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TI OPA687N/250
Manufacturer No:
OPA687N/250
Manufacturer:
Package:
SOT-23-6
Description:
80mA per Channel 20μA 88 dB Instrumentational OP Amps 40μA 9V 6 Pins SOT-23-6
Quantity:
Delivery:




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In Stock :Available
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OPA687N/250 information
TI OPA687N/250 technical specifications, attributes, parameters and parts with similar specifications to TI OPA687N/250.
- Type
- Parameter
- Mount
- Surface Mount
- Package / Case
- SOT-23-6
- Number of Pins
- 6
- Packaging
- Tape & Reel (TR)
- Pbfree Code
- no
- Number of Terminations
- 6
- ECCN Code
- EAR99
- Max Operating Temperature
- 85°C
- Min Operating Temperature
- -40°C
- Subcategory
- Operational Amplifiers
- Packing Method
- TAPE AND REEL
- Technology
- BIPOLAR
- Terminal Position
- DUAL
- Terminal Form
- GULL WING
- Number of Functions
- 1
- Supply Voltage
- 5V
- Terminal Pitch
- 0.95mm
- Pin Count
- 6
- Qualification Status
- Not Qualified
- Operating Supply Voltage
- 9V
- Temperature Grade
- INDUSTRIAL
- Number of Circuits
- 1
- Operating Supply Current
- 18.5mA
- Supply Current-Max
- 20.5mA
- Architecture
- VOLTAGE-FEEDBACK
- Amplifier Type
- OPERATIONAL AMPLIFIER
- Common Mode Rejection Ratio
- 88 dB
- Current - Input Bias
- 20μA
- Output Current per Channel
- 80mA
- Input Offset Voltage (Vos)
- 100μV
- Gain Bandwidth Product
- 3.8 GHz
- Neg Supply Voltage-Nom (Vsup)
- -5V
- Unity Gain BW-Nom
- 3800000 kHz
- Voltage Gain
- 85dB
- Average Bias Current-Max (IIB)
- 40μA
- Power Supply Rejection Ratio (PSRR)
- 80dB
- Low-Offset
- NO
- Max Dual Supply Voltage
- 6V
- Low-Bias
- NO
- Micropower
- NO
- Bias Current-Max (IIB) @25C
- 33μA
- Programmable Power
- NO
- Dual Supply Voltage
- 5V
- Wideband
- YES
- Height
- 870μm
- Length
- 2.9mm
- Width
- 1.6mm
Download datasheets and manufacturer documentation for TI OPA687N/250.
Datasheets:
OPA687N/250 Overview
The linear amplifier is packaged in a SOT-23-6 case. This is a OPERATIONAL AMPLIFIER type op amp. Linear amplifier is delivered in a Tape & Reel (TR) case. The number of terminations approaches 6. Buffer amplifier has a total of 6 pins. Please take in mind that this instrumentation amplifier should be run at 5V. To be specific, this instrumentation amplifier is a type of Operational Amplifiers. The buffer op amp includes 6 pins. Regarding input offset voltage, op amp rates 100μV. This op amp can operate from a supply current at 18.5mA. Voltage gain should remain at 85dB. There are 1 circuits on this op amp. The temperature should not be lower than -40°C for operational amplifier ics to operate. Use op amps only at temperatures no higher than 85°C. The operating supply voltage of the buffer op amp is rated at 9V. TAPE AND REEL is adopted to pack the instrumentation amplifier. You should conduct this electronic component under the dual supply voltage of 6V.
OPA687N/250 Features
6 Pins
supply voltage of 5V
85dB voltage gain
OPA687N/250 Applications
There are a lot of Texas Instruments
OPA687N/250 Instrumentational OP Amps applications.
- Inverse/same-phase proportional circuit
- Addition operation circuits
- Subtraction operation circuits
- single/dual op amp sum and difference circuits
- Integrator circuits
- Differentiator circuits
- Logarithmic operation circuits
- Exponential operation circuits
- Multiplication circuits
- Division circuits
User Guide
Please verify all part numbers, quantities, and packaging preferences before placing your order. If substitutions are acceptable, please indicate this clearly. For time-sensitive projects, confirm estimated delivery dates and stock availability in advance. Once submitted, changes or cancellations may not be possible, especially for items marked as non-cancellable/non-returnable (NCNR). For international shipments, please ensure all import documentation is complete and accurate to avoid delays.
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Provide target prices and acceptable alternatives, if any, to speed up the quotation process.
Quotations are subject to stock availability and may vary with market conditions. Prices and lead times are not guaranteed until a purchase order is confirmed. Ensure your contact details are correct to avoid delays in response.

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