The MAX16054AZT+T stands out as a highly advanced solution tailored for effective button control, employing a single switch debouncer that harmoniously incorporates a latch mechanism for managing pushbutton on/off operations. This device intricately handles input registration from mechanical switches, alleviating the issues caused by contact bounce—a stumbling block that can lead to erratic signal outputs. With a thoughtfully designed factory-set delay, only stable, debounced inputs affect the digital output, which is indispensable in scenarios where the reliability of switches profoundly impacts functionality.
Mechanical switches frequently encounter contact bounce, which causes short fluctuations in electrical contacts and leads to erratic output signals. These inconsistencies can trigger unintended actions in circuits, creating disruptions. The MAX16054AZT+T uses an effective debouncing method to greatly reduce these issues. Past design efforts across electronic fields highlight the importance of debouncing, especially in areas like consumer electronics and automotive systems, where steady performance fosters trust and ensures smooth operation.
Pin Name |
Description |
IN |
Switch Toggle Input. IN features a -25V to +25V maximum
input range and includes an internal 63kΩ pullup resistor to VCC. Connect a
pushbutton from IN to GND. |
GND |
Ground |
CLEAR |
Clear Input. Pull CLEAR high to force OUT low. Connect
CLEAR to GND if unused. |
OUT |
Active-Low CMOS Output |
OUT |
Active-High CMOS Output |
VCC |
+2.7V to +5.5V Supply Input. In noisy environments,
bypass VCC to GND with a 0.1µF or greater ceramic capacitor. |
• Robust Input Voltage Tolerance: This device is carefully built to handle voltage inputs up to ±25V. This durability ensures reliable performance and gives you confidence when working in areas where voltage changes are common, such as in industrial and automotive settings.
• Exceptional ESD Protection: The MAX16054AZT+T can handle Electrostatic Discharge (ESD) events up to ±15kV, offering strong protection for sensitive components against possible damage. This level of defense is especially valuable in environments where components are frequently handled or exposed to ESD risks.
• Advanced Latched Output Functionality: The latched output's ability to hold its state until a reset provides a clear benefit. This feature helps protect data accuracy and supports steady operation, which is especially useful in systems that need precise control and status tracking.
• Minimal Supply Current Usage: The device uses a very low supply current of just 7µA, making it ideal for low-power applications. This feature is especially helpful for battery-powered devices, as it supports extending their operating time.
• Versatile Operational Voltage Range: With an operational voltage range of 2.7V to 5.5V, the MAX16054AZT+T works well in a wide range of electronic designs. Its flexibility helps simplify your design process by easily supporting different power sources.
• Wide Temperature Resilience: With a temperature range of -40°C to +125°C, this device delivers reliable performance across various environmental uses. This durability is especially useful in consumer electronics and industrial settings, where temperature changes often pose challenges.
• Compact Packaging: Provided in a compact SOT23 package, this device is easy to integrate into designs where space is limited. This enables you to create innovative and compact electronic solutions for modern applications.
Parameter |
Value |
||
Factory Lead Time |
6 Weeks |
Mounting Type |
Surface Mount |
Mount |
Surface Mount |
Number of Pins |
6 |
Package / Case |
SOT-23-6 Thin. TSOT-23-6 |
Packaging |
Tape & Reel (TR) |
