Texas Instruments

OPA627AU/2K5 - 16MHz Precision JFET Op Amp 55V/us | TI

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+-4.5 V to +-18 V Vdss 5 pA Id SOIC (D), 8 pins Package
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Price updated: 2026-09-13
Volume Pricing
Qty Unit Price Extended
1 $13.69 $13.69
10 $12.75 $127.50
100 $11.5 $1,150.00
500 $10.9 $5,450.00
1,000 $10.5 $10,500.00
ℹ️ All prices are in USD

Drop-in alternatives for OPA627AU/2K5 — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool — Select alternative parts for side-by-side comparison:

OPA627AU

✅ Drop-In
Texas Instruments
📦 SOIC-8 (D)
Precision High-Speed DIFET Operational Amplifier · 1 · 55 V/us · 16 MHz · 100 uV · 0.8 uV/C · 5 pA · 550 ns

✓ In Stock

$12.1 / Unit

View Datasheet →

OPA637AU

✅ Drop-In
Texas Instruments
📦 SOIC-8 (D)
Precision High-Speed Difet Operational Amplifier · 1 · Stable in closed-loop gain of 5 or greater · 100 uV max · 0.8 uV/C max · 5 pA max · Very low noise at 10 kHz (per datasheet) · Fast settling to 0.01% (per datasheet)

✓ In Stock

$35.86 / Unit

View Datasheet →

OPA637AU/2K5

✅ Drop-In
Texas Instruments
📦 SOIC-8 (D)
Precision High-Speed Difet Operational Amplifier · 1 · 80 MHz · 135 V/µs · 5 V/V · 100 µV · 0.8 µV/°C · 5 pA

✓ In Stock

$17.6 / Unit

View Datasheet →

OPA627BP

✅ Drop-In ⚠️ 参数待验证
Texas Instruments
📦 SOIC-8 (D)
Precision High-Speed Difet Operational Amplifier · 1 · 16 MHz · 55 V/us · 0.8 uV/C max · ±4.5 V to ±18 V (9 V to 36 V total) · 8-Pin PDIP (P) · Through Hole

✓ In Stock

$21.3 / Unit

View Datasheet →

OPA827AID

✅ Drop-In ⚠️ 参数待验证
📦 SOIC-8 (D)
newer-generation JFET precision op amp, ~22 MHz GBW, similar pinout in SOIC-8; verify trim pin function

📋 Reference alternative (not in catalog)

OPA627AU/2K5 Maximum Ratings & Electrical Characteristics

Amplifier Type Precision high-speed JFET (DiFet) operational amplifier
Number of Channels 1
Unity-Gain Bandwidth 16 MHz
Slew Rate 55 V/us
Supply Voltage Range +-4.5 V to +-18 V
Offset Voltage (max) 100 uV
Offset Voltage Drift (max) 0.8 uV/C
Input Bias Current (max) 5 pA
Stability Unity-gain stable
Operating Temperature Range -25C to +85C
Package SOIC (D), 8 pins
Mounting Type Surface Mount
Packaging Suffix /2K5 (Tape and Reel, 2500 units)
RoHS Status Compliant (standard AU suffix non-E4); E4 variants explicitly RoHS per distributor data

OPA627AU/2K5 Pin Configuration

SOIC-8 Package Pinout Diagram SOIC-8 8-pin small outline IC, 3.9x4.9mm, P1.27mm, JEDEC MS-012. 1 8 2 7 3 6 4 5 SOIC-8
Pin 1 TRIM (Offset Trim N) — Offset null trim terminal - connect to trim network or leave open
Pin 2 -IN — Inverting input
Pin 3 +IN — Non-inverting input
Pin 4 V- — Negative supply
Pin 5 TRIM (Offset Trim P) — Offset null trim terminal - connect to trim network or leave open
Pin 6 OUT — Amplifier output
Pin 7 V+ — Positive supply
Pin 8 NC — Not connected (per datasheet)

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for OPA627AU/2K5 Drain-to-Source Voltage (Vds) Drain Current (Id)

No official SOA curve available for this component. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.

Typical Applications

OPA627AU/2K5 is suitable for 6 applications: Precision Data Acquisition Front End, Photodiode Transimpedance Amplifier, High-End Audio Preamplifier and DAC Output Stage, Test and Measurement Instrumentation, Active Filter and Signal Conditioning, Medical and Biomedical Sensor Front Ends.

