8601401IA

8601401IA

  • Description:HIGH SPEED DUAL COMPARATOR 10-TO
  • Series:-
  • Mfr:Texas Instruments
  • Package:Tray

SKU:432323dadc63 Category: Brand:

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Product Detailed Parameters

  • Description:HIGH SPEED DUAL COMPARATOR 10-TO
  • Series:-
  • Mfr:Texas Instruments
  • Package:Tray
  • Type:General Purpose
  • Number of Elements:2
  • Output Type:Open-Collector, DTL, RTL, TTL
  • Voltage - Supply, Single/Dual (±):36V
  • Voltage - Input Offset (Max):4mV @ ±15V
  • Current - Input Bias (Max):0.5µA @ ±15V
  • Current - Output (Typ):-
  • Current - Quiescent (Max):4.5mA, 11.5mA
  • CMRR, PSRR (Typ):80dB CMRR
  • Propagation Delay (Max):-
  • Hysteresis:-
  • Operating Temperature:-55°C ~ 125°C
  • Package / Case:TO-100-10 Metal Can
  • Mounting Type:Through Hole
  • Supplier Device Package:TO-100-10
  • Grade:-
  • Qualification:-

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8601401IA

Buying Guide
Summary

Texas Instruments 8601401IA is a component in Comparators category typically evaluated for fit, operating limits, and supportability in production. Key specs include Description (HIGH SPEED DUAL COMPARATOR 10-TO), Type (General Purpose), Packaging (Tray), Temperature (-55°C ~ 125°C), and Package/case (TO-100-10 Metal Can).

Selection Notes
  • For 8601401IA, confirm the output type (Open-Collector, DTL, RTL, TTL) and any level/threshold requirements for your system.
  • Verify the operating temperature range (-55°C ~ 125°C) and derate as needed in your application.
  • Check Current - Quiescent (Max) (4.5mA, 11.5mA) against the datasheet conditions and your system-level constraints.
Alternates & Substitutions
  • For Comparators substitutions, lock footprint/pinout and operating envelope first, then verify the critical performance conditions on your hardware.
  • If the alternate is “close but not identical”, document the differences and define a measurable acceptance test for production.
  • Verify the alternate stays within temperature -55°C ~ 125°C across startup, load steps, and worst-case temperature.
  • When in doubt, treat the swap as an ECO: define acceptance criteria, then validate under worst-case operating corners.
FAQ

What Number of Elements is listed for 8601401IA?
2

What Supplier Device Package does 8601401IA have?
TO-100-10

Which output type is specified for 8601401IA?
Open-Collector, DTL, RTL, TTL

Which package/case is listed for 8601401IA?
TO-100-10 Metal Can

Application Scenarios

Across practice, the question for Texas Instruments 8601401IA in Comparators is whether it stays inside the electrical/thermal envelope while remaining easy to validate and support. They often include analog front-end functions such as filtering, buffering, multiplexing, or isolation that reduce external component count. In practice, engineers generally pay close attention to grounding, references, interface timing, and loading so end-to-end performance is preserved on the PCB. In real deployments, comparator selection centers on propagation delay, overdrive dispersion, input common-mode range, and output stage compatibility (LVTTL, open-drain, etc.). In practice, teams look for a path to verify the key assumptions without turning the integration into a one-off tuning exercise. Across laboratory instruments, calibration repeatability depends on grounding, reference integrity, and stable long-term behavior. That combination typically reduces re-spin risk and shortens the path to compliance and production release.

Compatibility Advice
  • In practice, verify coexistence and desense risks with nearby clocks and switchers so range does not collapse in the product before freezing the BOM.
  • In board-level integration, check insertion loss, group delay, and impedance behavior across temperature so link budgets stay stable. This avoids one-off tuning in production.
  • Verify coexistence and desense risks with nearby clocks and switchers so range does not collapse in the product with the real source, load, and wiring.
Project Fit
  • Less ideal when integrating Texas Instruments 8601401IA for Comparators, coexistence and desense risks cannot be reproduced, so range becomes unpredictable, because it becomes difficult to prove margin across production variance.
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