參數(shù)資料
型號: DAC56
英文描述: Monolithic 16-Bit Resolution DIGITAL-TO-ANALOG CONVERTER
中文描述: 單片16位分辨率的數(shù)字模擬轉(zhuǎn)換器
文件頁數(shù): 2/5頁
文件大小: 165K
代理商: DAC56
DAC56
2
SPECIFICATIONS
ELECTRICAL
All specifications at +25
°
C, and power supply voltage of
±
5V, unless otherwise noted.
DAC56
PARAMETER
CONDITIONS
MIN
TYP
MAX
UNITS
DIGITAL INPUT
Resolution
Digital Input Level:
(1)
V
IH
16
Bits
V
V
μ
A
μ
A
MHz
+2.4
0
+V
L
+0.8
+1
–50
V
IL
I
IH
V
I
= +2.7V
I
IL
V
I
= +0.4V
Input Clock Frequency
10
ACCURACY
Integral Linearity Error
Differential Linearity Error
Gain Error
Bipolar Zero Error
Monotonicity
±
0.012
±
0.024
±
1.5
±
0.5
12
% of FSR
(3)
% of FSR
% of FSR
% of FSR
Bits
0
°
C to +70
°
C
TEMPERATURE DRIFT
Gain Drift
Bipolar Zero Drift
Linearity Drift
Differential Linearity Drift
0
°
C to +70
°
C
±
60
±
20
ppm of FSR/
°
C
ppm of FSR/
°
C
% of FSR
% of FSR
±
0.012
±
0.024
POWER SUPPLY SENSITIVITY
Gain
Bipolar Zero
±
V
S
=
±
V
L
=
±
5VDC
±
0.0045
±
0.0015
% of FSR/%V
% of FSR/%V
SETTLING TIME
Voltage Output
6V Step
1LSB
Current Output
1mA Step
to
±
0.006% of FSR
1.5
1
μ
s
μ
s
10 to 100
Load
1k
Load
(3)
350
350
ns
ns
Slew Rate
12
V/
μ
s
ANALOG OUTPUT
Voltage Output Configuration
Bipolar Range
Output Current
Output Impedance
Short Circuit Duration
Current Output Configuration
Bipolar Range
Output Impedance
±
2.66
±
8
±
3.0
±
3.34
V
mA
0.1
Indefinite to Common
±
1
1.2
mA
k
WARMUP TIME
1
min
POWER SUPPLY REQUIREMENTS
(4)
Supply Voltage
+V
S
and +V
L
–V
and –V
Supply Drain (No Load)
+V (+V
S
and +V
L
= +5V)
–V (–V
S
and –V
L
= –5V)
+V (+V
S
and +V
L
= +12V)
–V (–V
and –V
L
= –12V)
Power Dissipation
V
S
and V
L
=
±
5V
V
S
and V
L
=
±
12V
+4.75
–4.75
+5.00
–5.00
+13.2
–13.2
V
V
+10
–25
+12
–27
+17
–35
mA
mA
mA
mA
175
468
260
mW
mW
TEMPERATURE RANGE
Specification
Storage
0
70
100
°
C
°
C
–60
NOTES: (1) Logic input levels are TTL-/CMOS-compatible. (2) FSR means full-scale range and is equivalent to 6V (
±
3V) for DAC56 in the V
mode. (3) Measured
with an active clamp to provide a low impedance for approximately 200ns. (4) All specifications assume +V
connected to +V
and –V
connected to –V
. If supplies
are connected separately, –V
L
must not be more negative than –V
S
to assure proper operation. No similar restriction applies to the value of +V
L
with respect to +V
S
.
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