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Texas Instruments TLV6001IDBVT

Part No.:
TLV6001IDBVT
Manufacturer:
Texas Instruments
Category:
Instrumentation, Op Amps, Buffer Amps
Package:
SC-74A, SOT-753
Datasheet:
AetrixTLV6001IDBVT.pdf
Description:
IC OPAMP GP 1 CIRCUIT SOT23-5
Quantity:
Payment:
Payment
Shipping:
Shipping

Inventory:7,346

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Product details

Overview

TLV6001IDBVT from Texas Instruments is a single-channel, rail-to-rail input/output operational amplifier optimized for cost-sensitive, low-power systems. It delivers 1 MHz gain-bandwidth, 75 µA quiescent current, 28 nV/√Hz input voltage noise at 1 kHz, and operates from 1.8 V to 5.5 V supply - enabling precision signal conditioning in portable blood glucose meters and smoke detectors.

For engineers reviewing the TLV6001IDBVT datasheet, TLV6001IDBVT pinout, TLV6001IDBVT application, or TLV6001IDBVT equivalent, this page provides verified specifications, SC70-5/SOT23-5 package mapping, temperature-stable CMRR/PSRR behavior, and real-world design context for battery-powered sensor front-ends and ADC driver stages.

Technical Context

The TLV6001IDBVT uses a complementary N/P-channel input stage enabling rail-to-rail common-mode input range (±0.2 V beyond rails), with a defined transition region where both pairs conduct - causing measurable degradation in CMRR, PSRR, and offset drift. Its class AB output stage achieves 5 mV rail-to-rail swing into 100 kΩ loads across –40°C to +125°C.

It integrates an internal 35 MHz low-pass EMI filter on input pins, delivering quantified EMIRR performance up to 6 GHz, and remains unity-gain stable with capacitive loads ≤150 pF (or ≤1 nF with series output resistor). Input bias current is ±1.0 pA typical, supporting high-impedance sensor interfaces without significant error.

Key Specifications

Parameter Value and Actual Design Meaning
Supply Voltage Range 1.8 V to 5.5 V - supports direct connection to Li-ion, coin-cell, and 3.3 V/5 V rails without regulation.
Quiescent Current 75 µA/ch - enables multi-year operation in battery-powered smoke detectors and portable medical devices.
Gain Bandwidth Product 1 MHz - sufficient for anti-aliasing filtering and driving SAR ADCs up to 1 MSPS with adequate phase margin.
Input Offset Voltage 0.75 mV (typ) - ensures <0.1% error in 12-bit systems with 2.048 V reference without trimming.
Input Voltage Noise Density 28 nV/√Hz at 1 kHz - suitable for low-frequency sensor amplification (e.g., thermistor, strain gauge) without dominant noise contribution.
CMRR / PSRR 60–76 dB (CMRR), 86 dB (PSRR) - maintains accuracy in noisy industrial environments with varying common-mode or supply ripple.
Operating Temperature –40°C to +125°C - qualified for under-hood automotive modules and white goods motor control feedback paths.

Pinout & Package

TLV6001IDBVT is packaged in a 5-pin SOT-23 (DBV) case measuring 2.90 mm × 1.60 mm, optimized for space-constrained PCB layouts in portable equipment.

Pin/Terminal Circuit Role Design Meaning
1 OUT Amplifier output - drives ADC inputs, transducers, or downstream buffers with rail-to-rail swing.
2 V– Negative supply terminal - tied to ground in single-supply configurations; sets lower rail reference.
3 +IN Noninverting input - connects to high-impedance sensor nodes (e.g., pH electrode, thermocouple cold-junction compensation).
4 –IN Inverting input - used for feedback network attachment or differential sensing with matched resistors.
5 V+ Positive supply terminal - accepts 1.8–5.5 V; internal ESD diodes clamp transients to these rails.

Key Features

Feature Design Value
Rail-to-rail input & output Operates with VCM = (V–) – 0.2 V to (V+) + 0.2 V and VO swing within 5 mV of rails - eliminates level-shifting in 1.8 V microcontroller interfaces.
Integrated EMI filter 35 MHz cutoff, 20 dB/decade roll-off - suppresses RF interference from GSM, Wi-Fi, or switching regulators without external components.
No phase reversal Remains stable during input overdrive - prevents latch-up or erroneous output states in smoke detector analog comparators.
Unity-gain stability Stable with ≥150 pF capacitive load - simplifies layout for ADC driver applications without external compensation.
Low input bias current ±1.0 pA typical - avoids voltage drop across >10 MΩ source impedances (e.g., glass pH electrodes, photodiode TIA feedback).

