SGM5353-16 [SGMICRO]

16-Bit, Serial Input, Voltage-Output Digital-to-Analog Converter;
SGM5353-16
型号: SGM5353-16
厂家: Shengbang Microelectronics Co, Ltd    Shengbang Microelectronics Co, Ltd
描述:

16-Bit, Serial Input, Voltage-Output Digital-to-Analog Converter

文件: 总14页 (文件大小:832K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
SGM5353-16  
16-Bit, Serial Input, Voltage-Output  
Digital-to-Analog Converter  
GENERAL DESCRIPTION  
FEATURES  
The SGM5353-16 is a 16-bit, single channel, serial  
input, voltage-output DAC. It operates from a 2.7V to  
16-Bit DAC, Monotonicity Guaranteed by Design  
Single-Supply Operation: 3V and 5V  
Settling Time: 1.5μs (TYP)  
5.5V supply. The DAC output range is from 0V to VREF  
.
Support Unbuffered Voltage-Output Capability  
Power-On Reset to Zero-Scale  
The SGM5353-16 output is monotonic and is 1LSB  
integral nonlinearity (INL) in the whole working  
temperature range.  
Low Power Consumption: 0.39mW (TYP)  
Low Glitch Impulse: 1.2nV-s  
The SGM5353-16 features a low noise and fast setting  
time output (setting to 0.5LSB of full-scale output within  
1.5μs).  
SPI-Compatible Serial Interface  
Available in a Green SOIC-8 Package  
The SGM5353-16 uses a 3-wire serial SPI-compatible  
interface.  
APPLICATIONS  
Process Control  
The SGM5353-16 is available in a Green SOIC-8  
package. It operates over an ambient temperature  
range of -40to +125.  
Field Transducer  
Automatic Test Equipment  
SG Micro Corp  
MARCH 2022REV. A  
www.sg-micro.com  
16-Bit, Serial Input, Voltage-Output  
Digital-to-Analog Converter  
SGM5353-16  
PACKAGE/ORDERING INFORMATION  
SPECIFIED  
TEMPERATURE  
RANGE  
PACKAGE  
DESCRIPTION  
ORDERING  
NUMBER  
PACKAGE  
MARKING  
PACKING  
OPTION  
MODEL  
SGM  
535316XS8  
XXXXX  
SGM5353-16  
SOIC-8  
SGM5353-16XS8G/TR  
Tape and Reel, 4000  
-40to +125℃  
MARKING INFORMATION  
NOTE: XXXXX = Date Code, Trace Code and Vendor Code.  
X X X X X  
Vendor Code  
Trace Code  
Date Code - Year  
Green (RoHS & HSF): SG Micro Corp defines "Green" to mean Pb-Free (RoHS compatible) and free of halogen substances. If  
you have additional comments or questions, please contact your SGMICRO representative directly.  
OVERSTRESS CAUTION  
ABSOLUTE MAXIMUM RATINGS  
Stresses beyond those listed in Absolute Maximum Ratings  
may cause permanent damage to the device. Exposure to  
absolute maximum rating conditions for extended periods  
may affect reliability. Functional operation of the device at any  
conditions beyond those indicated in the Recommended  
Operating Conditions section is not implied.  
Input Voltage Range ............................................ -0.3V to 6V  
Digital Input Voltage Range .................... -0.3V to VDD + 0.3V  
Output Voltage Range ............................ -0.3V to VDD + 0.3V  
AGND, AGNDF, AGNDS to DGND ................... -0.3V to 0.3V  
Input Current to Any Pin except Supplies....................±10mA  
Package Thermal Resistance  
SOIC-8, θJA .......................................................... 116/W  
SOIC-8, θJC ............................................................ 55/W  
Junction Temperature.................................................+150℃  
Storage Temperature Range .......................-65to +150℃  
Lead Temperature (Soldering, 10s)............................+260℃  
ESD Susceptibility  
ESD SENSITIVITY CAUTION  
This integrated circuit can be damaged if ESD protections are  
not considered carefully. SGMICRO recommends that all  
integrated circuits be handled with appropriate precautions.  
Failure to observe proper handling and installation procedures  
can cause damage. ESD damage can range from subtle  
performance degradation tocomplete device failure. Precision  
integrated circuits may be more susceptible to damage  
because even small parametric changes could cause the  
device not to meet the published specifications.  
