-constrained applications.
ADC12C170CISQ Applications
- Telecommunications: Utilized in communication infrastructure to convert analog signal data to digital format, enhancing signal processing and bandwidth utilization.
- Medical Imaging: Critical in devices like CT scanners and digital X-ray, where precise ADCs ensure high-quality imaging and accurate diagnostics.
- Industrial Automation: Plays a vital role in automation systems for accurate monitoring and control of industrial processes.
- Data Acquisition Systems: Essential for capturing analog inputs in scientific and engineering applications, converting them for digital analysis and storage.
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