參數(shù)資料
型號: DAC1405D750HW
廠商: NXP Semiconductors N.V.
元件分類: 外設(shè)及接口
英文描述: Dual 14-bit DAC, up to 750 Msps; 4× and 8× interpolating
封裝: DAC1405D750HW/C1<SOT638-1 (HTQFP100)|<<http://www.nxp.com/packages/SOT638-1.html<1<Always Pb-free,;DAC1405D750HW/C1<SOT638-1 (HTQFP100)|<<http://www.nxp.com/packages/SOT6
文件頁數(shù): 29/42頁
文件大小: 352K
代理商: DAC1405D750HW
DAC1405D750
All information provided in this document is subject to legal disclaimers.
NXP B.V. 2011. All rights reserved.
Product data sheet
Rev. 4 — 7 June 2011
29 of 42
NXP Semiconductors
DAC1405D750
Dual 14-bit DAC, up to 750 Msps; 4
and 8
interpolating
This configuration is optimum for temperature drift compensation because the bandgap
reference voltage can be matched to the voltage across the feedback resistor.
The DAC current can also be set by applying an external reference voltage to the
non-inverting input pin GAPOUT and disabling the internal bandgap reference voltage
with GAP_PD (register 00h[0]; see
Table 10 “COMMon register (address 00h) bit
description”
).
10.10.2
Full-scale current adjustment
The default full-scale current (I
O(fs)
) is 20 mA but further adjustments can be made by the
user to both DACs independently via the serial interface from 1.6 mA to 22 mA,
10 %.
The settings applied to DAC_A_GAIN_COARSE[3:0] (see
Table 20 “DAC_A_Cfg_2
register (address 0Ah) bit description”
and
Table 21 “DAC_A_Cfg_3 register (address
0Bh) bit description”
) and to DAC_B_GAIN COARSE[3:0] (see
Table 23 “DAC_B_Cfg_2
register (address 0Dh) bit description”
and
Table 24 “DAC_B_Cfg_3 register (address
0Eh) bit description”
) define the coarse variation of the full-scale current (see
Table 39
).
Table 39.
Default settings are shown highlighted.
DAC_GAIN_COARSE[3:0]
Decimal
0
1
2
3
4
5
6
7
8
9
10
11
12
Fig 11. Internal reference configuration
001aaj816
REF.
BANDGAP
GAPOUT
VIRES
DAC
CURRENT
SOURCES
ARRAY
AGND
AGND
100 nF
909
Ω
(1 %)
I
O(fs)
coarse adjustment
I
O(fs)
(mA)
Binary
0000
0001
0010
0011
0100
0101
0110
0111
1000
1001
1010
1011
1100
1.6
3.0
4.4
5.8
7.2
8.6
10.0
11.4
12.8
14.2
15.6
17.0
18.5
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