CLC427
CLC427 is Dual Voltage Feedback Amplifier for Single Supply Operation manufactured by National Semiconductor.
Description
The linear CLC427 is a dual wideband voltage-feedback operational amplifier that is uniquely designed to provide high performance from a single power supply. This CLC427 provides near rail-to-rail operation and the mon-mode input range includes the negative rail. Each of the CLC427’s amplifiers offers plenty of headroom for single-supply applications as evidenced by its 4.3Vpp output voltage from a single 5V supply. Fabricated with a high-speed plementary bipolar process, the CLC427 delivers a wide 94MHz unity-gain bandwidth, 7.5ns rise/fall time and 150V/µs slew rate. For single supply applications such as video distribution or desktop multimedia, the CLC427 offers low 0.35%, 0.55° differential gain and phase errors. Each of the CLC427’s amplifiers provides high signal fidelity with -74/-94d Bc 2nd/3rd harmonics (1Vpp, 1MHz, RL=150Ω). bining this high fidelity performance with CLC427’s quick 46ns settling time to 0.1% makes it an excellent choice for ADC buffering. With its traditional voltage-feedback architecture and high-speed performance, the CLC427 is the perfect choice for posite signal conditioning circuit functions such as active filters, integrators, differentiators, simple gain blocks and buffering.
Features s s s s s s s
Single +5V supply Input includes VEE 94MHz unity-gain bandwidth -74/-94d Bc HD2/HD3 60m A output current 7.5ns rise/fall time (1Vpp) 46ns settling time to 0.1% Video ADC driver Desktop multimedia Single supply cable driver Instrumentation Video cards Wireless IF amplifiers Telemunications
Frequency Response vs. Vout
Av = +2V/V
Applications s s s s s s s
Magnitude (1d B/div)
1Vpp 2Vpp
4Vpp
Frequency (MHz)
Single Supply Response
Typical Application
Single +5V Supply operation
+5V 0.1µF Vin
1/2 CLC427
5 4
Output Voltage (V)
3 2 1 0
6.8µF
+ Vo
+
- Time (100ns/div)
50Ω 250Ω 250Ω
150Ω
Vo1
VCC Vo2 Vinv2 Vnon-inv2 http://.national.
Pinout
DIP & SOIC
NOTE: Vin = 0.15V to 2.3V
Vinv1 Vnon-inv1...