HBM.............................................................................4000V  
CDM ............................................................................1000V  
RECOMMENDED OPERATING CONDITIONS  
Operating Temperature Range....................-40to +125℃  
DISCLAIMER  
SG Micro Corp reserves the right to make any change in  
circuit design, or specifications without prior notice.  
SG Micro Corp  
www.sg-micro.com  
MARCH 2022  
2
16-Bit, Serial Input, Voltage-Output  
Digital-to-Analog Converter  
SGM5353-16  
PIN CONFIGURATION  
(TOP VIEW)  
VOUT  
1
2
3
4
8
7
6
5
VDD  
DGND  
DIN  
AGND  
REF  
SCLK  
nCS  
SOIC-8  
PIN DESCRIPTION  
PIN  
1
NAME  
VOUT  
TYPE (1)  
FUNCTION  
O
G
I
Analog Output.  
Analog Ground.  
2
AGND  
REF  
3
Reference Voltage Input Pin.  
Chip Select Signal. Active low.  
Serial Clock Input Pin.  
4
nCS  
I
5
SCLK  
DIN  
I
6
I
Serial Data Input Pin.  
7
DGND  
VDD  
G
P
Digital Ground.  
8
Analog Power Supply Voltage.  
NOTE:  
1. I = Input, O = Output, P = Power, G = Ground.  
SG Micro Corp  
www.sg-micro.com  
MARCH 2022  
3
16-Bit, Serial Input, Voltage-Output  
Digital-to-Analog Converter  
SGM5353-16  
ELECTRICAL CHARACTERISTICS  
(VDD = 2.7V to 5.5V, 2V ≤ VREF ≤ VDD, AGND = DGND = 0V, TA = -40to +125, unless otherwise noted.)  
PARAMETER  
SYMBOL  
CONDITIONS  
MIN  
TYP  
MAX  
UNITS  
Static Performance  
Resolution  
16  
Bits  
LSB  
LSB  
Relative Accuracy  
Differential Nonlinearity  
INL  
0.15  
0.3  
1
DNL  
Guaranteed monotonic  
1
0.8  
1.7  
2.2  
TA = +25  
Gain Error  
LSB  
ppm/℃  
LSB  
Gain Error Temperature Coefficient  
Unipolar Zero-Code Error  
0.04  
0.4  
1
TA = +25℃  
1.8  
Unipolar Zero-Code Temperature  
Coefficient  
0.04  
ppm/℃  
Output Characteristics  
Output Voltage Range  
Output Voltage Settling Time  
Slew Rate  
0
VREF - 1LSB  
V
To 1/2LSB of FS, CL = 10pF  
CL = 10pF, measured from 0% to 63%  
1LSB change around the major carry  
All 1s loaded to DAC, VREF = 2.5V  
Tolerance typically 20%  
1.5  
17  
μs  
V/μs  
nV-s  
nV-s  
kΩ  
Digital-to-Analog Glitch Impulse  
Digital Feedthrough  
DAC Output Impedance  
Output Noise Spectral Density  
Output Noise  
1.2  
0.2  
6
nV/  
Hz  
DAC code = 0x8400, f = 1kHz  
0.1Hz to 10Hz  
12  
0.15  
µVPP  
LSB  
Power Supply Rejection Ratio  
DAC Reference Input  
Reference Input Range  
Reference Input Impedance  
Logic Inputs  
PSRR  
ΔVDD ± 10%  
0.6  
2
VDD  
V
9.5  
kΩ  
Input Current  
1
μA  
V
Input Low Voltage  
VIL  
VIH  
0.7  
Input High Voltage  
2.1  
V
Input Capacitance (1)  
Hysteresis Voltage (1)  
Reference (1)  
7
pF  
V
0.1  
Reference -3dB Bandwidth  
Reference Feedthrough  
Signal-to-Noise Ratio  
All 1s loaded  
3
MHz  
mVPP  
dB  
All 0s loaded, VREF = 1VPP at 100kHz  
1
SNR  
92  
45  
45  
Code 0x0000  
Code 0xFFFF  
Reference Input Capacitance  
pF  
Power Requirements  
Supply Voltage  
VDD  
IDD  
2.7  
5.5  
100  
0.55  
V
Supply Current  
Digital inputs at rails  
78  
μA  
Power Dissipation  
0.39  
mW  
NOTES:  
