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LM2879 Datasheet(PDF) 2 Page - National Semiconductor (TI) |
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LM2879 Datasheet(HTML) 2 Page - National Semiconductor (TI) |
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2 / 8 page ![]() Absolute Maximum Ratings If MilitaryAerospace specified devices are required please contact the National Semiconductor Sales OfficeDistributors for availability and specifications Supply Voltage 35V Input Voltage (Note 1) g 07V Operating Temperature (Note 2) 0 Cto a 70 C Storage Temperature b 65 Cto a150 C Junction Temperature 150 C Lead Temp (Soldering 10 seconds) 260 C ESD rating to be determined Thermal Resistance iJC 1 CW iJA 43 CW Electrical Characteristics VSe28V TTAB e 25 C RL e 8X AV e 50 (34 dB) unless otherwise specified Parameter Conditions Min Typ Max Units Total Supply Current POe0W 12 65 mA Operating Supply Voltage 6 32 V Output PowerChannel fe1 kHz THDe10% TTABe25 C6 8 W Distortion fe1 kHz RLe8X 005 1 % POe1 WChannel Output Swing RLe8X VSb6V Vp-p Channel Separation CBYPASSe50 mF CINe01 mF fe1 kHz Output Referred b 50 b 70 dB VOe4 Vrms PSRR Positive Supply CBYPASSe50 mF CINe01 mF fe120 Hz Output Referred b 50 b 60 dB Vripplee1 Vrms PSRR Negative Supply Measured at DC Input Referred b 60 dB Common-Mode Range Split Supplies g15V Pin 1 g 135 V Tied to Pin 11 Input Offset Voltage 10 mV Noise Equivalent Input Noise RSe0 CINe01 mF BWe20 b20 kHz 25 m V CCIR ARM 30 m V Output Noise Wideband 08 mV RSe0 CINe01 mF AVe200 Open Loop Gain RSe51X fe1 kHz RLe8X 70 dB Input Bias Current 100 nA Input Impedance Open Loop 4 MX DC Output Voltage VSe28V 14 V Slew Rate 2V ms Power Bandwidth 3 dB Bandwidth at 25W 65 kHz Current Limit 15 A Note 1 The input voltage range is normally limited to g07V with respect to pin 1 This range may be extended by shorting pin 1 to the positive supply Note 2 For operation at ambient temperature greater than 25 C the LM2879 must be derated based on a maximum 150 C junction temperature Thermal resistance junction to case is 3 CW Thermal resistance case to ambient is 40 CW Typical Performance Characteristics Device Dissipation vs Ambient Temperature Open Loop Gain vs Frequency Power Dissipation vs Power Output TLH5291 – 3 2 |
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