TSB572IST

TSB572IST

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TSB572IDT

Low-power, 2.5 MHz, RR IO, 36 V BiCMOS operational amplifier

Supply Voltage Min Volt4.0
Supply Voltage Max Volt36.0
Operating Temp Min Celsius-40.0
Operating Temp Max Celsius125.0
ECCN USEAR99
ECCN EUNEC
Packing TypeTape And Reel
RoHs compliantEcopack3
GradeIndustrial
Package NameSO-8

The TSB572 dual operational amplifier offers extended voltage operating range from 4 V to 36 V and rail-to-rail input/output.The TSB572 offers a very good speed/power consumption ratio with 2.5 MHz gain bandwidth product while consuming only 380 µA typically at 36 V supply voltage.Stability and...
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Key features
  • Low-power consumption: 380 µA typ
  • Wide supply voltage: 4 V - 36 V
  • Rail-to-rail input and output
  • Gain bandwidth product: 2.5 MHz
  • Low input bias current: 30 nA max
  • No phase reversal
  • High tolerance to ESD: 4 kV HBM
  • Extended temperature range: -40 °C to 125 °C
  • Automotive grade
  • Small SMD packages
  • 40 V BiCMOS technology
  • Enhanced stability vs. capacitive load
In stock
Quantity $ per unit Savings
1-9$1.500%
10-50$1.2219%
Contact sales
$1.50
$1.50
or
Supply Voltage Min Volt4.0
Supply Voltage Max Volt36.0
Operating Temp Min Celsius-40.0
Operating Temp Max Celsius125.0
ECCN USEAR99
ECCN EUNEC
Packing TypeTape And Reel
RoHs compliantEcopack3
GradeIndustrial
Package NameSO-8

The TSB572 dual operational amplifier offers extended voltage operating range from 4 V to 36 V and rail-to-rail input/output.The TSB572 offers a very good speed/power consumption ratio with 2.5 MHz gain bandwidth product while consuming only 380 µA typically at 36 V supply voltage.Stability and...
Read More

Key features
  • Low-power consumption: 380 µA typ
  • Wide supply voltage: 4 V - 36 V
  • Rail-to-rail input and output
  • Gain bandwidth product: 2.5 MHz
  • Low input bias current: 30 nA max
  • No phase reversal
  • High tolerance to ESD: 4 kV HBM
  • Extended temperature range: -40 °C to 125 °C
  • Automotive grade
  • Small SMD packages
  • 40 V BiCMOS technology
  • Enhanced stability vs. capacitive load