1. Guaranteed by design. Not production tested.  
SG Micro Corp  
www.sg-micro.com  
MARCH 2022  
4
16-Bit, Serial Input, Voltage-Output  
Digital-to-Analog Converter  
SGM5353-16  
TIMING CHARACTERISTICS  
(VDD = 2.7V to 5.5V ±10%, VREF = 2.5V, VINH = 3V and 90% of VDD, VINL = 0V and 10% of VDD, AGND = DGND = 0V, TA = -40to  
+125, unless otherwise noted.) (1) (2)  
PARAMETER  
SCLK Cycle Frequency  
SYMBOL  
CONDITIONS  
MIN  
TYP  
MAX  
UNITS  
MHz  
ns  
fSCLK  
t1  
25  
SCLK Cycle Time  
40  
20  
20  
10  
15  
30  
20  
15  
4
SCLK High Time  
t2  
ns  
SCLK Low Time  
t3  
ns  
nCS Low to SCLK High Setup  
nCS High to SCLK High Setup  
SCLK High to nCS Low Hold Time  
SCLK High to nCS High Hold Time  
Data Setup Time  
t4  
ns  
t5  
ns  
t6  
ns  
t7  
ns  
t8  
ns  
VIH = 90% of VDD, VIL = 10% of VDD  
VIH = 3V, VIL = 0V  
Data Hold Time  
t9  
ns  
ns  
7.5  
30  
nCS High Time between Active Periods  
t10  
NOTES:  
1 Guaranteed by design and characterization. Not production tested.  
2 All input signals are specified with tR = tF = 1ns/V and timed from a voltage level of (VIL + VIH)/2.  
t10  
nCS  
t5  
t4  
t1  
t3  
t6  
2
4
5
15  
16  
1
SCLK  
DIN  
t2  
t7  
t8  
t9  
DB1  
DB0  
DB15  
DB14  
Figure 1. Timing Diagram  
SG Micro Corp  
www.sg-micro.com  
MARCH 2022  
5
 
16-Bit, Serial Input, Voltage-Output  
Digital-to-Analog Converter  
SGM5353-16  
TYPICAL PERFORMANCE CHARACTERISTICS  
INL vs. Code  
DNL vs. Code  
VDD = 5V, VREF = 2.5V  
0.50  
0.25  
0.50  
0.25  
VDD = 5V, VREF = 2.5V  
0.00  
0.00  
-0.25  
-0.50  
-0.25  
-0.50  
0
-50  
2
16384  
32768  
Code  
49152  
65536  
125  
7
0
-50  
0
16384  
32768  
Code  
49152  
65536  
125  
6
INL vs. Temperature  
VDD = 5V, VREF = 2.5V  
DNL vs. Temperature  
VDD = 5V, VREF = 2.5V  
0.2  
0.1  
0
0.5  
0.4  
0.3  
0.2  
0.1  
0
-0.1  
-0.2  
-0.3  
-0.4  
-0.1  
-25  
0
25  
50  
75  
100  
-25  
0
25  
50  
75  
100  
Temperature ()  
Temperature ()  
Linearity Error vs. Supply Voltage  
VREF = 2.5V, TA = +25℃  
Linearity Error vs. Reference Voltage  
0.3  
0.2  
0.1  
0
0.75  
0.50  
0.25  
0.00  
-0.25  
-0.50  
-0.75  
VDD = 5V, TA = +25℃  
DNL  
DNL  
INL  
INL  
-0.1  
-0.2  
-0.3  
3
4
5
6
1
2
3
4
5
Supply Voltage (V)  
Reference Voltage (V)  
SG Micro Corp  
www.sg-micro.com  
MARCH 2022  
6
16-Bit, Serial Input, Voltage-Output  
Digital-to-Analog Converter  
SGM5353-16  
TYPICAL PERFORMANCE CHARACTERISTICS (continued)  
Gain Error vs. Temperature  
Zero-Code Error vs. Temperature  
VDD = 5V, VREF = 2.5V, TA = +25℃  
-0.1  
-0.3  
-0.5  
-0.7  
-0.9  
-1.1  
-1.3  
-1.5  
1
0.8  
0.6  
0.4  
0.2  
0
VDD = 5V, VREF = 2.5V, TA = +25℃  
-50  
-25  
0
25  
50  
75  
100  
125  
-50  
-25  
0
25  
50  
75  
100  
125  
65536  
3
Temperature ()  
Temperature ()  
Supply Current vs. Temperature  
Reference Current vs. Code  
VDD = 5V, VREF = 2.5V, TA = +25℃  
90  
85  
80  
75  
70  
65  
230  
228  
226  
224  
222  
220  
218  
216  
214  
