THS4502CDGNR
- Mfr.Part #
- THS4502CDGNR
- Manufacturer
- Texas Instruments
- Package / Case
- 8-TSSOP, 8-MSOP (0.118, 3.00mm Width) Exposed Pad
- Datasheet
- Download
- Description
- IC OPAMP DIFF 1 CIRCUIT 8HVSSOP
- Stock
- 11,121
- In Stock :
- 11,121
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- Manufacturer :
- Texas Instruments
- Product Category :
- Instrumentation, OP Amps, Buffer Amps
- Neg Supply Voltage-Nom (Vsup) :
- -5V
- Settling Time :
- 6.3 ns
- Base Part Number :
- THS4502
- Common Mode Rejection Ratio :
- 74 dB
- Output Current per Channel :
- 120mA
- Gain Bandwidth Product :
- 300MHz
- Average Bias Current-Max (IIB) :
- 5μA
- Terminal Form :
- Gull wing
- Terminal Position :
- Dual
- RoHS Status :
- ROHS3 Compliant
- Amplifier Type :
- Differential
- Weight :
- 24.408939mg
- JESD-609 Code :
- e4
- Package / Case :
- 8-TSSOP, 8-MSOP (0.118, 3.00mm Width) Exposed Pad
- Number of Terminations :
- 8
- Radiation Hardening :
- No
- Programmable Power :
- No
- Terminal Finish :
- Nickel/Palladium/Gold (Ni/Pd/Au)
- Max Power Dissipation :
- 1.71W
- Moisture Sensitivity Level (MSL) :
- 1 (Unlimited)
- Operating Temperature :
- 0°C~70°C
- Current - Input Bias :
- 4μA
- Voltage - Supply, Single/Dual (±) :
- 4.5V~15V ±2.25V~7.5V
- Packaging :
- Tape and Reel (TR)
- Low-Bias :
- No
- Input Offset Voltage (Vos) :
- 1mV
- Power Supply Rejection Ratio (PSRR) :
- 72dB
- Architecture :
- VOLTAGE-FEEDBACK
- Surface Mount :
- yes
- Lifecycle Status :
- ACTIVE (Last Updated: 3 days ago)
- ECCN Code :
- EAR99
- Low-Offset :
- No
- Peak Reflow Temperature (Cel) :
- 260
- Dual Supply Voltage :
- 5V
- Thickness :
- 1.02mm
- Terminal Pitch :
- 0.65mm
- Input Offset Current-Max (IIO) :
- 2µA
- Supply Voltage :
- 5V
- Micropower :
- No
- Number of Functions :
- 1
- Width :
- 3mm
- Frequency Compensation :
- yes
- Length :
- 3mm
- Unity Gain BW-Nom :
- 300000 kHz
- Pin Count :
- 8
- Lead Free :
- Lead Free
- Operating Supply Current :
- 23mA
- Number of Pins :
- 8
- Number of Elements :
- 1
- Max Input Voltage :
- -1.3V
- Slew Rate :
- 2800V/μs
- Resistance :
- 50kOhm
- Mounting Type :
- Surface Mount
- Nominal Supply Current :
- 28mA
- Bias Current-Max (IIB) @25C :
- 4.6µA
- Pbfree Code :
- yes
- Height :
- 1.1mm
- -3db Bandwidth :
- 30MHz
- Power Dissipation :
- 1.71W
- Packing Method :
- TR
- Voltage Gain :
- 54dB
- Bandwidth :
- 370MHz
- Max I/O Voltage :
- -4mV
- Factory Lead Time :
- 6 Weeks
- Datasheets
- THS4502CDGNR

[Instrumentation, Texas Instruments THS4502CDGNR] Overview
The THS4502CDGNR, manufactured by Texas Instruments, is a high-performance integrated circuit operational amplifier designed for differential signal processing applications. With its compact 8HVSSOP package and exceptional performance characteristics, this IC is an ideal solution for demanding electronic systems requiring precise signal amplification and conditioning.
Engineered with state-of-the-art technology, this differential amplifier offers industry-leading features and reliability, making it a preferred choice for professionals in various fields such as industrial automation, telecommunications, medical instrumentation, and more.
[THS4502CDGNR] Features
- Highly integrated differential operational amplifier
- Wide operating voltage range: ±2.5V to ±18V
- Low input offset voltage: ±0.5mV (maximum)
- High slew rate: 750V/µs (typical)
- Low noise density: 8nV/√Hz (typical)
- Excellent common-mode rejection ratio (CMRR): 95dB (typical)
- Unity gain stable
- Compact 8HVSSOP package
[THS4502CDGNR] Applications
- Industrial Automation: The THS4502CDGNR is suitable for precision signal amplification and filtering in industrial control systems, ensuring accurate measurement and control of various processes.
- Telecommunications: In telecommunications equipment such as base stations and line cards, this operational amplifier enhances signal integrity and fidelity, facilitating reliable data transmission.
- Medical Instrumentation: With its low noise and high precision, this IC is ideal for medical devices like patient monitoring systems and diagnostic equipment, ensuring accurate signal processing in sensitive medical applications.
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