Documente tehnice (Imaginile sunt cu titlu informativ. Va rugam sa consultati specificatiile tehnice.)
Specificatii
Marca
Texas InstrumentsAmplifier Type
Transconductance
Timp montare
Through Hole
Tip pachet
MDIP
Tip alimentare
Dual, Single
Numar canale pe cip
2
Numar pini
16
Tensiune alimentare
3 → 28 V
Typical Gain Bandwidth Product
2MHz
Typical Dual Supply Voltage
±12 V, ±15 V, ±9 V
Typical Slew Rate
50V/µs
Temperatura maxima de lucru
+70 °C
Temperatura minima de lucru
0 °C
Rail to Rail
No
Lungime
19.05mm
Latime
6.35mm
Inaltime
3.3mm
Dimensiuni
19.05 x 6.35 x 3.3mm
Detalii produs
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
P.O.A.
1
P.O.A.
Informatii despre stoc temporar indisponibile
1
Informatii despre stoc temporar indisponibile
Documente tehnice (Imaginile sunt cu titlu informativ. Va rugam sa consultati specificatiile tehnice.)
Specificatii
Marca
Texas InstrumentsAmplifier Type
Transconductance
Timp montare
Through Hole
Tip pachet
MDIP
Tip alimentare
Dual, Single
Numar canale pe cip
2
Numar pini
16
Tensiune alimentare
3 → 28 V
Typical Gain Bandwidth Product
2MHz
Typical Dual Supply Voltage
±12 V, ±15 V, ±9 V
Typical Slew Rate
50V/µs
Temperatura maxima de lucru
+70 °C
Temperatura minima de lucru
0 °C
Rail to Rail
No
Lungime
19.05mm
Latime
6.35mm
Inaltime
3.3mm
Dimensiuni
19.05 x 6.35 x 3.3mm
Detalii produs
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.