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AMS04AS Datasheet(PDF) 2 Page - Advanced Monolithic Systems |
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AMS04AS Datasheet(HTML) 2 Page - Advanced Monolithic Systems |
2 / 4 page Advanced Monolithic Systems, Inc. www.advanced-monolithic.com Phone (925) 443-0722 Fax (925) 443-0723 AMS04/AMS05 ABSOLUTE MAXIMUM RATINGS Reverse Current 30mA Soldering information Forward Current 10mA TO-92 package: 10 sec. 260 °C Operating Temperature Range 0 °C to 70°C SOIC package: Vapor phase (60 sec) 215 °C Storage temperature -55 °C to +150°C Infrared (15 sec.) 220 °C ELECTRICAL CHARACTERISTICS Electrical Characteristics at IR = 100 µA, and T A = +25°C unless otherwise specified. Parameter Conditions AMS04 Min Typ Max AMS05 Min Typ Max Units Reverse Breakdown Voltage IR = 100 µA 1.235 1.250 1.265 2.475 2.50 2.525 V Reverse Dynamic Impedance IR = 100 µA 1 1 Ω Reverse Breakdown 15 µA ≤IR ≤20mA 20 µA ≤IR ≤1mA 10 0.25 20 1.0 mV Voltage Change 20 µA ≤IR ≤20mA 25 µA ≤IR ≤1mA 10 0.25 2.0 1.0 mV Min. Operating Current 10 20 µA Wide Band Noise 10Hz ≤ f ≤ 10kHz 60 60 µV Temperature Coeff. AMS04A/AMS05A AMS04B/AMS05B IR = 100 µA (Note 3) 50 100 50 100 ppm/°C Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is intended to be functional, but do not guarantee specific performance limits. For guaranteed specifications and test conditions, see the Electrical Characteristics . The guaranteed specifications apply only for the test conditions listed. Note 2: For elevated temperature operation, TJ max is +100°C Thermal Resistance TO-92 SO-8 ϕ JA (junction to ambient) 170°C/W (0.125” leads) 165°C/W Note 3: The average temperature coefficient is defined as the maximum deviation of reference voltage at all measured temperatures between the operating TMAX and TMIN, divided by TMAX - TMIN. The measured temperatures are 0 °C, 25°C and 70°C. TYPICAL APPLICATIONS Precision Current Source Battery Powered 1.25V Reference 10V Reference 7 4 3 2 + - LM312 6 R SET 81k Ω +15V 1 µF I OUT* AMS04 SET OUT R 1.25V I * = AMS05 50k 7 4 6 2 3 - + V OUT = 10V LM312 0.1 µF 180k Ω 60k Ω +15V AMS04 1.2V 360k Ω 9V |
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