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-If you think the fault is the SMC chip, you can try to re-flow first and see if that would work. Put 2-3 drops of Kester 186 between logic board and SMC chip. Pre-heat the board to 110-120C and gradually heat the SMC chip to 240C. Use thermocouple on top of chip to measure the temp. Put a desktop computer screw on top of thermocouple to avoid being hit directly by the heat. If you have a digital USB microscope you can watch when the solder balls will melt
+If you think the fault is the SMC chip, you can try to re-flow first and see if that would work. Put 2-3 drops of Kester 186 between logic board and SMC chip. Pre-heat the board to 110-120C and gradually heat the SMC chip to 245C. Use thermocouple on top of chip to measure the temp. Put a desktop computer screw on top of thermocouple to avoid being hit directly by the heat. If you have a digital USB microscope you can watch when the solder balls will melt

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-If you think the fault is the SMC chip, you can try to re-flow first and see if that would work. Put few drops of Kester 186 between logic board and SMC chip. Pre-heat the board to 110-120C and gradually heat the SMC chip to 240C. Use thermocouple on top of chip to measure the temp. Put a desktop computer screw on top of thermocouple to avoid being hit directly by the heat. If you have a digital USB microscope you can watch when the solder balls will melt
+If you think the fault is the SMC chip, you can try to re-flow first and see if that would work. Put 2-3 drops of Kester 186 between logic board and SMC chip. Pre-heat the board to 110-120C and gradually heat the SMC chip to 240C. Use thermocouple on top of chip to measure the temp. Put a desktop computer screw on top of thermocouple to avoid being hit directly by the heat. If you have a digital USB microscope you can watch when the solder balls will melt

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-If you think the fault is the SMC chip, you can try to re-flow first and see if that would work. Put few drops of Kester 186 between logic board and SMC chip and gradually heat to 240C. Use thermocouple on top of chip to measure the temp. Put a desktop computer screw on top of thermocouple to avoid being hit directly by the heat. If you have a digital USB microscope you can watch when the solder balls will melt
+If you think the fault is the SMC chip, you can try to re-flow first and see if that would work. Put few drops of Kester 186 between logic board and SMC chip. Pre-heat the board to 110-120C and gradually heat the SMC chip to 240C. Use thermocouple on top of chip to measure the temp. Put a desktop computer screw on top of thermocouple to avoid being hit directly by the heat. If you have a digital USB microscope you can watch when the solder balls will melt

crwdns2915684:0crwdne2915684:0:

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-If you think the fault is the SMC chip, you can try to re-flow first and see if that would work. Put few drops of Kester 186 between logic board and SMC chip and gradually heat to 240C. Use thermocouple on top of chip to measure the temp. Put a desktop computer screw on top of thermocouple to avoid being hit directly by the heat. IF you have a digital microscope you can watch when the solder balls will melt
+If you think the fault is the SMC chip, you can try to re-flow first and see if that would work. Put few drops of Kester 186 between logic board and SMC chip and gradually heat to 240C. Use thermocouple on top of chip to measure the temp. Put a desktop computer screw on top of thermocouple to avoid being hit directly by the heat. If you have a digital USB microscope you can watch when the solder balls will melt

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-If you think the fault is the SMC chip, you can try to re-flow first and see if that would work. Put few drops of Kester 186 between logic board and SMC chip and gradually heat to 240C. Use use thermocouple on top of chip to measure the temp. Put a desktop computer screw on top of thermocouple to avoid heat hitting it directly. IF you have a digital microscope you can watch when the solder balls will melt
+If you think the fault is the SMC chip, you can try to re-flow first and see if that would work. Put few drops of Kester 186 between logic board and SMC chip and gradually heat to 240C. Use thermocouple on top of chip to measure the temp. Put a desktop computer screw on top of thermocouple to avoid being hit directly by the heat. IF you have a digital microscope you can watch when the solder balls will melt

crwdns2915684:0crwdne2915684:0:

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crwdns2934249:0crwdne2934249:0:

-If you think the fault is the SMC chip, you can try to re-flow first and see if that would work. Put few drops of Kester 186 between logic board and SMC chip and gradually heat to 240C. You can use thermocouple on top of chip to measure the temp. Put a desktop computer screw on top of thermocouple to avoid heat hitting directly on it
+If you think the fault is the SMC chip, you can try to re-flow first and see if that would work. Put few drops of Kester 186 between logic board and SMC chip and gradually heat to 240C. Use use thermocouple on top of chip to measure the temp. Put a desktop computer screw on top of thermocouple to avoid heat hitting it directly. IF you have a digital microscope you can watch when the solder balls will melt

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crwdns2934249:0crwdne2934249:0:

If you think the fault is the SMC chip, you can try to re-flow first and see if that would work. Put few drops of Kester 186 between logic board and SMC chip and gradually heat to 240C. You can use thermocouple on top of chip to measure the temp. Put a desktop computer screw on top of thermocouple to avoid heat hitting directly on it

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