LM2902-Q1 TI | Alldatasheet

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/C0076/C0077/C0050/C0057/C0048/C0050/C0262/C0081/C0049 /C0081/C0085/C0065/C0068/C0082/C0085/C0080/C0076/C0069 /C0079/C0080/C0069/C0082/C0065/C0084/C0073/C0079/C0078/C0065/C0076 /C0065/C0077/C0080/C0076/C0073/C0070/C0073/C0069/C0082 SGLS178D − AUGUST 2003 − REVISED DECEMBER 2004 1POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 /C0068Qualification in Accordance With AEC-Q100 † /C0068Qualified for Automotive Applications /C0068Customer-Specific Configuration Control Can Be Supported Along With Major-Change Approval /C0068ESD Protection <500 V Per MIL-STD-883, Method 3015; Exceeds 200 V Using Machine Model (C = 200 pF, R = 0); 1500 V Using Charged Device Model /C0068ESD Human Body Model /C00622 kV Machine Model /C0062200 V and Charge Device Model = 2 kV For K-Suffix Devices. /C0068Low Supply-Current Drain Independent of Supply Voltage. . . 0.8 mA Typ /C0068Low Input Bias and Offset Parameters: − Input Offset Voltage...3 m V T y p − Input Offset Current...2 n A T y p − Input Bias Current...2 0 n A T y p † Contact factory for details. Q100 qualification data available on request. /C0068Common-Mode Input Voltage Range Includes Ground, Allowing Direct Sensing Near Ground /C0068Differential Input Voltage Range Equal to Maximum-Rated Supply Voltage: − Non-V devices...2 6 V − V-Suffix devices...3 2 V /C0068Open-Loop Differential Voltage Amplification. . . 100 V/mV Typ /C0068Internal Frequency Compensation description/ordering information This device consists of four independent high-gain frequency-compensated operational amplifiers that are designed specifically to operate from a single supply over a wide range of voltages. Operation from split supplies is possible when the difference between the two supplies is 3 V to 26 V (3 V to 32 V for V-suffixed devices), and VCC is at least 1.5 V more positive than the input common-mode voltage. The low supply-current drain is independent of the magnitude of the supply voltage. Applications include transducer amplifiers, dc amplification blocks, and all the conventional operational-amplifier circuits that now can be more easily implemented in single-supply-voltage systems. For example, the LM2902 can be operated directly from the standard 5-V supply that is used in digital systems and easily provides the required interface electronics without requiring additional ±15-V supplies.

