PinoutDescriptionThe XR2208CP is designed as operational multiplier which combines a four quadrant analog multiplier (or modulator), a high frequency buffer amplifier, and an operational amplifier in a monolithic circuit that is idealy suited for both analog computation and communations signal pro...
XR2208CP: PinoutDescriptionThe XR2208CP is designed as operational multiplier which combines a four quadrant analog multiplier (or modulator), a high frequency buffer amplifier, and an operational amplifier i...
SeekIC Buyer Protection PLUS - newly updated for 2013!
268 Transactions
All payment methods are secure and covered by SeekIC Buyer Protection PLUS.
The XR2208CP is designed as operational multiplier which combines a four quadrant analog multiplier (or modulator), a high frequency buffer amplifier, and an operational amplifier in a monolithic circuit that is idealy suited for both analog computation and communations signal processing application. Typical applications include analog computation, multiplication, division, squaring, square-root, signal processing, AM generation, frequency doubling, frequency translation and so on.
XR2208CP has five features. (1) maximum versatility independent multiplier, 0p amp and buffer. (2) Excellent linerity (0.3% typ). (3) It would have wide bandwidth which means 3dB BW -8MHz typ, 3^0^ phase shift BW-1.2MHz typ, transconductance BW-00MHz typ. (4) Simplified offset adjustments. (5) wide supply voltage range which would be from +4.5V to +/-16V. That are all the main features.
Some absolute maximum ratings of XR2208CP have been concluded into several points as follow. (1) Its power supply V+ would be +18V and V- would be -18V. (2) Its power dissipation would be 750mW for ceramic package and would be 6mW/°C for derate above +25°C. (3) Its storage temperature range would be from -65°C to +150°C.
Also some electrical characteristics about XR2208CP. (1) Its supply current would be max 7.0mA at Vs=+/-4.5V and would also be 7.0mA at Vs=+/-16.0V. (2) Its multiplier output voltage would be min 12.2V and max 13.7V for pin 7 and it would be min 12.2V and max 13.7V for pin 2. (3) Its multiplier output offset voltage would be min -80mV and max 80mV. (4) Its feedthrough would be min -150mV and max 150mV with condition of Vx=-10V and Vy=0 and it would also be min -150mV and max 150mV with condition of Vx=0 and Vy=-10V. (5) Its nonlinearity would be min -0.5% and max 0.5%. And so on. If you have any question or suggestion or want to know more information please contact us for details. Thank you!