Overview
Features and Benefits
- Fixed Thresholds for 5V, 3.3V, 3V, 2.5V, 1.8V, 1.5V, 1.2V, and 0.9V Systems
- Adjustable Thresholds Monitor Voltages Down to 0.4V
- Open-Drain Outputs with Internal Pullups Reduce the Number of External Components
- Fixed 140ms (min) or Capacitor-Adjustable Reset Timeout
- Manual Reset, Margin Enable, and Tolerance Select Inputs
- Watchdog Timer
- 1.6s (typ) Timeout Period
- 54s Startup Delay After Reset (Except MAX16005)
- Independent Watchdog Output (MAX16005)
- Active-Low RESET Output Indicates All Voltages Present
- Independent Voltage Monitors
- Guaranteed Correct Logic State Down to VCC = 1V
- Small (4mm x 4mm) TQFN Package
- TSSOP (5mm x 4.4mm) Package (MAX16005)
- AEC-Q100 Qualified (MAX16001ATE/V+ and MAX16001DTE/V+ Only)
Product Details
The MAX16000–MAX16007 are low-voltage, quad-/hex-/octal-voltage µP supervisors in small TQFN and TSSOP packages. These devices provide supervisory functions for complex multivoltage systems. The MAX16000/MAX16001/MAX16002 monitor four voltages, the MAX16003/MAX16004/MAX16005 monitor six voltages, and the MAX16006/MAX16007 monitor eight voltages.
The MAX16000/MAX16001/MAX16003/MAX16004/MAX16006 offer independent outputs for each monitored voltage. The MAX16001/MAX16002/MAX16004–MAX16007 offer a reset output that asserts whenever any of the monitored voltages fall below their respective thresholds or the manual reset input is asserted. The reset output remains asserted for the reset timeout after all voltages are above their respective thresholds and the manual reset input is deasserted. The minimum reset timeout is internally set to 140ms or can be adjusted with an external capacitor.
All open-drain outputs have internal 30µA pullups that eliminate the need for external pullup resistors. However, each output can be driven with an external voltage up to 5.5V. Other features offered include a manual reset input, a tolerance pin for selecting 5% or 10% input thresholds, and a margin enable function for deasserting the outputs during margin testing.
The MAX16001/MAX16002/MAX16004–MAX16007 offer a watchdog timer that asserts active-low RESET or an independent watchdog output (MAX16005) when the watchdog timeout period (1.6s typ) is exceeded. The watchdog timer can be disabled by leaving the input open.
These devices are offered in 12-, 16-, 20-, and 24-lead TQFN and 16-lead TSSOP packages. These are fully specified from -40°C to +125°C.
Applications
- Multivoltage ASICs
- Networking/Telecommunication Equipment
- Servers
- Storage Equipment
Product Lifecycle
Production
At least one model within this product family is in production and available for purchase. The product is appropriate for new designs but newer alternatives may exist.
Documentation & Resources
-
Voltage Monitoring in Complex Systems11/1/2011
Product Recommendations
MAX16005 Companion Parts
Design Resources
ADI has always placed the highest emphasis on delivering products that meet the maximum levels of quality and reliability. We achieve this by incorporating quality and reliability checks in every scope of product and process design, and in the manufacturing process as well. "Zero defects" for shipped products is always our goal.View our quality and reliability program and certifications for more information.
Part Number | Material Declaration | Reliability Data | Pin/Package Drawing | CAD Symbols, Footprints & 3D Models |
---|---|---|---|---|
MAX16005ATE+ | Material Declaration | Reliability Data | 16-LFCSP-4X4X0.75 | |
MAX16005ATE+T | Material Declaration | Reliability Data | 16-LFCSP-4X4X0.75 | |
MAX16005BTE+ | Material Declaration | Reliability Data | 16-LFCSP-4X4X0.75 | |
MAX16005BTE+T | Material Declaration | Reliability Data | 16-LFCSP-4X4X0.75 | |
MAX16005CTE+ | Material Declaration | Reliability Data | 16-LFCSP-4X4X0.75 | |
MAX16005CTE+T | Material Declaration | Reliability Data | 16-LFCSP-4X4X0.75 | |
MAX16005ETE+ | Material Declaration | Reliability Data | 16-LFCSP-4X4X0.75 | |
MAX16005ETE+T | Material Declaration | Reliability Data | 16-LFCSP-4X4X0.75 | |
Wafer Fabrication Data |
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