HDAS-524MM [MURATA]

ADC, Proprietary Method, 12-Bit, 1 Func, 4 Channel, Parallel, Word Access, Hybrid, CDIP40, CERAMIC, DDIP-40;
HDAS-524MM
型号: HDAS-524MM
厂家: muRata    muRata
描述:

ADC, Proprietary Method, 12-Bit, 1 Func, 4 Channel, Parallel, Word Access, Hybrid, CDIP40, CERAMIC, DDIP-40

CD
文件: 总5页 (文件大小:169K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
®
®
HDAS-524, HDAS-528  
12-Bit, 400kHz, Complete Data Acquisition System  
FEATURES  
  
12-Bit resolution, 400kHz throughput  
  
8 Channels single-ended or 4 channels  
differential  
  
Miniature, 40-pin, ceramic DDIP  
  
Full scale input range from 100mV to 10V  
  
Three-state outputs  
INPUT/OUTPUT CONNECTIONS  
  
No missing codes  
PIN FUNCTION  
PIN FUNCTION  
1
CH0/CH0 HI  
CH1/CH1 HI  
CH2/CH2 HI  
CH3/CH3 HI  
CH7/CH3 LO  
CH6/CH2 LO  
CH5/CH1 LO  
CH4/CH0 LO  
COMP BIN  
RGAIN LO  
40  
39  
38  
37  
36  
35  
34  
33  
32  
31  
30  
29  
START CONVERT  
GENERAL DESCRIPTION  
2
CA2  
The HDAS-524 and HDAS-528 are complete data acquisition systems. Each  
contains an internal multiplexer, instrumentation amplifier, sample-hold,  
analog-to-digital converter and three-state outputs. Packaged in miniature,  
40-pin, double-dip packages, the HDAS-524/528 have a low power dissipation  
of 2.6 Watts.  
3
CA1  
4
CA0  
5
+5V SUPPLY  
DIGITAL GROUND  
ENABLE  
BIT 1 (MSB)  
BIT 2  
6
7
8
The HDAS-524 provides 4 differential inputs, and the HDAS-528 provides  
8 single-ended inputs. An internal instrumenta- tion amplifier is characterized  
for gains of 1, 2, 4, 8, 10 and 100. The gain range is selectable through a  
single external resistor.  
9
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
20  
BIT 3  
RGAIN HI  
BIT 4  
S/H OUT  
BIT 5  
HDAS-524/528 OPERATION  
+10V REFERENCE OUT 28  
BIT 6  
The HDAS devices accept either 8 single-ended or 4 differential input signals.  
Tie unused channels to SIGNAL GROUND, pin 14. Channel selection is  
accomplished using the multiplexer address pins as shown in Table 1. Obtain  
additional channels by connecting external multiplexers.  
SIGNAL GROUND  
GAIN ADJUST  
OFFSET ADJUST  
BIPOLAR  
27  
26  
25  
24  
23  
22  
21  
BIT 7  
BIT 8  
BIT 9  
BIT 10  
BIT 11  
BIT 12 (LSB)  
EOC  
–15V SUPPLY  
ANALOG GROUND  
+15V SUPPLY  
