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  <title>[elecena] Silicon Oscillator with Low-Power Frequency Select, Reset Output, and Enable - zmiany ceny</title>
  <description>The MAX7384 dual-speed silicon oscillator replaces
ceramic resonators, crystals, and crystal-oscillator
modules as the primary and secondary clock source for
microcontrollers in 3V, 3.3V, and 5V applications. The
MAX7384 features a factory-programmed high-speed
oscillator, a 32.768kHz oscillator, a clock enable input,
a clock-selector input, and a µP power-on-reset (POR)
supervisor. The clock output can be switched at any
time between the high-speed clock and the 32.768kHz
clock for low-power operation. Switchover is synchronized
internally to provide glitch-free clock switching.

Unlike typical crystal and ceramic-resonator oscillator
circuits, the MAX7384 is resistant to vibration and EMI.
The high-output-drive current and absence of high-impedance
nodes makes the oscillator less susceptible
to dirty or humid operating conditions. With a wide operating
temperature range as the MAX7384 is a good
choice for demanding home appliance, industrial, and
automotive environments.

The MAX7384 is available with factory-programmed frequencies
ranging from 10MHz to 16MHz. See Table 1 in the full data sheet
for standard frequencies and contact the factory for
custom frequencies and POR thresholds.

The MAX7384 is available in an 8-pin µMAX® package.
The MAX7384 operating temperature range is -40°C to
+125°C.

Applications

* Appliances and Controls
* Automotive
* Consumer Products
* Handheld Products
* Microcontroller Systems
* Portable Equipment
* White Goods

* 2.7V to 5.5V Operation

* High-Speed Oscillator from 10MHz to 16MHz

* Low-Speed 32.768kHz Oscillator

* Glitch-Free Clock-Speed Switching

* Integrated POR (Factory Programmable)

* ±10mA Clock-Output Drive Capability

* 2.5% Initial Accuracy

* Typical 4.5mA Operating Current at 16MHz

* Typical 0.5µA Shutdown Supply Current

* Typical 13µA Operating Current at 32.768kHz

* ±100ppm/°C Frequency Drift

* Clock Enable Input

* 50% Duty Cycle

* 5ns Output Rise and Fall Time

* -40°C to +125°C Temperature Range</description>
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