Linear Technology LTC2323CUFD-14#PBF
- Part Number:
- LTC2323CUFD-14#PBF
- Manufacturer:
- Linear Technology
- Ventron No:
- 3119161-LTC2323CUFD-14#PBF
- Description:
- IC ADC 14BIT 5MSPS 28QFN
- Datasheet:
- LTC2323CUFD-14#PBF
Linear Technology LTC2323CUFD-14#PBF technical specifications, attributes, parameters and parts with similar specifications to Linear Technology LTC2323CUFD-14#PBF.
- Lifecycle StatusPRODUCTION (Last Updated: 2 weeks ago)
- Package / CaseQFN
- Number of Pins28
- PackagingCut Tape
- Max Operating Temperature70°C
- Min Operating Temperature0°C
- InterfaceLVDS, SPI, Serial
- Max Supply Voltage5.25V
- Min Supply Voltage4.75V
- Number of Bits14
- Number of Inputs2
- Resolution1.75 B
- Sampling Rate5 Msps
- Number of A/D Converters2
- REACH SVHCNo SVHC
- RoHS StatusRoHS Compliant
LTC2323CUFD-14#PBF Overview
Linear Technology offers a highly advanced Data Acquisition - Analog to Digital Converters (ADC) chip that is designed for precise and efficient data conversion. This chip belongs to the Data Acquisition - Analog to Digital Converters (ADC) category and boasts a range of impressive parameters. It comes in a compact QFN package with 28 pins and is packaged for convenience in Cut Tape. The chip has a minimum operating temperature of 0°C and offers versatile interface options including LVDS, SPI, and Serial. With a maximum supply voltage of 5.25V and 2 inputs, this chip is capable of delivering accurate results at a resolution of 1.75 B and a sampling rate of 5 Msps. Additionally, it is also RoHS compliant, making it a reliable and environmentally-friendly choice.
LTC2323CUFD-14#PBF Features
Minimal supply voltage of 4.75V
LTC2323CUFD-14#PBF Applications
There are a lot of Analog Devices, Inc. LTC2323CUFD-14#PBF ADC applications.
Displaying
Wireless and wired broadband communications
3-phase power control
Cell Phones
RADAR processing, digital oscilloscopes
GSM, EDGE, PHS, UMTS, WCDMA, CDMA2000,
Microcontrollers.
Communication test equipment
Smart antenna systems
Scientific instruments
Linear Technology offers a highly advanced Data Acquisition - Analog to Digital Converters (ADC) chip that is designed for precise and efficient data conversion. This chip belongs to the Data Acquisition - Analog to Digital Converters (ADC) category and boasts a range of impressive parameters. It comes in a compact QFN package with 28 pins and is packaged for convenience in Cut Tape. The chip has a minimum operating temperature of 0°C and offers versatile interface options including LVDS, SPI, and Serial. With a maximum supply voltage of 5.25V and 2 inputs, this chip is capable of delivering accurate results at a resolution of 1.75 B and a sampling rate of 5 Msps. Additionally, it is also RoHS compliant, making it a reliable and environmentally-friendly choice.
LTC2323CUFD-14#PBF Features
Minimal supply voltage of 4.75V
LTC2323CUFD-14#PBF Applications
There are a lot of Analog Devices, Inc. LTC2323CUFD-14#PBF ADC applications.
Displaying
Wireless and wired broadband communications
3-phase power control
Cell Phones
RADAR processing, digital oscilloscopes
GSM, EDGE, PHS, UMTS, WCDMA, CDMA2000,
Microcontrollers.
Communication test equipment
Smart antenna systems
Scientific instruments
LTC2323CUFD-14#PBF More Descriptions
Dual, 14-Bit Sign, 5Msps Differential Input ADC with Wide Input Common Mode Range
2-Channel Dual ADC SAR 5Msps 14-bit Serial (SPI)/LVDS Automotive 28-Pin QFN EP Tube
14Bit 5MHz serial QFN-28-EP(4x5) Analog To Digital Converters (ADCs) ROHS
ADC, Successive Approximation, 14-Bit, 1 Func, 2 Channel, Serial Access, CMOS, PQCC28
Analog To Digital Converter Adc, Dual, 14 Bit, 5Msps, Qfn-28
ADC, DUAL, 14BIT, 5MSPS, SPI, QFN-28
2x, 14-B Sign, 5Msps Diff In
2-Channel Dual ADC SAR 5Msps 14-bit Serial (SPI)/LVDS Automotive 28-Pin QFN EP Tube
14Bit 5MHz serial QFN-28-EP(4x5) Analog To Digital Converters (ADCs) ROHS
ADC, Successive Approximation, 14-Bit, 1 Func, 2 Channel, Serial Access, CMOS, PQCC28
Analog To Digital Converter Adc, Dual, 14 Bit, 5Msps, Qfn-28
ADC, DUAL, 14BIT, 5MSPS, SPI, QFN-28
2x, 14-B Sign, 5Msps Diff In
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