6484
CMOS Quad Rail-to-Rail I/O Op Amp
V+
IN+A IN-A OUT A OUT D
IN+D IN-D
V-
IN+B IN-B
OUT B
OUT C
IN+C IN-C
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Logic Diagram
FEATURES:
• Rad-Pak® technology-hardened against natural space radiation • Total dose hardness: - >100 krad (Si), depending upon orbit and space mission • Package: • - 14 pin Rad-Pak® flat package • Rail-to-Rail input common-mode voltage range (guaranteed over temperature • Rail-to-Rail output swing (within 20 mV of supply rail, 100 kΩ load) • Guaranteed 3V, 5V and 15V performance • Excellent CMRR and PSRR: 82 dB • Ultra low input current: 20 pA • High voltage gain (RL = 500 kΩ): 130 dB • Specified for 2 kΩ and 600 Ω loads
DESCRIPTION:
Maxwell Technologies’ 6484 provides a common-mode range that extends to both supply rails. This rail-to-rail performance combined with excellent accuracy, due to a high CMRR< makes it unique among rail-to-rail input amplifiers. It is ideal for systems, such as data acquisition, that require a large input signal range. Maximum dynamic signal range is assured in low voltage and single supply systems by the 6484’s rail-to-rail output swing. The device’s rail-to-rail output swing is guaranteed for loads down to 600Ω. Guaranteed low voltage characteristics and low power dissipation make the 6484 especially well-suited for battery-operated systems. Maxwell Technologies' patented RAD-PAK® packaging technology incorporates radiation shielding in the microcircuit package. It eliminates the need for box shielding while providing the required radiation shielding for a lifetime in orbit or space mission. In a GEO orbit, RAD-PAK provides greater than 100 krad (Si) radiation dose tolerance. This product is available with screening up toMaxwell Technologies self-defined Class K.
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©2005 Maxwell Technologies All rights reserved.
CMOS Quad Rail-to-Rail I/O Op Amp
TABLE 1. PINOUT DESCRIPTION
PIN 1, 7, 8, 14 2, 6, 9, 13 3, 5, 10, 12 4 11 SYMBOL OUT A-D IN- A-D IN+ A-D V+ VDESCRIPTION Output Signal Negative Input Signal Positive Input Signal Positive Voltage Negative Voltage
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TABLE 2. ABSOLUTE MAXIMUM RATINGS 1
PARAMETER Supply Voltage (V+ - V-) Differential Input Voltage Voltage at I/O Pin Current at Input Pin
2 3,4
SYMBOL VSS
MIN --VSS (V-) -0.3 -5 -30 --
MAX 16 VSS (V+) +0.3 5 30 40 150 315 150 125 260 2.0
UNIT V V V mA mA mA
°C
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Current at Output Pin
Current at Power Supply Pin Maximum Junction Temperature Power Dissipation Storage Temperature Range Operating Temperature Range Lead Temperature (soldering 10 seconds) ESD Tolerance 5 TJ PD TS TA
---65 -55 ---
mW
°C °C °C
kV
1. Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. 2. Limiting input pin current is only necessary for input voltages that exceed absolute maximum input voltage ratings. 3. Applies to both single-supply and split-supply operation. Continuous short circuit operation at elevated ambient temperature can result in exceeding the maximum allowed junction temperature of 150°C. Output currents in excess of ±30 mA over long term may adversely affect reliability. 4. Do not short circuit output to V+, when V+ is greater than 13V or reliability will be adversely affected. 5. Human body model, 1.5 kΩ in series with 100 pF. All pins rated per method 3015.6 of MIL-STD-883. This is a Class 2 device rating.
TABLE 3. DELTA LIMITS
PARAMETER ICC VARIATION ±10% of specified value in Table 5
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©2005 Maxwell Technologies All rights reserved.
CMOS Quad Rail-to-Rail I/O Op Amp
TABLE 4. RECOMMENDED OPERATING CONDITIONS
PARAMETER Supply Voltage SYMBOL VSS MIN 3.0 MAX 15.5
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UNIT V
(V+ = 5V, V- = 0V, R1 > 1MΩ, VCM = VO = V+/2, TA = -55 TO 125°C, UNLESS OTHERWISE SPECIFIED) PARAMETER Input Offset Voltage Input Bias Current Input Offset Current Common Mode Rejection Ratio SYMBOL VIO IIB IIO CMRR TEST CONDITIONS 25°C -55 TO 125°C 25°C -55 TO 125°C 25°C -55 TO 125°C 0V < VCM < 15V, V+ = 15V 0V < VCM < 5V Positive Power Supply Rejection Ratio Negative Power Supply Rejection Ratio Input Common Mode Voltage Range Output Short Circuit Current +PSRR -PSRR VCM ISC 5V < V+ VCM > 15V, For CMRR > 50 dB Sourcing, VO = 0V Sinking, VO = 5V V+ = 15V, Sourcing, VO = 0V V+ = 15V, Sinking, VO = 12V Supply Current ICC All four amps All four amps, V+ = 15V
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TABLE 5. DC ELECTRICAL CHARACTERISTICS
MIN ------25°C -55 TO 125°C 25°C -55 TO 125°C 25°C -55 TO 125°C 25°C -55 TO 125°C 25°C -55 TO 125°C 25°C -55 TO 125°C 25°C -55 TO 125°C 25°C -55 TO 125°C 25°C -55 TO 125°C 25°C -55 TO 125°C 25°C -55 TO 125°C 65 62 65 62 65 62 65 62 (V+) + 0.25 V+ 16 12 11 9 28 22 30 24 -----
MAX 0.75 1.35 25 100 25 100 ---------0.25 0 --------2.8 3.6 3.0 4.0
UNIT mV pA pA
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dB
dB dB V mA
mA
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©2005 Maxwell Technologies All rights reserved.