The acquisition time is the amount of time the multiplexer, instrumentation  
amplifier and sample-hold require to settle within a specified range of accu-  
racy. The acquisition time can be measured by how long EOC is low before  
the rising edge of the START CONVERT pulse for continuous operation. Higher  
Continued on page 3  
ꢀꢀ  
ꢀꢖ  
ꢀꢉ ꢀꢁ  
ꢀꢚ  
ꢀꢛ  
ꢘꢘꢅꢅꢅꢜꢗꢈꢅꢀꢅꢊꢓꢂꢜꢌꢅꢅ  
ꢕꢄꢖꢃꢕꢄꢖꢅꢄꢗꢅꢅꢀꢅꢅꢅ  
ꢘꢉꢅꢅꢅꢜꢗꢈꢅꢉꢅꢅ  
ꢘꢀꢅꢅꢅꢜꢗꢈꢅꢘꢅꢅ  
ꢘꢖꢅꢅꢅꢜꢗꢈꢅꢋꢅꢅ  
ꢉꢝꢅꢅꢅꢜꢗꢈꢅꢁꢅꢅ  
ꢉꢍꢅꢅꢅꢜꢗꢈꢅꢛꢅꢅ  
ꢕꢄꢀꢃꢕꢄꢀꢅꢄꢗꢅꢅꢉꢅꢅ  
ꢉꢅꢎꢅꢋꢏꢀꢅ  
ꢄꢐꢑꢂꢒꢁꢉꢋꢅ  
ꢕꢄꢉꢃꢕꢄꢉꢅꢄꢗꢅꢅꢘꢅꢅ  
ꢕꢄꢘꢃꢕꢄꢘꢅꢄꢗꢅꢅꢋꢅꢅ  
ꢕꢄꢋꢃꢕꢄꢖꢅꢙꢆꢅꢅꢍꢅꢅ  
ꢕꢄꢁꢃꢕꢄꢀꢅꢙꢆꢅꢅꢚꢅꢅ  
ꢕꢄꢛꢃꢕꢄꢉꢅꢙꢆꢅꢅꢛꢅꢅ  
ꢕꢄꢚꢃꢕꢄꢘꢅꢙꢆꢅꢅꢁ  
ꢅꢅ  
ꢓꢇꢔꢅ  
ꢅꢅ  
ꢗꢃꢑꢅ  
ꢂꢃꢄꢅ  
ꢊꢁꢉꢋꢌꢅ  
ꢊꢁꢉꢍꢌꢅ  
ꢍꢏꢀꢅ  
ꢀꢉꢒꢜꢗꢈꢅꢅ  
ꢑꢃꢐꢅ  
ꢘꢅꢂꢈꢑꢈEꢅ  
ꢆꢇꢈPꢇꢈ  
ꢄꢐꢑꢂꢒꢁꢉꢍ  
ꢉꢚꢅꢅꢅꢜꢗꢈꢅꢚꢅꢅ  
ꢉꢛꢅꢅꢅꢜꢗꢈꢅꢍꢅꢅ  
ꢉꢁꢅꢅꢅꢜꢗꢈꢅꢝꢅꢅ  
ꢉꢋꢅꢅꢅꢜꢗꢈꢅꢀꢖꢅ  
ꢉꢘꢅꢅꢅꢜꢗꢈꢅꢀꢀꢅ  
ꢂꢗGNꢑꢙꢅGRꢆꢇNꢐꢅꢀꢋ  
ꢉꢉꢅꢅꢅꢜꢗꢈꢅꢀꢉꢅꢊꢙꢂꢜꢌꢅ  
ꢘꢍ ꢘꢚ  
ꢀꢍ  
ꢀꢘ  
ꢋꢖ  
ꢉꢀ  
ꢘꢋꢅ  
ꢘꢝ  
ꢀꢝ  
ꢘꢁ  
ꢘꢛ  
ꢉꢖ  
Typical topology is shown.  
Figure 1. Functional Block Diagram  
DATEL  
11 Cabot Boulevard, Mansfield, MA 02048-1151 USA  
Tel: (508) 339-3000  
www.datel.com  
e-mail: help@datel.com  
22 Jun 2012 MDC_HDAS-524/528.B03 Page 1 of 5  
®
®
HDAS-524, HDAS-528  
12-Bit, 400kHz, Complete Data Acquisition System  
ABSOLUTE MAXIMUM RATINGS  
PARAMETERS  
+15V Supply, Pin 20  
–15V Supply, Pin 18  
PERFORMANCE  
Resolution  
Integral Nonlinearity, +25°C  
0 to +70°C  
–55 to +125°C  
Differential Nonlinearity, +25°C  
0 to +70°C  
–55 to +125°C  
F.S. Abs. Accuracy, +25°C  
0 to +70°C  
–55 to +125°C  
Unipolar Zero Error, +25°C  
Unipolar Zero Tempco  
Bipolar Zero Error, +25°C  
Bipolar Zero Tempco  
Bipolar Offset Error, +25°C  
Bipolar Offset Tempco  
Gain Error, +25°C  
Gain Tempco  
Harmonic Distortion (–FS)  
(DC to 5kHz, 10Vp-p)  
No Missing Codes  
SIGNAL TIMING  
Enable to Data Valid Delay  
MUX Address Set-up Time  
Start Convert Pulse Width  
Data Valid After  
EOC Signal Goes Low  
Conversion Time, +25°C  
0 to +70°C  
–55 to +125°C  
Throughput Rates ➀  
Gain = 1  
Gain = 2  
Gain = 4  
Gain = 8  
Gain = 10  
Gain = 100  
S/H PERFORMANCE  
Acquisition Time  
Full-Scale Step to 0.01%  
Full-Scale Step to 0.1%  
Aperture Delay  
Aperture Uncertainty  
Slew Rate  
Hold Mode Settling Time  
To 1mV  
To 10mV  
Feedthrough Rejection  
Droop Rate ➀  
POWER SUPPLIES  
Range, +15V Supply  
–15V Supply  
MIN.  
