參數(shù)資料
型號(hào): TLV5639I
廠商: Texas Instruments, Inc.
英文描述: 2.7 V TO 5.5 V LOW POWER 12-BIT DIGITAL-TO-ANALOG CONVERTERS WITH INTERNAL REFERENCE AND POWER DOWN
中文描述: 2.7 V至5.5 V低功耗12位數(shù)字到模擬,具有內(nèi)部參考和斷電變換器
文件頁(yè)數(shù): 12/17頁(yè)
文件大?。?/td> 242K
代理商: TLV5639I
TLV5639C, TLV5639I
2.7 V TO 5.5 V LOW POWER 12-BIT DIGITAL-TO-ANALOG
CONVERTERS WITH INTERNAL REFERENCE AND POWER DOWN
SLAS189 – MARCH 1999
12
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
APPLICATION INFORMATION
The following table lists the meaning of the bits within the control register:
D11
D10
D9
D8
D7
D6
D5
D4
D3
D2
D1
D0
X
X
X
X
X
X
X
X
X
X
X
X
X
X
REF1
0
REF0
0
X
X
PWR
0
SPD
0
Default values
X: don’t care
SPD: Speed control bit
PWR: Power control bit
1
fast mode
1
power down
0
slow mode
0
normal operation
REF1 and REF0 determine the reference source and the reference voltage.
REFERENCE BITS
REF1
REF0
REFERENCE
0
0
External
0
1
2.048 V
1
0
1.024 V
1
1
External
If an external reference voltage is applied to the REF pin, external reference must be selected.
linearity, offset, and gain error using single end supplies
When an amplifier is operated from a single supply, the voltage offset can still be either positive or negative. With
a positive offset, the output voltage changes on the first code change. With a negative offset the output voltage
may not change with the first code depending on the magnitude of the offset voltage.
The output amplifier attempts to drive the output to a negative voltage. However, because the most negative
supply rail is ground, the output cannot drive below ground and clamps the output at 0 V.
The output voltage remains at zero until the input code value produces a sufficient positive output voltage to
overcome the negative offset voltage, resulting in the transfer function shown in Figure 12.
DAC Code
Output
Voltage
0 V
Negative
Offset
Figure 12. Effect of Negative Offset (Single Supply)
This offset error, not the linearity error, produces this breakpoint. The transfer function would have followed the
dotted line if the output buffer could drive below the ground rail.
For a DAC, linearity is measured between zero input code (all inputs 0) and full scale code (all inputs 1) after
offset and full scale are adjusted out or accounted for in some way. However, single supply operation does not
allow for adjustment when the offset is negative due to the breakpoint in the transfer function. So the linearity
is measured between full scale code and the lowest code that produces a positive output voltage.
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