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MX581JCSAMAXIMN/a10avaiHigh Precision 10 Volt Reference
MX581KCSAMAXIM ?N/a26avaiHigh Precision 10 Volt Reference
MX581SHMAXIM,MAXIMN/a25000avaiHigh Precision 10 Volt Reference


MX581SH ,High Precision 10 Volt ReferenceFeatures =10mV Tolerance (MX581 K) Low Tempco - t5ppmPC Max. (MX581K) No External Components or ..
MX584JCSA ,Pin Programmable Precision Voltage ReferenceELECTRICAL CHARACTERISTICS (VIN = +15V, TA = +25°C, unless otherwise noted.) PARAMETER SYMBOL ..
MX584JESA ,Pin Programmable Precision Voltage Reference19-1115; Rev f, 8/96 lVI/JXI/Vl Pin Programmable Precision Voltage Reference
MX584JN ,Pin Programmable Precision Voltage ReferenceGeneral Description Maxim's MX584 is a temperature compensated, bandgap voltage reference which ..
MX584KCSA ,PIN PROGRAMMABLE PRECISION VOLTAGE REFERENCEFeatures ' Programmable Outputs of: +10.0V, +7.5V, +5.0V, +2.5V O t10mV Tolerance at +10V (M ..
MX584KESA ,PIN PROGRAMMABLE PRECISION VOLTAGE REFERENCEApplications CMOS DAC Reference A/D Converter Reference Measurement Instrumentation Data ..
NDP5060 ,N-Channel Enhancement Mode Field Effect TransistorElectrical Characteristics (T = 25°C unless otherwise noted)CSymbol Parameter Conditions Min Typ Ma ..
NDP6020 ,N-Channel Logic Level Enhancement Mode Field Effect TransistorGeneral DescriptionLogic Level Enhancement Mode Field Effect Transistor / NDB6020 NDP6020 (TCV µ A ..
NDP6020P ,P-Channel Logic Level Enhancement Mode Field Effect TransistorElectrical Characteristics (T = 25°C unless otherwise noted)CI ASI AV V I VV t FFAI°Rθ°RθNote:<NDP6020P. ,P-Channel Logic Level Enhancement Mode Field Effect TransistorGeneral Description Enhancement Mode Field Effect Transistor / NDB6020P NDP6020P September (T = 2 ..
NDP6030L ,N-Channel Logic Level Enhancement Mode Field Effect TransistorGeneral Description N-Channel Logic Level Enhancement Mode Field Effect Transistor NDP6030L / NDB60 ..
NDP603AL ,N-Channel Logic Level Enhancement Mode Field Effect TransistorFeaturesThese N-Channel logic level enhancement mode power25A, 30V. R = 0.022Ω @ V =10V.DS(ON) GSf ..


MX581JCSA-MX581KCSA-MX581SH
High Precision 10 Volt Reference
19-1114;Rev1iM)6 2filALiT2'aLfildi]
High Precision " Volt Referem
General Descfiption Features
Maxim's MX581 is a three-terminal, temperature compen- ' t10mV Tolerance (MX581K)
sated, band-gap voltage reference which provides a pre-
Cise'10.00V output from an unregulated input of 12.5V to . Low Tempco -ttippmPC Max. (MX681K)
30V. Laser trimming is used to minimize initial error and , No External Components or Trims
temperature drift, to as low as 10mV and 15ppml°C with . .
the MX581. ' Short Circuit Proof
No external components are needed to acheive full accu- ' Output Sources and Slnks Current
racy over the operating temperature range. Total supply
current to the device, including the internal output buffer . 10mA Output Current
amplifier, is typicaliy 750gA. t Low Supply Current - 1.0mA Max.