12  
TYP.  
0.13  
0.15  
0.25  
0.074  
15  
0.074  
5
0.1  
20  
MAX.  
0.75  
0.75  
1.5  
0.75  
0.75  
1
UNITS  
Bits  
LSB  
LSB  
LSB  
LSB  
LSB  
LSB  
%FSR  
%FSR  
%FSR  
%FSR  
ppm/°C  
%FSR  
ppm/°C  
%FSR  
ppm/°C  
%
MIN.  
0
0
–0.5  
–0.3  
–15  
TYP.  
MAX.  
+18  
–18  
+7  
+VDD +0.3  
+15  
UNITS  
Volts  
Volts  
Volts  
Volts  
Volts  
°C  
+5V Supply, Pin 36  
Digital Inputs, Pins 9, 34, 37-40  
Analog Inputs, Pins 1–8  
Lead Temperature (10 seconds)  
300  
0.3  
0.5  
FUNCTIONAL SPECIFICATIONS  
(Apply over the operating temperature range with ±±15 anꢀ ꢁ15 ꢂupplieꢂ unleꢂꢂ  
otherwiꢂe ꢂpecifieꢀ.)  
0.78  
0.15  
30  
0.15  
10  
0.25  
40  
0.25  
40  
ANALOG INPUTS  
Number of Inputs  
HDAS-524  
HDAS-528  
Input Voltage Ranges  
Gain = 1  
MIN.  
TYP.  
MAX.  
UNITS  
4 differential inputs  
8 single-ended inputs  
0.1  
20  
0 to +10V, 10V  
0 to +100mV, 100mV  
1, 2, 4, 8, 10, 100  
ppm/°C  
Gain = 100  
I.A. Gain Ranges  
Input Impedance  
CH On, CH Off  
–73  
–65  
dB  
Over operating temperature range  
1011  
1012  
Ohms  
Input Capacitance  
(-524) CH On, CH Off  
(-528) CH On, CH Off  
Input Bias Current  
Input Offset Current  
Input Offset Voltage  
Common Mode Voltage Range  
CMRR, G = 1, @10Hz,  
Vcm = 1Vp-p  
Voltage Noise (RMS)  
Gain = 1  
Gain = 8  
MUX Crosstalk @125kHz  
MUX ON Resistance  
Bias Current Tempco  
Offset Current Tempco  
Offset Voltage Tempco  
400  
50  
100  
10  
ns  
ns  
ns  
11  
12  
25  
200  
50  
10  
pF  
pF  
pA  
pA  
mV  
Volts  
20  
ns  
ns  
ns  
ns  
800  
850  
880  
72  
80  
dB  
400  
325  
275  
225  
175  
40  
kHz  
kHz  
kHz  
kHz  
kHz  
kHz  
–72  
200  
50  
μV  
μV  
dB  
450  
500  
Ohms  
Doubles (max.) every 10°C above +70°C  
Doubles (max.) every 10°C above +70°C  
( 30ppm/°C x gain) 20ppm/°C (max.)  
