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AD3530 Datasheet(PDF) 41 Page - Analog Devices

Part # AD3530
Description  8-Channel, 16-Bit Voltage Output DACs, On-Chip Reference, SPI
PDF  49 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

AD3530 Datasheet(HTML) 41 Page - Analog Devices

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Data Sheet
AD3530/AD3530R
REGISTER DETAILS
analog.com
Rev. A | 41 of 49
Table 29. Bit Descriptions for REFERENCE_CONTROL_0
Bits
Bit Name
Description
Reset
Access
[7:1]
RESERVED
Reserved.
0x0
R
0
SEL
Reference Select. Selects the voltage reference source for all channels.
0x0
R/W
0: Select 0. VREF pin is an input pin, and an external reference should be provided through this pin.
1: Select 1. VREF pin is an output pin; an internal reference is used by the part and is also available on the VREF
pin.
MULTIPLEXER INPUT SELECT 0 REGISTER
Address: 0x93, Reset: 0x00, Name: MUX_OUT_SELECT_0
Selects which of the multiplexer's input signals will be monitored on the MUX_OUT pin
0
0
1
0
2
0
3
0
4
0
5
0
6
0
7
0
[7:5] RESERVED
[4:0] SEL (R/W)
Table 30. Bit Descriptions for MUX_OUT_SELECT_0
Bits
Bit Name
Description
Reset
Access
[7:5]
RESERVED
Reserved.
0x0
R
[4:0]
SEL
Multiplexer Input Select. Selects which of the multiplexer's input signals will be monitored on the MUX_OUT pin.
0x0
R/W
0x0: Powered down. MUX_OUT pin is powered down. An 80kΩ impedance can be seen at the MUX_OUT pin.
0x1: VOUT0. A voltage representation of VOUT0 can monitored on MUX_OUT pin.
0x2: IOUT0 (source mode). A voltage representation of IOUT0 (source mode) can monitored on MUX_OUT pin.
0x3: IOUT0 (sink mode). A voltage representation of IOUT0 (sink mode) can monitored on MUX_OUT pin.
0x4: VOUT1. A voltage representation of VOUT1 can monitored on MUX_OUT pin.
0x5: IOUT1 (source mode). A voltage representation of IOUT1 (source mode) can monitored on MUX_OUT pin.
0x6: IOUT1 (sink mode). A voltage representation of IOUT1 (sink mode) can monitored on MUX_OUT pin.
0x7: VOUT2. A voltage representation of VOUT2 can monitored on MUX_OUT pin.
0x8: IOUT2 (source mode). A voltage representation of IOUT2 (source mode) can monitored on MUX_OUT pin.
0x9: IOUT2 (sink mode). A voltage representation of IOUT2 (sink mode) can monitored on MUX_OUT pin.
0xA: VOUT3. A voltage representation of VOUT3 can monitored on MUX_OUT pin.
0xB: IOUT3 (source mode). A voltage representation of IOUT3 (source mode) can monitored on MUX_OUT pin.
0xC: IOUT3 (sink mode). A voltage representation of IOUT3 (sink mode) can monitored on MUX_OUT pin.
0xD: VOUT4. A voltage representation of VOUT4 can monitored on MUX_OUT pin.
0xE: IOUT4 (source mode). A voltage representation of IOUT4 (source mode) can monitored on MUX_OUT pin.
0xF: IOUT4 (sink mode). A voltage representation of IOUT4 (sink mode) can monitored on MUX_OUT pin.
0x10: VOUT5. A voltage representation of VOUT5 can monitored on MUX_OUT pin.
0x11: IOUT5 (source mode). A voltage representation of IOUT5 (source mode) can monitored on MUX_OUT pin.
0x12: IOUT5 (sink mode). A voltage representation of IOUT5 (sink mode) can monitored on MUX_OUT pin.
0x13: VOUT6. A voltage representation of VOUT6 can monitored on MUX_OUT pin.
0x14: IOUT6 (source mode). A voltage representation of IOUT6 (source mode) can monitored on MUX_OUT pin.
0x15: IOUT6 (sink mode). A voltage representation of IOUT6 (sink mode) can monitored on MUX_OUT pin.
0x16: VOUT7. A voltage representation of VOUT7 can monitored on MUX_OUT pin.
0x17: IOUT7 (source mode). A voltage representation of IOUT7 (source mode) can monitored on MUX_OUT pin.
0x18: IOUT7 (sink mode). A voltage representation of IOUT7 (sink mode) can monitored on MUX_OUT pin.
0x19: Die temperature. A voltage representation of internal die temperature can monitored on MUX_OUT pin.
0x1A: AGND. MUX_OUT pin internally tied to AGND.



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