Claims
- 1. A phased array antenna comprising:
a plurality of phased array antenna modules and associated antenna elements; and at least one of said phased array antenna modules further comprising a temperature sensor for measuring a temperature of said at least one phased array antenna module.
- 2. The phased array antenna of claim 1 wherein said temperature sensor comprises a capacitor and a circuit element coupled in series with said capacitor having a resistance that varies with temperature.
- 3. The phased array antenna of claim 2 wherein said circuit element comprises a thermistor.
- 4. The phased array antenna of claim 2 wherein said at least one phased array antenna module further comprises a module controller for charging said capacitor through said circuit element, measuring a charging time required to charge said capacitor to a predetermined threshold, and determining the temperature of said at least one phased array antenna module based upon the charging time.
- 5. The phased array antenna of claim 4 wherein said temperature sensor further comprises at least one calibration resistor coupled between said module controller and said capacitor; and wherein said module controller sequentially charges said capacitor through said circuit element and said at least one calibration resistor, measures respective charging times required to charge said capacitor to the predetermined threshold through said circuit element and said at least one calibration resistor, and determines the temperature of said at least one phased array antenna module based upon the charging times.
- 6. The phased array antenna of claim 5 wherein said at least one calibration resistor comprises a high calibration resistor and a low calibration resistor.
- 7. The phased array antenna of claim 4 wherein said module controller comprises a counter for measuring the charging time.
- 8. The phased array antenna of claim 4 wherein said module controller comprises a driver coupled to said circuit element for charging said capacitor.
- 9. The phased array antenna of claim 8 wherein said module controller further comprises a control logic circuit for controlling said driver.
- 10. The phased array antenna of claim 4 wherein said module controller comprises a Schmitt hysteresis device coupled to said capacitor for determining when said capacitor has been charged to the predetermined threshold.
- 11. The phased array antenna of claim 4 wherein said module controller is implemented in an ASIC.
- 12. The phased array antenna of claim 2 wherein said at least one phased array antenna module further comprises a module controller for discharging said capacitor through said circuit element, measuring a discharging time required to discharge said capacitor to a predetermined threshold, and determining the temperature of said at least one phased array antenna module based upon the discharging time.
- 13. The phased array antenna of claim 12 wherein said temperature sensor further comprises at least one calibration resistor coupled between said module controller and said capacitor; and wherein said module controller sequentially discharges said capacitor through said circuit element and said at least one calibration resistor, measures respective discharging times required to discharge said capacitor to the predetermined threshold through said circuit element and said at least one calibration resistor, and determines the temperature of said at least one phased array antenna module based upon the discharging times.
- 14. The phased array antenna of claim 1 wherein said at least one phased array antenna module further comprises a phase shifter coupled to said at least one antenna element.
- 15. The phased array antenna of claim 14 further comprising an array controller coupled to said at least one phased array antenna module for controlling said phase shifter based upon the temperature of said at least one phased array antenna module.
- 16. The phased array antenna of claim 14 wherein said module controller controls said phase shifter based upon the temperature of said at least one phased array antenna module.
- 17. A phased array antenna comprising:
a plurality of phased array antenna modules and associated antenna elements, each phased array antenna module comprising a temperature sensor for measuring a temperature of said phased array antenna module; said temperature sensor comprising a capacitor and a circuit element coupled in series with said capacitor having a resistance that varies with temperature.
- 18. The phased array antenna of claim 17 wherein said circuit element comprises a thermistor.
- 19. The phased array antenna of claim 17 wherein each phased array antenna module further comprises a module controller for charging said capacitor through said circuit element, measuring a charging time required to charge said capacitor to a predetermined threshold, and determining the temperature of said phased array antenna module based upon the charging time.
- 20. The phased array antenna of claim 19 wherein each temperature sensor further comprises at least one calibration resistor coupled between said module controller and said capacitor; and wherein said module controller sequentially charges said capacitor through said circuit element and said at least one calibration resistor, measures respective charging times required to charge said capacitor to the predetermined threshold through said circuit element and said at least one calibration resistor, and determines the temperature of said phased array antenna module based upon the charging times.
- 21. The phased array antenna of claim 20 wherein each at least one calibration resistor comprises a high calibration resistor and a low calibration resistor.
- 22. The phased array antenna of claim 19 wherein each module controller comprises a driver coupled to said circuit element for charging said capacitor.
- 23. The phased array antenna of claim 19 wherein each module controller further comprises a control logic circuit for controlling said driver.
- 24. The phased array antenna of claim 19 wherein each module controller comprises a Schmitt hysteresis device coupled to said capacitor for determining when said capacitor has been charged to the predetermined threshold.
- 25. The phased array antenna of claim 19 wherein said module controller is implemented in an ASIC.
- 26. The phased array antenna of claim 17 wherein each phased array antenna module further comprises a module controller for discharging said capacitor through said circuit element, measuring a discharging time required to discharge said capacitor to a predetermined threshold, and determining the temperature of said phased array antenna module based upon the discharging time.
- 27. The phased array antenna of claim 26 wherein each temperature sensor further comprises at least one calibration resistor coupled between said module controller and said capacitor; and wherein said module controller sequentially discharges said capacitor through said circuit element and said at least one calibration resistor, measures respective discharging times required to charge said capacitor to the predetermined threshold through said circuit element and said at least one calibration resistor, and determines the temperature of said phased array antenna module based upon the discharging times.
- 28. A phased array antenna module comprising:
a housing; at least one antenna element carried by said housing; a phase shifter carried by said housing and coupled to said at least one antenna element; a temperature sensor carried by said housing for measuring a temperature of the phased array antenna module; and a module controller carried by said housing for controlling said phase shifter based upon the measured temperature.