2kΩ  
RGAIN  
–50  
500  
400  
–20  
900  
750  
0
150  
ns  
ns  
ns  
ps  
V/μs  
GAIN =  
ꢁ±  
Input Gain Equation  
DIGITAL INPUTS  
Logic Levels  
Logic 1  
Logic 0  
Logic Loading  
Logic 1  
Logic 0  
OUTPUTS  
Logic Levels  
Logic 1  
Logic 0  
Logic Loading  
Logic 1  
Logic 0  
Internal Reference  
Voltage, +25°C  
Drift  
+2.0  
+0.5  
Volts  
Volts  
70  
90  
80  
100  
75  
88  
200  
150  
ns  
ns  
dB  
+5  
–600  
μA  
μA  
0.1  
100  
μV/μs  
+2.4  
+0.4  
Volts  
Volts  
+14.25  
–14.25  
+4.75  
+15.0  
–15.0  
+5.0  
+78  
–72  
+75  
2.6  
+15.75  
–15.75  
+5.25  
+90  
–82  
+95  
Volts  
Volts  
Volts  
mA  
mA  
mA  
Watts  
%FSR/%V  
+5V Supply  
Current, +15V Supply  
–15V Supply  
–160  
+6.4  
μA  
mA  
+5V Supply  
+9.9  
+10.0  
5
+10.1  
35  
1.5  
Volts  
ppm/°C  
mA  
Power Dissipation  
Power Supply Rejection  
PHYSICAL/ENVIRONMENTAL  
Oper. Temp. Range, Case  
-MC,-MC-C  
3
0.05  
External Current  
Straight binary/Offset binary  
Comp. binary/Comp. offset binary  
Output Coding  
Footnotes:  
0
+70  
°C  
°C  
°C  
°C  
-ME,-ME-C  
–40  
–55  
–65  
+100  
+125  
+150  
-MM, -MM-C, 883, -C/883  
Storage Temp. Range  
Package Type  
Specifications valid at +25°C and over the temperature ranges of 0 to +70°C,  
–40 to 100°C or –55 to +125°C.  
40-pin ceramic DDIP  
0.56 ounces (16 grams)  
Weight  
DATEL  
11 Cabot Boulevard, Mansfield, MA 02048-1151 USA  
Tel: (508) 339-3000  
www.datel.com  
e-mail: help@datel.com  
22 Jun 2012 MDC_HDAS-524/528.B03 Page 2 of 5  
®
®
HDAS-524, HDAS-528  
12-Bit, 400kHz, Complete Data Acquisition System  
gains require the use of the RGAIN resistor to increase the acquisition time.  
The gain is equal to 1 without an RGAIN resistor. Table 2 refers to the appropriate  
RGAIN resistors for various throughputs.  
CALIBRATION PROCEDURE  
1. Connect the converter per Figure 2 and Tables 2 and 3 for the appropriate  
input range. Apply a pulse of 100 nano-seconds (typical) to the START  
CONVERT input (pin 40) at a rate of 100kHz. This rate is chosen to reduce  
flicker if LED’s are used on the outputs for calibration purposes.  
2. Zero Adjustments  
The HDAS devices enter the hold mode and are ready for conversion upon  
the start convert going high. The conversion is complete within a maximum of  
800ns (+25°C). EOC returns low, the data is valid and sent to the three-state  
output buffers. The sample/hold is now ready to acquire new data.  
Apply a precision voltage reference source between the analog input and  
SIGNAL GROUND (pin 14). Adjust the output of the reference source per  
Table 3. For unipolar, adjust the zero trimming potentiometer so that the  
output code flickers equally between 0000 0000 0000 and 0000 0000  
0001 with the COMP BIN (pin 9) tied high (straight binary) or between  
1111 1111 1111 and 1111 1111 1110 with the COMP BIN (pin 9) tied low  
(complementary binary).  
TABLE 1. MUX CHANNEL ADDRESSING  
MUX ADDRESS PINS  
39  
CA2  
0
0
0
0
1
1
1
38  
CA1  
0
0
1
1
0
0
1
37  
CA0  
0
1
0
1
0
1
0
CHANNEL  
For bipolar operation, adjust the potentiometer such that the code flickers  
equally between 1000 0000 0000 and 1000 0000 0001 with COMP BIN  
(pin 9) tied high (offset binary) or between 0111 1111 1111 and 0111  
1111 1110 with COMP BIN (pin 9) tied low (complementary offset binary).  
3. Full-Scale Adjustment  
Set the output of the voltage reference used in step 2 to the value shown  
in Table 3. Adjust the gain trimming potentiometer so that the output  
code flickers equally between 1111 1111 1110 and 1111 1111 1111 or  
0000 0000 0001 and 0000 0000 0000 for complementary coding.  
