Datasheets
LM2902BQPWRQ1 by: Texas Instruments

Automotive, quad 36V 1.2MHz operational amplifier 14-TSSOP -40 to 125

Part Details for LM2902BQPWRQ1 by Texas Instruments

Results Overview of LM2902BQPWRQ1 by Texas Instruments

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LM2902BQPWRQ1 Information

LM2902BQPWRQ1 by Texas Instruments is an Operational Amplifier.
Operational Amplifiers are under the broader part category of Amplifier Circuits.

Amplifier circuits use external power to increase the amplitude of an input signal. They can be used to perform linear amplifications or logarithmic functions. Read more about Amplifier Circuits on our Amplifier Circuits part category page.

Price & Stock for LM2902BQPWRQ1

Part # Distributor Description Stock Price Buy
DISTI # 296-LM2902BQPWRQ1CT-ND
DigiKey AUTOMOTIVE, QUAD 36-V 1.2-MHZ OP Min Qty: 1 Lead time: 12 Weeks Container: Cut Tape (CT), Digi-Reel®, Tape & Reel (TR) 2088
In Stock
  • 1 $0.4500
  • 10 $0.3160
  • 25 $0.2824
  • 100 $0.2448
  • 250 $0.2269
  • 500 $0.2161
  • 1,000 $0.2072
  • 3,000 $0.1963
  • 6,000 $0.1909
  • 9,000 $0.1882
  • 15,000 $0.1852
  • 21,000 $0.1835
  • 30,000 $0.1818
$0.1818 / $0.4500 Buy Now
DISTI # 595-LM2902BQPWRQ1
Mouser Electronics Operational Amplifiers - Op Amps Automotive quad 36- V 1.2-MHz operationa RoHS: Compliant 3951
  • 1 $0.4500
  • 10 $0.3160
  • 25 $0.2830
  • 100 $0.2450
  • 250 $0.2170
  • 1,000 $0.2080
  • 3,000 $0.2080
  • 9,000 $0.1820
  • 18,000 $0.1760
$0.1760 / $0.4500 Buy Now
Vyrian Amplifiers 3323
RFQ

Part Details for LM2902BQPWRQ1

LM2902BQPWRQ1 CAD Models

LM2902BQPWRQ1 Part Data Attributes

LM2902BQPWRQ1 Texas Instruments
Buy Now Datasheet
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LM2902BQPWRQ1 Texas Instruments Automotive, quad 36V 1.2MHz operational amplifier 14-TSSOP -40 to 125
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Pbfree Code Yes
Rohs Code Yes
Part Life Cycle Code Active
Ihs Manufacturer TEXAS INSTRUMENTS INC
Reach Compliance Code compliant
Samacsys Manufacturer Texas Instruments
Amplifier Type OPERATIONAL AMPLIFIER
Architecture VOLTAGE-FEEDBACK
Average Bias Current-Max (IIB) 0.05 µA
Bias Current-Max (IIB) @25C 0.035 µA
Common-mode Reject Ratio-Min 65 dB
Common-mode Reject Ratio-Nom 80 dB
Frequency Compensation YES
Input Offset Voltage-Max 3000 µV
JESD-30 Code R-PDSO-G14
JESD-609 Code e4
Length 5 mm
Low-Bias NO
Low-Offset NO
Micropower YES
Moisture Sensitivity Level 1
Number of Functions 4
Number of Terminals 14
Operating Temperature-Max 125 °C
Operating Temperature-Min -40 °C
Package Body Material PLASTIC/EPOXY
Package Code TSSOP
Package Equivalence Code TSSOP14,.25
Package Shape RECTANGULAR
Package Style SMALL OUTLINE, THIN PROFILE, SHRINK PITCH
Packing Method TR, 13 INCH
Peak Reflow Temperature (Cel) 260
Power NO
Programmable Power NO
Screening Level AEC-Q100
Seated Height-Max 1.2 mm
Slew Rate-Nom 0.5 V/us
Supply Current-Max 3 mA
Supply Voltage Limit-Max 40 V
Supply Voltage-Nom (Vsup) 5 V
Surface Mount YES
Technology BIPOLAR
Terminal Finish Nickel/Palladium/Gold (Ni/Pd/Au)
Terminal Form GULL WING
Terminal Pitch 0.65 mm
Terminal Position DUAL
Unity Gain BW-Nom 1200
Voltage Gain-Min 25000
Wideband NO
Width 4.4 mm

LM2902BQPWRQ1 Frequently Asked Questions (FAQ)

  • The recommended operating voltage range for the LM2902BQPWRQ1 is 3.0V to 5.5V, although it can operate up to 6.5V with reduced performance.

  • To ensure stability, make sure to decouple the power supply pins (VCC and GND) with a 0.1uF ceramic capacitor, and use a 1uF capacitor between the output pin and ground. Also, keep the input and output pins away from each other to minimize parasitic capacitance.

  • The maximum output current that the LM2902BQPWRQ1 can provide is 20mA per channel, although it's recommended to limit the output current to 10mA per channel for reliable operation.

  • Yes, the LM2902BQPWRQ1 can be used as a comparator with hysteresis by adding an external resistor and capacitor network between the output and input pins. This creates a positive feedback loop that provides hysteresis.

  • The pull-up resistor value depends on the output load and the desired rise time. A general rule of thumb is to choose a pull-up resistor value between 1kΩ and 10kΩ. A smaller value will result in a faster rise time but may increase power consumption.