ORDERING INFORMATION

AT 25°C MAX V CC PACKAGE ‡ ORDERABLE PART NUMBER TOP-SIDE MARKING 7 mV 26 V SOIC (D) Reel of 2500 LM2902QDRQ1 2902Q1 7 mV 26 V TSSOP (PW) Reel of 2000 LM2902QPWRQ1 2902Q1 −40°C to 125°C 7 mV 32 V SOIC (D) Reel of 2500 LM2902KVQDRQ1 2902KVQ −40°C to 125°C 7 mV 32 V TSSOP (PW) Reel of 2000 LM2902KVQPWRQ1 2902KVQ 2 mV 32 V SOIC (D) Reel of 2500 LM2902KAVQDRQ1 2902KAQ 2 mV 32 V TSSOP (PW) Reel of 2000 LM2902KAVQPWRQ1 2902KAQ ‡ Package drawings, standard packing quantities, thermal data, symbolization, and PCB design guidelines are available at www.ti.com/sc/package. Copyright  2004 Texas Instruments Incorporated/C0080/C0082/C0079/C0068/C0085/C0067/C0084/C0073/C0079/C0078 /C0068/C0065/C0084/C0065 /C0105/C0110/C0102/C0111/C0114/C0109/C0097/C0116/C0105/C0111/C0110 /C0105/C0115 /C0099/C0117/C0114/C0114/C0101/C0110/C0116 /C0097/C0115 /C0111/C0102 /C0112/C0117/C0098/C0108/C0105/C0099/C0097/C0116/C0105/C0111/C0110 /C0100/C0097/C0116/C0101/C0046 /C0080/C0114/C0111/C0100/C0117/C0099/C0116/C0115 /C0099/C0111/C0110/C0102/C0111/C0114/C0109 /C0116/C0111 /C0115/C0112/C0101/C0099/C0105/C0102/C0105/C0099/C0097/C0116/C0105/C0111/C0110/C0115 /C0112/C0101/C0114 /C0116/C0104/C0101 /C0116/C0101/C0114/C0109/C0115 /C0111/C0102 /C0084/C0101/C0120/C0097/C0115 /C0073/C0110/C0115/C0116/C0114/C0117/C0109/C0101/C0110/C0116/C0115 /C0115/C0116/C0097/C0110/C0100/C0097/C0114/C0100 /C0119/C0097/C0114/C0114/C0097/C0110/C0116/C0121/C0046 /C0080/C0114/C0111/C0100/C0117/C0099/C0116/C0105/C0111/C0110 /C0112/C0114/C0111/C0099/C0101/C0115/C0115/C0105/C0110/C0103 /C0100/C0111/C0101/C0115 /C0110/C0111/C0116 /C0110/C0101/C0099/C0101/C0115/C0115/C0097/C0114/C0105/C0108/C0121 /C0105/C0110/C0099/C0108/C0117/C0100/C0101 /C0116/C0101/C0115/C0116/C0105/C0110/C0103 /C0111/C0102 /C0097/C0108/C0108 /C0112/C0097/C0114/C0097/C0109/C0101/C0116/C0101/C0114/C0115/C0046 Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet. 1OUT 1IN− 1IN+ VCC 2IN+ 2IN− 2OUT 4OUT 4IN− 4IN+ GND 3IN+ 3IN− 3OUT D OR PW PACKAGE (TOP VIEW)

/C0076/C0077/C0050/C0057/C0048/C0050/C0262/C0081/C0049 /C0081/C0085/C0065/C0068/C0082/C0085/C0080/C0076/C0069 /C0079/C0080/C0069/C0082/C0065/C0084/C0073/C0079/C0078/C0065/C0076 /C0065/C0077/C0080/C0076/C0073/C0070/C0073/C0069/C0082 SGLS178D − AUGUST 2003 − REVISED DECEMBER 2004

2 POST OFFICE BOX 655303 • DALLAS, TEXAS 75265

symbol (each amplifier) IN− IN+ OUT schematic (each amplifier) To Other Amplifiers ≈6-µA Current Regulator VCC OUT GND IN− IN+ ≈100-µA Current Regulator ≈50-µA Current Regulator COMPONENT COUNT (TOTAL DEVICE) Epi-FET Transistors Diodes Resistors Capacitors ≈6-µA Current Regulator

/C0076/C0077/C0050/C0057/C0048/C0050/C0262/C0081/C0049 /C0081/C0085/C0065/C0068/C0082/C0085/C0080/C0076/C0069 /C0079/C0080/C0069/C0082/C0065/C0084/C0073/C0079/C0078/C0065/C0076 /C0065/C0077/C0080/C0076/C0073/C0070/C0073/C0069/C0082 SGLS178D − AUGUST 2003 − REVISED DECEMBER 2004 3POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 absolute maximum ratings over operating free-air temperature range (unless otherwise noted)† LM2902-Q1 LM2902KV-Q1 UNIT Supply voltage, VCC (see Note 1) 26 32 V Differential input voltage, VID (see Note 2) ±26 ±32 V Input voltage, VI (either input) −0.3 to 26 −0.3 to 32 V Duration of output short circuit (one amplifier) to ground at (or below) TA = 25°C, VCC ≤ 15 V (see Note 3) Unlimited Unlimited Package thermal impedance, θJA (see Notes 4 and 5) D package (0 LFPM) 101 101 °C/WPackage thermal impedance, θJA (see Notes 4 and 5) PW package 113 113 °C/W Operating virtual junction temperature, TJ 142 142 °C Storage temperature range, Tstg −65 to 150 −65 to 150 °C † Stresses beyond those listed under “absolute maximum ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated under “recommended operating conditions” is not implied. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability. NOTES: 1. All voltage values, except differential voltages and VCC specified for the measurement of IOS , are with respect to the network GND. 2. Differential voltages are at IN+ with respect to IN−. 3. Short circuits from outputs to VCC can cause excessive heating and eventual destruction. 4. Maximum power dissipation is a function of TJ(max), θJA, and TA. The maximum allowable power dissipation at any allowable ambient temperature is PD = (TJ(max) − TA)/θJA. Operating at the absolute maximum TJ of 142°C can affect reliability. 5. The package thermal impedance is calculated in accordance with JESD 51-7.