4. To confirm proper operation of the device, vary the precision reference  
voltage source to obtain the output coding listed in Table 4.  
0
1
2
3
4
5
6
7
HDAS-524  
(2-BIT ADDRESS)  
HDAS-528  
(3-BIT ADDRESS)  
1
1
1
TABLE 2. INPUT RANGE PARAMETERS  
INPUT RANGE  
0 to +10V  
0 to +5V  
0 to +2.5V  
0 to +1.25V  
0 to +1V  
GAIN  
1
2
4
8
RGAIN  
OPEN  
2kΩ  
665Ω  
287Ω  
221Ω  
20Ω  
THROUGHPUT  
400kHz  
325kHz  
275kHz  
225kHz  
175kHz  
40kHz  
ꢂꢏ  
ꢐꢎꢑ  
ꢜꢝ7µꢖ  
ꢁꢝꢀµꢖ  
ꢂꢎ  
ꢈꢃꢆꢈ  
ꢀꢁ  
10  
100  
ꢙꢅ  
ꢃꢄꢅꢆ  
ꢃꢄꢅꢆ  
0 to +100mV  
ꢃꢄꢅꢆ  
ꢚꢕ  
10V  
5V  
2.5V  
1.25V  
1V  
1
2
4
8
10  
100  
OPEN  
2kΩ  
665Ω  
287Ω  
221Ω  
20Ω  
400kHz  
325kHz  
275kHz  
225kHz  
175kHz  
40kHz  
ꢀꢀ  
ꢀꢂ  
ꢐꢀꢁꢑꢇꢘꢗꢖ  
ꢁꢝꢀµꢖ  
ꢜꢝ7µꢖ  
HDAS-524/528  
ꢀꢍ  
ꢀꢎ  
100mV  
ꢔꢀꢎꢑ  
ꢒꢁꢛ  
ꢃꢄꢅꢆꢇꢄꢈꢉꢊꢋꢌ  
ꢐꢀꢎꢑ  
ꢔꢀꢎꢑ  
ꢒꢁꢛ  
2kΩ  
(GAIN –1)  
2kΩ  
RGAIN  
ꢀꢏ  
ꢀꢓ  
GAIN =  
+1  
RGAIN =  
ꢕꢖꢖꢋꢗꢌꢇꢄꢈꢉꢊꢋꢌ  
ꢐꢀꢎꢑ  
ꢜꢝ7µꢖ  
ꢜꢝ7µꢖ  
ꢔꢀꢎꢑ  
ꢁꢝꢀµꢖ  
ꢀꢍ  
TABLE 3. ZERO AND GAIN ADJUST  
ꢄꢃꢆꢈ  
ꢁꢝꢀµꢖ  
ꢒꢁ  
ZERO ADJUST  
+1/2LSB  
GAIN ADJUST  
+FS – 1 1/2LSB  
+9.9963V  
ꢐꢀꢎꢑ  
INPUT RANGE  
0 to +10V  
10V  
+1.22mV  
Figure 2. Typical Connection Diagram  
+2.44mV  
+9.9927V  
Notes:  
1. For unipolar operation, connect pin 12 to pin 17.  
2. For bipolar operation, connect pin 13 to pin 17.  
3. Position RGAIN as close as possible to pins 10 and 11.  
Use RN55C, 1% resistors.  
4. If gain and offset adjusts are not used, connect pin 15  
to ground and leave pin 16 open.  
DATEL  
11 Cabot Boulevard, Mansfield, MA 02048-1151 USA  
Tel: (508) 339-3000  
www.datel.com  
e-mail: help@datel.com  
22 Jun 2012 MDC_HDAS-524/528.B03 Page 3 of 5  
ꢇꢔꢇ  
                                                                       
ꢆꢇ  
®
®
HDAS-524, HDAS-528  
12-Bit, 400kHz, Complete Data Acquisition System  
TECHNICAL NOTES  
1. Rated performance requires using good high-frequency circuit board layout  
techniques. The analog and digital ground pins are not connected to each  
other internally. Avoid ground-related problems by connecting the analog,  
signal and digital grounds to one point, the ground plane beneath the con-  
verter. Due to the inductance and resistance of the power supply return paths,  
return the analog and digital grounds separately to the power supplies. This  
prevents contamination of the analog ground by noisy digital ground currents.  