🔧

Precision Data Acquisition Front End

In precision data acquisition systems, the OPA627AU/2K5 buffers sensor and ADC inputs where DC accuracy directly defines system resolution. Its 100 uV max offset voltage and 0.8 uV/C max drift mean that over a 0-70C span the offset contributes under 100 uV of total error, negligible next to a 16-bit ADC LSB of 76 uV on a 5 V reference. The 5 pA max input bias current avoids loading high-impedance sources such as bridge transducers and pH probes with even megaohm source impedance. Placed as a unity-gain buffer directly ahead of successive-approximation ADCs, its 16 MHz bandwidth and 55 V/us slew rate allow it to settle driving dynamic input sampling without adding settling error; a small series resistor at the ADC pin isolates capacitive load transients.

💡

Photodiode Transimpedance Amplifier

Photodiode current-to-voltage conversion demands an amplifier whose input bias current is far below the smallest photocurrent of interest. The OPA627AU/2K5's 5 pA max JFET bias current allows measuring currents down to hundreds of picoamperes with less than a few percent error, and its low input voltage noise limits output noise multiplied by the total input capacitance. With a 1 megaohm feedback resistor, each picoampere yields 1 uV of output, so bias-current-induced offset stays near 5 uV. The 16 MHz gain-bandwidth permits megahertz-range transimpedance bandwidths when feedback capacitance is chosen correctly; designers should add a feedback capacitor calculated from the photodiode junction capacitance to guarantee phase margin, using the OPA627's unity-gain stability as a safety margin.

🎧

High-End Audio Preamplifier and DAC Output Stage

The OPA627 family is a reference-grade choice in professional and audiophile audio: its JFET input presents high impedance to volume potentiometers and phono cartridges, while 55 V/us slew rate and 16 MHz bandwidth guarantee that full-scale 20 kHz signals are reproduced with negligible slewing-induced distortion. Very low voltage noise at 10 kHz keeps the noise floor below -110 dBu in typical preamp gains. In DAC output I/V conversion and active low-pass filtering, the unity-gain stability of the OPA627 makes it safe in Sallen-Key and multiple-feedback filter topologies where the OPA637 (stable only at gain >= 5) cannot be used. Community designs often pair one OPA627 per channel with a BUF634 inside the feedback loop to drive headphones or long cables.

🖥️

Test and Measurement Instrumentation

Bench multimeters, oscilloscope front ends, and automated test equipment require amplifiers combining DC precision with fast settling. The OPA627AU/2K5 settles to 0.01% rapidly (fast settling listed among its core features) while contributing only 100 uV max offset and 0.8 uV/C drift, enabling ranges down to millivolts without auto-zero calibration. Its +-18 V supply rating allows signals riding on high common-mode voltages in legacy +-15 V systems. In programmable-gain front ends operating at gains of 5 or more, the pin-compatible OPA637 can be substituted on the same SOIC-8 footprint for extra high-gain bandwidth, letting one PCB layout serve both slow-precision and fast-acquisition product variants with a single bill-of-materials change.

🔧

Active Filter and Signal Conditioning

Active low-pass, band-pass, and anti-aliasing filters benefit from the OPA627AU/2K5's combination of 16 MHz bandwidth and unity-gain stability. In multiple-feedback topologies that present low, frequency-dependent noise gains, amplifiers that are only conditionally stable can oscillate; the OPA627's guaranteed unity-gain stability removes this risk. Its low bias current permits large resistor values (megaohm range) needed for audio and biomedical filter time constants without bias-current-induced offset errors, and the JFET input's low current noise keeps resistor-noise-dominated designs unaffected. Designers should verify that closed-loop noise gain stays above the unity-gain crossover's phase-margin requirements and keep feedback capacitor values small to preserve the intended pole frequencies.

💊

Medical and Biomedical Sensor Front Ends

Biopotential and physiological sensor interfaces - ECG, EEG, photoplethysmography, and lab-scale photometry - require amplifiers that neither load fragile electrodes nor inject offset drift into sub-millivolt signals. The OPA627AU/2K5's 5 pA max bias current and megaohm-level input impedance preserve electrode polarization conditions, while 0.8 uV/C drift keeps baseline wander negligible relative to typical 1 mV ECG amplitudes even across body-temperature swings. Its wide +-4.5 V to +-18 V supply range supports medically conventional +-5 V and +-12 V rails. Used as the first gain block ahead of an instrumentation amplifier or an ADC such as the CS5534, it provides high input headroom and slew capability for transient artifacts; patient-isolation requirements are handled by upstream isolation barriers, not the amplifier itself.

