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MAX6315
Open-Drain SOT µP Reset Circuit

Open-Drain Output SOT Reset IC with Customized Reset Thresholds and Timeout Delays


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Status
Active: In Production.

Description
FULL DATA SHEET (PDF, 536kB)
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The MAX6315 low-power CMOS microprocessor (µP) supervisory circuit is designed to monitor power supplies in µP and digital systems. It provides excellent circuit reliability and low cost by eliminating external components and adjustments. The MAX6315 also provides a debounced manual reset input.

This device performs a single function: it asserts a reset signal whenever the VCC supply voltage falls below a preset threshold or whenever manual reset is asserted. Reset remains asserted for an internally programmed interval (reset timeout period) after VCC has risen above the reset threshold or manual reset is deasserted. The MAX6315's open-drain active-low RESET output can be pulled up to a voltage higher than VCC.

The MAX6315 comes with factory-trimmed reset threshold voltages in 100mV increments from 2.5V to 5V. Preset timeout periods of 1ms, 20ms, 140ms, and 1120ms (minimum) are also available. The device comes in a SOT143 package.

For microcontrollers (µCs) and µPs with bidirectional reset pins, see the MAX6314 data sheet.

Key Features   Applications/Uses
  • Small SOT143 Package
  • Open-Drain RESET-bar Output Can Exceed VCC
  • Precision, Factory-Set VCC Reset Thresholds: 100mV Increments from 2.5V to 5V
  • Four Reset Timeout Periods Available: 1ms, 20ms, 140ms, or 1120ms (minimum)
  • Immune to Short VCC Transients
  • 5µA Supply Current
  • Pin-Compatible with MAX811
  • Guaranteed Over Temperature

 

Key Specifications:  Supervisors (1 Monitored Voltage)
Part Number Reset Thresh.
(V)
Reset Out tRESET Watchdog Feature Supervisor Features Reset Thresh. Accur.
(%)
ICC
(µA)
Price
Active Low min @ +25°C max See Notes
MAX6315 
2.5 to 3.3
3.3 to 5.5
Open Drain
1ms to 15ms
15ms to 85ms
85ms to 300ms
>1s
No Watchdog Manual Reset 1.8 12 $0.99 @1k
See All Supervisors (1 Monitored Voltage) (274)

Diagram
MAX6315: Typical Operating Circuit
Typical Operating Circuit

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    Document Ref.: 19-2000; Rev 3; 2006-06-12
    This page last modified: 2007-07-18


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