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IC-JXEVALJX2D Datasheet(PDF) 8 Page - IC-Haus GmbH

Part # IC-JXEVALJX2D
Description  16-FOLD 24 V HIGH-SIDE DRIVER WITH 關C INTERFACE
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Manufacturer  ICHAUS [IC-Haus GmbH]
Direct Link  http://www.ichaus.biz
Logo ICHAUS - IC-Haus GmbH

IC-JXEVALJX2D Datasheet(HTML) 8 Page - IC-Haus GmbH

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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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