Applications

Portable Blood Glucose Systems Smoke Detectors

Use Scenario: Amplifying low-level current from glucose oxidase electrochemical sensor before 12-bit ADC sampling.

IC Role / Device Role / Timing Role: Precision transimpedance amplifier with ultra-low input bias current and rail-to-rail output swing into 3.3 V ADC reference.

Use Value: Enables accurate sub-1 mg/dL glucose resolution using untrimmed design, supported by 0.75 mV offset and 28 nV/√Hz noise floor.

Use Scenario: Conditioning ionization chamber current in battery-powered residential smoke alarms.

IC Role / Device Role / Timing Role: Low-power sensor front-end amplifier operating continuously from CR123A cell for >5 years.

Use Value: 75 µA quiescent current and –40°C to +125°C rating ensure reliable operation across seasonal temperature extremes and long shelf life.

White Goods Motor Control Power Bank Battery Monitoring

Use Scenario: Measuring shunt voltage for brushless DC motor phase current in washing machine inverter drives.

IC Role / Device Role / Timing Role: High-CMRR current sense amplifier rejecting PWM noise while maintaining accuracy over full temperature range.

Use Value: 76 dB CMRR at mid-rail and integrated EMI filter suppress common-mode spikes from 20 kHz gate drivers without added ferrites.

Use Scenario: Monitoring cell voltage and charge/discharge current in multi-cell USB-C power banks with limited board area.

IC Role / Device Role / Timing Role: Dual-function signal conditioner - one TLV6001IDBVT per cell for voltage monitoring, another for current-sense amplification.

Use Value: SC70-5/SOT23-5 footprint allows dense placement near battery connectors; 1.8 V operation supports direct interface with fuel-gauge ICs.

Equivalent & Alternatives

The following parts are listed as comparable options for similar operational amplifier applications.

Alternative Part Technical Difference Application Difference Selection Advice
LMV321IDBVR Higher quiescent current (130 µA), lower GBW (1.4 MHz), no integrated EMI filter. Better for higher-speed but less EMI-noisy environments; not recommended for smoke detector RF immunity-critical designs. Choose LMV321IDBVR only if bandwidth >1 MHz is required and EMI filtering is handled externally.
OPA316IDBVR Lower noise (11 nV/√Hz), higher IQ (400 µA), same 1 MHz GBW, no EMI filter. Preferred for precision sensor chains where noise dominates error budget, but unsuitable for ultra-low-power battery life targets. Select OPA316IDBVR when system SNR demands sub-15 nV/√Hz noise and power budget permits >4× higher IQ.

Compared with LMV321IDBVR and OPA316IDBVR, TLV6001IDBVT uniquely balances ultra-low power (75 µA), integrated EMI resilience, and rail-to-rail operation - making it the optimal choice for cost-sensitive, battery-operated safety-critical sensors where reliability and longevity outweigh raw speed or noise performance.

Availability

TLV6001IDBVT is available at Aetrix Electronics and suitable for portable medical devices, fire-safety systems, consumer appliance motor control, and USB-C power bank monitoring requiring stable component supply across extended temperature ranges and multi-year production cycles.

Supply support for TLV6001IDBVT 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 company specializing in analog and embedded processing technologies, with leadership in precision amplifiers, power management, and signal chain solutions.

The TLV600x family was designed specifically for cost-sensitive, low-power general-purpose applications - targeting portable electronics, industrial sensors, and safety-critical consumer devices needing robust performance at minimal bill-of-materials cost.

FAQ

What is the maximum capacitive load TLV6001IDBVT can drive without oscillation?

The TLV6001IDBVT remains unity-gain stable with capacitive loads up to 150 pF. For larger loads (e.g., >500 pF), a 10 Ω to 20 Ω series resistor at the output restores stability by isolating the capacitance from the op amp's output impedance. This technique is validated in TI's SBOS779D datasheet Figure 19 and applies directly to TLV6001IDBVT in SOT23-5 packaging.

Does TLV6001IDBVT support true rail-to-rail input at 1.8 V supply?

Yes. TLV6001IDBVT guarantees rail-to-rail input operation from (V–) – 0.2 V to (V+) + 0.2 V across its full 1.8 V to 5.5 V supply range, including at 1.8 V. This is achieved via complementary N/P-channel input pairs, enabling direct interfacing with 0–1.8 V sensor outputs without external level shifting - confirmed in Section 8.3.2 of the SBOS779D datasheet.

