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MAX6841, MAX6842, MAX6843, MAX6844, MAX6845
Ultra-Low-Voltage µP Reset Circuits and Voltage Detectors
Ultra-Low-Voltage SC70 µP Supervisors Monitor Supplies Down to 0.9V with No External Components
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Status
Active: In Production.
Description
The MAX6841–MAX6845 microprocessor (µP) supervisory circuits monitor ultra-low-voltage power supplies in µP and digital systems. They provide excellent circuit reliability at low cost by eliminating external components and adjustments when used with +0.9V to +1.5V systems. Factory-trimmed reset thresholds are available for the MAX6841/MAX6842. The MAX6843/MAX6844/MAX6845 provide a RESET IN input, allowing the user to externally adjust the reset threshold. The MAX6841–MAX6845 family features a debounced manual reset input (active-low MR). The reset comparator is designed to ignore fast transients on VCC.
The MAX6841–MAX6845 assert a reset signal whenever the VCC supply voltage declines below a preset or adjustable threshold or whenever manual reset (active-low MR) is asserted. Reset remains asserted for a fixed timeout delay after VCC has risen above the reset threshold and when manual reset is deasserted. Five timeout periods are available for each part: 150µs (voltage detector version), 1.5ms, 30ms, 210ms, and 1.68s (typ).
The MAX6841/MAX6843 have an active-low push-pull reset output. The MAX6841/MAX6842/MAX6844 have an active-high push-pull reset output, and the MAX6842/MAX6845 have an active-low open-drain reset output. The active-low open-drain reset output requires a pullup resistor that can be connected to a voltage from 0 to VCC.
The low supply current (5.7µA) and small package (SOT23-5) make the MAX6841–MAX6845 ideal for use in portable equipment.
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Data Sheet
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Key Features
- Factory-Set Reset Threshold Voltages for Monitoring Supplies from 0.9V to 1.5V (MAX6841/MAX6842)
- Adjustable Threshold RESET IN (MAX6843/MAX6844/MAX6845)
- Low Power Consumption: 5.7µA (typ)
- ±2.5% Reset Threshold Accuracy Over Temperature
- Five Timeout Periods: 150µs (Voltage Detector Version), 1.5ms, 30ms, 210ms, and 1.68s
- Available in Three Output Configurations
- Push-Pull active-low RESET
- Push-Pull RESET
- Open-Drain active-low RESET
- Guaranteed Reset Valid to VCC = 0.55V (Active Low)
- Manual Reset Input
- Immune to Short VCC Transients
- Space-Saving 5-Pin SOT23 Package
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Applications/Uses
- Computers
- Controllers
- Critical µP and µC Power Monitoring
- Intelligent Instruments
- Portable Battery-Powered Equipment
- Servers and Workstations
- Telecom/Networking Equipment
- Wireless Base Stations
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Key Specifications:
| Supervisors (1 Monitored Voltage) |
| Part Number |
Reset Thresh. (V) |
Reset Out |
tRESET |
Watchdog Feature |
Supervisor Features |
Reset Thresh. Accur. (%) |
ICC (µA) |
Budgetary Price |
| min |
@ +25°C |
max |
See Notes |
| MAX6841 |
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| Active High | | Active Low | | Push-Pull |
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| 1ms to 15ms | | 15ms to 85ms | | 85ms to 300ms | | <1ms | | >1s |
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No Watchdog |
Manual Reset |
2.5 |
20 |
$1.21 @1k |
| MAX6842 |
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| Active High | | Active Low | | Open Drain | | Push-Pull |
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Manual Reset |
$1.21 @1k |
| MAX6843 |
| 0 to 1.2 | | 1.2 to 1.8 | | 1.8 to 2.5 | | 2.5 to 3.3 | | 3.3 to 5.5 |
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| Adjustable Reset Input | | Manual Reset |
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$1.21 @1k |
| MAX6844 |
| 0 to 1.2 | | 1.2 to 1.8 | | 1.8 to 2.5 | | 2.5 to 3.3 | | 3.3 to 5.5 |
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| Adjustable Reset Input | | Manual Reset |
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$1.21 @1k |
| MAX6845 |
| 0 to 1.2 | | 1.2 to 1.8 | | 1.8 to 2.5 | | 2.5 to 3.3 | | 3.3 to 5.5 |
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| Adjustable Reset Input | | Manual Reset |
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$1.21 @1k |
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See All Supervisors (1 Monitored Voltage) (274)
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Pricing Notes:
This pricing is BUDGETARY, for comparing similar parts. Prices are in U.S. dollars and subject to change. Quantity pricing may vary substantially and international prices may differ due to local duties, taxes, fees, and exchange rates. For volume-specific prices and delivery, please see the price and availability page or contact an authorized distributor.
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Diagram
Typical Operating Circuit
More Information
Didn't Find What You Need?
Information Index
Document Ref.: 19-2625
Rev 2;
2006-06-05
This page last modified: 2008-03-13
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