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AD5171BRJ5-R2 数据表(PDF) 14 Page - Analog Devices |
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AD5171BRJ5-R2 数据表(HTML) 14 Page - Analog Devices |
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14 / 20 page ![]() AD5171 CONTROLLING THE AD5171 There are two ways of controlling the AD5171. Users can either program the devices with computer software or external I2C controllers. Software Programming Due to the advantage of the one-time programmable feature, users may consider programming the device in the factory before shipping to end users. ADI offers a device programming software, which can be implemented in the factory on PCs that run Windows 95 to XP platforms. As a result, external control- lers are not required, which significantly reduces development time. The program is an executable file that does not require any programming languages or user programming skills. It is easy to set up and use. Figure 33 shows the software interface. The software can be downloaded from www.analog.com. Figure 33. AD5171 Computer Software Interface Write The AD5171 starts at midscale after power-up prior to the OPT programming. To increment or decrement the resistance, the user may simply move the scrollbar on the left. To write any specific values, the user should use the bit pattern control in the upper screen and press the Run button. The format of writing data to the device is shown in Table 7. Once the desirable setting is found, the user may press the Program Permanent button to blow the internal fuse links for permanent setting. The user may also set the programming bit pattern in the upper screen and press the Run button to achieve the same result. Read To read the validation bits and data out from the device, the user may simply press the Read button. The user may also set the bit pattern in the upper screen and press the Run button. The format of reading data out from the device is shown in Table 8. To apply the device programming software in the factory, users need to modify a parallel port cable and configure Pins 2, 3, 15, and 25 for SDA_write, SCL, SDA_read, and DGND, respectively for the control signals (Figure 34). Users should also layout the PCB of the AD5171 with SCL and SDA pads, as shown in Figure 35, such that pogo pins can be inserted for the factory programming. 13 25 12 24 11 23 10 22 9 21 8 20 7 19 6 18 5 17 4 16 3 15 2 14 1 SCL R3 100 Ω R2 100 Ω R1 100 Ω SDA READ WRITE Figure 34. Parallel Port Connection. Pin 2 = SDA_write, Pin 3 = SCL, Pin 15 = SDA_read, and Pin 25 = DGND W VDD DGND SCL A B AD0 SDA Figure 35. Recommended AD5171 PCB Layout. The SCL and SDA pads allow pogo pins to be inserted so that signals can be communicated through the parallel port for programming (Figure 34). Table 7. SDA Write Mode Bit Format S 0 1 0 1 1 0 AD0 0 A T X X X X X X X A X X D5 D4 D3 D2 D1 D0 A P Slave Address Byte Instruction Byte Data Byte Table 8. SDA Read Mode Bit Format S 0 1 0 1 1 0 AD0 1 A E1 E0 D5 D4 D3 D2 D1 D0 A P Slave Address Byte Data Byte Rev. PrC | Page 14 of 20 Preliminary Technical Data |
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