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DAC-88GM-2-C bảng dữ liệu(PDF) 2 Page - DATEL, Inc.

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Giải thích chi tiết về linh kiện  High-Performance, 12-Bit DACs with Input Registers
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nhà sản xuất  DATEL [DATEL, Inc.]
Trang chủ  http://www.datel.com/
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DAC-88GM-2-C bảng dữ liệu(HTML) 2 Page - DATEL, Inc.

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DATEL, Inc. 11 Cabot Boulevard, Mansfield, MA 02048-1151 USA • Tel: (508) 339-3000 • www.datel.com • e-mail: help@datel.com
DAC-88 Series
High-Performance, 12-Bit DACs with Input Registers
MDA_DAC-88.A01 Page 2 of 6
FUNCTIONAL SPECIFICATIONS
(Typical at +25°C and ±15V and +5V supplies unless otherwise noted.)
ABSOLUTE MAXIMUM RATINGS
PARAMETERS
LIMITS
UNITS
Positive Supply,
Pin 22
+18 Volts
Negative Supply,
Pin 14
–18 Volts
Logic Supply,
Pin 13
+5.25 Volts
Digital Input Voltage,
Pins 1–12 & 19
+5.5 Volts
Output Current,
Pin 15
±20 mA
Lead Temperature
(soldering, 10s)
300 °C
DESCRIPTION
INPUTS
Resolution
12 bits
Coding, Unipolar Output
Straight binary
Coding, Bipolar Output
Offset binary, two’s complement
Input Logic Level, Bit ON ("1")
+2.0V to +5.5V
Input Logic Level, Bit OFF ("0")
0V to +0.8V
Logic Loading
1 LSTTL load
Load Input
High (“1”) = hold data
Low (“0”) = transfer data
Load Input Loading
3 LSTTL loads
PERFORMANCE ➃
Nonlinearity Error, max.
±1/2LSB
Differential Nonlinearity Error, max.
±3/4LSB
Gain Error, Before Trimming
±0.1%
Zero Error, Before Trimming
±0.1% of FSR
Gain Tempco, max.
±20ppm/°C
Zero Tempco, Unipolar, max.
±5ppm/°C of FSR
Offset Tempco, Bipolar, max.
±10ppm/°C of FSR
Diff. Nonlinearity Tempco, max.
±2ppm/°C of FSR
Monotonicity
Guaranteed over temperature
Settling Time, 10V Change
3μs
Settling Time, 20V Change
4μs
Settling Time, 1LSB Change
800ns
Slew Rate
±20V/μs
Power Supply Rejection
±0.002%FSR/%
OUTPUTS
Output Voltage Ranges, Unipolar
0 to +10V
Output Voltage Ranges, Bipolar
±5V
±10V
Output Current
±5mA min.
Output Impedance
0.05Ω
POWER REQUIREMENTS
Power Supply Voltages
+15V, ±0.5V at 10mA
–15V, ±0.5V at 20mA
+5V, ±0.25V at 50mA
PHYSICAL/ENVIRONMENTAL
Operating Temperature Range, Case
0°C to +70°C ( MC,MC-C)
-40°C to +100°C (ME,ME-C)
–55°C to +125°C
(MM, MM-C, 883,-C/883)
Storage Temperature Range
–65°C to +125°C
Package Type
24-pin DDIP
Weight
0.22 ounces (6.3 grams)
Footnotes:
➀ For two’s complement coding, order the "-2" model as described in
Ordering Information.
➁ Logic levels are the same as for data inputs.
➂ Initial errors are trimmable to zero. See Connection Diagram.
➃ FSR is full scale range and is 10V for 0 to +10V output range, 20V for ±10V
output range, etc.
➄ By external pin connection.
➅ For ±12V, +5V operation, contact factory.
TECHNICAL NOTES
1. It is recommended that these converters be operated with local supply
bypass capacitors of 1μF (tantalum type) at the +15V, –15V and +5V supply
pins. The capacitors should be connected as close to the pins as possible. In
high RFI noise environments, these capacitors should be shunted with 0.01μF
ceramic capacitors.
2. The analog, digital and power grounds should be separated from each other
as close as possible to pin 21 where they all must come together.
3. The “load” control pin is a level-triggered input which causes the register to
hold data with a high input and transfer data to the DAC with a low input.
4. A setup time of 40ns minimum must be allowed for the input data. The DAC
output voltage begins to change when the register output changes.
CALIBRATION PROCEDURE
Select the desired output voltage range and connect the converter as shown
in the Output Range Selection Table and the Connection Diagrams. Refer to
the Coding Tables.
Unipolar Operation
1. Offset Adjustment. Set the input digital code to 1111 1111 1111 and
adjust the Offset ADJ. potentiometer to give 0.0000V output.
2. Gain Adjustment. Set the input digital code to 0000 0000 0000 (straight
binary) and adjust the GAIN ADJ. potentiometer to give the full-scale
output voltage shown in Table 1.
Bipolar Operation
1. Offset Adjustment. Set the digital input code to 1111 1111 1111 (offset
binary) or 0111 1111 1111 (two’s complement) and adjust the OFFSET
ADJ. potentiometer to give the negative full-scale output voltage shown in
Table 2.
2. Gain Adjustment. Set the digital input code to 0000 0000 0000 (offset
binary) or 1000 0000 0000 two’s complement) and adjust the GAIN ADJ.
potentiometer to give the positive full-scale output voltage shown in Table 2.


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