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LTM8080 Datasheet(PDF) 4 Page - Analog Devices |
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LTM8080 Datasheet(HTML) 4 Page - Analog Devices |
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4 / 26 page ![]() LTM4709 4 Rev. 0 For more information www.analog.com ELECTRICAL CHARACTERISTICS The l denotes the specifications which apply over the full operating temperature range, otherwise specifications are at TA = 25°C (Note 2), COUT = 10µF, per the typical application. Note 1: Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. Exposure to any Absolute Maximum Rating condition for extended periods may affect device reliability and lifetime. Note 2: The LTM4709 is tested under pulsed loading conditions such that TJ ≈ TA. The LTM4709E is guaranteed to meet performance specifications from 0°C to 125°C operating junction temperature range. The LTM4709E specifications over the –40°C to 125°C operating junction temperature range are assured by design, characterization and correlation with statistical process controls. The LTM4709I is guaranteed to meet performance specifications over the –40°C to 125°C operating junction temperature range, and the LTM4709H is guaranteed over the –40°C to 150°C operating junction temperature range. High junction temperatures degrade operating lifetimes. The maximum ambient temperature consistent with these specifications is determined by specific operating conditions in conjunction with board layout, the rated package thermal impedance and other environmental factors. Note 3: To maintain proper performance and regulation, the BIAS supply voltage must be higher than the input voltage VIN. For the output voltage VOUT, the BIAS voltage must satisfy the following conditions: 2.375V ≤ VBIAS ≤ 5.5V and VBIAS ≥ (VOUT + 1.2V). Note 4: Dropout voltage, VDO, is the minimum input-to-output voltage difference at a specified output current. In dropout, the output voltage equals VIN – VDO. Note 5: Operating conditions are limited by maximum junction temperature. See output current thermal derating curves for different VIN, VOUT, and TA in Figure 7 to Figure 13. The regulated output voltage specification does not apply to all possible combinations of input voltage and output current. When operating at maximum output current, limit the input voltage range to VIN – VOUT ≤ 300mV. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS IREF(START-UP) Fast Start-Up Ref Pin Current 2 mA VTH(START-UP) Fast Start-Up Turn Off Threshold Measured as Percentage of Final REF Pin Voltage l 96 98.9 101.5 % UVLO (BIAS) VBIAS Undervoltage Lockout EN = VBIAS, VIN = 0.9V, VOUT = 0.5V, VBIAS Rising EN = VBIAS, VIN = 0.9V, VOUT = 0.5V, VBIAS Falling l l 2.16 2.02 2.21 2.06 2.25 2.10 V V VIOC Input to Output Differential Voltage Control VIOC Amplifier Gain VIOC Amplifier Offset VIOC Pin Source Current: VBIAS > VIOC + 1V VIOC Pin Sink Current: VBIAS > VIOC + 1V l l 790 200 1 800 20 810 V/V mV µA µA VOL Logic-0 State of VO10, VO11, VO12, VO20, VO21, VO22, VO30, VO31, VO32 l 0.3 V VOZ Logic-Hi-Z State of VO10, VO11, VO12, VO20, VO21, VO22, VO30, VO31, VO32 l 0.95 1.15 V VOH Logic-1 State of VO10, VO11, VO12, VO20, VO21, VO22, VO30, VO31, VO32 l 1.9 V ICTRL Pin Current of VO10, VO11, VO12, VO20, VO21, VO22, VO30, VO31, VO32 Apply 2.5V to Output Control Pins 50 μA VEN EN Pin Threshold EN Rising, VBIAS = 2.375V Hysteresis l 1.20 1.26 80 1.32 V mV IEN EN Pin Current VEN = 0V, VBIAS = 5.5V VEN = 1.3V, VBIAS = 5.5V VEN = 5.5V, VBIAS = 0V 0.1 10 ±1 20 µA µA µA |
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