Технически документи
Спецификации
Brand
Texas InstrumentsAmplifier Type
Transconductance
Mounting Type
Surface Mount
Package Type
SOIC
Power Supply Type
Dual, Single
Number of Channels per Chip
1
Pin Count
8
Typical Single Supply Voltage
5 V
Typical Dual Supply Voltage
±5V
Typical Slew Rate
410V/µs
Minimum Operating Temperature
-40 °C
Maximum Operating Temperature
+85 °C
Rail to Rail
No
Typical Input Voltage Noise Density
2.4nV/√Hz
Height
1.58mm
Dimensions
4.9 x 3.91 x 1.58mm
Length
4.9mm
Width
3.91mm
Детайли за продукта
Transconductance Amplifiers, Texas Instruments
LM137000 and OPA860/861 Operational Transconductance Amplifiers (OTAs) from Texas Instruments. Operational Transconductance Amplifiers produce an output current proportional to a differential input. The transconductance, or gain, of the OTA can be controlled via a current which makes the devices suitable for a wide range of voltage or current controlled applications such as filters, oscillators, multipliers and variable gain cells.
Transconductance Amplifiers
Информацията за складовите наличности временно не е налична.
Запитване за цена
Each (Supplied in a Tube) (ex VAT)
Производствен пакет (Тръба)
10
Запитване за цена
Each (Supplied in a Tube) (ex VAT)
Информацията за складовите наличности временно не е налична.
Производствен пакет (Тръба)
10
Технически документи
Спецификации
Brand
Texas InstrumentsAmplifier Type
Transconductance
Mounting Type
Surface Mount
Package Type
SOIC
Power Supply Type
Dual, Single
Number of Channels per Chip
1
Pin Count
8
Typical Single Supply Voltage
5 V
Typical Dual Supply Voltage
±5V
Typical Slew Rate
410V/µs
Minimum Operating Temperature
-40 °C
Maximum Operating Temperature
+85 °C
Rail to Rail
No
Typical Input Voltage Noise Density
2.4nV/√Hz
Height
1.58mm
Dimensions
4.9 x 3.91 x 1.58mm
Length
4.9mm
Width
3.91mm
Детайли за продукта
Transconductance Amplifiers, Texas Instruments
LM137000 and OPA860/861 Operational Transconductance Amplifiers (OTAs) from Texas Instruments. Operational Transconductance Amplifiers produce an output current proportional to a differential input. The transconductance, or gain, of the OTA can be controlled via a current which makes the devices suitable for a wide range of voltage or current controlled applications such as filters, oscillators, multipliers and variable gain cells.


