CLC416
CLC416 is Dual Low-Power/ 120MHz Op Amp manufactured by National Semiconductor.
Description
The CLC416 is a dual, wideband (120MHz) op amp. The CLC416 consumes only 39m W per channel and can source or sink an output current of 60m A. These features make the CLC416 a versatile, high-speed solution for demanding applications that are sensitive to both power and cost. Utilizing National’s proven architectures, this dual current feedback amplifier surpasses the performance of alternative solutions and sets new standards for low power. This powerconserving dual op amp achieves low distortion with -80d Bc and -80d Bc second and third harmonics respectively. Many high source impedance applications will benefit from the CLC416’s 6MΩ input impedance. And finally, designers will have a bipolar part with an exceptionally low 100n A non-inverting bias current. With 0.1d B flatness to 30MHz and low differential gain and phase errors, the CLC416 is an ideal part for professional video processing and distribution. The 120MHz -3d B bandwidth (Av = +2) coupled with a 400V/µs slew rate also makes the CLC416 a perfect choice in cost-sensitive applications such as video monitors, fax machines, copiers, and CATV systems.
Features s s s s s s s
0.01%, 0.03° DG, Dφ Very low input bias current: 100n A High input impedance: 6MΩ 120MHz -3d B bandwidth (Av = +2) Low power High output current: 60m A Low-cost
Applications s s s s s s s
Desktop video systems Video distribution Flash A/D driver High-speed driver High-source impedance applications Professional video processing High resolution monitors
Frequency Response (Av = +2V/V)
Typical Application Diagram
Instrumentation Amplifier
V1 + 1/2 CLC416
Pinout
DIP & SOIC
348Ω
348Ω
- 348Ω Vout = 3(V2
- V1)
Vo1 Vinv1 Vnon-inv1 -VCC
+VCC Vo2 Vinv2 Vnon-inv2
348Ω 348Ω
1/2 CLC416
348Ω
CLC405
+ R1 348Ω
- V2
+
© 1998 National Semiconductor Corporation
Printed in the U.S.A. http://.national.
CLC416 Electrical Characteristics (AV = +2, Rf = 348Ω: Vcc = + 5V, RL = 100Ω unless specified)
PARAMETERS Ambient Temperature...