- 29. The phased array antenna module of claim 28 wherein said temperature sensor comprises a capacitor and a circuit element coupled in series with said capacitor having a resistance that varies with temperature.
- 30. The phased array antenna module of claim 29 wherein said circuit element comprises a thermistor.
- 31. The phased array antenna module of claim 29 further comprising a module controller for charging said capacitor through said circuit element, measuring a charging time required to charge said capacitor to a predetermined threshold, and determining the temperature of said phased array antenna module based upon the charging time.
- 32. The phased array antenna module of claim 31 wherein said temperature sensor further comprises at least one calibration resistor coupled between said module controller and said capacitor; and wherein said module controller sequentially charges said capacitor through said circuit element and said at least one calibration resistor, measures respective charging times required to charge said capacitor to the predetermined threshold through said circuit element and said at least one calibration resistor, and determines the temperature of the phased array antenna module based upon the charging times.
- 33. The phased array antenna module of claim 32 wherein said at least one calibration resistor comprises a high calibration resistor and a low calibration resistor.
- 34. The phased array antenna module of claim 31 wherein said module controller comprises a driver coupled to said circuit element for charging said capacitor.
- 35. The phased array antenna module of claim 34 wherein said module controller further comprises a control logic circuit for controlling said driver.
- 36. The phased array antenna module of claim 31 wherein said module controller comprises a Schmitt hysteresis device coupled to said capacitor for determining when said capacitor has been charged to the predetermined threshold.
- 37. The phased array antenna module of claim 31 wherein said module controller is implemented in an ASIC.
- 38. The phased array antenna module of claim 29 further comprising a module controller for discharging said capacitor through said circuit element, measuring a discharging time required to discharge said capacitor to a predetermined threshold, and determining the temperature of said phased array antenna module based upon the discharging time.
- 39. The phased array antenna module of claim 38 wherein said temperature sensor further comprises at least one calibration resistor coupled between said module controller and said capacitor; and wherein said module controller sequentially discharges said capacitor through said circuit element and said at least one calibration resistor, measures respective discharging times required to discharge said capacitor to the predetermined threshold through said circuit element and said at least one calibration resistor, and determines the temperature of the phased array antenna module based upon the discharging times.
- 40. A method for sensing a temperature of a phased array antenna module comprising a capacitor and a circuit element coupled in series with the capacitor and having a resistance that varies with temperature, the method comprising:
charging the capacitor through the circuit element; measuring a charging time required to charge the capacitor to a predetermined threshold; and determining the temperature of the phased array antenna module based upon the charging time.
- 41. The method of claim 40 wherein the circuit element comprises a thermistor.
- 42. The method of claim 40 wherein the phased array antenna module further comprises at least one calibration resistor coupled to the capacitor; wherein charging the capacitor comprises sequentially charging the capacitor through the circuit element and the at least one calibration resistor; wherein measuring the charging time comprises measuring respective charging times required to charge the capacitor to the predetermined threshold through the circuit element and the at least one calibration resistor; and wherein determining the temperature comprises determining the temperature of the phased array antenna module based upon the charging times.
- 43. The method of claim 42 wherein the at least one calibration resistor comprises a high calibration resistor and a low calibration resistor.
- 44. A method for sensing a temperature of a phased array antenna module comprising a capacitor and a circuit element coupled in series with the capacitor and having a resistance that varies with temperature, the method comprising:
discharging the capacitor through the circuit element; measuring a discharging time required to discharge the capacitor to a predetermined threshold; and determining the temperature of the phased array antenna module based upon the discharging time.
- 45. The method of claim 44 wherein the circuit element comprises a thermistor.
- 46. The method of claim 44 wherein the phased array antenna module further comprises at least one calibration resistor coupled to the capacitor; wherein discharging the capacitor comprises sequentially discharging the capacitor through the circuit element and the at least one calibration resistor; wherein measuring the discharging time comprises measuring respective discharging times required to discharge the capacitor to the predetermined threshold through the circuit element and the at least one calibration resistor; and wherein determining the temperature comprises determining the temperature of the phased array antenna module based upon the discharging times.
- 47. The method of claim 46 wherein the at least one calibration resistor comprises a high calibration resistor and a low calibration resistor.
- 48. A method for making a phased array antenna comprising:
positioning a plurality of phased array antenna modules in an array, each phased array antenna module having an associated antenna element; and providing a temperature sensor in at least one of the phased array antenna modules for measuring a temperature thereof.
- 49. The method of claim 48 wherein providing the temperature sensor comprises coupling a capacitor in series with a circuit element having a resistance that varies with temperature.
- 50. The method of claim 49 wherein the circuit element comprises a thermistor.
- 51. The method of claim 49 further comprising providing a module controller in the at least one phased array antenna module for charging the capacitor through the circuit element, measuring a charging time required to charge the capacitor to a predetermined threshold, and determining the temperature of the at least one phased array antenna module based upon the charging time.
- 52. The method of claim 49 further comprising providing a module controller in the at least one phased array antenna module for discharging the capacitor through the circuit element, measuring a discharging time required to discharge the capacitor to a predetermined threshold, and determining the temperature of the at least one phased array antenna module based upon the discharging time.
- 53. The method of claim 49 wherein providing the temperature sensor further comprises coupling at least one calibration resistor between the module controller and the capacitor.
- 54. The method of claim 53 wherein the at least one calibration resistor comprises a high calibration resistor and a low calibration resistor.
RELATED APPLICATION
[0001] This application is based upon prior filed copending provisional application Ser. No. 60/255,007 filed Dec. 12, 2000, the entire subject matter of which is incorporated herein by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60255007 |
Dec 2000 |
US |