What is the ESD rating of TLV6001IDBVT and how does it impact PCB layout?

TLV6001IDBVT features ±4000 V HBM and ±1000 V CDM ESD protection per JEDEC standards. While robust, input pins remain diode-clamped to V+ and V– rails; any signal exceeding (V–) – 0.5 V or (V+) + 0.5 V must be current-limited to ≤10 mA. Layout best practice is to place series resistors ≤10 kΩ close to inputs when interfacing with external connectors or cables - a requirement explicitly stated in Section 7.1 of the TLV6001IDBVT datasheet.

Can TLV6001IDBVT operate reliably at 125°C ambient temperature?

Yes. TLV6001IDBVT is fully specified and production-tested over –40°C to +125°C ambient temperature. Thermal metrics confirm RθJA = 228.5°C/W for the DBV (SOT23-5) package, and electrical characteristics including offset drift (2 µV/°C), CMRR (≥60 dB), and PSRR (86 dB) are guaranteed across this range - making TLV6001IDBVT suitable for under-hood automotive and industrial motor control applications.

How does the internal EMI filter in TLV6001IDBVT improve system-level immunity?

The TLV6001IDBVT integrates a monolithic 35 MHz low-pass filter on both input pins, providing common-mode and differential-mode rejection with 20 dB/decade attenuation above cutoff. This reduces rectified EMI-induced offset shifts - quantified as EMIRR IN+ >40 dB up to 1 GHz - eliminating need for external RC filters in smoke detectors and portable medical devices exposed to cellular or Wi-Fi emissions, as validated in Figure 18 of SBOS779D.

TLV6001IDBVT Specifications

Product attributes
Attribute value
Manufacturer:
Texas Instruments
Series:
-
Package/Case:
SC-74A, SOT-753
Packaging:
Tape & Reel (TR)
Product Status:
Active
Amplifier Type:
General Purpose
Number of Circuits:
1
Output Type:
Rail-to-Rail
Slew Rate:
0.5V/µs
Gain Bandwidth Product:
1 MHz
-3db Bandwidth:
-
Current - Input Bias:
1 pA
Voltage - Input Offset:
750 µV
Current - Supply:
75µA
Current - Output / Channel:
-
Voltage - Supply Span (Min):
1.8 V
Voltage - Supply Span (Max):
5.5 V
Operating Temperature:
-40°C ~ 125°C
Grade:
-
Qualification:
-
Mounting Type:
Surface Mount
Supplier Device Package:
SOT-23-5

TLV6001IDBVT FAQ

1.How can I place an order for TLV6001IDBVT through Aetrix?

Please submit a Request for Quotation (RFQ) for TLV6001IDBVT on Aetrix. Our sales agent will provide a competitive quotation and guide you through the order confirmation once you accept the terms.

2.Are the price and stock information for TLV6001IDBVT reliable?

The price and inventory of TLV6001IDBVT are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for TLV6001IDBVT is usually 5 days.

3.What payment methods are accepted for TLV6001IDBVT?

We accept Wire Transfer, PayPal, Credit Card, Western Union, MoneyGram, and Escrow for TLV6001IDBVT transactions.

Note: Certain payment methods may incur a processing fee.

4.How is shipping managed for TLV6001IDBVT?

TLV6001IDBVT orders can be shipped via leading logistics carriers, including DHL, UPS, FedEx, TNT, or Registered Mail.

Once your TLV6001IDBVT order is processed, you will receive an email with the shipment details and tracking number.

Note: Tracking information may take up to 24 hours to appear. Express delivery typically takes 3–5 business days.

5.How can I obtain technical support or documentation for TLV6001IDBVT?

For technical support, including TLV6001IDBVT datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your TLV6001IDBVT requirements.

6.How does Aetrix verify that TLV6001IDBVT is sourced from the original manufacturer or authorized distributors?

All TLV6001IDBVT 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 TLV6001IDBVT meets industry standards.

7.What is the process for return or replacement of TLV6001IDBVT?

All TLV6001IDBVT units undergo pre-shipment inspection (PSI). If there is an issue with TLV6001IDBVT, 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 TLV6001IDBVT part is unused and in its original packaging.

Return procedure for TLV6001IDBVT:

1.Submit a request within 90 days.

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

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