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UC1706 Scheda tecnica(PDF) 2 Page - Texas Instruments |
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UC1706 Scheda tecnica(HTML) 2 Page - Texas Instruments |
2 / 6 page 2 UC1706 UC2706 UC3706 DIL-16, SOIC-16 (TOP VIEW) JorNPackage, DW Package PLCC-20, LCC-20 (TOP VIEW) Q, L Packages ABSOLUTE MAXIMUM RATINGS ....................................... N--Pkg ............ J--Pkg Supply Voltage, VIN .........................40V ..................40V Collector Supply Voltage, VC ..................40V ..................40V Output Current (Each Output, Source or Sink) Steady--State .......................... ±500mA .............. ±500mA Peak Transient.......................... ±1.5A ................ ±1.0A Capacitive Discharge Energy .............. 20 mJ................. 15mJ Digital Inputs .............................. 5.5V ................. 5.5V Analog Stop Inputs ......................... VIN.................. VIN Power Dissipation at TA = 25°C (See Note) .......2W ..................1W Power Dissipation at T (Leads/Case) = 25°C ......5W ...................2 (See Note) Operating Temperature Range ...................... --55°C to +125°C Storage Temperature Range........................ --65°C to +150°C Lead Temperature (Soldering, 10 Seconds) ................ 300°C Note: All voltages are with respect to the four ground pins which must be connected together. All currents are positive into, negative out of the specified trerminal. Consult Packaging sections of the Databook for thermal limitations and considerations of package. CONNECTION DIAGRAMS Note: All four ground pins must be connected to a common ground. ELECTRICAL CHARACTERISTICS: Unless otherwise stated, these specifications apply for TA = –55°C to +125°C for the UC1706, –25°C to +85°C for the UC2706 and 0°C to +70°C for the UC3706; VIN =VC = 20V. TA =TJ. PARAMETERS TEST CONDITIONS MIN TYP MAX UNITS VIN Supply Current VIN = 40V 8 10 mA VC Supply Current VC = 40V, Outputs Low 4 5 mA VC Leakage Current VIN =0,VC = 30V, No Load .05 0.1 mA Digital Input Low Level 0.8 V Digital Input High Level 2.2 V Input Current VI = 0 –0.6 –1.0 mA Input Leakage VI = 5V .05 0.1 mA |
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