Datasheets
LTC6090IFE#PBF by:

LTC6090/LTC6090-5 - 140V CMOS Rail-to-Rail Output, Picoamp Input Current Op Amp; Package: TSSOP; Pins: 16; Temperature Range: -40°C to 85°C

Part Details for LTC6090IFE#PBF by Linear Technology

Results Overview of LTC6090IFE#PBF by Linear Technology

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Applications Education and Research Internet of Things (IoT) Computing and Data Storage Aerospace and Defense Healthcare Telecommunications Automotive

LTC6090IFE#PBF Information

LTC6090IFE#PBF by Linear Technology 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 LTC6090IFE#PBF

Part # Distributor Description Stock Price Buy
Rochester Electronics LTC6090 - 140V RROut CMOS Op Amp RoHS: Compliant Status: Active Min Qty: 1 16
  • 25 $6.6600
  • 100 $6.3300
  • 500 $5.9900
  • 1,000 $5.6600
  • 10,000 $5.3300
$5.3300 / $6.6600 Buy Now
Vyrian Amplifiers 493
RFQ

Part Details for LTC6090IFE#PBF

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LTC6090IFE#PBF Part Data Attributes

LTC6090IFE#PBF Linear Technology
Buy Now Datasheet
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LTC6090IFE#PBF Linear Technology LTC6090/LTC6090-5 - 140V CMOS Rail-to-Rail Output, Picoamp Input Current Op Amp; Package: TSSOP; Pins: 16; Temperature Range: -40°C to 85°C
Rohs Code Yes
Part Life Cycle Code Transferred
Ihs Manufacturer LINEAR TECHNOLOGY CORP
Part Package Code TSSOP
Package Description LEAD FREE, PLASTIC, TSOP-16
Pin Count 16
Manufacturer Package Code FE
Reach Compliance Code compliant
ECCN Code EAR99
HTS Code 8542.33.00.01
Amplifier Type OPERATIONAL AMPLIFIER
Architecture VOLTAGE-FEEDBACK
Average Bias Current-Max (IIB) 0.00005 µA
Common-mode Reject Ratio-Nom 140 dB
Frequency Compensation YES
Input Offset Voltage-Max 1250 µV
JESD-30 Code R-PDSO-G16
JESD-609 Code e3
Length 5 mm
Low-Bias YES
Low-Offset NO
Micropower NO
Moisture Sensitivity Level 1
Neg Supply Voltage Limit-Max -75 V
Neg Supply Voltage-Nom (Vsup) -15 V
Number of Functions 1
Number of Terminals 16
Operating Temperature-Max 85 °C
Operating Temperature-Min -40 °C
Package Body Material PLASTIC/EPOXY
Package Code HTSSOP
Package Equivalence Code TSSOP16,.25
Package Shape RECTANGULAR
Package Style SMALL OUTLINE, HEAT SINK/SLUG, THIN PROFILE, SHRINK PITCH
Peak Reflow Temperature (Cel) 260
Power NO
Programmable Power NO
Qualification Status Not Qualified
Seated Height-Max 1.1 mm
Slew Rate-Nom 21 V/us
Supply Current-Max 4.2 mA
Supply Voltage Limit-Max 75 V
Supply Voltage-Nom (Vsup) 15 V
Surface Mount YES
Technology CMOS
Temperature Grade INDUSTRIAL
Terminal Finish MATTE TIN
Terminal Form GULL WING
Terminal Pitch 0.65 mm
Terminal Position DUAL
Time@Peak Reflow Temperature-Max (s) 30
Unity Gain BW-Nom 12000
Voltage Gain-Min 400000
Wideband NO
Width 4.4 mm

LTC6090IFE#PBF Related Parts

LTC6090IFE#PBF Frequently Asked Questions (FAQ)

  • The maximum power dissipation of the LTC6090IFE#PBF is dependent on the operating conditions, but it is typically around 1.5W. However, it's recommended to check the thermal resistance and maximum junction temperature to ensure safe operation.

  • To optimize the layout, keep the input and output traces separate, use a solid ground plane, and place the device close to the input capacitors. Additionally, use a low-ESR capacitor for the output filter and consider adding a ferrite bead or common-mode choke to reduce EMI.

  • The recommended input capacitor value is 10uF to 22uF, and it should be a low-ESR ceramic capacitor, such as an X5R or X7R type, to minimize voltage ripple and ensure stable operation.

  • The LTC6090IFE#PBF is rated for operation up to 125°C, but it's recommended to derate the output current and power dissipation at higher temperatures to ensure safe operation. Consult the datasheet and application notes for more information.

  • The output voltage of the LTC6090IFE#PBF can be adjusted by changing the ratio of the feedback resistors, R1 and R2. Use the formula VOUT = 1.2V x (1 + R2/R1) to calculate the desired output voltage.

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