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MX7545AKCWPMAXIMN/a7avaiCMOS 12-Bit Buffered Multiplying DACs
MX7545AKNMAXIMN/a6avaiCMOS 12-Bit Buffered Multiplying DACs
MX7545ALNMAXIMN/a4avaiCMOS 12-Bit Buffered Multiplying DACs
MX7545ALPMAXIM ?N/a238avaiCMOS 12-Bit Buffered Multiplying DACs
MX7545ALPMAXIMN/a728avaiCMOS 12-Bit Buffered Multiplying DACs
MAX7545AKCWPMAXN/a2avaiCMOS 12-BIT BUFFERED MULTIPLYING DACs
MAX7545ALPMAXIMN/a2avaiCMOS 12-BIT BUFFERED MULTIPLYING DACs


MX7545ALP ,CMOS 12-Bit Buffered Multiplying DACs19-0878; Rev 1; W96 lVI/J X I/Vl CMOS 12-Bit Buffered Multiplying DACs
MX7545ALP ,CMOS 12-Bit Buffered Multiplying DACsELECTRICAL CHARACTERISTICS-FSA (Va, = HN, Vrer = +1ov, Vour = ov. AGND = DGND. Ta = T...N to TMAX ..
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MX7545JN ,CMOS 12-Bit Buffered Multiplying DACFeatures . 12-Bit Resolution . i1 LSB Gain Accuracy (G Grade) . Single Supply Operation ..
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MAX7545AKCWP-MAX7545ALP-MX7545AKCWP-MX7545AKN-MX7545ALN-MX7545ALP
CMOS 12-BIT BUFFERED MULTIPLYING DACs
19-0878; Rev 1; 8/96
General Description
The MX7545A and MAX7645, 12-bit CMOS multiplying
digitaI-to-analog converters (DAG) with internal data
latches, are improved versions of the industry stand-
ard MX7545. The MX7545A features a 100ns max write
pulse width (150ns for MAX7645) which allows inter-
facing to a wide range of fast 8- and 16-bit
microprocessors.
The MX7545A/MM7645_ige loaded by a single_12-bit
w_ide word when CS and WR are both low. The CS and
WR inputs can be connected low making the input
data latches transparent and allowing unbuffered
operation of these DACs.
The MX7545A is specified both with a single +5V and
+15V power supply. With a +5V supply, the digital
inputs are TTL and +5V-CMOS compatible while high
voltage CMOS compatibility is maintained with a +15V
supply. The MAX7645 is TTL and CMOS compatible
with a +15V supply.
Maxim MX7545A and MAX7645 use low tempco thin-
film resistors laser trimmed to :1/4LSB linearity and
better than 1-ILSB gain accuracy. The digital inputs
have improved protection against electrostatic dis-
charge (ESD) damage and can typically withstand
over 6,000V of ESD voltage.
Both the MX7545A and the MAX7645 are supplied in
20-lead narrow DIP, surface mount Small Outline and
PLCC packages.
Applications
Motion Control Systems
Automatic Test Equipment
pp Controlled Systems
Programmable Gain Amplifiers
Programmable Power Supplies
Typical Operating Circuit
MAXIM R
MX7545A 1 Gun
v 19 MAX7645 12-BIT -
REF MULTIPLYING DAC 2 AGND
vi 11 J2, VDD
cs 11:D°_" INPUT DATA LATCHES .3 DGND
(PINS 4-15)
AMLA] 2'C l] 21y'll
CMO§ 1l2-lBiit Buffered Multiplying Diflgths
Features
Fast interface Timing
All Grades 12-Bit Accurate
MX7545A - TTLICMOS Compatible for VDD = 5V
CMOS Compatible for VDD = 15V
MAX7645 - TTLICMOS Compatible for VDD = 15V
Small Footprint Packages
' Improved ESD Protection
Improved Versions of MX7545
Gain Accuracy to tl LSB Max.
