参数资料
型号: MAX5155BEPE
厂商: Maxim Integrated Products
文件页数: 5/16页
文件大小: 0K
描述: IC DAC DUAL V-OUT 12BIT 16-DIP
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 25
设置时间: 15µs
位数: 12
数据接口: 串行
转换器数目: 2
电压电源: 单电源
功率耗散(最大): 842mW
工作温度: -40°C ~ 85°C
安装类型: 通孔
封装/外壳: 16-DIP(0.300",7.62mm)
供应商设备封装: 16-PDIP
包装: 管件
输出数目和类型: 2 电压,单极;2 电压,双极
采样率(每秒): *
Serial-Data Output
The serial-data output, DOUT, is the internal shift regis-
ter’s output. DOUT allows for daisy chaining of devices
and data readback. The MAX5154/MAX5155 can be
programmed to shift data out of DOUT on SCLK’s
falling edge (Mode 0) or on the rising edge (Mode 1).
Mode 0 provides a lag of 16 clock cycles, which main-
tains compatibility with SPI/QSPI and Microwire inter-
faces. In Mode 1, the output data lags 15.5 clock
cycles. On power-up, the device defaults to Mode 0.
User-Programmable Logic Output (UPO)
UPO allows an external device to be controlled through
the serial interface (Table 1), thereby reducing the
number of microcontroller I/O pins required. On power-
up, UPO is low.
Power-Down Lockout Input (P
PD
DL
L)
The power-down lockout pin (PDL) disables software
shutdown when low. When in shutdown, transitioning
PDL from high to low wakes up the part with the output
set to the state prior to shutdown. PDL can also be
used to asynchronously wake up the device.
Daisy Chaining Devices
Any number of MAX5154/MAX5155s can be daisy
chained by connecting the DOUT pin of one device to
the DIN pin of the following device in the chain (Figure 7).
Since the MAX5154/MAX5155’s DOUT pin has an inter-
nal active pull-up, the DOUT sink/source capability
determines the time required to discharge/charge a
capacitive load. Refer to the digital output VOH and VOL
specifications in the
Electrical Characteristics.
Figure 8 shows an alternate method of connecting sev-
eral MAX5154/MAX5155s. In this configuration, the
data bus is common to all devices; data is not shifted
through a daisy chain. More I/O lines are required in
this configuration because a dedicated chip-select
input (CS) is required for each IC.
__________Applications Information
Unipolar Output
Figure 9 shows the MAX5154/MAX5155 configured for
unipolar, rail-to-rail operation with a gain of +2V/V. The
MAX5154 can produce a 0V to 4.096V output with
2.048V reference (Figure 9), while the MAX5155 can
produce a range of 0V to 2.5V with a 1.25V reference.
Table 2 lists the unipolar output codes. An offset to the
output can be achieved by connecting a voltage to
OS_, as shown in Figure 10. By applying VOS_ = -1V,
the output values will range between 1V and (1V +
VREF x 2).
MAX5154/MAX5155
Low-Power, Dual, 12-Bit Voltage-Output DACs
with Serial Interface
Table 2. Unipolar Code Table (Gain = +2)
MAX5154
MAX5155
DAC_
GAIN = +2V/V
REF_
OUT_
OS_
DGND
AGND
+5V/+3V
VDD
R
Figure 9. Unipolar Output Circuit (Rail-to-Rail)
MAX5154
MAX5155
DAC _
AGND
DGND
REF_
OUT_
OS_
VOS
+5V/+3V
VDD
R
______________________________________________________________________________________
13
ANALOG OUTPUT
1111 1111 1111 (0)
1000 0000 0001 (0)
DAC CONTENTS
MSB
LSB
1000 0000 0000 (0)
0111 1111 1111 (0)
0000 0000 0000 (0)
0V
0000 0000 0001 (0)
+V
4095
4096
2
REF
x
+V
2049
4096
REF
x 2
+V
2048
4096
V
REF
=
x 2
+V
2047
4096
REF
x 2
+V
1
4096
REF
x 2
Figure 10. Setting OS_ for Output Offset
Note: ( ) are for the sub bit.
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