Allicdata Part #: | MAX6033CAUT25#TG16-ND |
Manufacturer Part#: |
MAX6033CAUT25#TG16 |
Price: | $ 1.86 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Maxim Integrated |
Short Description: | IC VREF SERIES 2.5V SOT-6 |
More Detail: | Series Voltage Reference IC ±0.1% 15mA SOT-23-6 |
DataSheet: | MAX6033CAUT25#TG16 Datasheet/PDF |
Quantity: | 1000 |
2500 +: | $ 1.68356 |
Series: | -- |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
Reference Type: | Series |
Output Type: | Fixed |
Voltage - Output (Min/Fixed): | 2.5V |
Current - Output: | 15mA |
Tolerance: | ±0.1% |
Temperature Coefficient: | 40ppm/°C |
Noise - 0.1Hz to 10Hz: | 16µVp-p |
Noise - 10Hz to 10kHz: | 12µVrms |
Voltage - Input: | 2.7 V ~ 12.6 V |
Current - Supply: | 85µA |
Operating Temperature: | -40°C ~ 125°C (TA) |
Mounting Type: | Surface Mount |
Package / Case: | SOT-23-6 |
Supplier Device Package: | SOT-23-6 |
Base Part Number: | MAX6033 |
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Power Management IC (PMIC) voltage reference solutions such as MAX6033CAUT25#TG16 offers precise, high-accuracy, low-drift voltage references for communication and computing applications. This device is designed for use with modern energy-saving powered systems, such as solid-state lighting, as well as for a wide range of other general voltage regulation applications where accuracy and low- temperature drift are important.
The primary application of the MAX6033CAUT25#TG16 is in reference voltage applications like regulators and analog-to-digital converters, where a precise output voltage is required. It is also suitable for use in precision current sources, such as those found in medical, industrial and automotive electronics. With its low-drift and high-accuracy performance, it is ideal for applications that require a tight tolerance voltage.
The MAX6033CAUT25#TG16 utilizes a CMOS process to make a precision, low-drift voltage reference that typically exhibits a temperature drift of 0.1ppm/°C. This makes it suitable for accurate, reliable, and temperature compensation circuits. Like its predecessors, the MAX6033CAUT25#TG16 offers a full range temperature coefficient of 20ppm/°C.
The MAX6033CAUT25#TG16 works by producing a linear reference voltage through the usage of an internal CMOS amplifier and an accurate reference voltage : 2.5000V. The reference voltage is held due to the combination of the CMOS amplifier\'s internal feedback loop and the negative temperature coefficient of the internal reference diode. Any changes in temperature can be compensated using this circuit.
This voltage reference can also be configured in different ways that can be customized for various applications. This can be done by connecting a few external resistors. For example, the output voltage for applications requiring higher voltages can be offset by adding a resistor connected to the output node which will increase the reference voltage to a maximum of 3.3V. Similarly, a displacement current source may also be used to achieve a range of voltage outputs meaning this device can be used in applications where stabilized low voltage supplies are demanded.
The MAX6033CAUT25#TG16 also features a power-on reset. When the device is first turned on, the voltage reference is reset to 2.500V to ensure that the device is operating with its highest accuracy. This reset is triggered at power-on, or at startup, so that any variation in the supply voltage or other external factor that would otherwise affect the device\'s accuracy, is negated when the device is first initialized.
In conclusion, the MAX6033CAUT25#TG16 is an ultra-low-drift precision voltage reference which offers high accuracy and excellent temperature performance, making it the ideal choice for voltage reference applications. Its high-accuracy, low temperature drift and highly customizable configurations make it well suited for a wide range of applications in communication, computing, medical, industrial, and automotive electronic systems. With its power-on reset circuit, the MAX6033CAUT25#TG16 provides an important safety feature to ensure its accuracy in any environment.
The specific data is subject to PDF, and the above content is for reference
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