Method and device in vehicle control system, and system for error diagnostics in vehicle
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
G06F-007/00
G06F-019/00
출원번호
US-0869642
(2001-08-28)
우선권정보
SE-9900268 (1999-01-28)
국제출원번호
PCT/SE00/00169
(2000-01-28)
국제공개번호
WO00/47885
(2000-08-17)
발명자
/ 주소
Brynielsson, Thore
출원인 / 주소
Thoreb AB
대리인 / 주소
Birch, Stewart, Kolasch & Birch, LLP
인용정보
피인용 횟수 :
8인용 특허 :
4
초록▼
The invention relates to a method of storing information in the form of signals from a control system in a vehicle, said method comprising the step of reading a signal on recurrent sampling occasions and increasing the value of a counter which represents a signal value interval. The method further c
The invention relates to a method of storing information in the form of signals from a control system in a vehicle, said method comprising the step of reading a signal on recurrent sampling occasions and increasing the value of a counter which represents a signal value interval. The method further comprises the steps of measuring on each sampling occasion a change of the signal in relation to a previous signal value, comparing change with the threshold value, and, if the change is greater than the threshold value, increasing the value of a counter associated with this threshold value.
대표청구항▼
The invention relates to a method of storing information in the form of signals from a control system in a vehicle, said method comprising the step of reading a signal on recurrent sampling occasions and increasing the value of a counter which represents a signal value interval. The method further c
The invention relates to a method of storing information in the form of signals from a control system in a vehicle, said method comprising the step of reading a signal on recurrent sampling occasions and increasing the value of a counter which represents a signal value interval. The method further comprises the steps of measuring on each sampling occasion a change of the signal in relation to a previous signal value, comparing change with the threshold value, and, if the change is greater than the threshold value, increasing the value of a counter associated with this threshold value. in the lead body and the at least one electrode are configured and dimensioned such that when the lead is appropriately implanted within an anterior cardiac vein a left atrium of the heart may be electrically stimulated. 6. The medical electrical lead of claim 1, wherein the lead body and the at least one electrode are configured and dimensioned such that when the lead is appropriately implanted within an anterior cardiac vein a left ventricle of the heart may be electrically stimulated. 7. The medical electrical lead of claim 1, wherein the at least one electrode further comprises an anode and a cathode, and wherein the lead body and the anode and the cathode are configured and dimensioned such that when the lead is appropriately implanted within a middle cardiac vein electrical stimulation of apical portions of the heart may be effected. 8. The medical electrical lead of claim 1, wherein the at least one electrode further comprises an anode and a cathode, and wherein the lead body and the anode and the cathode are configured and dimensioned such that when the lead is appropriately implanted within a posterior cardiac vein electrical stimulation of basal portions of the heart may be effected. 9. The medical electrical lead of claim 1, wherein the at least one electrode further comprises an anode and a cathode, and wherein the lead body and the anode and the cathode are configured and dimensioned such that when the lead is appropriately implanted within a great cardiac vein electrical stimulation of basal portions of the heart may be effected. 10. The medical electrical lead of claim 1, wherein the ratio of the bending stiffness of the first segment (Sbs) in respect of the second segment (Sbf) is defined by the equation: 11. The medical electrical lead of claim 1, wherein the ratio of the bending stiffness of the first segment (Sbs) in respect of the second segment (Sbf) is defined by the equation: 12. The medical electrical lead of claim 1, wherein the bending stiffness the first segment (Sbs) is at least two times that of the bending stiffness of the second segment (Sbf). 13. The medical electrical lead of claim 1, wherein the ratio of the bending stiffness of the first segment (Sbs) in respect of the second segment (Sbf) is selected from the group consisting of at least about 2.2, at least about 2.4, at least about 2.6, at least about 2.8, at least about 3.0, at least about 4, at least about 5, at least about 6, at least about 7, at least about 8, at least about 9, at least about 10, at least about 20, at least about 30, at least about 40, at least about 50, at least about 100. 14. The medical electrical lead of claim 1, wherein a fixation device is attached to the lead body. 15. The medical electrical lead of claim 14, wherein the fixation device is selected from the group consisting of a helical screw, a barb, a hook, at least one tine, and at least one arm. 16. The medical electrical lead of claim 14, wherein the fixation device is disposed near the distal end. 17. The medical electrical lead of claim 1, wherein the lead body is configured to permit three dimensional bending thereof along at least two pre-determined bending planes. 18. The medical electrical lead of claim 1, wherein the first and second segments comprise means for changing the bending stiffness of the lead body as a function of axial distance x selected from the group consisting of varying the bending modulus as a function of axial distance x of the material from which the lead body is formed, varying the density as a function of axial distance x of the material from which the lead body is formed, varying the composition as a function of axial distance x of a polymer from which the lead body is formed, varying the amount of cross-linking as a function of axial distance x in a polymer from which the lead body is formed, varying the flexule moduli as a function of axi
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