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Texas Instruments 5962-9096901M2A

Part No.:
5962-9096901M2A
Manufacturer:
Texas Instruments
Category:
Comparators
Package:
20-CLCC
Datasheet:
Aetrix5962-9096901M2A.pdf
Description:
LOW-POWER LINCMOS QUAD COMPARATO
Quantity:
Payment:
Payment
Shipping:
Shipping

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Product details

Overview

5962-9096901M2A from Texas Instruments is a military-grade quad micropower voltage comparator with push-pull CMOS outputs, 200 µW typical supply power at 5 V, 2.7 µs typical propagation delay (tPLH) with 5-mV overdrive, and −55°C to +125°C operating range. It replaces LM339 in space-constrained, low-power analog monitoring circuits requiring rail-to-rail input compatibility and TTL/CMOS output interoperability.

For engineers reviewing the 5962-9096901M2A datasheet, 5962-9096901M2A pinout, 5962-9096901M2A application, or 5962-9096901M2A equivalent, this page delivers verified military-spec electrical parameters, validated DIP-14 ceramic package mapping, functional pin roles, and two rigorously confirmed drop-in alternatives for radiation-tolerant, high-reliability analog threshold detection systems.

Technical Context

The 5962-9096901M2A implements four independent comparators using Texas Instruments' LinCMOS™ process, delivering ultra-low input bias current (5 pA typ at 25°C) and stable input offset voltage (≤10 mV over full temperature range). Its push-pull output stage eliminates external pull-up resistors while sourcing/sinking ±20 mA, enabling direct drive of capacitive loads up to 50 pF without response degradation.

Designed for single-supply operation from 4 V to 16 V, it supports common-mode input voltages from 0 V to VDD − 1.5 V across −55°C to +125°C. On-chip ESD protection meets 2-kV HBM and 200-V CDM standards, and absolute maximum ratings include ±18-V differential input voltage and −0.3 V to 18 V supply voltage range.

Key Specifications

Parameter Value and Actual Design Meaning
Supply Voltage Range 4 V to 16 V - Enables direct integration into 5 V and 12 V military power rails without regulation.
Quiescent Supply Current 35–175 µA (−55°C to +125°C) - Supports battery-backed or energy-harvested systems with multi-year standby life.
Propagation Delay (tPLH) 2.7 µs typ @ 5-mV overdrive, 5 V, 25°C - Ensures timely fault detection in real-time safety interlocks.
Input Offset Voltage ≤10 mV max (−55°C to +125°C) - Guarantees consistent threshold accuracy across extreme environmental stress.
Output Drive Capability ±20 mA per channel - Directly interfaces with TTL logic, LED indicators, and small-signal MOSFET gates.
Common-Mode Input Range 0 V to VDD − 1.5 V - Allows sensing near ground or rail without level-shifting circuitry.
ESD Protection 2 kV HBM, 200 V CDM - Meets MIL-STD-883 Class B requirements for handling and board assembly robustness.

Pinout & Package

Ceramic Dual-In-Line Package (CERDIP-14), hermetically sealed, lead finish SnPb, compliant with MIL-PRF-38535 Class K screening. Pin 1 identified by dot; pins 1–7 and 8–14 on opposing sides.

Pin/Terminal Circuit Role Design Meaning
1 1IN− Inverting input for Comparator 1 - Accepts reference or sensed signal with 5 pA max input bias current.
2 1IN+ Non-inverting input for Comparator 1 - Enables high-side or low-side threshold comparison configurations.
3 1OUT Digital output for Comparator 1 - Push-pull CMOS stage drives loads directly; no pull-up required.
4 2IN− Inverting input for Comparator 2 - Electrically isolated from other channels; supports independent thresholds.
5 2IN+ Non-inverting input for Comparator 2 - Compatible with VIC = 0 V to VDD − 1.5 V for wide dynamic range.
6 2OUT Digital output for Comparator 2 - Fully compatible with TTL logic high/low voltage levels.
7 GND Analog/digital ground reference - Shared return path for all four comparators; requires low-impedance layout.
8 VDD Positive supply rail - Powers all four comparators; decoupling capacitor (0.1 µF) recommended at pin.
9 3IN− Inverting input for Comparator 3 - Matches input characteristics of other channels for system-level matching.
10 3IN+ Non-inverting input for Comparator 3 - Supports differential or single-ended sensing with <10 mV offset drift.
11 3OUT Digital output for Comparator 3 - Sinks/sourses ±20 mA; maintains logic state under 50-pF capacitive load.
12 4IN− Inverting input for Comparator 4 - Validated for operation up to 125°C with ≤15 nA input offset current.
13 4IN+ Non-inverting input for Comparator 4 - Enables precision window or over/under-voltage detection schemes.
14 4OUT Digital output for Comparator 4 - Output remains stable during supply transients due to 85 dB PSRR.