/C0076/C0077/C0050/C0057/C0048/C0050/C0262/C0081/C0049 /C0081/C0085/C0065/C0068/C0082/C0085/C0080/C0076/C0069 /C0079/C0080/C0069/C0082/C0065/C0084/C0073/C0079/C0078/C0065/C0076 /C0065/C0077/C0080/C0076/C0073/C0070/C0073/C0069/C0082 SGLS178D − AUGUST 2003 − REVISED DECEMBER 2004

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electrical characteristics at specified free-air temperature, VCC = 5 V (unless otherwise noted) PARAMETER TEST CONDITIONS † TA ‡ LM2902-Q1 UNITPARAMETER TEST CONDITIONS † TA ‡ MIN TYP § MAX UNIT VIO Input offset voltage VCC = 5 V to 26 V, 25°C 3 7 mVVIO Input offset voltage VCC = 5 V to 26 V, VIC = VICRmin,VO = 1.4 V Full range 10 mV IIO Input offset current VO = 1.4 V 25°C 2 50 nAIIO Input offset current V O = 1.4 V Full range 300 nA IIB Input bias current VO = 1.4 V 25°C −20 −250 nAIIB Input bias current V O = 1.4 V Full range −500 nA 25°C 0 to VICR Common-mode input voltage range VCC = 5 V to 26 V 25°C 0 to VCC − 1.5 VVICR Common-mode input voltage range VCC = 5 V to 26 V Full range 0 to V Full range 0 to VCC − 2 R L = 10 kΩ 25°C VCC − 1.5 VOH High-level output voltage VCC = 26 V, R L = 2 kΩ Full range 22 VVOH High-level output voltage VCC = 26 V, R L ≥ 10 kΩ Full range 23 24 V VOL Low-level output voltage R L ≤ 10 kΩ Full range 5 20 mV AVD Large-signal differential voltage VCC = 15 V, VO = 1 V to 11 V,25°C 100 V/mVAVD Large-signal differential voltage amplification VCC = 15 V, VO = 1 V to 11 V, R L ≥ 2 kΩ Full range 15 V/mV CMRR Common-mode rejection ratio VIC = VICRmin 25°C 50 80 dB kSVR Supply-voltage rejection ratio (∆VCC /∆VIO) 25°C 50 100 dBkSVR Supply-voltage rejection ratio (∆VCC /∆VIO) 25°C 50 100 dB VO1/VO2 Crosstalk attenuation f = 1 kHz to 20 kHz 25°C 120 dB VCC = 15 V, VID = 1 V, 25°C −20 −30 −60VCC = 15 V, VID = 1 V, VO = 0 Full range −10 mA IO Output current VCC = 15 V, VID = −1 V, 25°C 10 20 mA IO Output current VCC = 15 V, VID = −1 V, VO = 15 V Full range 5 VID = −1 V, V O = 200 mV 25°C 30 µA IOS Short-circuit output current VCC at 5 V, GND at −5 V VO = 0, 25°C ±40 ±60 mA Supply current VO = 2.5 V, No load Full range 0.7 1.2 ICC Supply current (four amplifiers) VCC = 26 V VO = 0.5 VCC , No load Full range 1.4 3 mA † All characteristics are measured under open-loop conditions, with zero common-mode input voltage, unless otherwise specified. ‡ Full range is −40°C to 125°C. § All typical values are at TA = 25°C.