Ordering Information
PART TEMP. RANGE PACKAGE ERROR
MX7545ALN 0°C to +70°C Plastic DIP tl LSB
MX7545AKN 0°C to +70°C Plastic DIP 13 LSB
MX7545ALCWP (PC to +70°C Wide so tl LSB
MX7545AKCWP 0°C to +70°C Wide so t3 LSB
MX7545AK/D 0°C to +70°C Dice t3 LSB
MX7545ALP 0°C to +70°C PLCC tl LSB
MX7545AKP 0°C to +70°C PLCC 13 LSB
MX7545AKEWP -40°C to +85°C Wide SO " LSB
MX7545ACQ M(y'C to +85°C CERDIP tl LSB
MX7545ABQ -40°C to +85°C CERDIP s3 LSB
MX7545AUQ -55°C to +125°C CERDIP tl LSB
MX7545ATO -55°C to +125°C CERDIP 13 LSB
Ordering Information contin ued at end of data sheet.
Maxim reserves the right to ship ceramic sidebraze packages In
lieu of CERDIP packages.
Pin Configuration
TO VIEW
oun E Eil am
AGND E E] VREF
DGND E E Von
oanwsaiE MAXIM E m
0810 E MX7545A E] ES
089 [E MAX7545 E] DBU(LSB)
088 [2 E 081
DB7 E E OB
D86 E E 083
D85 CE E DB4
See page ll for Plastic Chip Gamer Pin Configuration
Maxim Integrated Products 1
& the latest literature: http://,
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ABSOLUTE MAXIMUM RATINGS
VDD to DGND ............................................................ -0.3V, +17V Operating Temperature Ranges
Digital Input Voltage to DGND .............. AWN, V00 + 0.3V MX7545AK/AL. MAX7645AC/BC ........................ 0°C to +70°C
VRFa, VREF to DGND .......q. '.. . ....... ........................ 125V MX7545AB/AC/AKE. MAX7645AE/BE ..... ....-40°C to +85°C
OUT1 to DGND ............... o..-C3V, Von + 0.3V MX7545AT/AU. MAX7645AM/BM .................. -55°C to +125°C
AGND to DGND ............................................... -0.3V, Von + 0.3V Storage Temperature ........................................ -65°C to +150°C
Power Dissipation (Any Package) to +75°C .................... 450mW Lead Temperature (Soldering, 10 sec) ............................ +300°C
Derate Above +75°C by .............................................. 6mWPC
Stresses beyond those listed under "Absolute Maximum Ratings'' may cause permanent damage to the device. These am stress ratings only, and functional
operation of the device at these or any other conditions beyond those indicated in the operational sections of the speei%ations is not implied. Exposure to
MX7545A/MAX7645
absolute maximum rating conditions for extended periods may affect device reliability.
ELECTRICAL CHARACTERISTICS-MOV
(Von = HN, VREF = +10V. Vour = 0V, AGND = DGND. Ta = Tue: to Tsaax unless otherwise noted.)
PARAMETER lsvunm] couomous J MIN TYP MAX lumrs
STATIC PERFORMANCE
Resolution N 12 Bits
Relative Accuracy INL Endpoint measurement i1/2 LSB
. . - . ' All grades guaranteed
Differential Non Linearity DNL 12-bit monotonic over temperature range AI LSB
Measured using K B T TA = '25''C 13
. internal RFB; DAC ' ' TA = Tum to TMAX A4
Gain Error FSE register loaded L C U TA = +25°C kl LSB
with all Is. , ' TA = Tum to TMAX A2
Gain Tempco
AGain/ATemp. (Note 1) TCFS t2 d:5 ppm/°C
DC Supply Rejection - T, = +25°C 0.002
AGain/AVDD (Note 1) PSR AVDD - i596 T. = TM... to TM 0.004 m
DYNAMIC PERFORMANCE
' . To AI/S LSLOUH load is 1009 in parallel
fie,rt,'1 Settling Time ts with 13pF. cs = OV. t2.AD output measured 1 us
( o e ) from falling edge of WR.
From digital
inputs, DBII-
DB0, change to
Propagation Delay 90% of final _
(Notes 1, 2) tro analog output. TA - +25°C 200 ns
OUT1 load is
1000 in parallel
with 13pF.
Digital to Analog tr,; tdll',
Glitch Impulse 1000 in parallel TA = +25''C 5 nV-s
(Notes l, 2) with 13pF.
AC Feedthrough at OUT1 VHEF = A10V, 10kHz sine wave,
(Notes I, 3) FTE DB11-DBO = 0v. 5 mVp-p
REFERENCE INPUT
Input Resistance Rae; Vner pin to AGND 10 15 20 kft
Input Resistance Tempco TCR -300 ppm/°C
[MAXIM
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