NCV8509

Features: • Power−Up Sequence• Output Voltage Options: VOUT1 5 V (±2%) 115 mA, VOUT2 2.6 V (2%) 100 mA VOUT1 5 V (±2%) 115 mA, VOUT2 2.5 V (2%) 100 mA VOUT1 3.3 V (±2%) 115 mA, VOUT2 1.8 V (2%) 100 mA• Low 175 A Quiescent Current• Power Shunt• ProgrammableRE...

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SeekIC No. : 004433150 Detail

NCV8509: Features: • Power−Up Sequence• Output Voltage Options: VOUT1 5 V (±2%) 115 mA, VOUT2 2.6 V (2%) 100 mA VOUT1 5 V (±2%) 115 mA, VOUT2 2.5 V (2%) 100 mA VOUT1 3.3 V (±2%) 115 mA, ...

floor Price/Ceiling Price

Part Number:
NCV8509
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2025/1/9

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Product Details

Description



Features:

• Power−Up Sequence
• Output Voltage Options:
   VOUT1 5 V (±2%) 115 mA, VOUT2 2.6 V (2%) 100 mA
   VOUT1 5 V (±2%) 115 mA, VOUT2 2.5 V (2%) 100 mA
   VOUT1 3.3 V (±2%) 115 mA, VOUT2 1.8 V (2%) 100 mA
• Low 175 A Quiescent Current
• Power Shunt
• Programmable RESET Time
• Dual Drive RESET Valid
• Programmable SLEW Rate Control
• Thermal Shutdown
• 16 Lead SOW Exposed Pad
• NCV Prefix, for Automotive and Other Applications Requiring Site and Change Control



Application

• Automotive Powertrain
• Telematics



Pinout

  Connection Diagram


Specifications

Rating
Value
Unit
VIN1 (dc)
-0.3 to 50
V
VIN1 Peak Transient Voltage
50
V
VIN2 (dc)
50
V
VIN2 (Current out of pin)
10
mA
Operating Voltage
50
V
Input Voltage Range (SLEW, RESET, Delay)
-0.3 to 10
V
VOUT1
10
V
VOUT2
10
V
ElectrosElectrostatic Discharge (Human Body Model)
(Machine Model)
4.0
400
kV
V
Package Thermal Resistance, SOW-16 E Pad: Junction-to-Case, RJC
Junction-to-Ambient, RJA
16
57
/W
/W
Lead Temperature Soldering: Reflow: (SMD styles only) (Note 1)
240 peak (Note 2)

*The maximum package power dissipation must be observed.
1. 60 second maximum above 183°C.
2. −5°C/+0°C allowable conditions.




Description

The NCV8509 Series are dual voltage regulators whose output voltages power up in such a manner as to protect the integrity of modern day microcontroller I/O and ESD input structures. Newer NCV8509 generation microcontrollers require two power supplies. One voltage is used for powering the core, while the other powers the I/O.




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