ADG5412WData SheetTYPICAL PERFORMANCE CHARACTERISTICS1612TA = 25°CVDD = +10VTA = 25°CVDD = +9V VSS = –10V14VSS = –9VV10DD = 32.4VVSS = 0VV12VDD = +11VDD = 36V)VVSS = –11V)SS = 0V(Ω8(Ω10ANCEANCET8T6ISVV10ISDD = 39.6VSDD = +13.2VSVVSS = 0VSS = –13.2V6VVDD = +15VDD = +16.5VN REVVSS = –16.5VN RE4OSS = –15VO42200–20–15–10–505101520051015202530354045 034 033 VS, VD (V) 1695- V 1 S, VD (V) 1695- 1 Figure 4. RON as a Function of VS, VD (Dual Supply) Figure 7. RON as a Function of VS, VD (Single Supply) 1218VDD = +18V1610VSS = –18V14)TA = +125°C8(Ω12(Ω)VDD = +22VTA = +85°CVVANCEDD = +20VSS = –22V10TVANCE6SS = –20VTISISTA = +25°CSS8TN REA = –40°C4N REO6O422VDD = +15VTA = 25°CVSS = –15V00–25–20–15–10–50510152025 035 –15–10–5051015 040 VS, VD (V) 1695- V 1 S, VD (V) 1695- 1 Figure 5. RON as a Function of VS, VD (Dual Supply) Figure 8. RON as a Function of VS (VD) for Different Temperatures, ±15 V Dual Supply 2516TA = 25°CVDD = 10VVSS = 0VVDD = 10.8VV14VSS = 0V20DD = 9VVSS = 0V12)T(Ω(Ω)A = +125°C1015TA = +85°CANCETANCE T8ISVISTA = +25°CSDD = 11VVS10SS = 0VVDD = 12V6TN REVVDD = 13.2VA = –40°CSS = 0VN REOVSS = 0VO452VDD = +20VVSS = –20V0002468101214 032 –20–15–10–505101520 041 VS, VD (V) 1695- V 1 S, VD (V) 1695- 1 Figure 6. RON as a Function of VS, VD (Single Supply) Figure 9. RON as a Function of VS (VD) for Different Temperatures, ±20 V Dual Supply Rev. A | Page 10 of 20 Document Outline Features Applications Functional Block Diagram General Description Product Highlights Table of Contents Revision History Specifications ±15 V Dual Supply ±20 V Dual Supply 12 V Single Supply 36 V Single Supply Continuous Current per Channel, Sx or Dx Absolute Maximum Ratings ESD Caution Pin Configurations and Function Descriptions Typical Performance Characteristics Test Circuits Terminology Applications Information Trench Isolation Outline Dimensions Ordering Guide Automotive Products