Τεχνικό φυλλάδιο
Προδιαγραφές
Brand
Texas InstrumentsAmplifier Type
Power
Mounting Type
Surface Mount
Package Type
SO PowerPAD
Power Supply Type
Dual, Single
Number of Channels per Chip
1
Pin Count
20
Typical Single Supply Voltage
7 → 24 V
Typical Gain Bandwidth Product
17MHz
Typical Dual Supply Voltage
±3.5 → ±12V
Typical Slew Rate
40V/µs
Maximum Operating Frequency
100 kHz
Minimum Operating Temperature
-40 °C
Maximum Operating Temperature
+125 °C
Rail to Rail
No
Typical Voltage Gain
108 dB
Typical Input Voltage Noise Density
102.8nV/√Hz
Length
12.95mm
Height
2.5mm
Width
7.59mm
Dimensions
12.95 x 7.59 x 2.5mm
Λεπτομέρειες Προϊόντος
High Voltage & High Current Op Amps
Power operational amplifiers from Texas Instruments with high current outputs suitable for driving low impedance and difficult loads. Many of these devices are capable of operating at higher supply voltages than general purpose op amps. Typical applications include driving MOSFETs and power transistors, bridge amplifiers, motor speed controllers, servo amplifiers, power supplies and uses within instrument systems.
P.O.A.
Μονάδας (Σε ένα πακέτο των 5) (Exc. Vat)Χωρίς Φ.Π.Α
Standard
5
P.O.A.
Μονάδας (Σε ένα πακέτο των 5) (Exc. Vat)Χωρίς Φ.Π.Α
Ημερομηνία αποθέματος προσωρινά μη διαθέσιμη
Standard
5
Ημερομηνία αποθέματος προσωρινά μη διαθέσιμη
Τεχνικό φυλλάδιο
Προδιαγραφές
Brand
Texas InstrumentsAmplifier Type
Power
Mounting Type
Surface Mount
Package Type
SO PowerPAD
Power Supply Type
Dual, Single
Number of Channels per Chip
1
Pin Count
20
Typical Single Supply Voltage
7 → 24 V
Typical Gain Bandwidth Product
17MHz
Typical Dual Supply Voltage
±3.5 → ±12V
Typical Slew Rate
40V/µs
Maximum Operating Frequency
100 kHz
Minimum Operating Temperature
-40 °C
Maximum Operating Temperature
+125 °C
Rail to Rail
No
Typical Voltage Gain
108 dB
Typical Input Voltage Noise Density
102.8nV/√Hz
Length
12.95mm
Height
2.5mm
Width
7.59mm
Dimensions
12.95 x 7.59 x 2.5mm
Λεπτομέρειες Προϊόντος
High Voltage & High Current Op Amps
Power operational amplifiers from Texas Instruments with high current outputs suitable for driving low impedance and difficult loads. Many of these devices are capable of operating at higher supply voltages than general purpose op amps. Typical applications include driving MOSFETs and power transistors, bridge amplifiers, motor speed controllers, servo amplifiers, power supplies and uses within instrument systems.


