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LM9044 Arkusz danych(PDF) 2 Page - National Semiconductor (TI) |
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LM9044 Arkusz danych(HTML) 2 Page - National Semiconductor (TI) |
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2 / 6 page ![]() Absolute Maximum Ratings If MilitaryAerospace specified devices are required please contact the National Semiconductor Sales OfficeDistributors for availability and specifications VCC Supply Voltage (RVCC e 15 kX) g 60V VREF Supply Voltage b 03V to a6V DC Input Voltage (Either Input) b 3V to a16V Input Transients (Note 1) g 60V Power Dissipation (see Note 6) 1350 mW Output Short Circuit Duration Indefinite Operating Temperature Range b 40 Cto a125 C Storage Temperature Range b 65 Cto a150 C Soldering Information Plastic Chip Carrier Package Vapor Phase (60 seconds) 215 C Infrared (15 seconds) 220 C See AN-450 ‘‘Surface Mounting Methods and Their Effect on Product Reliability’’ for other methods of soldering sur- face mount devices Electrical Characteristics VCC e 12V VREF e 5V b40 C s TA s 125 C unless otherwise noted Parameter Conditions (Note 2) (Note 3) Units Min Typ Max Min Typ Max Differential Voltage Gain VDIFe05V 441 450 459 VV b 1VsVCMsa1V VDIFe05V b3VsVCMsa1V 436 450 464 VV Gain Error (Note 5) 0sVDIFs1V b 2 0 2 %FS b 1VsVCMsa1V 0sVDIFs1V b 3 0 3 %FS b 3VsVCMsa1V Differential Input Resistance osVDIFs1V 095 120 300 MX b 1VsVCMsa1V 0sVDIFs1V 070 120 400 MX b 3VsVCMsa1V Non-Inverting Input Bias 0sVDIFs1V g 038 g 065 m A Current b 1VsVCMsa1V 0sVDIFs1V g 038 g 15 m A b 3VsVCMsa1V Inverting Input Bias Current 0sVDIFs1V b 25 b 65 b 100 m A b 1VsVCMsa1V 0VsVDIFs1V b 45 b 150 m A b 3VsVCMsa1V VCC Supply Current VCCe12V RVCCe15k 300 500 m A VREF Supply Current 475VsVREFs55V 05 10 mA Common-Mode Voltage b 11 b 31 V Range (Note 4) DC Common-Mode Input Referred 50 60 dB Rejection Ratio b 1VsVCMsa1V VDIFe05V Open Circuit Output Voltage One or Both Inputs 0371 0397 0423 XVREF Open b1VsVCMsa1V b 3VsVCMsa1V 0365 0397 0429 XVREF Short Circuit Output Current Output Grounded 10 27 50 mA VCC Power Supply Rejection VCCe12V RVCCe15K 50 65 dB Ratio VDIFe05V VREF Power Supply VREFe5VDC 60 74 dB Rejection Ratio VDIFe05V Note 1 This test is performed with a 1000X source impedance Note 2 These parameters are guaranteed and 100% production tested Note 3 These parameters will be guaranteed but not 100% production tested Note 4 The LM9044 has been designed to common-mode to b3V but production testing is only performed at g1V Note 5 Gain error is given as a percent of full-scale Full-scale is defined as 1V at the input and 45V at the output Note 6 For operation in ambient temperatures above 25 C the device must be derated based on a maximum junction temperature of 150 C and a thermal resistance of 93 CW junction to ambient 2 |
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