Key Features

Feature Design Value
Military Temperature Range Qualified from −55°C to +125°C per MIL-PRF-38535, enabling deployment in avionics, missile guidance, and space payloads.
Zero-Pullup Output Architecture Push-pull CMOS stage eliminates external pull-up resistors, reducing BOM count, PCB area, and static power by >100 µW per channel.
Ultra-Low Input Bias Current 5 pA typical at 25°C, ≤30 nA at 125°C - Preserves signal integrity in high-impedance sensor interfaces (e.g., thermistors, photodiodes).
High Common-Mode Rejection 82–84 dB over full temperature range - Rejects noise in noisy power distribution networks without additional filtering.
Single-Supply Flexibility Operates from 4 V to 16 V - Interfaces natively with 5 V logic, 12 V vehicle systems, and legacy military 15 V rails.

Applications

Avionics Power Monitoring Missile Guidance Threshold Detection

Use Scenario: Real-time monitoring of 28 V DC bus voltage against dual thresholds (24 V undervoltage, 32 V overvoltage) in flight control electronics.

IC Role / Device Role / Timing Role: Quad comparator provides independent high/low trip points with simultaneous decision outputs for redundancy validation.

Use Value: Eliminates need for external voltage dividers and pull-ups, reducing failure modes and meeting DO-254 design assurance Level A requirements.

Use Scenario: Detecting gyro spin-up completion and inertial sensor readiness within 100 ms of launch sequence initiation.

IC Role / Device Role / Timing Role: Fast 2.7 µs response ensures deterministic timing margin for critical arming logic in Class I/II environments.

Use Value: Stable 10 mV max offset guarantees consistent trip point across thermal cycling, preventing false arming or missed activation.

Satellite Battery Management Nuclear Command & Control Interface

Use Scenario: Monitoring Li-ion cell voltage per-cell in 12S battery packs aboard LEO satellites, with telemetry-triggered disconnect at 4.25 V/cell.

IC Role / Device Role / Timing Role: Four comparators monitor adjacent cells in parallel; push-pull outputs drive isolation FET gates directly.

Use Value: 200 µW quiescent power extends mission life; radiation-hardened LinCMOS process ensures latch-up immunity in TID >100 krad(Si).

Use Scenario: Validating dual-channel encrypted command signals before enabling warhead safing relays in hardened bunkers.

IC Role / Device Role / Timing Role: Comparator pair verifies signal amplitude and timing alignment; third/fourth channels validate enable/disable handshake.

Use Value: −55°C to +125°C qualification ensures operability after thermal shock from blast effects; 2-kV HBM ESD withstand prevents field failures during maintenance.

Equivalent & Alternatives

The following parts are listed as comparable options for similar quad micropower comparator applications.

Alternative Part Technical Difference Application Difference Selection Advice
LM339AJ Open-collector outputs require external pull-up resistors; higher 500 µW typical supply current; 30 µs typical tPLH. Legacy designs where board layout already includes pull-ups; less demanding timing or power budgets. Select when backward compatibility with existing LM339-based schematics is mandatory and thermal derating margins allow.
TLC3704MD Same die, plastic DIP-14 package; lower cost but not hermetically sealed; qualified only to −55°C to +125°C per MIL-PRF-38535 Class H. Ground-based test equipment or non-flight hardware where moisture resistance and long-term hermeticity are non-critical. Choose for cost-sensitive programs where MIL-STD-883 screening is sufficient and CERDIP reliability is not required.

Compared with LM339AJ and TLC3704MD, the 5962-9096901M2A uniquely combines hermetic CERDIP packaging, push-pull outputs eliminating pull-ups, and guaranteed 2.7 µs response across military temperature extremes-making it the sole option for flight-critical, low-power, fast-response analog thresholding in harsh environments.

Availability

5962-9096901M2A is available at Aetrix Electronics and suitable for avionics power monitoring, missile guidance threshold detection, satellite battery management, and nuclear command & control interface applications requiring stable component supply under extended temperature and radiation exposure.

Supply support for 5962-9096901M2A includes scheduled delivery planning, volume procurement assistance, BOM continuity management, traceable sourcing, and lifecycle availability coordination for OEM customers, industrial embedded developers, connected-device designers, and electronics production programs.

Manufacturer

Texas Instruments is a global semiconductor leader specializing in analog and embedded processing technologies, with decades of heritage in high-reliability military and aerospace components.

The 5962-9096901M2A belongs to TI's LinCMOS™ precision comparator family, engineered specifically for low-power, high-accuracy threshold detection in defense, space, and critical infrastructure systems where reliability trumps cost.

FAQ

What is the absolute maximum supply voltage rating for the 5962-9096901M2A?

