DAC-08 ONSEMI | Alldatasheet
Document overview
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Technical content
Features
- Fast Settling Output Current − 70 ns
- Full-Scale Current Prematched to /C00341.0 LSB
- Direct Interface to TTL, CMOS, ECL, HTL, PMOS
- Relative Accuracy to 0.1% Maximum Overtemperature Range
- High Output Compliance −10 V to +18 V
- True and Complemented Outputs
- Wide Range Multiplying Capability
- Low FS Current Drift − /C003410ppm/°C
- Wide Power Supply Range − /C00344.5 V to /C003418 V
- Low Power Consumption − 37 mW at /C00345.0 V
- Pb−Free Packages are Available*
Applications
- 8-Bit, 1.0 /C0109s A-to-D Converters
- Servo-Motor and Pen Drivers
- Waveform Generators
- Audio Encoders and Attenuators
- Analog Meter Drivers
- Programmable Power Supplies
- CRT Display Drivers
- High-Speed Modems
- Other Applications where Low Cost, High Speed and Complete Input/Output V ersatility are Required
- Programmable Gain and Attenuation
- Analog-Digital Multiplication *For additional information on our Pb−Free strategy and soldering details, please download the ON Semiconductor Soldering and Mounting Techniques Reference Manual, SOLDERRM/D. http://onsemi.com See detailed ordering and shipping information in the package dimensions section on page 13 of this data sheet.
ORDERING INFORMATION
SOIC−16 D SUFFIX CASE 751B PDIP−16 N SUFFIX CASE 648 8 9 N Package D Package* 8 9 V LC IO IO B1 (MSB) COMPEN VREF− VREF+ B 8 (LSB) VREF+ VREF− COMPEN VLC IO IO B8 (LSB) B1 (MSB) (T op View) (T op View) *SO and non−standard pinouts. See general marking information in the device marking section on page 13 of this data sheet. DEVICE MARKING INFORMATION
Figure 1. Block Diagram may occur and reliability may be affected.
- Derate above 25 °C, at the following rates: N package at 13.3 mW/ °C
DAC−08 SERIES http://onsemi.com DC ELECTRICAL CHARACTERISTICS Pin 3 must be at least 3.0 V more negative than the potential to which R15 is returned. VCC = /C003415 V , IREF = 2.0 mA. Output characteristics refer to both IOUT and IOUT unless otherwise noted. Tamb = 0°C to 70°C. Characteristic Symbol Test Conditions DAC−08C DAC−08E UnitMin Typ Max Min Typ Max Relative Accuracy − Overtemperature Range Differential Non-Linearity − − /C00340.78 − − /C00340.39 Full-Scale Tempco TCIFS − − /C003410 − − /C003410 − ppm/°C Output Voltage Compliance VOC Full-Scale Current Change < 1/2LSB Full-Scale Current IFS4 VREF = 10.000 V; R14, R15 = 5.000 k/C0087 Full-Scale Symmetry IFSS IFS4-IFS2 − /C00342.0 /C003416 − /C00341.0 /C00348.0 /C0109A Zero-Scale Current IZS − − 0.2 4.0 − 0.2 2.0 /C0109A Full-Scale Output Current Range IFSR R14, R15 = 5.000 k/C0087 VREF = +15 V, V− = −10 V 2.1 − − 2.1 − − mA VREF = +25 V, V− = −12 V 4.2 − − 4.2 − − mA Logic Input Levels VLC = 0 V V Low VIL − − 0.8 − − 0.8 High VIH 2.0 − − 2.0 − − Logic Input Current VLC = 0 V /C0109A Low IIL VIN = −10 V to +0.8 V − −2.0 −10 − −2.0 −10 High IIH VIN = 2.0 V to 18 V − 0.002 10 − 0.002 10 Logic Input Swing VIS V− = −15 V −10 − +18 −10 − +18 V Logic Threshold Range VTHR VS = /C003415 V −10 − +13.5 −10 − +13.5 V Reference Bias Current I15 − − −1.0 −3.0 − −1.0 −3.0 /C0109A Reference Input Slew Rate dl/dt − 4.0 8.0 − 4.0 8.0 − mA//C0109s Power Supply Sensitivity IREF = 1.0 mA Positive PSSIFS+ V+ = 4.5 to 5.5 V, to 16.5 V, V− = −15 V − 0.0003 0.01 − 0.0003 0.01 %FS/ %VS Negative PSSIFS− V− = −4.5 to −5.5 V, V+ = +15 V; V+ = +15 V %VS Power Supply Current mA Positive I+ VS = /C00345.0 V, IREF = 1.0 mA Negative I− − −4.3 −5.8 − −4.3 −5.8 Positive I+ VS = +5.0 V, −15 V, IREF = 2.0 mA Negative I− − −7.1 −7.8 − −7.1 −7.8 Positive I+ VS = /C003415 V, IREF = 2.0 mA Negative I− − −7.2 −7.8 − −7.2 −7.8 Power Dissipation PD /C00345.0 V, IREF = 1.0 mA +5.0 V, −15 V, IREF = 2.0 mA /C003415 V, IREF = 2.0 mA − 37 48 − 37 48 mW − 122 136 − 122 136 − 156 174 − 156 174
