Datasheet EL2002, EL2003 (Elantec) - 2

HerstellerElantec
Beschreibung100MHz Video Line Driver
Seiten / Seite12 / 2 — EL2003, EL2033. Absolute Maximum Ratings. Electrical Specifications. TEST …
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DokumentenspracheEnglisch

EL2003, EL2033. Absolute Maximum Ratings. Electrical Specifications. TEST CONDITIONS. LIMITS. PARAMETER. DESCRIPTION. UNIT. LOAD. TEMP. MIN

EL2003, EL2033 Absolute Maximum Ratings Electrical Specifications TEST CONDITIONS LIMITS PARAMETER DESCRIPTION UNIT LOAD TEMP MIN

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EL2003, EL2033 Absolute Maximum Ratings
(TA = 25°C) VS Supply Voltage (V+ - V-) . ±18V or 36V Output Short Circuit Duration . Continuous VIN Input Voltage . .±15V or VS A heat sink is required to keep the junction temperature below the absolute If the input exceeds the ratings shown (or the supplies) or if the input to output maximum when the output is short circuited. voltage exceeds ±7.5V then the input current must be limited to ±50 mA. See T the application hints for more information. A Operating Temperature Range EL2003C/EL2033C. -40°C to +85°C IIN Input Current (See note above) . ±50mA TJ Operating Junction Temperature PD Power Dissipation . See Curves Metal Can . 175°C The maximum power dissipation depends on package type, ambient Plastic . 150°C temperature and heat sinking. See the characteristic curves for more details. TST Storage Temperature . .-65°C to +150°C CAUTION: Stresses above those listed in “Absolute Maximum Ratings” may cause permanent damage to the device. This is a stress only rating and operation of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied. IMPORTANT NOTE: All parameters having Min/Max specifications are guaranteed. Typical values are for information purposes only. Unless otherwise noted, all tests are at the specified temperature and are pulsed tests, therefore: TJ = TC = TA
Electrical Specifications
VS = ±15V, RS = 50Ω
TEST CONDITIONS LIMITS PARAMETER DESCRIPTION V UNIT IN LOAD TEMP MIN TYP MAX
VOS Output Offset Voltage 0 ∞ 25°C -40 5 40 mV TMIN, TMAX -50 50 mV IIN Input Current 0 ∞ 25°C, TMAX -25 -5 25 µA TMIN -50 50 µA RIN Input Resistance ±12V 100Ω 25°C, TMAX 0.5 2 MΩ TMIN 0.05 MΩ AV1 Voltage Gain ±12V 1kΩ 25°C 0.98 0.99 V/V TMIN, TMAX 0.97 V/V AV2 Voltage Gain ±6V 50Ω 25°C 0.83 0.90 V/V TMIN, TMAX 0.80 V/V AV3 Voltage Gain with VS = ±5V ±3V 50Ω 25°C 0.82 0.89 V/V TMIN, TMAX 0.79 V/V V01 Output Voltage Swing ±14V 1kΩ 25°C ±13 ±13.5 V TMIN, TMAX ±12.5 V V02 Output Voltage Swing ±12V 100Ω 25°C ±10.5 ±11.3 V TMIN, TMAX ±10 V ROUT Output Resistance ±2V 50Ω 25°C 7 10 Ω TMIN, TMAX 12 Ω IOUT Output Current ±12V (Note 1) 25°C ±105 ±230 mA TMIN, TMAX ±100 mA IS Supply Current 0 ∞ 25°C, TMAX 10 15 mA TMIN 20 mA PSRR Supply Rejection (Note 2) 0 ∞ 25°C 60 80 dB TMIN, TMAX 50 dB SR1 Slew Rate (Note 3) ±10V 1kΩ 25°C 600 1200 V/µs SR2 Slew Rate (Note 4) ±5V 50Ω 25°C 200 400 V/µs THD Distortion @ 1kHz 4VRMS 50Ω 25°C 0.2 1 % 2