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AD8244ARMZ-R7 数据表(PDF) 14 Page - Analog Devices |
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AD8244ARMZ-R7 数据表(HTML) 14 Page - Analog Devices |
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14 / 20 page ![]() AD8244 Data Sheet THEORY OF OPERATION +VS +VS –VS +VS –VS –VS IN OUT 500 Ω Figure 38. Simplified Schematic OVERVIEW The AD8244 is a precision, quad, FET input, unity-gain buffer that is designed to isolate very large source impedances from the rest of the signal chain. N-channel JFETs are used as the input transistors to provide a low offset (350 µV maximum), low noise (13 nV/√Hz typical), high impedance (more than 10 TΩ) input stage that operates right down to the negative supply voltage. Using a new drift trimming method, the B grade AD8244 is able to achieve very low offset voltage over temperature (0.545 mV maximum), and it introduces minimal system error over temperature. The AD8244 design is optimized for high precision applications, such as buffers for biopotential electrodes, where it is important that buffers have very high impedance inputs and channels that match closely. Because the AD8244 fits into a 10-lead package, whereas a quad op amp requires a minimum of 14 leads, routing space is reduced and parasitics from the feedback traces are eliminated. Furthermore, the flexible design and the high channel density of the AD8244 allow it to be used in the signal chain anywhere a unity-gain buffer is needed. GUARDING When using low input bias current FET input amplifiers, designers must pay careful attention to voltage gradients from the input node to adjacent conductors on the board. These gradients can create leakage currents that overwhelm the input impedance and bias current performance of the FET input. These leakage currents get much worse with contamination, humidity, and temperature. Guarding techniques can be used to protect against parasitic leakage currents by greatly reducing the voltage gradient seen by the input node. Physically, a guard is a low impedance conductor that surrounds a high impedance node and is raised to the voltage of that node. It serves to buffer leakage by diverting it away from the sensitive node and into the low impedance guard. A complication results from the fact that many traditional op amp pinouts place a supply pin next to the noninverting input. The only way to guard the input of one of these op amps is to route the guard trace between the input pin and the supply pin. Traces can be routed between pins for large packages, such as DIP or even SOIC; however, the board area consumed by these packages is prohibitive for many modern applications. 3 –VS 4 +VS OUT 8 7 6 5 1 –IN 2 +IN 3 –VS 4 8 +VS 7 OUT 6 5 LARGE FOOTPRINT PACKAGES SMALL FOOTPRINT PACKAGES INPUT INPUT GUARD GUARD GUARD GUARD SINGLE OP AMP SINGLE OP AMP *LEAKAGE PATH FROM +IN TO –VS CAUSES LARGE INPUT CURRENT –IN 2 +IN 1 Figure 39. Single Op Amp Guarding Patterns The AD8244 solves this problem with a unique pinout that naturally isolates the high impedance inputs from the low impedance nodes, such as the supplies and outputs of the other buffers. Additionally, the buffers of the AD8244 can be used to guard their own inputs, reducing the voltage gradient seen by the input to only the low offset voltage of the buffer. The AD8244 facilitates this by making guard traces easy to route without the need for traces to go between pins. OUT A IN A 1 2 3 +VS GUARD TRACE SURROUNDS INPUT NODE GUARD TRACE FROM SENSOR SOLDER MASK REMOVED IN A OUT A AD8244 Figure 40. Guarding with the AD8244 Rev. 0 | Page 14 of 20 |
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