What is the bandwidth and slew rate of the OPA627AU/2K5?
The OPA627AU/2K5 offers a 16 MHz unity-gain bandwidth and a 55 V/us slew rate. According to the Texas Instruments OPA627 product page, it is a 55 V/us high-speed, 0.8 uV/C max drift precision JFET operational amplifier, unity-gain stable, making it suitable for both precision DC and fast AC signal paths such as data acquisition and audio preamps.
What is the maximum offset voltage and drift of OPA627AU/2K5?
The OPA627AU/2K5 has a maximum offset voltage of 100 uV and a maximum offset voltage drift of 0.8 uV/C over temperature. These values, stated in the TI OPA627 feature list, make it well suited for high-precision analog front ends where DC accuracy without periodic calibration is required, such as instrumentation amplifiers and reference buffers.
What is the input bias current of the OPA627?
The OPA627 has a maximum input bias current of 5 pA, thanks to its JFET (DiFet) input stage. This extremely low bias current means minimal loading of high-impedance sources, which is why the part is widely used in photodiode transimpedance amplifiers, pH and chemical sensor front ends, and precision sample-hold circuits where even nanoampere currents would cause measurable error.
Where can I download the OPA627AU/2K5 datasheet PDF?
You can download the OPA627AU/2K5 datasheet PDF directly from the Texas Instruments product page at ti.com/product/OPA627. The datasheet covers the full OPA6x7 family (OPA627 and OPA637), including the 16 MHz bandwidth, 55 V/us slew rate, 100 uV max offset, 0.8 uV/C max drift, and SOIC-8 (D package) mechanical drawings. Mirrored copies are also available on aggregator sites such as datasheets.com and alldatasheet.com.
What is the pinout of the OPA627 in SOIC-8?
In the 8-pin SOIC (D) package, pin 1 and pin 5 are offset trim (TRIM), pin 2 is the inverting input (-IN), pin 3 is the non-inverting input (+IN), pin 4 is the negative supply (V-), pin 6 is the output, pin 7 is the positive supply (V+), and pin 8 is not connected (NC). Per the TI datasheet, the trim pins allow external offset adjustment; leave them open for standard operation.
What is the difference between OPA627 and OPA637?
The OPA627 is unity-gain stable, while the OPA637 is stable only in closed-loop gains of 5 or greater. Both share the same die, pinout, package, and precision specifications (100 uV max offset, 5 pA max bias current). The OPA637 achieves higher bandwidth than the 16 MHz OPA627 because compensation is reduced for high-gain operation. Choose OPA627 for gains below 5 and OPA637 for gain-of-5-or-more stages.
OPA627 vs OPA637 - which is better for my circuit?
For closed-loop gains of 5 or more, the OPA637 is the better choice because its reduced internal compensation yields wider bandwidth at high gain while sharing identical precision specs. For gains below 5, or when stability margin is uncertain (e.g., in transimpedance or filter circuits), the OPA627 with its unity-gain stability and 16 MHz bandwidth is mandatory. Both are pin-compatible in the SOIC-8 package, so a footprint designed for one accepts the other.
What is the best drop-in replacement for OPA627AU/2K5?
The best drop-in replacement is the TI OPA627AU, which is the same die and specification in the same SOIC-8 package with identical pinout; the /2K5 suffix only denotes tape-and-reel packaging. For high-gain designs, the pin-compatible TI OPA637AU drops onto the same footprint but requires gain of 5 or more. Same-family pin-compatible alternatives include OPA627BP (tighter grade) and OPA827 (TI's newer JFET precision op amp), the latter requiring a parametric review.
Is there a cross-brand equivalent for OPA627 from Analog Devices?
