MC68L11D3FN2

DescriptionThe MC68L11D3FN2 is designed as extended voltage version of the MC68HC11D3 microcontroller that can operate in applications that require supply voltages as low as 3.0V. Operation of it is identical to that of the MC68HC11D3 in all aspects other than electricalparameters.MC68L11D3FN2 has...

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MC68L11D3FN2: DescriptionThe MC68L11D3FN2 is designed as extended voltage version of the MC68HC11D3 microcontroller that can operate in applications that require supply voltages as low as 3.0V. Operation of it is...

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Part Number:
MC68L11D3FN2
Supply Ability:
5000

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  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/11/27

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Product Details

Description



Description

The MC68L11D3FN2 is designed as extended voltage version of the MC68HC11D3 microcontroller that can operate in applications that require supply voltages as low as 3.0V. Operation of it is identical to that of the MC68HC11D3 in all aspects other than electricalparameters.

MC68L11D3FN2 has four features. (1)Suitable for battery powered portable and hand-held applications. (2)Excellent for use in devices such as remote sensors and actuators. (3)Reduced RF noise. (4)Operating performance is same at 5V and 3V. Those are all the main features.

Some absolute maximum ratings have been concluded into several points of MC68L11D3FN2 as follow. (1)Its supply voltage would be from -0.3V to 7.0V. (2)Its input voltage would be from -0.3V to 7.0V. (3)Its operating temperature range would be from -20°C to 70°C. (4)Its storage temperature range would be from -55°C to 150°C. (5)Its current drain per pin excluding Vdd, Vss, AVdd, Vrh and Vrl would be 25mA. It should be noted that stresses above those listed in absolute maximum ratings may cause permanent damage to device.

Also some electrical characteristics of MC68L11D3FN2 are concluded as follow. (1)Its output voltage high level would be min Vdd-0.8V. (2)Its output voltage low level would be max 0.4V. (3)Its input high voltage would be min 0.7Vdd and max Vdd+0.3V for all inputs except RESET and would be min 0.8Vdd and max Vdd+0.3V for RESET. (4)Its input low voltage would be min Vss-0.3V and max 0.2Vdd. (5)Its I/O ports, three-state leakage would be max +/-10uA. (6)Its input leakage current would be max +/-1uA and would be max +/-10uA for MODB/Vstby. (7)Its RAM standby voltage would be min 2.0V and max Vdd. (8)Its RAM standby current would be max 10uA. (9)Its input capacitance would be max 12pF. (10)Its output load capacitance would be max 100pF. (11)Its maximum power dissipation would be 44mW at 1MHz and would be 85mW at 2MHz with Vdd=5.5V and would be 12mW at 1MHz and would be 24mW at 2MHz with Vdd=3.0V for single chip mode. And so on. If you have any question or suggestion or want to know more information please contact us for details. Thank you!




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