CMOS Quad Rail-to-Rail I/O Op Amp
TABLE 5. DC ELECTRICAL CHARACTERISTICS (V+ = 5V, V- = 0V, R1 > 1MΩ, VCM = VO = V+/2, TA = -55 TO 125°C, UNLESS OTHERWISE SPECIFIED)
PARAMETER Output Swing SYMBOL VO TEST CONDITIONS V+ = 5V, R1 = 2 kΩ to V+/2 V+ = 5V, R1 = 600 Ω to V+/2 V+ = 15V, R1 = 2 kΩ to V+/2 V+ = 15V, R1 = 600 Ω to V+/2 Large Signal Voltage Gain 2 AV R1 = 2 kΩ Sourcing R1 = 2 kΩ Sinking R1 = 600 Ω Sourcing R1 = 600 Ω Sinking 25°C -55 TO 125°C 25°C -55 TO 125°C 25°C -55 TO 125°C 25°C -55 TO 125°C 25°C -55 TO 125°C 25°C -55 TO 125°C 25°C -55 TO 125°C 25°C -55 TO 125°C MIN 4.8 4.7 4.5 4.24 14.4 14.2 13.4 13.0 140 84 35 20 80 48 18 13 MAX 0.18 0.24 0.50 0.65 0.32 0.45 1.00 1.3 -----
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UNIT V
V/mV
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-----
1. Do not short circuit output to V+, when V+ is greater than 13V or reliability will be adversely affected. 2. V+ = 15V, VCM = 7.5V and R1 connected to 7.5V. For sourcing tests, 7.5V < VO < 11.5V. For sinking tests, 3.5V < VO < 7.5V.
TABLE 6. AC PARAMETER (V+ = 5V, V- = 0V, R1 > 1MΩ, VCM = VO = V+/2, TA = -55 TO 125°C, UNLESS OTHERWISE SPECIFIED)
PARAMETER Slew Rate 1 Gain Bandwidth SYMBOL SR GBW V+ = 15V, set up for non-inverting TEST CONDITIONS MIN 0.9 0.6 1.25 1.15 MAX ----UNIT V/µ S MHz
1. V+ = 15V. Connected as Voltage Follower with 10V step input, 2.5V to 12.5V for +Slew, and 12.5V to 2.5V for (-)Slew. Number specified is the slower of either the positive or negative slew rates.
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All data sheets are subject to change without notice
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©2005 Maxwell Technologies All rights reserved.
CMOS Quad Rail-to-Rail I/O Op Amp
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14 PIN RAD-PAK® FLAT PACKAGE
SYMBOL MIN A b c D E E1 E2 E3 e L Q S1 N 0.270 0.026 0.005 0.140 0.015 0.004 -0.250 -0.125 0.030 DIMENSION NOM 0.157 0.017 0.005 0.380 0.255 -0.130 0.062 0.050 BSC 0.325 0.030 -14 0.370 0.035 -MAX 0.170 0.020 0.009 0.390 0.260 0.290 ---
Note: All dimensions in inches. F14-05
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©2005 Maxwell Technologies All rights reserved.
CMOS Quad Rail-to-Rail I/O Op Amp
Important Notice:
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These data sheets are created using the chip manufacturer’s published specifications. Maxwell Technologies verifies functionality by testing key parameters either by 100% testing, sample testing or characterization. The specifications presented within these data sheets represent the latest and most accurate information available to date. However, these specifications are subject to change without notice and Maxwell Technologies assumes no responsibility for the use of this information. Maxwell Technologies’ products are not authorized for use as critical components in life support devices or systems without express written approval from Maxwell Technologies. Any claim against Maxwell Technologies must be made within 90 days from the date of shipment from Maxwell Technologies. Maxwell Technologies’ liability shall be limited to replacement of defective parts.
Memory
01.06.05 Rev 4
All data sheets are subject to change without notice
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©2005 Maxwell Technologies All rights reserved.
CMOS Quad Rail-to-Rail I/O Op Amp
Product Ordering Options
Model Number 6484 RP F X Feature Option Details
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Screening Flow
Monolithic K = Maxwell Self-Defined Class K1 H = Maxwell Self-Defined Class H1 I = Industrial (testing @ -55°C, +25°C, +125°C) E = Engineering (testing @ +25°C)
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Package
F = Flat Pack
Radiation Feature
RP = RAD-PAK® package
Base Product Nomenclature
CMOS Quad Rail-to-Rail I/O OpAmp
1)Products are manufactured and screened to Maxwell Technologies self-defined Class H and Class K flows.
01.06.05 Rev 4
All data sheets are subject to change without notice
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©2005 Maxwell Technologies All rights reserved.