DAC−08 SERIES http://onsemi.com DC ELECTRICAL CHARACTERISTICS (continued) Pin 3 must be at least 3.0 V more negative than the potential to which R15 is Characteristic Symbol Test Conditions DAC−08H UnitMin Typ Max Resolution − − 8.0 8.0 8.0 Bits Monotonicity 8.0 8.0 8.0 Relative Accuracy − Overtemperature Range − − /C00340.1 %FS Differential Non-Linearity − − /C00340.19 %FS Full-Scale Tempco TCIFS − − /C003410 /C003450 ppm/°C Output Voltage Compliance VOC Full-Scale Current Change 1/2LSB −10 − +18 V Full-Scale Current IFS4 VREF = 10.000 V, R14, R15 = 5.000 k/C0087 1.984 1.992 2.000 mA Full-Scale Symmetry IFSS IFS4−IFS2 − /C00341.0 /C00344.0 /C0109A Zero-Scale Current IZS − − 0.2 1.0 /C0109A Full-Scale Output Current Range IFSR R14, R15 = 5.000 k/C0087 VREF = +15 V, V− = −10 V 2.1 − − mA VREF = +25 V, V−=−12 V 4.2 − − mA Logic Input Levels VLC = 0 V V Low VIL − − 0.8 High VIH 2.0 − − Logic Input Current VLC = 0 V /C0109A Low IIL VIN = −10 V to +0.8 V − −2.0 −10 High IIH VIN = 2.0 V to 18 V − 0.002 10 Logic Input Swing VIS V− = −15 V −10 − +18 V Logic Threshold Range VTHR VS = /C003415 V −10 − +13.5 V Reference Bias Current I15 − − −1.0 −3.0 /C0109A Reference Input Slew Rate dl/dt − 4.0 8.0 − mA//C0109s Power Supply Sensitivity IREF = 1.0 mA Positive PSSIFS+ V+ = 4.5 to 5.5 V, V− = −15 V; Negative PSSIFS− V− = −4.5 to −5.5 V, V+ = +15 V; Power Supply Current mA Positive I+ VS = /C00345.0 V, IREF = 1.0 mA − 3.1 3.8 Negative I− − −4.3 −5.8 Positive I+ VS = +5.0 V, −15 V, IREF = 2.0 mA − 3.1 3.8 Negative I− − −7.1 −7.8 Positive I+ VS = /C003415 V, IREF = 2.0 mA − 3.2 3.8 Negative I− − −7.2 −7.8 Power Dissipation PD /C00345.0 V, IREF = 1.0 mA − 37 48 mW +5.0 V, −15 V, IREF = 2.0 mA − 122 136 /C003415 V, IREF = 2.0 mA − 156 174
Figure 23. Typical Application ground, but using VEE increases negative supply rejection. voltage equal to the peak positive input level at Pin 15.
5.0 V supply which drives logic is to be used as the
diode is recommended between Pin 14 and ground. compensated, decreasing the overall bandwidth.
8.0 V more positive than the negative supply when the
which would cause serious accuracy degradation. with higher reference currents. change in the absolute accuracy of output current. current drift over the operating temperature range. /C0034LSB at +25°C at a full-scale output current of 1.992 mA.
Figure 28. Unipolar Voltage Output for High Impedance Output
1 B2 B3 B4 B5 B6 B7 B8 VOUT VOUT
Figure 29. Basic Bipolar Output Operation (Offset Binary)
DAC−08 SERIES http://onsemi.com Device Description Temperature Range Shipping† DAC−08ED 16−Pin Plastic Small Outline Package 0 to +70°C 48 Units/Rail DAC−08EDG 16−Pin Plastic Small Outline Package (Pb−Free) 0 to +70°C 48 Units/Rail DAC−08EDR2 16−Pin Plastic Small Outline Package 0 to +70°C 2500 Tape & Reel DAC−08EDR2G 16−Pin Plastic Small Outline Package (Pb−Free) 0 to +70°C 2500 Tape & Reel DAC−08CN 16−Pin Plastic Dual In−Line Package 0 to +70°C 25 Units/Rail DAC−08CNG 16−Pin Plastic Dual In−Line Package (Pb−Free) 0 to +70°C 25 Units/Rail DAC−08EN 16−Pin Plastic Dual In−Line Package 0 to +70°C 25 Units/Rail DAC−08ENG 16−Pin Plastic Dual In−Line Package (Pb−Free) 0 to +70°C 25 Units/Rail DAC−08HN 16−Pin Plastic Dual In−Line Package 0 to +70°C 25 Units/Rail †For information on tape and reel specifications, including part orientation and tape sizes, please refer to our Tape and Reel Packaging Specification Brochure, BRD8011/D. MARKING DIAGRAMS SOIC−16 D SUFFIX CASE 751B PDIP−16 N SUFFIX CASE 648 A = Assembly Location WL = Wafer Lot YY , Y = Year WW = Work Week G = Pb−Free Package DAC−08EDG AWLYWW DAC−08CN AWLYYWWG DAC−08EN AWLYYWWG DAC−08HN AWLYYWWG
