Design Goals
AC Specifications | Supply | ||
---|---|---|---|
AC Gain | foscillation | Vcc | Vee |
8V/V | 10kHz | 2.5V | –2.5V |
Design Description
This circuit uses a quad channel op amp with ±2.5-V supplies to generate a 10kHz, low-distortion sine wave. The amplifiers buffer each RC filter stage, which yields a low-distortion output.
Design Notes
Design Steps
For a classical feedback system, oscillation occurs when the product of the open loop gain, AOL, and the feedback factor, β, is equal to –1, or 1 at 180°. Therefore, each RC stage in the design must contribute 60° of phase shift. Since each stage is isolated by a buffer, the feedback factor, β, of the first stage must have a magnitude of (1/2)3. Therefore the gain (1/β) must be at least 8V/V.
Design Simulations
The resulting simulations demonstrate a sinusoidal oscillator that reaches steady state after about 3ms to a 10.01-kHz sine wave with a 735-mVpp amplitude.
Transient Simulation Results
Design References
Design Featured Op Amp
TLV9064 | |
---|---|
Vss | 1.8V to 5.5V |
VinCM | Rail-to-rail |
Vout | Rail-to-rail |
Vos | 300µV |
Iq | 538µA |
Ib | 0.5pA |
UGBW | 10MHz |
SR | 6.5V/µs |
#Channels | 1, 2, 4 |
www.ti.com/product/TLV9064 |
Design Alternate Op Amps
TLV9052 | OPA4325 | |
---|---|---|
Vss | 1.8V to 5.5V | 2.2V to 5.5V |
VinCM | Rail–to–rail | Rail–to–rail |
Vout | Rail–to–rail | Rail–to–rail |
Vos | 330µV | 40µV |
Iq | 330µA | 650µA |
Ib | 2pA | 0.2pA |
UGBW | 5MHz | 10MHz |
SR | 15V/µs | 5V/µs |
#Channels | 2 | 4 |
www.ti.com/product/TLV9052 | www.ti.com/product/OPA4325 |
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