

TI OPA637AM
Manufacturer No:
OPA637AM
Manufacturer:
Package:
TO-99-8 Metal Can
Description:
1 Channels 45mA per Channel 2pA 100 dB Instrumentational OP Amps 0.002μA 9V~36V ±4.5V~18V OPA637 8 Pins TO-99-8 Metal Can
Quantity:
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OPA637AM information
TI OPA637AM technical specifications, attributes, parameters and parts with similar specifications to TI OPA637AM.
- Type
- Parameter
- Lifecycle Status
- NRND (Last Updated: 3 days ago)
- Mount
- Through Hole
- Mounting Type
- Through Hole
- Package / Case
- TO-99-8 Metal Can
- Number of Pins
- 8
- Operating Temperature
- -25°C~85°C
- Packaging
- Tube
- Series
- Difet®
- Pbfree Code
- yes
- Part Status
- Not For New Designs
- Moisture Sensitivity Level (MSL)
- 1 (Unlimited)
- Number of Terminations
- 8
- ECCN Code
- EAR99
- Subcategory
- Operational Amplifier
- Max Power Dissipation
- 1W
- Technology
- BIPOLAR
- Terminal Position
- BOTTOM
- Terminal Form
- WIRE
- Number of Functions
- 1
- Supply Voltage
- 15V
- Base Part Number
- OPA637
- Pin Count
- 8
- Number of Channels
- 1
- Operating Supply Current
- 7mA
- Power Dissipation
- 1W
- Slew Rate
- 135V/μs
- Architecture
- VOLTAGE-FEEDBACK
- Amplifier Type
- General Purpose
- Common Mode Rejection Ratio
- 100 dB
- Current - Input Bias
- 2pA
- Voltage - Supply, Single/Dual (±)
- 9V~36V ±4.5V~18V
- Output Current per Channel
- 45mA
- Input Offset Voltage (Vos)
- 250μV
- Bandwidth
- 16MHz
- Gain Bandwidth Product
- 80MHz
- Neg Supply Voltage-Nom (Vsup)
- -15V
- Unity Gain BW-Nom
- 80000 kHz
- Voltage Gain
- 116dB
- Average Bias Current-Max (IIB)
- 0.002μA
- Power Supply Rejection Ratio (PSRR)
- 100dB
- Low-Offset
- YES
- Frequency Compensation
- YES AVCL>=5
- Voltage - Input Offset
- 130μV
- Low-Bias
- YES
- Micropower
- NO
- Programmable Power
- NO
- Dual Supply Voltage
- 15V
Download datasheets and manufacturer documentation for TI OPA637AM.
OPA637AM Overview
In the package, you will find a TO-99-8 Metal Can-case to contain the op amp ic. The instrumentation amplifier in this picture is of the General Purpose-type. A Tube case is used for delivering the op amp. During the past two weeks, there have been close to 8 terminations. A total of 8 pins are located on this board. This linear amplifier should be powered by an 15V battery. This particular linear amplifier is a type of Operational Amplifier device, to be precise. The op amp ic has an array of 8 pins on it. Op amp rates 250μV as input offset voltage. For this electrical component, Through Hole is the recommended mounting type. According to the manufacturer, this buffer op amp works well at -25°C~85°C , which is a good operating temperature. Using an 7mA supply current, this operational amplifier ics can be operated. You should keep the voltage gain at 116dB for the time being. On the buffer amps, there are 1 channels that can be used. In this case, Difet® represents the instrumentation amplifiers' series number.
OPA637AM Features
8 Pins
supply voltage of 15V
116dB voltage gain
OPA637AM Applications
There are a lot of Texas Instruments
OPA637AM Instrumentational OP Amps applications.
- Multiplication circuits
- Division circuits
- Precision measurement
- Power control
- Information processing
- Weak signal detection
- Signal amplification
- Signal filtering
- Signal operation
- Video computer boards
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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