Technical Document
Specifications
Brand
Texas InstrumentsAmplifier Type
Current Feedback
Mounting Type
Surface Mount
Package Type
SOIC
Power Supply Type
Dual, Single
Number of Channels per Chip
2
Pin Count
8
Typical Single Supply Voltage
5 V
Typical Gain Bandwidth Product
2GHz
Typical Dual Supply Voltage
±6V
Typical Slew Rate
1100V/µs
Minimum Operating Temperature
-40 °C
Maximum Operating Temperature
+85 °C
Rail to Rail
No
Length
4.9mm
Width
3.91mm
Typical Input Voltage Noise Density
2.6nV/√Hz
Height
1.58mm
Dimensions
4.9 x 3.91 x 1.58mm
Product details
Current Feedback Operational Amplifiers
A wide range of current feedback operational amplifiers from Texas Instruments. Current feedback operational amplifiers employ a circuit topology that is inherently faster than voltage-mode devices allowing better high frequency performance. They are ideally suited to high speed and video applications with modest DC accuracy requirements.
Stock information temporarily unavailable.
3.397 OMR
3.397 OMR Each (ex VAT)
3.567 OMR
3.567 OMR Each (inc. VAT)
Standard
1
3.397 OMR
3.397 OMR Each (ex VAT)
3.567 OMR
3.567 OMR Each (inc. VAT)
Stock information temporarily unavailable.
Standard
1
| Quantity | Unit price |
|---|---|
| 1 - 4 | 3.397 OMR |
| 5 - 9 | 3.337 OMR |
| 10+ | 3.223 OMR |
Technical Document
Specifications
Brand
Texas InstrumentsAmplifier Type
Current Feedback
Mounting Type
Surface Mount
Package Type
SOIC
Power Supply Type
Dual, Single
Number of Channels per Chip
2
Pin Count
8
Typical Single Supply Voltage
5 V
Typical Gain Bandwidth Product
2GHz
Typical Dual Supply Voltage
±6V
Typical Slew Rate
1100V/µs
Minimum Operating Temperature
-40 °C
Maximum Operating Temperature
+85 °C
Rail to Rail
No
Length
4.9mm
Width
3.91mm
Typical Input Voltage Noise Density
2.6nV/√Hz
Height
1.58mm
Dimensions
4.9 x 3.91 x 1.58mm
Product details
Current Feedback Operational Amplifiers
A wide range of current feedback operational amplifiers from Texas Instruments. Current feedback operational amplifiers employ a circuit topology that is inherently faster than voltage-mode devices allowing better high frequency performance. They are ideally suited to high speed and video applications with modest DC accuracy requirements.