No verified pin-to-pin cross-brand drop-in equivalent for the OPA627 was found in the cross-reference data reviewed; distributor cross-reference tools (DigiKey, Hotenda) list only TI functional equivalents such as OPA627AU/2K5E4 and OPA637 family members. Analog Devices JFET precision op amps (e.g., AD745, AD823 class) are parametrically similar but not verified pin-compatible drop-ins, so always validate pinout and compensation before substituting cross-brand.
What is the price of OPA627AU/2K5?
Pricing for the OPA627AU/2K5 starts from approximately $13.69 per unit (as of 2026-09-13, per LCSC listed stock of 2,470 units), with volume discounts at 10, 100, 500, and 1000 pieces shown in the price tiers on this page. Mouser and Octopart also stock the family (Mouser lists 675 units of the related OPA627AU in stock). Prices fluctuate; always confirm current distributor pricing before ordering.
Where to buy OPA627AU/2K5 online?
The OPA627AU/2K5 is available from DigiKey (ships same day), Mouser, LCSC (2,470 units in stock, from $13.6901 as of 2026-09-13), and Octopart aggregates three distributors. XAIPART also offers this part with quantity-break pricing. Because this is a premium precision op amp, compare lead times and quantity pricing across distributors before placing volume orders.
Is OPA627AU/2K5 in stock?
Yes. As of 2026-09-13, LCSC shows 2,470 units of OPA627AU/2K5 in stock, DigiKey states the part ships the same day, and Mouser lists 675 units of the packaging-equivalent OPA627AU in stock. Availability for this legacy Burr-Brown precision family can vary, so verify real-time stock at your chosen distributor before committing to a production schedule.
What is the lead time for OPA627AU/2K5?
For in-stock distributors, the OPA627AU/2K5 ships immediately - DigiKey advertises same-day shipping and LCSC shows 2,470 units on hand as of 2026-09-13, so lead time is effectively the distributor's standard ship time (1-5 days). For large factory-direct orders beyond distributor stock, lead time must be confirmed with TI; no factory lead time appears in the verified data.
Is OPA627AU/2K5 suitable for audiophile audio preamplifier use?
Yes. The OPA627AU/2K5 is a popular choice for high-end audio preamplifiers and DAC output stages because its JFET input provides very low noise and 5 pA max bias current, and the 55 V/us slew rate easily covers full-scale audio signals at 16 MHz bandwidth. Community comparisons (e.g., diyAudio) note it is a single op amp; for dual-channel circuits, two OPA627 units or a dual part such as OPA2107 on the XAIPART site can be used.
What are the key specifications of OPA627AU/2K5 that engineers should know?
The Texas Instruments OPA627AU/2K5 is a single precision JFET-input op amp in SOIC-8 with 16 MHz unity-gain bandwidth, 55 V/us slew rate, +-4.5 V to +-18 V supply, 100 uV max offset voltage, 0.8 uV/C max offset drift, 5 pA max input bias current, unity-gain stability, and -25C to +85C operation. Per TI, it outperforms the OPA111 with lower noise, lower offset, and higher speed in precision high-speed analog circuitry.
How should I decouple and lay out the OPA627 on my PCB?
Place 0.1 uF ceramic bypass capacitors directly at the V+ (pin 7) and V- (pin 4) pins to ground, with a bulk 4.7 uF to 10 uF per rail nearby. Keep the feedback path short and use a ground plane to minimize stray capacitance at the summing node, which can cause peaking with the 16 MHz bandwidth. Per the TI datasheet, the offset trim pins (1 and 5) accept a potentiometer network; leave unconnected if trimming is not required.
What supply voltage does the OPA627 need?
The OPA627 operates from dual supplies of +-4.5 V to +-18 V, covering common +-5 V and +-15 V analog rails. Total supply span is therefore 9 V to 36 V. According to the TI datasheet, this makes it usable in legacy +-15 V instrumentation systems as well as lower-voltage portable precision designs; a single-supply operation is possible with proper input common-mode biasing within the JFET input range.

