V6310

Features: `Voltage Window monitoring`Clear microprocessor restart after power up`Processor reset at power down`Reset output guaranteed down to VDD = 1 V`Low power consumption: typ. 3 A at VDD = 5 V`- 40 to +85 temperature range`On request extended temperature range, -40 to +125`On-chip oscillator`...

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V6310 Picture
SeekIC No. : 004540244 Detail

V6310: Features: `Voltage Window monitoring`Clear microprocessor restart after power up`Processor reset at power down`Reset output guaranteed down to VDD = 1 V`Low power consumption: typ. 3 A at VDD = 5 V`...

floor Price/Ceiling Price

Part Number:
V6310
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: 2024/12/21

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Product Details

Description



Features:

`Voltage Window monitoring
`Clear microprocessor restart after power up
`Processor reset at power down
`Reset output guaranteed down to VDD = 1 V
`Low power consumption: typ. 3 A at VDD = 5 V
`- 40 to +85 temperature range
`On request extended temperature range, -40 to +125
`On-chip oscillator
`No external components required
`Push-pull or Open drain output
`TO-92, SOT-23 5L and SOT-2231) packages
`Pin compatible with DS 1233 A in TO-92 and SOT-223




Application

·Computer electronics
·White / Brown goods
·Automotive electronics
·Industrial electronics
·Telecom systems
· Hand-held systems



Pinout

  Connection Diagram


Specifications

Parameter Symbol Conditions
Voltage at VDD to VSS VDD -0.3V to+10 V
Min. voltage at RES or RES Vmin VSS - 0.3 V
Max. voltage at RES or RES Vmax VDD + 0.3 V
Storage temperature range TSTO -65° to +150

Stresses above these listed maximum ratings may cause permanent
damage to the device. Exposure beyond specified operating conditions
may affect device reliability or cause malfunction.




Description

The V6310 is a CMOS device which monitors the supply voltage of any electronic system, and generates the appropriate Reset signal. The gap between the two thresholds defines the allowed voltage range. As long as VDD stays inside this voltage window, the output stays inactive. If VDD drops below VTHlow, or rises above VTHhigh, the output gets active. When VDD enters into the allowed range, the output remains active for an additional 50 ms (typ.). This allows the system to stabilize before getting fully active. The lower threshold voltage may be obtained in different versions:
2.0 V to 6 V
2.4 V to 6 V
2.8 V to 6 V
3.5 V to 6 V
4.0 V to 6 V
4.5 V to 6 V




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