2. Double-level multiplexing allows expanding the multiplexer channel capacity  
of the HDAS-528 from 8 single-ended channels to 128 single-ended chan-  
nels or the HDAS-524 from 4 differential channels to 32 differential channels.  
3. Obtain straight binary/offset binary output coding by tying COMP BIN (pin 9)  
to +5V or leaving it open. The device has an internal pull-up resistor on this  
pin. To obtain complementary binary or complementary offset binary output  
coding, tie pin 9 to ground. The COMP BIN signal is compatible to CMOS/TTL  
logic levels for those users desiring logic control of this function.  
4. To enable the three-state outputs, connect ENABLE (pin 34) to a logic "0"  
(low). To disable, connect pin 34 to a logic "1" (high).  
ꢀꢁꢁnsꢇminꢝ  
ꢋꢌꢄꢘꢌ  
Cꢕꢆꢑꢗꢘꢌꢇꢇ  
ꢓꢎꢁnsꢇ  
ꢗꢕCꢇ  
ꢒꢁnsꢇminꢝ  
ꢂꢎnsꢇmaxꢝꢇꢇ  
ꢂꢎns  
ꢕꢊꢌPꢊꢌ  
ꢈꢄꢌꢄꢇꢇ  
ꢀꢇꢑalidꢇ  
ꢀꢝꢓµsꢇ  
ꢆꢇꢑalidꢇ  
ꢀꢇꢑalidꢇ  
ꢗꢆꢄBꢚꢗ  
ꢗnabledꢇdataꢇꢇ  
ꢆꢇꢑalidꢇ  
ꢂꢁns  
ꢂꢁns  
ꢈisableꢇꢆꢇ  
ꢂꢁns  
Notes:  
ꢜꢁnsꢇtypical  
Cꢄꢀꢇ  
Cꢄꢁꢇ  
1. A START CONVERT pulse greater than 150ns will  
slow the throughput.  
2. Retriggering START CONVERT before EOC goes  
low will not start a new conversion.  
ꢜꢁnsꢇtypical  
3. Times shown apply over the 0 to +70°C  
operating temperature range.  
Cꢙꢁꢇꢄꢈꢈꢘꢗꢋꢋꢗꢈꢇ  
Cꢙꢀꢇꢄꢈꢈꢘꢗꢋꢋꢗꢈꢇ  
Cꢙꢒꢇꢄꢈꢈꢘꢗꢋꢋꢗꢈ  
Figure 3. HDAS-524/528 Timing Diagram  
Table 4. Output Coding  
STRAIGHT BINARY COMP. BINARY  
OUTPUT CODING  
UNIPOLAR  
SCALE  
INPUT RANGE  
0 to +10V  
INPUT RANGE  
±10V  
BIPOLAR  
SCALE  
MSB  
LSB MSB  
LSB  
+FS – 1LSB  
+7/8FS  
+3/4FS  
+1/2FS  
+1/4FS  
+1/8FS  
+1LSB  
0
+9.9976V  
+8.7500V  
+7.5000V  
+5.0000V  
+2.5000V  
+1.2500V  
+0.0024V  
0.0000V  
1111 1111 1111  
1110 0000 0000  
1100 0000 0000  
1000 0000 0000  
0100 0000 0000  
0010 0000 0000  
0000 0000 0001  
0000 0000 0000  
0000 0000 0000  
0001 1111 1111  
0011 1111 1111  
0111 1111 1111  
1011 1111 1111  
1101 1111 1111  
1111 1111 1110  
1111 1111 1111  
+9.9951V  
+7.5000V  
+5.0000V  
0.0000V  
–5.0000V  
–7.5000V  
–9.9951V  
–10.0000V  
+FS – 1LSB  
+3/4FS  
+1/2FS  
0
–1/2FS  
–3/4FS  
–FS + 1LSB  
–FS  
OFFSET BINARY  
COMP. OFF. BINARY  
DATEL  
11 Cabot Boulevard, Mansfield, MA 02048-1151 USA  
Tel: (508) 339-3000  
www.datel.com  
e-mail: help@datel.com  
22 Jun 2012 MDC_HDAS-524/528.B03 Page 4 of 5  
®
®
HDAS-524, HDAS-528  
12-Bit, 400kHz, Complete Data Acquisition System  
Mechnical Dimensions  
INCHES (mm)  
40-PIN DDIP  
Dimension Tolerances (uꢠꢡꢢꢣꢣ oꢤhꢢrwꢥꢣꢢ ꢥꢠꢦꢥꢧꢨꢤꢢꢦ):  
2 ꢩꢡꢨꢧꢢ ꢦꢢꢧꢥꢪꢨꢡ (.XX) 0.010 ( 0.254)  
