Product Details
Key Features
Applications/Uses
Reset Thresh. (V) | 0 to 1.2 1.2 to 1.8 1.8 to 2.5 2.5 to 3.3 3.3 to 5.5 >=5.5 |
Reset Thresh. Accur. (%) (@ +25°C) | 1.8 |
Reset Out | Active High Open Drain |
tRESET (min) | 1ms to 15ms 15ms to 85ms 85ms to 300ms 250ms to 450ms 300ms to 1s <1ms Adjustable |
Watchdog Feature | No Watchdog |
Supervisor Features | Adjustable Reset Input High Voltage (>6V) |
ICC (µA) (max) | 45 |
Package/Pins | SOT23/6 |
Budgetary Price (See Notes) | 1.81 |
# Input Channels | 1 |
Interface | R/C Adjustable |
Option | Sequence |
VIN (V) (max) | <6 >6 |
Oper. Temp. (°C) | -40 to +85 -40 to +105 -40 to +125 0 to +70 |
Package/Pins | SOT23/6 |
Simplified Block Diagram
Technical Docs
Data Sheet | High-Voltage, Adjustable Sequencing/Supervisory Circuits | Jul 05, 2017 |
Support & Training
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Filtered SearchOur dedicated team of Applications Engineers are also available to answer your technical questions. Visit our support portal .
Sampling:
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Parameters
Reset Thresh. (V) | 0 to 1.2 1.2 to 1.8 1.8 to 2.5 2.5 to 3.3 3.3 to 5.5 >=5.5 |
Reset Thresh. Accur. (%) (@ +25°C) | 1.8 |
Reset Out | Active High Open Drain |
tRESET (min) | 1ms to 15ms 15ms to 85ms 85ms to 300ms 250ms to 450ms 300ms to 1s <1ms Adjustable |
Watchdog Feature | No Watchdog |
Supervisor Features | Adjustable Reset Input High Voltage (>6V) |
ICC (µA) (max) | 45 |
Package/Pins | SOT23/6 |
Budgetary Price (See Notes) | 1.81 |
# Input Channels | 1 |
Interface | R/C Adjustable |
Option | Sequence |
VIN (V) (max) | <6 >6 |
Oper. Temp. (°C) | -40 to +85 -40 to +105 -40 to +125 0 to +70 |
Package/Pins | SOT23/6 |
Key Features
- Less External Circuitry Results in Smaller Solution Size
- Open-Drain (28V Tolerant) Output Allows Interfacing to 12V Intermediate Bus Voltage
- Operates from VCC of 2.25V to 28V
- Small 6-Pin SOT23 Package
- Ideal for Use in Power-Supply Sequencing, Reset Sequencing, and Power-Switching Applications
- Active-High Logic-Enable Input
- 1.8% Accurate Adjustable Threshold Over Temperature
- Fully Specified from -40°C to +125°C for Reliability in Extreme Temperatures
- Low Supply Current (18µA typ) Reduces Power Consumption
Applications/Uses
- Computers/Servers
- Critical μP Monitoring
- Intelligent Instruments
- Medical Equipment
- Portable Equipment
- Set-Top Boxes
- Telecom
Description
The MAX16052/MAX16053 are a family of small, low-power, high-voltage monitoring circuits with sequencing capability. These miniature devices offer very wide flexibility with an adjustable voltage threshold and an external capacitor-adjustable time delay. These devices are ideal for use in power-supply sequencing, reset sequencing, and power switching applications. Multiple devices can be cascaded for complex sequencing applications.
A high-impedance input (IN) with a 0.5V threshold allows an external resistive divider to set the monitored threshold. The output (OUT) asserts high when the input voltage rises above the 0.5V threshold and the enable input (EN) is asserted high. When the voltage at IN falls below 0.495V or when the enable input is deasserted (EN = low), the output deasserts (OUT = low). The MAX16052/MAX16053 provide a capacitor programmable delay time from when the voltage at IN rises above 0.5V to when the output is asserted.
The MAX16052 offers an active-high open-drain output while the MAX16053 offers an active-high push-pull output. Both devices operate from a 2.25V to 28V supply voltage and feature an active-high enable input. The MAX16052/MAX16053 are available in a tiny 6-pin SOT23 package and are fully specified over the automotive temperature range (-40°C to +125°C).
Technical Docs
Data Sheet | High-Voltage, Adjustable Sequencing/Supervisory Circuits | Jul 05, 2017 |
Support & Training
Search our knowledge base for answers to your technical questions.
Filtered SearchOur dedicated team of Applications Engineers are also available to answer your technical questions. Visit our support portal .
Sampling:
Selecting the Sample button above will redirect to the third-party ADI Sample Site. The part selected will carry over to your cart on this site once logged in. Please create a new account there if you have never used the site before. Contact [email protected] with any questions regarding this Sample Site.