VDD = 5V, VREF = 2.5V, TA = +25℃  
-50  
-25  
0
25  
50  
75  
100  
125  
0
16384  
32768  
Code  
49152  
Temperature ()  
Supply Current vs. Reference Voltage or Supply Voltage  
Supply Current vs. Digital Input Voltage  
77  
300  
250  
200  
150  
100  
50  
TA = +25℃  
76  
Reference Voltage  
V
DD = 5V  
75  
74  
73  
72  
Supply Voltage  
REF = 2.5V  
V
0
0
1
2
3
4
5
6
0
0.5  
1
1.5  
2
2.5  
Voltage (V)  
Digital Input Voltage (V)  
SG Micro Corp  
www.sg-micro.com  
MARCH 2022  
7
16-Bit, Serial Input, Voltage-Output  
Digital-to-Analog Converter  
SGM5353-16  
TYPICAL PERFORMANCE CHARACTERISTICS (continued)  
Digital Feedthrough  
Digital-to-Analog Glitch Impulse  
1.258  
1.256  
1.254  
1.252  
1.250  
1.248  
1.246  
10  
CS 5V/div  
0
VDD = 5V  
REF = 2.5V  
TA = +25℃  
Code: 0x0000  
-10  
-20  
-30  
-40  
-50  
V
VOUT 1mV/div  
VDD = 5V  
REF = 2.5V  
V
-1 -0.5  
0
0.5  
1
1.5  
2
2.5  
3
Time (2μs/div)  
Time (0.5μs/div)  
Large Signal Settling Time  
CS 5V/div  
10pF  
50pF  
100pF  
200pF  
VDD = 5V  
V
REF = 2.5V  
TA = +25℃  
VOUT 0.5V/div  
Time (2μs/div)  
SG Micro Corp  
www.sg-micro.com  
MARCH 2022  
8
16-Bit, Serial Input, Voltage-Output  
Digital-to-Analog Converter  
SGM5353-16  
FUNCTIONAL BLOCK DIAGRAM  
VDD  
SGM5353-16  
16-Bit  
DAC  
REF  
nCS  
VOUT  
AGND  
16-Bit  
DAC Latch  
Control  
Logic  
DIN  
Serial Input  
Register  
SCLK  
DGND  
Figure 2. Block Diagram  
SG Micro Corp  
www.sg-micro.com  
MARCH 2022  
9
16-Bit, Serial Input, Voltage-Output  
Digital-to-Analog Converter  
SGM5353-16  
DETAILED DESCRIPTION  
Table 1. Code Table  
The SGM5353-16 is a 16-bit, single channel, voltage-output  
DAC. It operates with a 3-wire SPI-compatible interface. And  
its output is power-on reset to 0V.  
DAC Code  
0xFFFF  
0x8000  
Analog Output  
VREF × (65535/65536)  
VREF × (32768/65536) = ½VREF  
DAC Section  
0x0001  
VREF × (1/65536)  
0V  
The SGM5353-16 is a voltage mode R-2R network DAC, and  
it doesn't have an output buffer. When operating with an  
external reference. An ideal output voltage is shown in the  
following equation:  
0x0000  
Don't consider the error of voltage reference, the worst case  
of output can be estimated by the following equation:  
VREF ×D  
VOUT  
=
2N  
D
216  
(1)  
VOUT  
=
× VREF + VGE + V + V  
ZSE INL  
(
)
(2)  
Where:  
Where:  
D = Decimal equivalent of the data-word, which is loaded to  
VOUT = Worst case output.  
the DAC register.  
N = 16 now.  
D = Code that is loaded to DAC.  
VREF = Reference voltage.  
VGE = Gain error in volts.  
Serial Interface  
VZSE = Zero-code error in volts.  
VINL = Integral nonlinearity in volts.  
The SGM5353-16 supports 3-wire SPI-compatible interface.  
Figure 1 shows a timing sequence. During the 16-bit word  
data is shifting in, the nCS keeps low. The data is locked into  
the input register on the rising edge of SCLK. A low-to-high  
transition of nCS loads the data of the input register to the  
DAC.  