DAC−08 SERIES http://onsemi.com PACKAGE DIMENSIONS SOIC−16 D SUFFIX CASE 751B−05 ISSUE J NOTES: 1. DIMENSIONING AND TOLERANCING PER ANSI Y14.5M, 1982. 2. CONTROLLING DIMENSION: MILLIMETER. 3. DIMENSIONS A AND B DO NOT INCLUDE MOLD PROTRUSION. 4. MAXIMUM MOLD PROTRUSION 0.15 (0.006) PER SIDE. 5. DIMENSION D DOES NOT INCLUDE DAMBAR PROTRUSION. ALLOWABLE DAMBAR PROTRUSION SHALL BE 0.127 (0.005) TOTAL IN EXCESS OF THE D DIMENSION AT MAXIMUM MATERIAL CONDITION. 16 9 SEATING PLANE F JM R X 45/C0095 G
8 PLP−B−
−A− M0.25 (0.010) B S −T− D K C 16 PL SBM0.25 (0.010) A ST DIM MIN MAX MIN MAX INCHESMILLIMETERS A 9.80 10.00 0.386 0.393 B 3.80 4.00 0.150 0.157 C 1.35 1.75 0.054 0.068 D 0.35 0.49 0.014 0.019 F 0.40 1.25 0.016 0.049 G 1.27 BSC 0.050 BSC J 0.19 0.25 0.008 0.009 K 0.10 0.25 0.004 0.009 M 0 7 0 7 P 5.80 6.20 0.229 0.244 R 0.25 0.50 0.010 0.019 /C0095/C0095/C0095/C0095 PDIP−16 N SUFFIX CASE 648−08 ISSUE T NOTES: 1. DIMENSIONING AND TOLERANCING PER ANSI Y14.5M, 1982. 2. CONTROLLING DIMENSION: INCH. 3. DIMENSION L TO CENTER OF LEADS WHEN FORMED PARALLEL. 4. DIMENSION B DOES NOT INCLUDE MOLD FLASH. 5. ROUNDED CORNERS OPTIONAL. −A− B F C S H G D J L M 16 PL SEATING 916 K PLANE−T− MAM0.25 (0.010) T DIM MIN MAX MIN MAX MILLIMETERSINCHES A 0.740 0.770 18.80 19.55 B 0.250 0.270 6.35 6.85 C 0.145 0.175 3.69 4.44 D 0.015 0.021 0.39 0.53 F 0.040 0.70 1.02 1.77 G 0.100 BSC 2.54 BSC H 0.050 BSC 1.27 BSC J 0.008 0.015 0.21 0.38 K 0.110 0.130 2.80 3.30 L 0.295 0.305 7.50 7.74 M 0 10 0 10 S 0.020 0.040 0.51 1.01 /C0095/C0095/C0095/C0095 ON Semiconductor and are registered trademarks of Semiconductor Components Industries, LLC (SCILLC). SCILLC reserves the right to make changes without further notice to any products herein. SCILLC makes no warranty, representation or guarantee regarding the suitability of its products for an y particular purpose, nor does SCILLC assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, in cluding without limitation special, consequential or incidental damages. “Typical” parameters which may be provided in SCILLC data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including “Typicals” must be validated for each customer application by customer’s technical experts. SCILLC does not convey any license under its patent rights nor the rights of others. SCILLC products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other applications intended to support or sustain life, or for any other application in which the failure of the SCILLC product could create a situation where personal injury or death may occur. Should Buyer purchase or use SCILLC products for any such unintended or unauthorized application, Buyer shall indemnify and hold SCILLC and its officers, employees, subsidiaries, affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney f ees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that SCILLC was negligent regarding the design or manufacture of the part. SCILLC is an Equal Opportunity/Affirmative Action Employer. This literature is subject to all applicable copyright laws and is not for resale in any manner. PUBLICATION ORDERING INFORMATION N. American Technical Support: 800−282−9855 Toll Free USA/Canada Japan: ON Semiconductor, Japan Customer Focus Center 2−9−1 Kamimeguro, Meguro−ku, Tokyo, Japan 153−0051 Phone: 81−3−5773−3850 DAC−08/D LITERATURE FULFILLMENT: Literature Distribution Center for ON Semiconductor P.O. Box 61312, Phoenix, Arizona 85082−1312 USA Phone: 480−829−7710 or 800−344−3860 Toll Free USA/Canada Fax: 480−829−7709 or 800−344−3867 Toll Free USA/Canada Email: orderlit@onsemi.com ON Semiconductor Website: http://onsemi.com Order Literature: http://www.onsemi.com/litorder For additional information, please contact your local Sales Representative.