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IC-JXEVALJX2D Datasheet(PDF) 8 Page - IC-Haus GmbH |
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IC-JXEVALJX2D Datasheet(HTML) 8 Page - IC-Haus GmbH |
8 / 36 page iC-JX 16-FOLD 24 V HIGH-SIDE DRIVER WITH µC INTERFACE Rev C1, Page 8/36 ELECTRICAL CHARACTERISTICS Operating conditions: VCC = VDD = 3 ... 5.5 V, VBy = 12 ... 36 V, GNDA = GNDD = 0 V, RSET = 10 kΩ ±1% . All inputs on defined logic states (high or low), Tj = -40 ... 125 °C unless otherwise stated. Functionality and parameters beyond operating conditions (for example w.r. to independent voltage supplies) are to be verified within the individual application by FMEA methods. Item Symbol Parameter Conditions Unit No. Min. Typ. Max. 720 D1IO,1 Digital value using VR1 range (external reference) SELAD = ’0b010’, EME = ’0b0’, SVREF = 1, V(IOx) = V(VBy) − 0.6V 840 900 1022 721 DR1IO,1 Digital relative value using VR1 range (external reference) SELAD = ’0b010’, EME = ’0b0’, SVREF = 1; DR1IO,1 = D1IO,1(V) / D1IO,1; V(IOx) = V(VBy) − 0.3 V 46 49 52 % V(IOx) = V(VBy) − 0.1 V 12 15 18 % 722 D2IO,1 Digital absolute value using VR2 range (external reference) SELAD = ’0b010’, EME = ’0b1’, SVREF = 1, V(IOx) = V(VBy) − 5.0 V 870 930 1022 723 DR2IO,1 Digital relative value using VR2 range (external reference) SELAD = ’0b010’, EME = ’0b1’, SVREF = 1; DR2IO,1 = D2IO,1(V) / D2IO,1; V(IOx) = V(VBy) − 2.5 V 48 50 52 % V(IOx) = V(VBy) − 0.6 V 9.5 11.5 14 % 724 D3IO,1 Digital absolute value using VR3 range (external reference) SELAD = ’0b100’, EME = ’0b0’, SVREF = 1, V(IOx) = 0.6 V; 880 940 1022 725 DR3IO,1 Digital relative value using VR3 range (external reference) SELAD = ’0b100’, EME = ’0b0’, SVREF = 1; DR3IO,1 = D3IO,1(V) / D3IO,1; V(IOx) = 0.3 V 48 50 52 % V(IOx) = 0.1 V 14.5 16 18.5 % 726 D4IO,1 Digital absolute value using VR4 range (external reference) SELAD = ’0b100’, EME = ’0b1’, SVREF = 1; V(IOx) = 5.0V 870 930 1022 727 DR4IO,1 Digital relative value using VR4 range (external reference) SELAD = ’0b100’, EME = ’0b1’, SVREF = 1; DR4IO,1 = D4IO,1(V) / D4IO,1 V(IOx) = 2.5V 48 50 52 % V(IOx) = 0.6V 9.5 11.5 14 % 728 D5IO,1 Digital absolute value using VR5 range (external reference) SELAD = ’0b011’, SVREF = 1, V(IOx) = 36.0V 930 980 1022 729 DR5IO,1 Digital relative value using VR5 range (external reference) SELAD = ’0b011’, SVREF = 1; DR5IO,1 = D5IO,1(V) / D5IO,1 V(IOx) = 24.0V 64.6 66.6 68.6 % V(IOx) = 5.0V 11.8 13.8 15.8 % 730 DCIO,1 Digital value of current measure- ment (external reference) SELAD = ’0b001’,SVREF = 1, I(IOx) = 150mA 700 800 1022 731 DRCIO,1 Relative value of current measurement (external reference) SELAD = ’0b001’, SVREF = 1; DRCIO,1 = DCIO,1(I) / DCIO,1 I(IOx) = 75mA 48 51 54 % I(IOx) = 15mA 6.2 9.2 12.2 % 732 DVBg,0 Digital value of VBG measure- ment (internal reference) SELAD = ’0b110’, SVREF = 0 435 460 485 733 DVBY,0 Digital value of VBG measure- ment (internal reference) SVREF = 0, V(VBy) = 36V, SELAD = ’0b101’ 830 880 1022 734 DRVBY,0 Relative value using VR1 range (internal reference) SVREF = 0, SELAD = ’0b101; DRVBY,0 = DVBY,0(V) / DVBY,0 V(VBy) = 24V 64.6 66.6 68.6 % V(VBy) = 12V 31.3 33.3 35.3 % 735 D1IO,0 Digital value using VR1 range (internal reference) SELAD = ’0b010’, EME = ’0b0’, SVREF = 0, 760 820 1022 V(IOx) = V(VBy) - 0.6V 736 DR1IO,0 Relative value using VR1 range (internal reference) SELAD = ’0b010’, EME = ’0b0’, SVREF = 0; DR1IO,0 = D1IO,0(V) / D1IO,0 V(IOx) = V(VBy) - 0.3V 46 49 52 % V(IOx) = V(VBy) - 0.1V 12 15 18 % 737 D2IO,0 Digital value using VR2 range (internal reference) SELAD = ’0b010’, EME = ’0b1’, SVREF = 0, 790 840 1022 V(IOx) = V(VBy) - 5.0V 738 DR2IO,0 Relative value using VR2 range (internal reference) SELAD = ’0b010’, EME = ’0b1’, SVREF = 0; DR2IO,0 = D2IO,0(V) / D2IO,0 V(IOx) = V(VBy) - 2.5V 48 50 52 % V(IOx) = V(VBy) - 0.6V 9.5 11.5 14 % 739 D3IO,0 Digital value using VR3 range (internal reference) SELAD = ’0b100’, EME = ’0b0’, SVREF = 0, 790 840 1022 V(IOx) = 0.6V |
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