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ERJ-3GEYJ101V Datasheet(PDF) 5 Page - Texas Instruments |
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ERJ-3GEYJ101V Datasheet(HTML) 5 Page - Texas Instruments |
5 / 30 page OUT+ EXC - SENSE - OUT - SENSE+ EXC+ GND REF - IN2+ IN2 - REF+ IN1+ IN1 - +5VA OUT - EXC - OUT+ EXC+ 1 2 3 4 5 6 OUT - EXC+ OUT+ EXC - SENSE+ SENSE - 1 2 3 4 5 6 www.ti.com Getting Started 1.4.2 Connecting a 6-Wire Load Cell to the Terminal Block Figure 3 shows the connection of a 6-wire load cell to the terminal block. In this configuration, the load cell is excited by the +5V power supply, and the ADC reference is taken from the sense wire returning from the load cell. The sense wire connects to the excitation wire at the bridge sensor. Figure 3. 6-Wire Load Cell to Terminal Block For this configuration, the reference select switch should be in the EXT position for best performance. The +5V position also works, but may not perform as well. 1.4.3 Connecting a 4-Wire Load Cell to the Header Figure 4 shows the connection of a 4-wire load cell to the header. In this configuration, the load cell is excited by the +5V power supply, and the ADC reference is taken from the power supply. Figure 4. 4-Wire Load Cell to Header For this configuration, the reference select switch must be in the +5VA position; the EXT position will not work. 1.4.4 Connecting a 6-Wire Load Cell to the Header Figure 5 shows the connection of a 6-wire load cell to the header. In this configuration, the load cell is excited by the +5V power supply, and the ADC reference is taken from the sense wire returning from the load cell. The sense wire connects to the excitation wire at the bridge sensor. Figure 5. 6-Wire Load Cell to Header For this configuration, the reference select switch should be in the EXT position for best performance. The +5V position also works, but the device may not perform as well. 5 SBAU120B – November 2005 – Revised July 2011 ADS1232REF User 's Guide Submit Documentation Feedback Copyright © 2005–2011, Texas Instruments Incorporated |
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