Watchdog Timers |
No |
JESD-609 Code |
e3 |
Published |
2008 |
Part Status |
Active |
Pbfree Code |
yes |
Number of Terminations |
6 |
Moisture Sensitivity Level (MSL) |
1 (Unlimited) |
Max Operating Temperature |
125°C |
ECCN Code |
EAR99 |
Applications |
PDAs, Portable Audio/Video, Smartphones |
Min Operating Temperature |
-40°C |
Voltage - Supply |
2.7V~5.5V |
Max Power Dissipation |
727W |
Terminal Form |
GULL WING |
Terminal Position |
DUAL |
Supply Voltage |
5V |
Number of Functions |
1 |
Base Part Number |
MAX16054 |
Terminal Pitch |
0.95mm |
Supply Voltage-Max (Vsup) |
5.5V |
Pin Count |
6 |
Temperature Grade |
AUTOMOTIVE |
Power Supplies |
3/5V |
Number of Channels |
1 |
Supply Voltage-Min (Vsup) |
2.7V |
Operating Supply Current |
7µA |
Analog IC - Other Type |
POWER SUPPLY MANAGEMENT CIRCUIT |
Number of Voltages Monitored |
1 |
Adjustable Threshold |
NO |
Undervoltage Threshold |
1.8V |
Supply Current-Max (Isup) |
0.02mA |
Height |
730µm |
Height |
730µm |
Length |
4mm |
Width |
4mm |
REACH SVHC |
Unknown |
RoHS Status |
ROHS3 Compliant |
Contact Plating |
Tin |
Part Number |
MAX16054AZT+T |
MAX3218EAUT+T |
ADG601BRTZ-REEL |
ADG602BRTZ-REEL |
Manufacturer |
Maxim Integrated |
Maxim Integrated |
Analog Devices Inc. |
Analog Devices Inc. |
Package / Case |
SOT-23-6 Thin, TSOT-23-6 |
SOT-23-8 |
SOT-23-6 |
SOT-23-6 |
Number of Pins |
6 |
6 |
6 |
6 |
Supply Voltage |
5 V |
5 V |
5 V |
5 V |
RoHS Status |
ROHS3 Compliant |
ROHS3 Compliant |
ROHS3 Compliant |
ROHS3 Compliant |
Terminal Pitch |
0.95 mm |
0.95 mm |
0.95 mm |
0.95 mm |
Mounting Type |
Surface Mount |
Surface Mount |
Surface Mount |
Surface Mount |
Number of Terminations |
6 |
6 |
6 |
6 |
Part Number |
Description |
Manufacturer |
SP6342EK1-L-V-H-B POWER CIRCUITS |
Power Supply Management Circuit, Fixed, 1 Channel, PDSO6,
LEAD FREE, MO-193AA, TSOT-6 |
Sipex Corporation |
SP6342EK1-L-V-B-C/T POWER CIRCUITS |
Power Supply Management Circuit, Fixed, 1 Channel, PDSO6,
LEAD FREE, MO-193AA, TSOT-6 |
Exar Corporation |
SP6342EK1-L-V-F-F/TB POWER CIRCUITS |
Power Supply Management Circuit, Fixed, 1 Channel, PDSO6,
LEAD FREE, MO-193AA, TSOT-6 |
Exar Corporation |
SP6342EK1-L-V-A-C/T POWER CIRCUITS |
Power Supply Management Circuit, Fixed, 1 Channel, PDSO6,
LEAD FREE, MO-193AA, TSOT-6 |
Exar Corporation |
SP6342EK1-L-U-G-D/T POWER CIRCUITS |
Power Supply Management Circuit, Fixed, 1 Channel, PDSO6,
LEAD FREE, MO-193AA, TSOT-6 |
Sipex Corporation |
SP6342EK1-L-U-J-D/T POWER CIRCUITS |
Power Supply Management Circuit, Fixed, 1 Channel, PDSO6,
LEAD FREE, MO-193AA, TSOT-6 |
Sipex Corporation |
SP6342EK1-L-V-A-B/T POWER CIRCUITS |
Power Supply Management Circuit, Fixed, 1 Channel, PDSO6,
LEAD FREE, MO-193AA, TSOT-6 |
Exar Corporation |
SP6342EK1-L-V-B-A POWER CIRCUITS |
Power Supply Management Circuit, Fixed, 1 Channel, PDSO6,
LEAD FREE, MO-193AA, TSOT-6 |
Exar Corporation |
SP6342EK1-L-V-H-C POWER CIRCUITS |
Power Supply Management Circuit, Fixed, 1 Channel, PDSO6,
LEAD FREE, MO-193AA, TSOT-6 |
Sipex Corporation |
SP6342EK1-L-U-G-A/T POWER CIRCUITS |
Power Supply Management Circuit, Fixed, 1 Channel, PDSO6,
LEAD FREE, MO-193AA, TSOT-6 |
Exar Corporation |
In the fast-evolving field of portable electronics, the MAX16054AZT+T stands out as a valuable component with many uses. Its voltage monitoring features play an important role in improving the safety and performance of different devices.
In PDAs, the MAX16054AZT+T helps ensure consistent data retention and processing. Maintaining steady power levels is crucial for these devices, especially when working with valuable or sensitive data. Using a voltage supervisor can reduce the risks associated with sudden power failures, supporting a longer device lifespan.