The MX581 is designed for use with 8 to 14 bit A/D and . Three-Terminal Package
D/A converters as well as data-acquisition systems. The
reference is available in a 3-pin TO-39 metal can and an
8- lead small-outline surface-mount package. Ordering Information
" " PART TEMP. RANGE PlN-PACKAGE ERROR
Applications MX581JH 0°C to +70°C a TO-39 Can t30trN
MX581KH 0°C to +70°C 3 TO-39 Can t10mV
MX581JCSA 0°C to +70°C 8 so t30mV
MX581KCSA 0°C to +70°c 8 so t10mV
CMOS DAC Reference MX581JESA MC'C to +85°C s so t30rttV
A/D Converter Reference MX581KESA -40°C to +85°C 8 so 21OmV
Measurement Instru mentation MX581SH -55°C to +125°C 3 TO-39 Can t20mV
MX581TH -55°c to +125°c 3 TO-39 Can t10ttN
Threshold Detectors MX581UH -55°C to +125''C 3 TO-39 Can 15rrN
Precision Analog Systems
Typical Operating Circuit - Pin Confltturttthtntt
Bottom View
p------ +tiN
C.-.;,:,:,-,:',: -liy Top View v
MAX400 MW 1 E W,
M. [Ci Cr] "
:10 Volt Reference " II MX581 E "
sun E E! "
8 Lead Small Outline
MAXIM _ H Maxlm Integrated Products 1
Call to" free 1-800-998-8800 for free samples or literature.
MX5811
High Precision " Volt Reference
ABSOLUTE MAXIMUM RATINGS
Input Voltage VIN to GND .......................................... ALN, +40V
Power Dissipation
,,,, 65°C to +175°C
............ +300°C
Storage Temperature Range -N.-..F.FF-.W.
Lead Temperature (soldering, 10sec)
TO-M Can (aerate 6.7mW/°C above +60°C.... 1...600mw Die Junction Temperature (Tj) ............ .-55°C to +150°C
SO (derate 5.3mW/°C above +75°C) .m.. .400mW Thermal Resistance, Junction to Ambient
Output Short-Circuit Duration (Note 1) ............ Indefinite TO-N Can ................................................................. 150°C/W
Operating Temperature Rang SO .............................................................................. 170°CIW
Commercial (J, K) ..... ..__ ..... 0''C to +70°C
Extended (d, K) _.. M0% to +85°C
Military (S, T, U)...
....-55°C to +125°C
Stresses abovs than Hated under "Absolutly Maximum Ratings" may cause pttrrmtrttrrtt damage to ma device. These are arms ratings only and functional
operation of tho dance at (hose or any other condition: above those indicated in the operational suction: of the specifications a not implied. Exposure to
nbsoluu maximum raring conditions for extandad periods may affect device rsliabmry
ELECTRICAL CHARACTERISTICS
(VIN = A 15V, TA = +25°C, unless otherwise noted.)
PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS
MX581J/S t30
Output Voltage Tolerance IL = OmA MX581K/T s30 mV
MX581 U "
MX581JH/JCSA 13.5
MX581JESSA (30)
MX581KH/KCSA $1.3
Output Voltage Change with 13 V
Temperature. MX581KESA (20) ( FC)
(Temperature Coefficient) 30 pp
MX581S (30)
MX581T (15)
MX581U (10)
+12.5V Line Regulation No load 0 0'02 ($0,)
+15V < VIN < +30V (3.0)
. - 20 50 ppm/mA
Load Regulation L - OmA to 5mA (220) (550) (pV/mA)
Quiescent Supply Current IQ IL = OmA 750 1000 HA
Turn-on Setting Time to 0.1% tON 200 ps
Noise Enp-p 0.1HZ to 10Hz 50 qu-p
Long-Term Stability (Non-cumulative) 25 ppm/kHrs
Short-Circuit Current Isc 30 mA
TA = +25°C 10
Source
0 t t V V TMIN to TMAX 5
u pu IN > OUT +
Current IL 2SV TMIN to TMAX MXSBHIK 5 mA
Sink MX581S/T/U 0.2
-55°C to +85°C MX581SIT/U 5
Note l; Absolute maximum power dissipation must not be exceeded.
2 lVl/lXI/Vl
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