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SP9500AS データシート(PDF) 5 Page - Sipex Corporation

部品番号 SP9500AS
部品情報  12-Bit, Voltage Output D/A Converter
PDF  9 Pages
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メーカー  SIPEX [Sipex Corporation]
ホームページ  http://www.sipex.com
Logo SIPEX - Sipex Corporation

SP9500AS データシート(HTML) 5 Page - Sipex Corporation

  SP9500AS Datasheet HTML 1Page - Sipex Corporation SP9500AS Datasheet HTML 2Page - Sipex Corporation SP9500AS Datasheet HTML 3Page - Sipex Corporation SP9500AS Datasheet HTML 4Page - Sipex Corporation SP9500AS Datasheet HTML 5Page - Sipex Corporation SP9500AS Datasheet HTML 6Page - Sipex Corporation SP9500AS Datasheet HTML 7Page - Sipex Corporation SP9500AS Datasheet HTML 8Page - Sipex Corporation SP9500AS Datasheet HTML 9Page - Sipex Corporation  
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SP9500DS/04
SP9500 12-Bit, Voltage Output D/A Converter
© Copyright 2000 Sipex Corporation
5
VOUT
VREF
DAC
12
1
SHIFT
REGISTER
DIN
+
+
DIN
VREF
VOUT
VDAC
VOUT
VDAC
VDAC
DIN
WHERE…
=
=
4096
x (VREF - AGND) + AGND
()
LATCH
12
AGND
AGND
DAC
REGISTER
DAC
REGISTER
Figure 1. Detailed Block Diagram
USING THE SP9500
External Reference
The R-2R DAC input resistance is code depen-
dent and is minimum (11k
Ω) at code 1365 and
2731. And, it is nearly infinite at code 0. Be-
cause of the code-dependent nature of the refer-
ence inputs, a high quality, low output imped-
ance amplifier should be used to drive the V
REF
and AGND inputs.
Serial Clock and Update Rate
The SP9500 maximum serial clock rate (SCLK)
is given by 1/(t
CH+tCL) which is approximately
12.5 MHz. The digital word update rate is lim-
ited by the chip select period, which is 12 X
Figure 2. Transfer Function
SCLK periods plus the CS high pulse width t
CSW.
This is equal to a 1
µs or 1 MHz update rate.
However, the DAC settling time to 12–Bits is 7.5
µs, which for full scale output transitions would
limit the update rate to 125 kHz.
Logic Interface
The SP9500 is designed to be compatible with
TTL and CMOS logic levels. However, driving
the digital inputs with TTL level signals will
increase the power consumption of the part by
300
µA. In order to achieve the lowest power
consumption use rail-to-rail CMOS levels to
drive the digital inputs.
+0.5 lsb
DNLE
-0.5 lsb
+0.5 lsb
INLE
-0.5 lsb
0
CODE
4095
DNLE, INLE Plots



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