参数资料
型号: LTC1599BIN#PBF
厂商: Linear Technology
文件页数: 18/20页
文件大小: 0K
描述: IC D/A CONV 16BIT MLTPLYNG 24DIP
标准包装: 15
设置时间: 1µs
位数: 16
数据接口: 并联
转换器数目: 1
电压电源: 单电源
功率耗散(最大): 55µW
工作温度: -40°C ~ 85°C
安装类型: 通孔
封装/外壳: 24-DIP(0.300",7.62mm)
供应商设备封装: 24-PDIP
包装: 管件
输出数目和类型: 3 电流,单极;3 电流,双极
采样率(每秒): *
7
LTC1599
sn1599 1599fs
PIN FUNCTIONS
UU
U
CLVL (Pin 10): Clear Level. CLVL = 0, selects reset to zero
code. CLVL = 1, selects reset to midscale code. Normally
hardwired to a logic high or a logic low.
LD (Pin 11): DAC Digital Input Load Control Input. When
LD is taken to a logic low, data is loaded from the input
register into the DAC register, updating the DAC output.
WR (Pin 12): DAC Digital Write Control Input. When WR
is taken to a logic low, data is loaded from the 8 digital input
pins into the 16-bit wide input register. The MLBYTE pin
determines whether the MSB or LSB byte is loaded.
MLBYTE (Pin 13): MSB or LSB Byte Select. When MLBYTE
is taken to a logic low and WR is taken to a logic low, data
is loaded from the 8 digital input pins into the first 8 bits
of the 16-bit wide input register. When MLBYTE is taken to
a logic high and WR is taken to a logic low, data is loaded
from the 8 digital input pins into the 8 MSB bits of the input
register.
D7 to D3 (Pins 14 to 18): Digital Input Data Bits.
DGND (Pin 19): Digital Ground. Tie to ground.
VCC (Pin 20): The Positive Supply Input. 4.5V ≤ VCC ≤ 5.5V.
Requires a bypass capacitor to ground.
D2 to D0 (Pins 21 to 23): Digital Input Data Bits.
CLR (Pin 24): Digital Clear Control Function for the DAC.
When CLR and CLVL are taken to a logic low, the DAC
output and all internal registers are set to zero code. When
CLR is taken to a logic low and CLVL is taken to a logic high,
the DAC output and all internal registers are set to midscale
code.
REF (Pin 1): Reference Input. Typically ±10V, accepts up
to ±25V. In 2-quadrant mode, this pin is the reference
input. In 4-quadrant mode, this pin is driven by external
inverting reference amplifier.
R2 (Pin 2): 4-Quadrant Resistor R2. Typically ±10V,
accepts up to ±25V. In 2-quadrant operation, connect this
pin to ground. In 4-quadrant mode tie to the REF pin and
to the output of an external amplifier. See Figures 1 and 3.
RCOM (Pin 3): Center Tap Point of the Two 4-Quadrant
Resistors R1 and R2. Normally tied to the inverting input
of an external amplifier in 4-quadrant operation, otherwise
connect this pin to ground. See Figures 1 and 3. The ab-
solute maximum voltage range on this pin is – 0.3V to 12V.
R1 (Pin 4): 4-Quadrant Resistor R1. Typically ±10V,
accepts up to ±25V. In 2-quadrant operation connect this
pin to ground. In 4-quadrant mode tie to ROFS (Pin 5). See
Figures 1 and 3.
ROFS (Pin 5): Bipolar Offset Resistor. Typically swings
±10V, accepts up to ±25V. In 2-quadrant operation, tie to
RFB. In 4-quadrant operation tie to R1.
RFB (Pin 6): Feedback Resistor. Normally tied to the output
of the current to voltage converter op amp. Typically
swings ±10V. Swings ±VREF.
IOUT1 (Pin 7): DAC Current Output. Tie to the inverting
input of the current to voltage converter op amp.
IOUT2F (Pin 8): Force Complement Current Output. Nor-
mally tied to ground.
IOUT2S (Pin 9): Sense Complement Current Output. Nor-
mally tied to ground.
TRUTH TABLE
Table 1
CONTROL INPUTS
CLR
WR
MLBYTE
LD
REGISTER OPERATION
0
X
Reset Input and DAC Registers to Zero Scale When CLVL = 0 and Midscale When CLVL = 1
1
0
1
Load the LSB Byte of the Input Register with All 8 Data Bits
1
Load the MSB Byte of the Input Register with All 8 Data Bits
11
X
Load the DAC Register with the Contents of the Input Register
1
X
1
No Register Operation
1
X
Flow-Through Mode. The DAC Register and the Selected Input Register Are Transparent. The Unselected Input
Register Retains Its Previous Data Byte. Note Only One Byte Is Transparent at a Time, the Selected Byte Being
Determined By the Logic Value of MLBYTE Prior to WR Being Pulsed Low.
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