No. | Partie # | Fabricant | Description | Fiche Technique |
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Panasonic Semiconductor |
TV Vertical Deflection Output-IC |
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Panasonic Semiconductor |
TV VERTICAL DEFLECTION OUTPUT-IC |
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Panasonic Semiconductor |
Vertical deflection output-IC |
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Panasonic |
NTC Thermistors ● Wide selection of temperature coefficients ● Excellent electrical and thermal stability ■ Handling Precautions See Page 200 ■ Recommended Applications ● Temperature detection ● Temperature compensation for measuring instruments ● Temperature compe |
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Panasonic |
Vertical Driver LSI for Video Camera CCD Area Image Sensor • Extremely low noise voltage caused from the diode (2.4V to 39V, 1/3 to 1/10 of our conventional MAZ3000 series) • Extremely good rising performance (in the low-current range) • Easy-to-select the optimum diode because of their finely divided zener- |
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Panasonic |
10-Bit A/D Converter |
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Panasonic |
High Speed Low Power Consumption Bi-CMOS 10-Bit A/D Converter |
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Panasonic |
TV Vertical Deflection Output Circuit |
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Panasonic |
inverter transformation |
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Panasonic |
NTC Thermistors ● Wide selection of temperature coefficients ● Excellent electrical and thermal stability ■ Handling Precautions See Page 200 ■ Recommended Applications ● Temperature detection ● Temperature compensation for measuring instruments ● Temperature compe |
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Panasonic Semiconductor |
Step-down/ step-up/ or inverting DC-DC converter controller • Wide operating supply voltage range (3.6 V to 34 V) (The voltage is limited within a range between 3.6 V and 17 V if it is connected to a step-down volt1.27 (0.605) 0.40±0.25 age circuit.) Seating plane • Totem pole output circuit: output peak cur |
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Panasonic Semiconductor |
Step-down/ step-up/ or inverting DC-DC converter controller • Wide operating supply voltage range (3.6 V to 34 V) (The voltage is limited within a range between 3.6 V and 17 V if it is connected to a step-down volt1.27 (0.605) 0.40±0.25 age circuit.) Seating plane • Totem pole output circuit: output peak cur |
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Panasonic Semiconductor |
Single-channel 1.8-volt step-up DC-DC converter controller a low minimum operating voltage of 1.8 V, and due to being provided in a 10-pin surface mount package with a 0.5 mm lead pitch, is optimal for use in miniature high-efficiency power supplies for portable equipment. Unit: mm 0.5 5 6 0.1±0.1 0.625 |
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Panasonic Semiconductor |
1.8-volt 2-channel step-up DC-DC converter controller low-voltage operation. This IC can obtain the step-up voltage with a small number of external components. The minimum operating voltage is as low as 1.8 V so that it can operate with two dry batteries. In addition, since it uses the 16-pin surface mo |
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Panasonic Semiconductor |
1.8-volt 2-channel step-up/ step-down/ or inverting DC-DC converter controller low-voltage operation. This IC can obtain the step-up, step-down and inverting voltages with a small number of external components. The minimum operating voltage is as low as 1.8 V so that it can operate with two dry batteries. In addition, since it |
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Panasonic Semiconductor |
TV Vertical Deflection Output Circuit |
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Panasonic Semiconductor |
Wide bandwidth video amplifier IC inverting amplifier • 2-input 1-output circuit (DC switch type) • Built-in 6 dB amplifier for RGB signal (1.5 dB for 75 Ω termination) • Built-in sync. separation circuit (Supporting sync. on green and power save) • Higher speed horizontal / vertical sync. signal circui |
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Panasonic |
Vertical Driver LSI for Video Camera CCD Area Image Sensor a built-in power supply circuit that, in conjunction with such external components as four booster capacitors, six voltage stabilization capacitors, eight Schottky barrier diodes, and two Zener diodes, produces stabilized +15.0V and –10.0V power supp |
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Panasonic |
Vertical Driver (8 channels) for CCD Area Image Sensors • Vertical driver block: Consists of level shifters and 2-value/3-value output driver circuits. • SUB driver block: Consists of a level shifter and a 2-value output driver circuit. • Package: 24-pin SSOP s Applications • Digital still cameras, video |
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Panasonic |
A/D D/A Converter |
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