MAX734 (5)

MAX734 is available from Analog Devices at Xecor. Designed for converting and regulating voltage for flash memory applications, the MAX734 offers high efficiency, a wide input voltage range of 3V to 12V, and a stable output voltage of 12V with a current capacity of 120mA. Available in a compact 8-SOIC (0.154 inch, 3.90mm Width) package, it is ideal for embedded systems, portable electronics, and other applications requiring reliable power management. Whether used in industrial automation, telecommunications, or consumer electronics, this series ensures consistent performance, low power consumption, and robust operation for demanding applications. Xecor is an authorized distributor for Analog Devices. Please view our extensive selection of the MAX734 series below.

Part Number Description Package Inventory Add To Bom
MAX734ESA+T Switching Voltage Regulators 12V, 120mA Flash Memory Programming Supply SOIC-Narrow-8 6,709
MAX734CSA+T Switching Voltage Regulators 12V, 120mA Flash Memory Programming Supply SOIC-Narrow-8 4,896
MAX734CSA+ Maximize efficiency with MAX734CSA programming supply SOIC-8 2,986
MAX734ESA Power up with MAX734ESA step-up converter SOIC-8 4,247
MAX734ESA+ Power up with MAX734ESA step-up converter SOIC-8 7,207

Key Featrues

Compact SOIC-8 Package: The device is housed in an 8-SOIC package, making it highly compact and suitable for space-constrained applications. Its small footprint allows for efficient integration into portable electronics and embedded systems, enhancing design flexibility.
Wide Input Voltage Range (3V to 12V): The regulator supports a broad input voltage range, enabling it to operate with various power sources, including batteries and low-voltage supplies. This versatility makes it ideal for applications requiring stable output from fluctuating input voltages.
High Output Voltage Precision (12.12V): With a precise output voltage of 12.12V, the regulator ensures reliable performance in sensitive applications such as flash memory programming and other electronics requiring stable power delivery.
Efficient Switching Frequency (170 kHz): The device operates at a switching frequency of 170 kHz, optimizing power conversion efficiency and reducing heat generation. This feature is particularly beneficial for energy-efficient designs and prolongs the lifespan of the device.
Wide Operating Temperature Range (-40°C to +85°C): The regulator is designed to function in extreme temperature conditions, making it suitable for industrial, automotive, and outdoor applications. Its robust temperature tolerance ensures consistent performance in harsh environments.

Applications

Flash Memory Programming Supply: The MAX734 is specifically designed to provide a stable 12V output for programming flash memory devices. Its ability to step up voltage from as low as 3V to 12V makes it ideal for portable or low-power systems where reliable flash memory programming is required, such as in embedded systems or IoT devices.
Portable Device Power Management: With its compact 8-SOIC package and wide input voltage range (3V to 12V), the MAX734 is well-suited for power management in portable devices like handheld meters, medical devices, or portable data loggers. Its efficient step-up conversion ensures consistent power delivery even in battery-powered applications.
Industrial Sensor Interface: The MAX734 can be used to power and interface with industrial sensors that require a stable 12V supply, such as pressure sensors or proximity sensors. Its robust design and ability to operate in a wide temperature range (-40°C to +85°C) make it suitable for harsh industrial environments.
Automotive Electronics: The MAX734 is an excellent choice for automotive applications where a reliable 12V supply is needed for components like memory modules, sensors, or control units. Its ability to handle input voltages as low as 3V ensures compatibility with automotive power systems, even during low-battery conditions.
These applications leverage the MAX734's ability to provide a stable 12V output from a wide range of input voltages, making it versatile for various precision and power-sensitive systems.