LM2900N

LM2900N

$0.58
  • Description:IC OPAMP GP 4 CIRCUIT 14DIP
  • Series:-
  • Mfr:Texas Instruments
  • Package:Bulk,Tube

SKU:12f1f9eba38e Category: Brand:

  
  • Quantity
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Product Detailed Parameters

  • Description:IC OPAMP GP 4 CIRCUIT 14DIP
  • Series:-
  • Mfr:Texas Instruments
  • Package:Bulk,Tube
  • Amplifier Type:General Purpose
  • Number of Circuits:4
  • Output Type:-
  • Slew Rate:20V/µs
  • Gain Bandwidth Product:2.5 MHz
  • Current - Input Bias:30 nA
  • Voltage - Input Offset:-
  • Current - Supply:6.2mA (x4 Channels)
  • Current - Output / Channel:18 mA
  • Voltage - Supply Span (Min):4.4 V
  • Voltage - Supply Span (Max):32 V
  • Operating Temperature:-40°C ~ 85°C
  • Grade:-
  • Qualification:-
  • Mounting Type:Through Hole
  • Package / Case:14-DIP (0.300", 7.62mm)
  • Supplier Device Package:14-PDIP
  • -3db Bandwidth:-

Download product information

LM2900N

Buying Guide
Summary

Texas Instruments LM2900N is an electronic component in Instrumentation, Op Amps, Buffer Amps category. Key specs: description: IC OPAMP GP 4 CIRCUIT 14DIP; packaging: Bulk,Tube; temperature: -40°C ~ 85°C; package/case: 14-DIP (0.300", 7.62mm); mounting: Through Hole; circuits: 4; frequency: 2.5 MHz.

Selection Notes
  • For LM2900N, confirm package/case 14-DIP (0.300", 7.62mm), mounting Through Hole to ensure footprint compatibility.
  • For LM2900N, validate the operating temperature range (-40°C ~ 85°C) against your environment.
  • For LM2900N, confirm the operating frequency (2.5 MHz) and any related tolerance requirements.
FAQ

What information do you need to quote LM2900N?
Send the part number (LM2900N), quantity, target delivery date, and any required packaging or documentation.

Who is the manufacturer/brand for LM2900N?
Texas Instruments

What is the operating temperature range of LM2900N?
-40°C ~ 85°C

What is the package/case of LM2900N?
14-DIP (0.300", 7.62mm)

Application Scenarios
For Texas Instruments LM2900N in the Instrumentation, Op Amps, Buffer Amps category, engineers prioritize integration risk control, documentation, and repeatable performance in production. Instrumentation amplifiers are chosen around CMRR, input offset/drift, noise, and input protection when long cables and ground shifts are present. They condition, convert, or interface signals so systems can capture or generate analog information with defined accuracy, latency, and noise behavior. Design decisions usually revolve around dynamic range, linearity, reference stability, and how the part connects to an MCU, DSP, or FPGA. In data acquisition front ends, in-amps provide precise gain before conversion when channel matching and repeatability across production units are required. In harsh environments, in-amps help reject ground shifts and common-mode noise introduced by motors, contactors, and cable routing. Overall, disciplined selection and verification reduce integration risk and improve field reliability.
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