AD8218Data Sheet9.5INPUT9.0mA)200mV/DIV( 8.5NT8.0CURRE 7.5OUTPUT7.0URCE O S 6.52V/DIVUT P 6.0 UT O 5.5UM 5.0IM AX 4.5 014 M5µs/DIV4.0 09592- 010203040506070809010–40–30–20–101001120130140150 016 TEMPERATURE (°C) 09592- Figure 16. Differential Overload Recovery, Falling Figure 19. Maximum Output Source Current vs. Temperature 82.05.0105.000(V)81.5L 4.990 RAI M 4.980V) 81.0RO(m4.970FO T RING 4.96080.5W SNCE4.950ERE EAG 4.940F 80.0LT ORE4.930T V U79.54.920TPOU 4.91079.04.900 16 –40–20020406080100120 1 00.51.01.52.02.53.03.54.04.55.0 017 TEMPERATURE (°C) 09592- OUTPUT SOURCE CURRENT (mA) 09592- Figure 17. Internal Reference Voltage vs. Temperature Figure 20. Output Voltage Swing from Rail vs. Output Source Current (VS = 5 V, VS = NC, VCM = 12 V, Pin 1 (+IN) and Pin 8 (−IN) Shorted, Pin 3 (ENB) Shorted to Pin 4 (GND)) 12.025011.5) V11.0mA) (ND (10.5200NTG10.0MRO9.5F E 1509.0INK CURRE8.5SRANGUT8.0EP100AGUT7.5LTO7.0OUMT V6.5IMU50AX6.0TPMOU5.55.00 015 –40 –30 –20 –10010 20 30 40 50 60 70 80 90 100 110 12000.51.01.52.02.53.03.54.04.55.0 018 TEMPERATURE (°C)OUTPUT SINK CURRENT (mA) 09592- 09592- Figure 18. Maximum Output Sink Current vs. Temperature Figure 21. Output Voltage Range from GND vs. Output Sink Current Rev. B | Page 8 of 16 Document Outline Features Applications Functional Block Diagram General Description Table of Contents Revision History Specifications Absolute Maximum Ratings ESD Caution Pin Configurations and Function Descriptions Typical Performance Characteristics Theory of Operation Amplifier Core Output Clamping Application Notes Supply (VS) Connections Enable Pin (ENB) Operation Applications Information Unidirectional High-Side Current Sensing Bidirectional High-Side Current Sensing Motor Control Current Sensing Outline Dimensions Ordering Guide