Hot Selling IC
Logo
Enter a Part Number:
AD5542JRZ picture
Best Price NOW
Manufacturer / Brand: AD
Details: 2.7 V to 5.5 V, Serial-Input, Voltage-Output, 16-Bit DAC IC
Series: AD5542
Quantity Available: Over 13900 pieces

Datasheet for AD5542JRZ:

AD5542JRZ datasheet
Price for AD5542JRZ
Product Parameters
  • Manufacturer Part Number : AD5542JRZ
  • Manufacturer : AD
  • Description : 2.7 V to 5.5 V, Serial-Input, Voltage-Output, 16-Bit DAC IC
  • Series : AD5542
  • Reference Price : USD 8.568
  • Our Price : We have a better price, contact us by email
  • Product Type : Precision D/A Converters
  • Function : Voltage Output D/A Converters
  • Current Suggest : Production
  • Status : Production
  • ROHS Status : ROHS Compliant (Lead Free)
  • Package Type : 14-Lead SOIC
  • Pins : 14
  • MFG Package Case : R-14
  • Part Type : OTH
  • Standard Packing Type : Tube
  • Standard Packing Quantity : 56
  • Working Temperature : 0 to 70C
  • Other Part Number : AD5542JRZ
  • Shipping methods : DHL FEDEX UPS TNT
  • Delivery Time : Ship within 1 day.
  • Manufacturer Production time : 6-8 weeks (Normally have stocks)
  • Weight : 0.001KG

Contact us to check the best price and real time inventory quantity for AD5542JRZ. If you need any more information about AD5542JRZ, you can also send us by email. Our email is [email protected], we will reply you in 12 hours.

Request Quotation for AD5542JRZ
Part Number (*) Quantity (*) Target Price ($)
Your Contact Information
Company(*) Country(*)
Name(*) Email(*)
Message:
ATTN: You can send us by email: [email protected] (We will reply quickly)
Related IC Components
Features and Benefits of AD5542JRZ
  • Full 16-bit performance
  • 3 V and 5 V single-supply operation
  • Low 0.625 mW power dissipation
  • 1 μs settling time
  • Unbuffered voltage output capable of driving 60 kΩ loads directly
  • SPI-/QSPI-/MICROWIRE-compatible interface standards
  • Power-on reset clears DAC output to 0 V (unipolar mode)
  • 5 kV HBM ESD classification
  • Low glitch: 1.1 nV-sec
Product Detailed Description for AD5542JRZ

The AD5541/AD5542 are single, 16-bit, serial input, voltage output digital-to-analog converters (DACs) that operate from a single 2.7 V to 5.5 V supply. The DAC output range extends from 0 V to VREF.

The DAC output range extends from 0 V to VREF and is guaranteed monotonic, providing 1 LSB INL accuracy at 16 bits without adjustment over the full specified temperature range of −40°C to +85°C. Offering unbuffered outputs, the AD5541/AD5542 achieve a 1 μs settling time with low power consumption and low offset errors. Providing a low noise performance of 11.8 nV/√Hz and low glitch, the AD5541/AD5542 is suitable for deployment across multiple end systems.

The AD5542 can be operated in bipolar mode, which generates a ±VREF output swing. The AD5542 also includes Kelvin sense connections for the reference and analog ground pins to reduce layout sensitivity.

The AD5541/AD5542 utilize a versatile 3-wire interface that is compatible with SPI, QSPI™, MICROWIRE™, and DSP interface standards. The AD5541/AD5542 are available in 8-lead and 14-lead SOIC packages.

Product Highlights

  1. Single-Supply Operation. The AD5541 and AD5542 are fully specified and guaranteed for a single 2.7 V to 5.5 V supply.
  2. Low Power Consumption. These parts consume typically 0.625 mW with a 5 V supply and 0.375 mW at 3 V.
  3. 3-Wire Serial Interface.
  4. Unbuffered Output Capable of Driving 60 kΩ Loads. This reduces power consumption because there is no internal buffer to drive.
  5. Power-On Reset Circuitry.


Applications
  • Digital gain and offset adjustment
  • Automatic test equipment
  • Data acquisition systems
  • Industrial process control
Lifecycle information of AD5542JRZ

At least one model within this product family is in production and available for purchase. The product is appropriate for new designs but newer alternatives may exist.

AD5542JRZ More photos
  • QUALITY GUARANTEE
  • FAST DELIVERY
  • BEST PRICE
  • Stocking Distributor for All series AD IC
    Copyright © 2001-2020 BYCHIPS Limited
    bychips.com