Reference and Ground  
The SGM5353-16 needs an external voltage reference. The  
available reference voltage range is 2V to VDD. In spite of the  
input impedance of voltage reference pin is code independent,  
the reference voltage pin should be driven from a low  
impedance source.  
The data format is straight binary and MSB first.  
Output Operation  
The SGM5353-16 can output a voltage swing from 0V to a  
voltage reference (a 2.5V reference from the SGM4029-2.5 in  
Figure 3). The DAC is capable to drive a load of 60without  
a buffer. To improve the driving ability, a typical connection is  
shown in Figure 3.  
Power-On Reset  
The SGM5353-16 has a power-on reset control circuit to reset  
output to 0V output when system is powered on. However,  
the serial input register is not reset to a defined code when  
system is powered up.  
When operating to the SGM5353-16, at least a 16-bit data is  
required. If a more than 16-bit data is loaded, only the last 16  
bits data is loaded to DAC.  
SGM4029-2.5  
5V  
0.1μF  
10μF  
0.1μF  
VDD  
REF  
nCS  
DIN  
Serial  
Interface  
SGM5353-16  
OUT  
SCLK  
SGM8968-1  
DGND  
AGND  
Figure 3. A Typical Connection  
SG Micro Corp  
www.sg-micro.com  
MARCH 2022  
10  
 
16-Bit, Serial Input, Voltage-Output  
Digital-to-Analog Converter  
SGM5353-16  
REVISION HISTORY  
NOTE: Page numbers for previous revisions may differ from page numbers in the current version.  
Changes from Original (MARCH 2022) to REV.A  
Page  
Changed from product preview to production data .................................................................................................................................................All  
SG Micro Corp  
www.sg-micro.com  
MARCH 2022  
11  
PACKAGE INFORMATION  
PACKAGE OUTLINE DIMENSIONS  
SOIC-8  
0.6  
D
e
2.2  
E1  
E
5.2  
b
1.27  
RECOMMENDED LAND PATTERN (Unit: mm)  
L
A
A1  
c
θ
A2  
Dimensions  
In Millimeters  
Dimensions  
In Inches  
Symbol  
MIN  
MAX  
1.750  
0.250  
1.550  
0.510  
0.250  
5.100  
4.000  
6.200  
MIN  
MAX  
0.069  
0.010  
0.061  
0.020  
0.010  
0.200  
0.157  
0.244  
A
A1  
A2  
b
1.350  
0.100  
1.350  
0.330  
0.170  
4.700  
3.800  
5.800  
0.053  
0.004  
0.053  
0.013  
0.006  
0.185  
0.150  
0.228  
c
D
E
E1  
e
1.27 BSC  
0.050 BSC  
L
0.400  
0°  
1.270  
8°  
0.016  
0°  
0.050  
8°  
θ
NOTES:  
1. Body dimensions do not include mode flash or protrusion.  
2. This drawing is subject to change without notice.  
SG Micro Corp  
TX00010.000  
www.sg-micro.com  
PACKAGE INFORMATION  
TAPE AND REEL INFORMATION  
REEL DIMENSIONS  
TAPE DIMENSIONS  
P2  
P0  
W
Q2  
Q4  
Q2  
Q4  
Q2  
Q4  
Q1  
Q3  
Q1  
Q3  
Q1  
Q3  
B0  
Reel Diameter  
P1  
A0  
K0  
Reel Width (W1)  
DIRECTION OF FEED  
NOTE: The picture is only for reference. Please make the object as the standard.  
KEY PARAMETER LIST OF TAPE AND REEL  
Reel Width  
Reel  
Diameter  
A0  
B0  
K0  
P0  
P1  
P2  
W
Pin1  
Package Type  
W1  
(mm)  
(mm) (mm) (mm) (mm) (mm) (mm) (mm) Quadrant  
SOIC-8  
13″  
12.4  
6.40  
5.40  
2.10  
4.0  
8.0  
2.0  
12.0  
Q1  
SG Micro Corp  
TX10000.000  
www.sg-micro.com  
PACKAGE INFORMATION  
CARTON BOX DIMENSIONS  
NOTE: The picture is only for reference. Please make the object as the standard.  
KEY PARAMETER LIST OF CARTON BOX  
Length  
(mm)  
Width  
(mm)  
Height  
(mm)  
Reel Type  
Pizza/Carton  
13″  
386  
280  
370  
5
SG Micro Corp  
www.sg-micro.com  
TX20000.000  

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