MC33263NW-30R2 ON Semiconductor, MC33263NW-30R2 Datasheet
![IC, LDO VOLT REG, 3V, 150mA, 6-SOT-23](/photos/40/60/406098/4243380_sml.jpg)
MC33263NW-30R2
Specifications of MC33263NW-30R2
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MC33263NW-30R2 Summary of contents
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... April, 2000 – Rev when receiving an OFF out = 150 mA MC33263NW–28R2 MC33263NW–30R2 MC33263NW–32R2 MC33263NW–33R2 MC33263NW–38R2 6 Input MC33263NW–40R2 MC33263NW–47R2 MC33263NW–50R2 4 All Devices Available in SOT–23L 6 Lead Package Output 5 GND 1 http://onsemi.com MARKING DIAGRAMS 6 SOT–23L ...
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DEVICE MARKING XALYW Marking A 1st Digit 2nd Digit A 3rd Digit L 4th/5th Digits YW MAXIMUM RATINGS Rating Power Supply Voltage Power Dissipation and Thermal Resistance Maximum Power Dissipation NW Suffix, Plastic ...
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ELECTRICAL CHARACTERISTICS (For typical values for min/max values – +85 C, Max 150 C) Characteristics out + 1 ...
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... Noise Performances – Unlike other LDOs, the MC33263 is a true low–noise regulator. With bypass capacitor, it typically reaches the incredible level of 25 noise between 100 Hz and 100 kHz. To give maximum insight on noise specifications, ON Semiconductor includes spectral density graphics as well as noise dependency versus bypass capacitor. MC33263 ...
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... If a 150 mA output current is needed, the ground current is extracted from the data–sheet curves: 6 150 mA. For a MC33263NW28R2 (2.8 V), the maximum input voltage will then be 6. rather comfortable margin. Typical Application – The following figure portraits the typical application for the MC33263 where both input/output decoupling capacitors appear ...
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MC33263 Wake–up Improvement – In portable applications, an immediate response to an enable signal is vital. If noise is not of concern, the MC33263 without a m bypass capacitor settles in nearly 20 s and typically delivers m 65 VRMS ...
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The PNP being wired upon the bypass pin, it shall not degrade the noise response of the MC33263. Figure 6 confirms the good behavior of the integrated circuit in this 350 300 250 200 150 100 ...
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TYPICAL PERFORMANCE CHARACTERISTICS 7 3.8 V 6.0 V out = 2 1.0 F 5.0 T amb = 25 C 4.0 3.0 2.0 1 100 120 140 ...
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TYPICAL PERFORMANCE CHARACTERISTICS Load Transient Response versus Load Current Slope 3 100 mV/div mV/div 200 s/div T amb = 25 C Y1: OUTPUT CURRENT, Y2: OUTPUT VOLTAGE Figure ...
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TYPICAL PERFORMANCE CHARACTERISTICS 350 0 nF 300 250 3.3 nF 200 C byp = 10 nF 150 100 Vrms @ C bypass = Vrms @ C bypass = 3 ...
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TYPICAL PERFORMANCE CHARACTERISTICS 250 200 150 100 100 I O (mA) Figure 21. Dropout Voltage versus I out 2.805 2.800 2.795 2.790 2.785 2.780 2.775 2.770 –40 – TEMPERATURE ( C) Figure 23. ...
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