Welcome to Hotenda.com Online Store!

logo
userjoin
Home

AD539KNZ

AD539KNZ

AD539KNZ

Analog Devices Inc.

Tin +-5V 16 Analog Multiplier AD539 16 Pin 5V 16-DIP (0.300, 7.62mm)

SOT-23

AD539KNZ Datasheet

non-compliant

In-Stock: 0 items
Specifications
Name Value
Type Parameter
Factory Lead Time 8 Weeks
Lifecycle Status PRODUCTION (Last Updated: 1 month ago)
Contact Plating Tin
Mount Through Hole
Package / Case 16-DIP (0.300, 7.62mm)
Number of Pins 16
Packaging Tube
JESD-609 Code e3
Pbfree Code no
Part Status Active
Moisture Sensitivity Level (MSL) 1 (Unlimited)
Number of Terminations 16
ECCN Code EAR99
Max Operating Temperature 125°C
Min Operating Temperature -55°C
Subcategory Analog Computational Functions
Technology BIPOLAR
Terminal Position DUAL
Supply Voltage 5V
Base Part Number AD539
Function Analog Multiplier/Divider
Power Supplies +-5V
Temperature Grade COMMERCIAL
Max Supply Voltage 15V
Min Supply Voltage 4.5V
Analog IC - Other Type ANALOG MULTIPLIER OR DIVIDER
Operating Supply Current 10.2mA
Nominal Supply Current 10.2mA
Max Supply Current 20mA
Number of Bits 2
Accuracy 2.5 %
Max Input Voltage 4.2V
Bandwidth 60MHz
Neg Supply Voltage-Nom (Vsup) -5V
Max Dual Supply Voltage 15V
-3db Bandwidth 25MHz
Max Frequency 60MHz
Min Dual Supply Voltage 4.5V
High Level Output Current 2.8mA
Low Level Output Current 2.8mA
Positive Input Voltage-Max 2V
Number of Bits/Stages 2-Quadrant
Height 4.57mm
Length 22.1mm
Width 6.35mm
Radiation Hardening No
REACH SVHC No SVHC
RoHS Status ROHS3 Compliant
Lead Free Contains Lead
Pricing & Ordering
Quantity Unit Price Ext. Price
1 $154.971066 $154.971066
10 $146.199118 $1461.99118
100 $137.923696 $13792.3696
500 $130.116695 $65058.3475
1000 $122.751599 $122751.599
AD539KNZ Product Details

AD539KNZ Overview


In order to package the product, Tube is used.For cost-effectiveness, it has been included in the 16-DIP (0.300, 7.62mm) package.There is a common practice of using 2-Quadrant bits per stage.Powered by 5V voltage, it operates at a constant current.A nominal negative supply voltage is provided for -5V.Radio-frequency signals modulated at 60MHz occupy the frequency range of 60MHz.Several 16 terminations are available to ensure that signals do not reflect off the end of the transmission line.With its base part number AD539, electronic parts with a number of similarities can be found.It is a type of 16-pin electronic component famous for its high quality and superior performance in the industry.This is an electronic device that belongs to the Analog Computational Functions subcategory.Using the Through Hole method, it is mounted on the PCB.It is recommended that the device operate at a temperature of 125°C.It is recommended that electronic devices operate at a minimum temperature of -55°C.It is suitable for operating at a voltage of 10.2mA.There should be a higher voltage on the dual supply than on 4.5V.If the dual supply voltage is lower than 15V, then it is recommended.ANALOG MULTIPLIER OR DIVIDER is an analog integrated circuit type.An modulated radio-frequency signal occupies the frequency range of 25MHz.Due to its capability to handle a maximum input voltage of 4.2V, designers can make full use of its versatility.There is the possibility of storing information in 2 bits.There is a limitation on the maximum supply voltage at 15V.For normal operation, the minimum supply voltage is maintained at 4.5V.The frequency should not exceed 60MHz to avoid failures.Maintaining the supply current below 20mA can result in high reliability.

AD539KNZ Features


Supplied in the 16-DIP (0.300, 7.62mm) package
Bandwidth of 60MHz
Operating supply current of 10.2mA

AD539KNZ Applications


There are a lot of Analog Devices Inc. AD539KNZ Analog Multipliers & Dividers applications.

  • Addition and subtraction operation circuits
  • Industrial applications including automation
  • Test equipment
  • PDA
  • Hand-held batteries
  • Fast A/D and D/A converters, video amplifiers
  • Ultrasound transducers
  • Signal transformation
  • Thermocouples
  • Signal amplification

Related Part Number

Get Subscriber

Enter Your Email Address, Get the Latest News