/C0076/C0077/C0050/C0057/C0048/C0050/C0262/C0081/C0049 /C0081/C0085/C0065/C0068/C0082/C0085/C0080/C0076/C0069 /C0079/C0080/C0069/C0082/C0065/C0084/C0073/C0079/C0078/C0065/C0076 /C0065/C0077/C0080/C0076/C0073/C0070/C0073/C0069/C0082 SGLS178D − AUGUST 2003 − REVISED DECEMBER 2004 5POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 electrical characteristics at specified free-air temperature, VCC = 5 V (unless otherwise noted) (continued) PARAMETER TEST CONDITIONS † TA ‡ LM2902KV-Q1 UNITPARAMETER TEST CONDITIONS † TA ‡ MIN TYP § MAX UNIT VCC = 5 V to 32 Non-A 25°C 3 7 VIO Input offset voltage VCC = 5 V to 32 Non-A devices Full range 10 mVVIO Input offset voltage V, VIC = VICRmin, VO = 1.4 V A-suffix 25°C 1 2 mVVIC = VICRmin, VO = 1.4 V A-suffix devices Full range 4 ∆VIO/∆T Temperature drift R S = 0 Ω Full range 7 µV/°C IIO Input offset current VO = 1.4 V 25°C 2 50 nAIIO Input offset current V O = 1.4 V Full range 150 nA ∆IIO/∆T Temperature drift Full range 10 pA/°C IIB Input bias current VO = 1.4 V 25°C −20 −250 nAIIB Input bias current V O = 1.4 V Full range −500 nA 25°C 0 to VICR Common-mode input voltage range VCC = 5 V to 32 V 25°C 0 to VCC − 1.5 VVICR Common-mode input voltage range VCC = 5 V to 32 V Full range 0 to V Full range 0 to VCC − 2 R L = 10 kΩ 25°C VCC − 1.5 VOH High-level output voltage VCC = 32 V, R L = 2 kΩ Full range 26 VVOH High-level output voltage VCC = 32 V, R L ≥ 10 kΩ Full range 27 V VOL Low-level output voltage R L ≤ 10 kΩ Full range 5 20 mV AVD Large-signal differential voltage VCC = 15 V, VO = 1 V to 11 V, 25°C 25 100 V/mVAVD Large-signal differential voltage amplification VCC = 15 V, VO = 1 V to 11 V, R L ≥ 2 kΩ Full range 15 V/mV Amplifier-to-amplifier coupling¶ f = 1 kHz to 20 kHz, input referred 25°C 120 dB CMRR Common-mode rejection ratio VIC = VICRmin 25°C 60 80 dB kSVR Supply-voltage rejection ratio 25°C 60 100 dBkSVR Supply-voltage rejection ratio (∆VCC /∆VIO) 25°C 60 100 dB VO1/VO2 Crosstalk attenuation f = 1 kHz to 20 kHz 25°C 120 dB VCC = 15 VID = 1 V, 25°C −20 −30 −60VCC = 15 VO = 0 VID = 1 V, Full range −10 mAIO Output current VCC = 15 VID = −1 V, 25°C 10 20 mAIO Output current VCC = 15 VO = 15 V VID = −1 V, Full range 5 VID = −1 V, VO = 200 mV 25°C 12 40 µA IOS Short-circuit output current VCC at 5 V, GND at −5 V VO = 0, 25°C ±40 ±60 mA Supply current VO = 2.5 V, No load Full range 0.7 1.2 ICC Supply current (four amplifiers) VCC = 32 V VO = 0.5 VCC , No load Full range 1.4 3 mA † All characteristics are measured under open-loop conditions, with zero common-mode input voltage, unless otherwise specified. ‡ Full range is −40°C to 125°C. § All typical values are at TA = 25°C. ¶ Due to proximity of external components, ensure that coupling is not originating via stray capacitance between these external parts. Typically, this can be detected, as this type of coupling increases at higher frequencies.

