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ISO7731FDBQ Datasheet(PDF) 8 Page - Texas Instruments |
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ISO7731FDBQ Datasheet(HTML) 8 Page - Texas Instruments |
8 / 39 page 8 ISO7730, ISO7731 SLLSES0D – SEPTEMBER 2016 – REVISED MAY 2017 www.ti.com Product Folder Links: ISO7730 ISO7731 Submit Documentation Feedback Copyright © 2016–2017, Texas Instruments Incorporated 6.7 Safety-Related Certifications DW package devices are certified. All other certifications are planned. VDE CSA UL CQC TUV Certified according to DIN V VDE V 0884-10 (VDE V 0884-10):2006-12 Certified according to CSA Component Acceptance Notice 5A, IEC 60950-1 and IEC 60601-1 Certified according to UL 1577 Component Recognition Program Certified according to GB 4943.1-2011 Certified according to EN 61010-1:2010 (3rd Ed) and EN 60950-1:2006/A11 :2009/A1:2010/A12:2011/A2 :2013 Maximum transient isolation voltage, 8000 VPK (DW-16) and 3600 VPK (DBQ-16); Maximum repetitive peak isolation voltage, 1414 VPK (DW-16, Reinforced) and 566 VPK (DBQ-16); Maximum surge isolation voltage, 8000 VPK (DW-16) and 4000 VPK (DBQ-16) Reinforced insulation per CSA 60950-1-07+A1+A2 and IEC 60950-1 2nd Ed., 800 VRMS (DW-16) and 370 VRMS (DBQ-16) max working voltage (pollution degree 2, material group I); 2 MOPP (Means of Patient Protection) per CSA 60601- 1:14 and IEC 60601-1 Ed. 3.1, 250 VRMS (DW-16) max working voltage DW-16: Single protection, 5000 VRMS; DBQ-16: Single protection, 2500 VRMS DW-16: Reinforced Insulation, Altitude ≤ 5000 m, Tropical Climate, 400 VRMS maximum working voltage; DBQ-16: Basic Insulation, Altitude ≤ 5000 m, Tropical Climate, 250 VRMS maximum working voltage 5000 VRMS (DW-16) and 2500 VRMS (DBQ-16) Reinforced insulation per EN 61010-1:2010 (3rd Ed) up to working voltage of 600 VRMS (DW-16) and 300 VRMS (DBQ-16) 5000 VRMS (DW-16) and 2500 VRMS (DBQ-16) Reinforced insulation per EN 60950- 1:2006/A11:2009/A1:2010/A 12:2011/A2:2013 up to working voltage of 800 VRMS (DW -16) and 370 VRMS (DBQ-16) Certificate number: 40040142 Master contract number: 220991 File number: E181974 Certificate number: CQC15001121716 Client ID number: 77311 (1) The maximum safety temperature is the maximum junction temperature specified for the device. The power dissipation and junction-to- air thermal impedance of the device installed in the application hardware determines the junction temperature. The assumed junction-to- air thermal resistance in the Thermal Information is that of a device installed on a High-K test board for leaded surface mount packages. The power is the recommended maximum input voltage times the current. The junction temperature is then the ambient temperature plus the power times the junction-to-air thermal resistance. 6.8 Safety Limiting Values Safety limiting (1) intends to minimize potential damage to the isolation barrier upon failure of input or output circuitry. A failure of the I/O can allow low resistance to ground or the supply and, without current limiting, dissipate sufficient power to overheat the die and damage the isolation barrier potentially leading to secondary system failures. PARAMETER TEST CONDITIONS MIN TYP MAX UNIT DW-16 PACKAGE IS Safety input, output, or supply current RθJA = 81.4 °C/W, VI = 5.5 V, TJ = 150°C, TA = 25°C, see Figure 1 279 mA RθJA = 81.4 °C/W, VI = 3.6 V, TJ = 150°C, TA = 25°C, see Figure 1 427 RθJA = 81.4 °C/W, VI = 2.75 V, TJ = 150°C, TA = 25°C, see Figure 1 558 PS Safety input, output, or total power RθJA = 81.4 °C/W, TJ = 150°C, TA = 25°C, see Figure 3 1536 mW TS Maximum safety temperature 150 °C DBQ-16 PACKAGE IS Safety input, output, or supply current RθJA = 109.0°C/W, VI = 5.5 V, TJ = 150°C, TA = 25°C, see Figure 2 209 mA RθJA = 109.0 °C/W, VI = 3.6 V, TJ = 150°C, TA = 25°C, see Figure 2 319 RθJA = 109.0°C/W, VI = 2.75 V, TJ = 150°C, TA = 25°C, see Figure 2 417 PS Safety input, output, or total power RθJA = 109.0°C/W, TJ = 150°C, TA = 25°C, see Figure 4 1147 mW TS Maximum safety temperature 150 °C |
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