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MAX527CCNG

MAX527CCNG

MAX527CCNG

Rochester Electronics, LLC

DACVoltage - BufferedThrough Hole R-2R R7.62mm mm

SOT-23

MAX527CCNG Datasheet PDF

non-compliant

Technical Specifications

Parameter NameValue
TypeParameter
Mounting Type Through Hole
Package / Case 24-DIP (0.300, 7.62mm)
Surface MountNO
Operating Temperature0°C~70°C
PackagingTube
JESD-609 Code e0
Pbfree Code no
Part StatusObsolete
Moisture Sensitivity Level (MSL) 1 (Unlimited)
Number of Terminations 24
Terminal Finish TIN LEAD
Technology CMOS
Terminal Position DUAL
Peak Reflow Temperature (Cel) 245
Number of Functions 4
Supply Voltage 5V
Pin Count24
Qualification StatusCOMMERCIAL
Output Type Voltage - Buffered
Number of Bits 12
Architecture R-2R
Converter Type D/A CONVERTER
Reference TypeExternal
Data InterfaceParallel
Differential OutputNo
Voltage - Supply, Analog ±5V
Settling Time5μs (Typ)
Input Bit Code BINARY
INL/DNL (LSB) ±0.15, ±1 (Max)
Negative Supply Voltage-Nom -5V
Number of D/A Converters 4
Width 7.62mm
RoHS StatusNon-RoHS Compliant
In-Stock:249 items

Pricing & Ordering

QuantityUnit PriceExt. Price
1$35.55000$35.55
500$35.1945$17597.25
1000$34.839$34839
1500$34.4835$51725.25
2000$34.128$68256
2500$33.7725$84431.25

MAX527CCNG Product Details

MAX527CCNG Overview


As part of the 24-DIP (0.300, 7.62mm) package, it is included. Power is provided by a 5V-volt supply. Using a Through Hole connector, you can mount this FPGA module on the development board. It is recommended that the operating temperature be kept within the range 0°C~70°C while the machine is operating. Unlike other FPGA models, this one is contained in Tube for the sake of space saving. In total, it has a total of 24 terminations. The device has a total of 24 pins on it.

MAX527CCNG Features


24-DIP (0.300, 7.62mm) package
24 pin count

MAX527CCNG Applications


There are a lot of Rochester Electronics, LLC MAX527CCNG Digital to Analog Converters (DAC)?applications.

  • Wideband communications:
  • Instrumentation:
  • Automated Test Equipment
  • Synchro Applications
  • Data Acquisition
  • Gain and offset adjustment
  • Microprocessor Controlled Circuits
  • Microprocessor Controlled Calibration
  • Function Generaion
  • Low Power Systems

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