In MP3 and video players, maintaining high-quality audio and video relies on stable power. Voltage fluctuations can disrupt performance, but the MAX16054AZT+T helps keep power steady. This stability ensures that dynamic range and sound clarity remain intact, offering an improved experience. Many users value the seamless playback it enables, showing how good power management sets apart well-made devices.
Portable electronics like smartphones and tablets depend strongly on reliable power management. The MAX16054AZT+T helps prevent issues such as battery over-discharge and sudden shutdowns. This addresses frustrations caused by unexpected power losses, reflecting the need for trustworthy voltage monitoring in these devices.
Set-top boxes gain many advantages from the MAX16054AZT+T, especially in improving how efficiently they work and enhancing what you experience. For smooth high-definition content, these devices need to run without breaks. Adding a voltage supervisor helps ensure steady performance, reducing issues like pixelation or streaming interruptions that can disrupt your enjoyment of favorite shows.
For portable instruments, keeping precision and reliability is very important. The MAX16054AZT+T helps protect the accuracy of measurements by maintaining stable voltage levels. Concerns about how voltage changes can cause errors often come up, showing the importance of using detailed voltage management to ensure dependable results.
In home appliances, the MAX16054AZT+T supports the growing demand for smart devices that require stable power to stay connected effectively. As more appliances use AI features, maintaining a steady voltage supply becomes very important. Feedback often shows that power issues can interfere with smart functions, making voltage supervision a key factor in ensuring smooth and reliable appliance performance.
The growing use of consumer electronics increases the need for advanced voltage monitoring solutions like the MAX16054AZT+T. Devices such as gaming consoles and cameras rely on steady power to work properly. Experiences with unexpected power failures highlight the common desire for dependable products that handle power effectively, showing the important role of voltage supervision in these devices.
Given the variety of portable devices available, using the MAX16054AZT+T brings clear improvements in performance and reliability. You often value devices that not only work efficiently but also offer long-lasting and dependable operation. In this context, a voltage supervisor stands out as an effective addition, allowing portable devices to excel in a world where power management is becoming more important.
Maxim Integrated, now a part of the Analog Devices ecosystem, has a proven track record in crafting analog and mixed-signal integrated circuits for a vast array of sectors. These sectors include automotive, industrial, communications, consumer electronics, and computing.
Their product range captures attention with its variety, featuring power management solutions, battery management ICs, an assortment of sensors, and an array of microcontrollers that cater to intricate human needs.
2024-11-18
2024-11-18
An On/Off controller embodies a straightforward feedback control system. It functions by completely opening or closing the controlled variable based on its relation to a predefined setpoint. For example, in a household heating system, this type of controller regulates temperature by activating the heat when it falls below the setpoint and deactivating it when it exceeds it.
The On/Off Controller is also referred to as a "bang-bang controller" or a "two-step controller." These names arise from the controller's binary switching behavior: the output is exclusively either fully ON or completely OFF, without any transitional states. It does not fine-tune its output relative to how much the measured value diverges from the setpoint.
On/Off controllers find their place in rudimentary process control applications where exact proportional control is unnecessary. In heating systems, they are often used in a reverse action setting, increasing output when temperature falls below the setpoint to generate warmth and decreasing output when it rises above to reduce heat.
The MAX16054AZT+T is a singular-switch debouncer featuring an integrated latch and on/off pushbutton control. It is crafted to ensure stable and unblemished switching within electronic circuits.
Equipped with a factory-set delay, the MAX16054AZT+T qualifies input signals to confirm dependable detection of switch engagements, preventing erroneous activations.
The design of the MAX16054AZT+T reduces "contact bounce," the unintended rapid opening and closing of contacts experienced during switch activation.
The MAX16054AZT+T transitions its output state on the falling edge of the input signal. It becomes active when the input voltage drops.
The switch inputs of the MAX16054AZT+T withstand voltages up to 25V, making it robust enough for demanding industrial environments.
The MAX16054AZT+T incorporates undervoltage-lockout circuitry that deactivates the output should the supply voltage fall below a safe threshold.
Owing to its low supply current, the MAX16054AZT+T conserves battery life, which is highly desirable for portable applications.
The MAX16054AZT+T operates within a supply voltage ranging from +2.7V to +5.5V.
The device is housed in a compact 6-pin package, making it ideal for design scenarios where space is at a premium.
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