Engineering reference data for OPA627AU/2K5 — comparison, design guidance, and compliance information.

Selection Guide

Choose the OPA627AU/2K5 when you need a unity-gain-stable precision JFET op amp with 100 uV max offset, 0.8 uV/C max drift, and 5 pA max bias current in a SOIC-8 footprint - typical for data-acquisition buffers, transimpedance amplifiers, and audio preamps. Select OPA637AU/OPA637AU/2K5 only for closed-loop gains of 5 or more, where reduced internal compensation yields extra bandwidth on the identical footprint. Choose OPA627BP when tighter offset and drift limits justify the higher cost in metrology-grade products. Consider OPA827AID when you need wider bandwidth (~22 MHz), lower voltage operation, and a -40C to +125C range, accepting slightly worse offset and drift. For tape-and-reel production, the /2K5 suffix matches automated assembly; OPA627AU tubes suit prototypes and low-volume builds.

Comparison with Alternatives

Parameter This Product OPA627AU OPA637AU OPA637AU/2K5 OPA627BP OPA827AID
Package SOIC-8 (D) SOIC-8 (D) - same SOIC-8 (D) - same SOIC-8 (D) - same SOIC-8 (D) - same SOIC-8 (D) - same
Brand Texas Instruments Texas Instruments Texas Instruments Texas Instruments Texas Instruments Texas Instruments
Unity-Gain Bandwidth 16 MHz (unity-gain stable) 16 MHz Higher (gain >= 5 stable) - [DATA_NEEDED] Higher (gain >= 5 stable) - [DATA_NEEDED] 16 MHz ~22 MHz
Slew Rate 55 V/us 55 V/us [DATA_NEEDED] [DATA_NEEDED] 55 V/us ~28 V/us
Max Offset Voltage 100 uV 100 uV Same die family - [DATA_NEEDED] Same die family - [DATA_NEEDED] Lower (tighter grade) - [DATA_NEEDED] ~150 uV
Max Offset Drift 0.8 uV/C 0.8 uV/C Same die family - [DATA_NEEDED] Same die family - [DATA_NEEDED] Lower (tighter grade) - [DATA_NEEDED] ~1.5 uV/C
Stability Unity-gain stable Unity-gain stable Stable at gain >= 5 only Stable at gain >= 5 only Unity-gain stable Unity-gain stable
Operating Temperature -25C to +85C -25C to +85C [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] -40C to +125C

Key Differentiators

  • Unity-gain stability at 16 MHz (vs OPA637AU)
  • Ultra-low drift for uncalibrated precision (vs OPA827AID)
  • 5 pA max input bias current (vs OPA627AU (equivalent) and bipolar-input precision amps)

Design Notes

Decouple V+ (pin 7) and V- (pin 4) with 0.1 uF ceramic capacitors placed within 2-3 mm of the pins, plus 4.7-10 uF bulk capacitance per rail. The OPA627 operates from +-4.5 V to +-18 V; exceeding +-18 V damages the JFET input stage. Reverse-supply protection with series resistors or Schottky clamps is recommended in systems with uncertain power-up sequencing. Quiescent current is modest but the SOIC-8 thermal path limits sustained output drive into heavy loads - Estimated: at 36 V total span with 20 mA load, package dissipation is roughly 0.72 W, so verify junction temperature against the SOIC-8 theta_JA.

With 16 MHz of bandwidth, keep the feedback loop as short as possible and avoid routing the summing junction under high-slew digital traces. Place the feedback resistor directly across pins 2 and 6 with minimal pad area at the inverting input to reduce stray capacitance, which causes gain peaking in transimpedance circuits. Use a solid ground plane and return load currents away from the input ground reference. The offset trim pins (1 and 5) should be left unconnected if trimming is not used - never float trim networks mid-circuit during operation.

The most frequent substitution error is using the OPA637 where an OPA627 is required: the OPA637 is stable only at closed-loop gains of 5 or greater and will oscillate in unity-gain buffers, followers, and MFB filters. Conversely, designers needing maximum high-gain bandwidth should choose the OPA637 on the same footprint. Also note the /2K5 suffix is a packaging code (2500-unit tape and reel), not a different grade - ordering OPA627AU in tube yields the identical die. Finally, this grade is rated -25C to +85C; full industrial -40C designs need grade verification.

Compliance Information

RoHS
Compliant
REACH
Unknown
AEC-Q100
Not Applicable
Lead Free
Unknown
Halogen Free
Unknown
Conflict Minerals
Unknown

Abacus Technologies lists OPA627AU family as EU RoHS compliant, REACH compliant, PFAS: NO, DRC conflict free; explicit status for the exact /2K5 suffix should be confirmed on the TI product page.

Data verified on: 2026-09-13 — data verified and curated by XAIPART's component engineering team

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