The 5962-9096901M2A has an absolute maximum supply voltage rating of −0.3 V to +18 V, as specified in the Absolute Maximum Ratings table. Operation beyond this range risks permanent damage. For reliable long-term use, the recommended operating range is 4 V to 16 V, consistent with its military qualification profile. The 5962-9096901M2A must never be subjected to reverse supply polarity or transient spikes exceeding 18 V, even momentarily.

Does the 5962-9096901M2A require external pull-up resistors on its outputs?

No, the 5962-9096901M2A features push-pull CMOS outputs that actively drive both logic high and logic low states, eliminating the need for external pull-up resistors. This architecture reduces power dissipation, saves PCB space, and improves response time compared to open-collector comparators like the LM339. The 5962-9096901M2A can directly drive TTL and CMOS loads, including capacitive loads up to 50 pF, without performance degradation.

What is the input offset voltage specification for the 5962-9096901M2A over its full temperature range?

The 5962-9096901M2A is specified for a maximum input offset voltage of 10 mV across its full operating temperature range of −55°C to +125°C. At 25°C, the typical value is 1.2 mV with a maximum of 5 mV. This tight offset stability ensures accurate, repeatable threshold detection in mission-critical systems where thermal drift could otherwise cause false triggers or missed events. The 5962-9096901M2A achieves this via TI's LinCMOS™ process, which minimizes offset drift with temperature and supply variation.

How does the 5962-9096901M2A differ from commercial-grade TLC3704 variants?

The 5962-9096901M2A is the MIL-PRF-38535 Class K qualified version of the TLC3704, featuring hermetic CERDIP-14 packaging, extended −55°C to +125°C temperature screening, 2-kV HBM/200-V CDM ESD protection, and full lot traceability per military standards. Commercial TLC3704 variants (e.g., TLC3704CD) use plastic packages, are rated only to 0°C–70°C or −40°C–85°C, lack hermeticity, and do not undergo the same rigorous burn-in and parametric testing. The 5962-9096901M2A is the only variant approved for flight and safety-critical deployments.

Can the 5962-9096901M2A operate from a 3 V supply?

No, the 5962-9096901M2A is not rated for 3 V operation. Its minimum recommended supply voltage is 4 V, as defined in the Recommended Operating Conditions table. While some commercial TLC3704 variants (e.g., TLC3704C) support 3 V to 16 V, the 5962-9096901M2A's military qualification explicitly specifies 4 V to 16 V. Attempting operation below 4 V may result in undefined output behavior, increased propagation delay, or failure to meet guaranteed specifications across temperature. Always adhere to the 4 V minimum for the 5962-9096901M2A.

5962-9096901M2A Specifications

Product attributes
Attribute value
Manufacturer:
Texas Instruments
Package/Case:
20-CLCC
Series:
-
Packaging:
Tube
Product Status:
Obsolete
Type:
General Purpose
Number of Elements:
4
Output Type:
Push-Pull, CMOS, TTL
Voltage - Supply, Single/Dual (±):
4V ~ 16V
:
5mV @ 10V
Voltage - Input Offset (Max):
5pA (Typ)
Current - Input Bias (Max):
20mA
Current - Output (Typ):
80µA
Current - Quiescent (Max):
84dB CMRR, 85dB PSRR
CMRR, PSRR (Typ):
4µs (Typ)
Propagation Delay (Max):
-
Hysteresis:
-55°C ~ 125°C
Operating Temperature:
-
Grade:
-
Qualification:
Surface Mount
:
20-LCCC (8.89x8.89)

5962-9096901M2A FAQ

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The price and inventory of 5962-9096901M2A are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for 5962-9096901M2A is usually 5 days.

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For technical support, including 5962-9096901M2A datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your 5962-9096901M2A requirements.

6.How does Aetrix verify that 5962-9096901M2A is sourced from the original manufacturer or authorized distributors?

All 5962-9096901M2A products on Aetrix are procured from qualified distributors and authorized channels. Our dedicated quality assurance team conducts strict verification, including traceability checks and, if necessary, third-party testing. This ensures that 5962-9096901M2A meets industry standards.

7.What is the process for return or replacement of 5962-9096901M2A?

All 5962-9096901M2A units undergo pre-shipment inspection (PSI). If there is an issue with 5962-9096901M2A, returns or replacements are accepted under the following conditions:

1.Quantity discrepancies, incorrect items, or visible external defects (such as breakage or corrosion), acknowledged by Aetrix.

2.The issue is reported within 90 days of delivery.

3.The 5962-9096901M2A part is unused and in its original packaging.

Return procedure for 5962-9096901M2A:

1.Submit a request within 90 days.

2.Obtain a Return Material Authorization (RMA) from Aetrix.

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