Add to like
Add to project list
  • Manufacturer No:
    AD766JNZ
  • Manufacturer:
  • Category:
    Data Acquisition - Digital to Analog Converters (DAC)
  • Datasheet:
    Get the PDF file
  • SKU:
    4408654
  • Description:
    16-DIP (0.300 7.62mm) Voltage - Buffered Current - Unbuffered Current Steering AD766 digital to analog converter 5V 1.5mus (Typ) 390ksps 150mW
  • Quantity:
      • RFQ
      • Add To Cart
  • Material flow:
  • Payment:
Inventory:0
  • Qty Unit Price price

Not the price you want? Send RFQ Now and we'll contact you ASAP

  • Manufacturer No:
    AD766JNZ
  • Manufacturer:
    Analog Devices
  • Category:
    Data Acquisition - Digital to Analog Converters (DAC)
  • Datasheet:
    AD766JNZ
  • SKU:
    4408654
  • Description:
    16-DIP (0.300 7.62mm) Voltage - Buffered Current - Unbuffered Current Steering AD766 digital to analog converter 5V 1.5mus (Typ) 390ksps 150mW

AD766JNZ Details

16-DIP (0.300 7.62mm) Voltage - Buffered Current - Unbuffered Current Steering AD766 digital to analog converter 5V 1.5mus (Typ) 390ksps 150mW

AD766JNZ Specification Parameters

  • Part Status: Active
  • Differential Output: NO
  • Moisture Sensitivity Level (MSL): 1 (Unlimited)
  • Number of Functions: 1
  • ECCN Code: EAR99
  • Contact Plating: Tin
  • Supply Voltage: 5V
  • Factory Lead Time: 8 Weeks
  • Pbfree Code: no
  • Number of Terminations: 16
  • Number of Bits: 16
  • REACH SVHC: No SVHC
  • Min Output Voltage: 6V
  • Width: 6.35mm
  • Operating Temperature: 0°C~70°C
  • Min Supply Voltage: 4.75V
  • Lifecycle Status: PRODUCTION (Last Updated: 1 month ago)
  • Power Dissipation: 150mW
  • Subcategory: Other Converters
  • Height: 3.3mm
  • Max Dual Supply Voltage: 13.2V
  • Package / Case: 16-DIP (0.300, 7.62mm)
  • Data Interface: SPI, DSP
  • Length: 20.07mm
  • Architecture: Current Steering
  • Nominal Supply Current: -14mA
  • Voltage - Supply, Analog: ±4.75V~13.2V
  • Conversion Rate: 390 ksps
  • Output Type: Voltage - Buffered, Current - Unbuffered
  • Surface Mount: NO
  • RoHS Status: ROHS3 Compliant
  • Mounting Type: Through Hole
  • Number of Converters: 1
  • JESD-609 Code: e3
  • Terminal Position: DUAL
  • Dual Supply Voltage: 5V
  • Packaging: Tube
  • Lead Free: Contains Lead
  • Pin Count: 16
  • Terminal Pitch: 2.54mm
  • Max Output Voltage: 6V
  • Reference Type: Internal
  • Technology: BICMOS
  • Negative Supply Voltage-Nom: -5V
  • Min Dual Supply Voltage: 4.75V
  • Max Power Dissipation: 150mW
  • Converter Type: D/A CONVERTER
  • Interface: SPI, Serial
  • Max Supply Voltage: 13.2V
  • Polarity: Bipolar
  • Resolution: 2 B
  • Input Bit Code: 2'S COMPLEMENT BINARY
  • Series: DACPORT?
  • Signal to Noise Ratio (SNR): 102 dB
  • Settling Time: 1.5μs (Typ)
  • Voltage - Supply, Digital: ±4.75V~13.2V
  • Sampling Rate: 390 ksps
  • Base Part Number: AD766

Analog Devices — Manufacturer Introduction

Analog Devices (NASDAQ: ADI) is a world leader in the design, manufacture, and marketing of a broad portfolio of high performance analog, mixed-signal, and digital signal processing (DSP) integrated circuits (ICs) used in virtually all types of electronic equipment. Since our inception in 1965, we have focused on solving the engineering challenges associated with signal processing in electronic equipment. Used by over 100,000 customers worldwide, our signal processing products play a fundamental role in converting, conditioning, and processing real-world phenomena such as temperature, pressure, sound, light, speed, and motion into electrical signals to be used in a wide array of electronic devices.

Excellent

Based on reviews

Excellent

Based on reviews

LKR uses cookies to help deliver a better online experience. You can see what cookies we server and how to set your preferences in our Cookies Policy, if you agree on our use of cookies please click continue. When browsing and using our website, LKR also collects, stores and/or processes personal data, please read our Term & Condition and Privacy Policy to find out more.
Our social media
We support logistics
We Accept Payment Via