2.12 MAX.  
(53.85)  
3 ꢩꢡꢨꢧꢢ ꢦꢢꢧꢥꢪꢨꢡ (.XXX) 0.005 ( 0.12ꢟ)  
Lead Material: Kovꢨr ꢨꢡꢡoꢫ  
40  
1
21  
20  
Lead Finish: 50 ꢪꢥꢧroꢥꢠꢧhꢢꢣ (ꢪꢥꢠꢥꢪuꢪ) goꢡꢦ ꢩꢡꢨꢤꢥꢠg  
ovꢢr 100 ꢪꢥꢧroꢥꢠꢧhꢢꢣ (ꢠoꢪꢥꢠꢨꢡ) ꢠꢥꢧkꢢꢡ ꢩꢡꢨꢤꢥꢠg  
0.80 MAX.  
(20.32)  
0.100 TYꢞ.  
(2.540)  
1.900 0.008  
(48.260)  
0.245 MAX.  
(6.223)  
ꢞIN 1 INDEX  
(
ON TOꢞ)  
0.200 MAX.  
(5.080)  
0.012 0.003  
(0.305)  
0.210 MAX.  
(5.334)  
0.100  
0.100  
(2.540)  
0.018 0.002  
(0.45ꢟ)  
(2.540)  
0.600 0.010  
(15.240)  
SEATING  
0.040  
(10.160)  
ꢞLANE  
0.025  
(0.635)  
ORDERING INFORMATION  
Model No.  
Input  
4D Channels  
Operating Temp. Range  
0 to +70°C  
0 to +70°C  
-40 to +100°C  
-40 to +100°C  
-55 to +125°C  
-55 to +125°C  
-55 to +125°C  
-55 to +125°C  
0 to +70°C  
RoHS Compliance  
Non-RoHS  
RoHS  
Non-RoHS  
RoHS  
Non-RoHS  
RoHS  
Non-RoHS  
RoHS  
Non-RoHS  
RoHS  
Non-RoHS  
RoHS  
Non-RoHS  
RoHS  
Non-RoHS  
RoHS  
HDAS-524MC  
HDAS-524MC-C  
HDAS-524ME  
4D Channels  
4D Channels  
4D Channels  
4D Channels  
4D Channels  
4D Channels  
4D Channels  
8D Channels  
8D Channels  
8D Channels  
8D Channels  
8D Channels  
8D Channels  
8D Channels  
9D Channels  
ISO 9001  
R E G I S T E R E D  
HDAS-524ME-C  
HDAS-524MM  
HDAS-524MM-C  
HDAS-524/883  
HDAS-524-C/883  
HDAS-528MC  
HDAS-528MC-C  
HDAS-528ME  
HDAS-528ME-C  
HDAS-528MM  
HDAS-528MM-C  
HDAS-528/883  
HDAS-528-C/883  
0 to +70°C  
-40 to +100°C  
-40 to +100°C  
-55 to +125°C  
-55 to +125°C  
-55 to +125°C  
-55 to +125°C  
Receptacle for PC board mounting can be ordered through AMP Inc.,  
Part #3-331272-8 (Component Lead Socket), 40 required.  
Contact DATEL for MIL-STD-883 product specifications.  
DATEL  
. makes no representation that the use of its products in the circuits described herein, or the use of other  
technical information contained herein, will not infringe upon existing or future patent rights. The descriptions contained herein do not  
imply the granting of licenses to make, use, or sell equipment constructed in accordance therewith. Specifications are subject to change  
without notice.  
11 Cabot Boulevard, Mansfield, MA 02048-1151 USA  
ITAR and ISO 9001/14001 REGISTERED  
www.datel.com • e-mail: help@datel.com  
22 Jun 2012 MDC_HDAS-524/528.B03 Page 5 of 5  

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