AD6260.160.15G = 100.140.13V PER VERTICAL DIVISIONQUIESCENT CURRENT – mA 20.121 52345 SECONDS PER HORIZONTAL DIVISIONSUPPLY VOLTAGE – V TPC 13. Quiescent Supply Current vs. Supply Voltage TPC 16. 0.1 Hz to 10 Hz RTI Voltage Noise. VS = ±5 V, for Single-Supply Operation Gain = 100 2.0100801.5FOR VS = ⴞ 5V AND +5V601.040CLOSED-LOOP GAIN0.5QUIESCENT CURRENT – mA2000 ⴞ 1 ⴞ 2 ⴞ 3 ⴞ 4 ⴞ 51101001k10k100k1MSUPPLY VOLTAGE – VVALUE OF RESISTOR RG – ⍀ TPC 14. Quiescent Supply Current vs. Supply Voltage TPC 17. Closed-Loop Gain vs. RG for Dual-Supply Operation 10140ALL CURVES FOR GAINS OF 10 OR 1001201.0100V/ Hz GAIN = 10, 100SINGLE AND DUAL –PSRR800.160SINGLEVOLTAGE NSD –+PSRRVS = ⴞ 5V DUAL SUPPLYPOWER SUPPLY REJECTION – dB40DUAL +PSRR0.01201101001k10k100k0.11101001k10k100k1MFREQUENCY – HzFREQUENCY – Hz TPC 15. Noise Voltage Spectral Density vs. Frequency TPC 18. Power Supply Rejection vs. Frequency REV. D –7– Document Outline FEATURES APPLICATIONS PRODUCT DESCRIPTION CONECTION DIAGRAM SPECIFICATIONS SINGLE SUPPLY DUAL SUPPLY ABSOLUTE MAXIMUM RATINGS ORDERING GUIDE Typical Performance Characteristics THEORY OF OPERATION ADJUSTING THE GAIN OF THE AD626 SINGLE-POLE LOW-PASS FILTERING CURRENT SENSOR INTERFACE BRIDGE APPLICATION OUTLINE DIMENSIONS Revision History