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Figure 1. Unity-Gain Amplifier Figure 2. Noise-Test Circuit

Orderable Device Status(1) Package Type Package Drawing Pins Package Qty Eco Plan(2) Lead/Ball FinishMSL Peak Temp (3) LM2902KAVQDRQ1 ACTIVE SOIC D 14 2500 Pb-Free (RoHS) CU NIPDAU Level-2-250C-1 YEAR/ Level-1-235C-UNLIM LM2902KAVQPWRQ1 ACTIVE TSSOP PW 14 2000 TBD CU NIPDAU Level-1-250C-UNLIM LM2902KVQDRQ1 ACTIVE SOIC D 14 2500 Pb-Free (RoHS) CU NIPDAU Level-2-250C-1 YEAR/ Level-1-235C-UNLIM LM2902KVQPWRQ1 ACTIVE TSSOP PW 14 2000 TBD CU NIPDAU Level-1-250C-UNLIM LM2902QDRQ1 ACTIVE SOIC D 14 2500 Pb-Free (RoHS) CU NIPDAU Level-2-250C-1 YEAR/ Level-1-235C-UNLIM LM2902QPWRQ1 ACTIVE TSSOP PW 14 2000 TBD CU NIPDAU Level-1-250C-UNLIM (1)The marketing status values are defined as follows: ACTIVE: Product device recommended for new designs. LIFEBUY: TI has announced that the device will be discontinued, and a lifetime-buy period is in effect. NRND: Not recommended for new designs. Device is in production to support existing customers, but TI does not recommend using this part in a new design. PREVIEW: Device has been announced but is not in production. Samples may or may not be available. OBSOLETE: TI has discontinued the production of the device. (2)Eco Plan - The planned eco-friendly classification: Pb-Free (RoHS), Pb-Free (RoHS Exempt), or Green (RoHS & no Sb/Br) - please check http://www.ti.com/productcontentfor the latest availability information and additional product content details. TBD: The Pb-Free/Green conversion plan has not been defined. Pb-Free (RoHS):TI's terms "Lead-Free" or "Pb-Free" mean semiconductor products that are compatible with the current RoHS requirements for all 6 substances, including the requirement that lead not exceed 0.1% by weight in homogeneous materials. Where designed to be soldered at high temperatures, TI Pb-Free products are suitable for use in specified lead-free processes. Pb-Free (RoHS Exempt):This component has a RoHS exemption for either 1) lead-based flip-chip solder bumps used between the die and package, or 2) lead-based die adhesive used between the die and leadframe. The component is otherwise considered Pb-Free (RoHS compatible) as defined above. Green (RoHS & no Sb/Br):TI defines "Green" to mean Pb-Free (RoHS compatible), and free of Bromine (Br) and Antimony (Sb) based flame retardants (Br or Sb do not exceed 0.1% by weight in homogeneous material) (3) MSL, Peak Temp. -- The Moisture Sensitivity Level rating according to the JEDEC industry standard classifications, and peak solder temperature. Important Information and Disclaimer:The information provided on this page represents TI's knowledge and belief as of the date that it is provided. TI bases its knowledge and belief on information provided by third parties, and makes no representation or warranty as to the accuracy of such information. Efforts are underway to better integrate information from third parties. TI has taken and continues to take reasonable steps to provide representative and accurate information but may not have conducted destructive testing or chemical analysis on incoming materials and chemicals. TI and TI suppliers consider certain information to be proprietary, and thus CAS numbers and other limited information may not be available for release. In no event shall TI's liability arising out of such information exceed the total purchase price of the TI part(s) at issue in this document sold by TI to Customer on an annual basis. PACKAGE OPTION ADDENDUM www.ti.com 29-May-2007 Addendum-Page 1

MTSS001C – JANUARY 1995 – REVISED FEBRUARY 1999 POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 PW (R-PDSO-G**) PLASTIC SMALL-OUTLINE PACKAGE

14 PINS SHOWN

0,65 M0,10 0,10 0,25 0,50 0,75 0,15 NOM Gage Plane 9,80 9,60 7,90 7,70 2016 6,60 6,40 4040064/F 01/97 0,30 6,60 6,20 0,19 4,30 4,50 0,15 A 1,20 MAX 5,10 4,90 3,10 2,90 A MAX A MIN DIM PINS ** 0,05 4,90 5,10 Seating Plane 0°–8° NOTES: A. All linear dimensions are in millimeters. B. This drawing is subject to change without notice. C. Body dimensions do not include mold flash or protrusion not to exceed 0,15. D. Falls within JEDEC MO-153

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