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Motorola Inc |
Quad Low Power Operational Amplifier of this input stage is that the input common mode range can include the negative supply or ground, in single supply operation, without saturating either the input devices or the differential to single –ended converter. The second stage consists of a s |
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Motorola Inc |
DUAL DIFFERENTIAL INPUT OPERATIONAL AMPLIFIERS 1) low power drain, 2) a common mode input voltage range extending to ground/VEE, 3) single supply or split supply operation and 4) pinouts compatible with the popular MC1558 dual operational amplifier. The LM158 series is equivalent to one –half of a |
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Motorola |
Quad Low Power Operational Amplifier ng Device Operation Order this document by LM324/D LM324, LM324A, LM224, LM2902, LM2902V QUAD DIFFERENTIAL INPUT OPERATIONAL AMPLIFIERS SEMICONDUCTOR TECHNICAL DATA 14 1 N SUFFIX PLASTIC PACKAGE CASE 646 (LM224, LM324, LM2902 Only) 14 1 D SUFFIX |
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Motorola |
HIGH PERFORMANCE VOLTAGE COMPARATORS t 8 1 N SUFFIX PLASTIC PACKAGE CASE 626 + Inputs 3 8 1 – D SUFFIX PLASTIC PACKAGE CASE 751 (SO –8) + – 4 8 1 + – 4 8 7 1 RL Output PIN CONNECTIONS Gnd 1 2 8 VEE Input polarity is reversed when Gnd pin is used as an output. VCC Output Ba |
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Motorola Inc |
Quad Single Supply Comparators high gain, wide bandwidth characteristics. This gives the device oscillation tendencies if the outputs are capacitively coupled to the inputs via stray capacitance. This oscillation manifests itself during output transitions (VOL to VOH). To alleviat |
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Motorola |
Quad Low Power Operational Amplifier |
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Motorola |
3 Terminal Adjustable Output Positive Voltage Regulator |
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Motorola |
Quad Low Power Operational Amplifier ng Device Operation Order this document by LM324/D LM324, LM324A, LM224, LM2902, LM2902V QUAD DIFFERENTIAL INPUT OPERATIONAL AMPLIFIERS SEMICONDUCTOR TECHNICAL DATA 14 1 N SUFFIX PLASTIC PACKAGE CASE 646 (LM224, LM324, LM2902 Only) 14 1 D SUFFIX |
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Motorola Inc |
SINGLE SUPPLY/ LOW POWER DUAL COMPARATORS high gain, wide bandwidth characteristics. This gives the device oscillation tendencies if the outputs are capacitively coupled to the inputs via stray capacitance. This oscillation manifests itself during output transitions (VOL to VOH). To alleviat |
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Motorola |
MICROPOWER VOLTAGE REFERENCE DIODES exceptionally low dynamic impedance, low noise and stable operation over time and temperature. Tight voltage tolerances are achieved by on –chip trimming. The large dynamic operating range enables these devices to be used in applications with widely v |
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Motorola |
OPERATIONAL AMPLIFIERS ) VEE (Pins Not Shown Are Not Connected) Figure 3. Representative Circuit Schematic Balance Compensation VCC Inputs + 500 25 50 Output PIN CONNECTIONS Balance Inputs VEE 1 2 3 4 8 7 6 5 Compensation VCC Output Balance (Top View) 450 40 k 40 k |
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Motorola Inc |
Precision Operational Amplifier |
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Motorola Inc |
Three Terminal Positive Voltage Regulators tor Packages Previous Commercial Temperature Range has been Extended to a Junction Temperature Range of –40°C to +125°C T SUFFIX PLASTIC PACKAGE CASE 221A Heatsink surface connected to Pin 2. 1 2 3 Pin 1. Input 2. Ground 3. Output DEVICE TYPE/NOMIN |
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Motorola |
3-Terminal Adjustable Output Negative Voltage Regulators |
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Motorola |
Positive Voltage Regulators |
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Motorola Semiconductor |
(MLM201A / MLM301A) Operational Amplifier |
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Motorola Inc |
Three Terminal Positive Voltage Regulators Short Circuit Current Limiting Output Transistor Safe –Area Compensation T SUFFIX PLASTIC PACKAGE CASE 221A Pin 1. Input 2. Ground 3. Output 1 2 3 Heatsink surface is connected to Pin 2. Simplified Application Input LM340 –XX Output CO** ORDE |
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Motorola |
3-Terminal Adjustable Output Negative Voltage Regulators |
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Motorola |
Positive Voltage Regulators |
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Motorola |
LOW CURRENT THREE-TERMINAL ADJUSTABLE POSITIVE VOLTAGE REGULATOR |
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