RHD5904 (9/12)

Standard Products
Advanced
RadHard-by-Design
RHD5904 Quad Operational Amplifier
Instrumentation Amplifier with Enables
www.aeroflex.com/RHDseries
September 26, 2012
FEATURES
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Single power supply operation (3.3V to 5.0V) or dual power supply operation (±1.65 to ±2.5V)
Radiation performance
- Total dose:
>1Mrad(Si); Dose rate = 50 - 300 rads(Si)/s
- ELDRS Immune
- SEL Immune
>100 MeV-cm2/mg
- Neutron Displacement Damage >1014 neutrons/cm2
High Speed
Rail-to-Rail input and output range
Enable pin to Enable/Disable amplifiers in pairs.
Short Circuit Tolerant
Full military temperature range
Designed for aerospace and high reliability space applications
Packaging – Hermetic ceramic SOIC
- 16-pin, .417"L x .300"W x 0.105"Ht SOIC
- Typical Weight 0.8 grams
GENERAL DESCRIPTION
Aeroflex’s RHD5904 is a radiation hardened, single supply, high speed, quad operational amplifier with
enable in a 16-pin SOIC package. The RHD5904 design uses specific circuit topology and layout methods
to mitigate total ionizing dose effects and single event latchup. These characteristics make the RHD5904
especially suited for the harsh environment encountered in Deep Space missions. It is guaranteed
operational from -55°C to +125°C. Available screened in accordance with MIL-PRF-38534 Class K, the
RHD5904 is ideal for demanding military and space applications.
ORGANIZATION AND APPLICATION
The RHD5904 amplifiers are capable of rail-to-rail input and outputs. Performance characteristics listed
are for general purpose operational 5V CMOS amplifier applications. The amplifiers will drive substantial
resistive or capacitive loads and are unity gain stable under normal conditions. Resistive loads in the low
kohm range can be handled without gain derating and capacitive loads of several nF can be tolerated.
CMOS device drive has a negative temperature coefficient and the devices are therefore inherently tolerant
to momentary shorts, although on chip thermal shutdown is not provided. All inputs and outputs are diode
protected.
The devices will not latch with SEU events to above 100 MeV-cm2/mg. Total dose degradation is minimal
to above 1Mrad(Si). Displacement damage environments to neutron fluence equivalents in the mid 1014
neutrons per cm2 range are readily tolerated. There is no sensitivity to low-dose rate (ELDRS) effects. SEU
effects are application dependant.
The RHD5904 is configured with enable/disable control. Pairs of amplifiers are put in a power-down
condition with their outputs in a high impedance state. Several useful operational amplifier configurations
are supported where more than one amplifier can feed an output with others disabled.
SCD5904 Rev A
VCC
+IN_A
3
-IN_A
2
4
1
A
EN_AB
OUT_A
8
5
+IN_B
6
-IN_B
7
B
OUT_B
12
+IN_C
11
-IN_C
C
EN_CD
10
OUT_C
16
OUT_D
9
+IN_D
14
-IN_D
15
D
13
VEE
FIGURE 1: BLOCK DIAGRAM
OUT_A
1
16
OUT_D
-IN_A
2
15
-IN_D
+IN_A
3
14
+IN_D
VCC
4
13
VEE
+IN_B
5
12
+IN_C
-IN_B
6
11
-IN_C
OUT_B
7
10
OUT_C
EN_AB
8
9
EN_CD
RHD5904
16-Pin SOIC
FIGURE 2: PACKAGE PIN-OUT
Notes:
1. Package and lid are electrically isolated from signal pads.
2. EN_AB enables amplifiers A & B. EN_CD enables amplifiers C & D.
SCD5904 Rev A Advanced 9/26/12
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Aeroflex Plainview
ABSOLUTE MAXIMUM RATINGS
Parameter
Range
Units
Case Operating Temperature Range
-55 to +125
°C
Storage Temperature Range
-65 to +150
°C
Junction Temperature
+150
°C
Supply Voltage
VCC - VEE
+6.0
V
VCC +0.4
VEE -0.4
V
Lead Temperature (soldering, 10 seconds)
300
°C
Thermal Resistance, Junction to Case,jc
7
°C/W
ESD Rating
2.0
KV
Power @ 25°C
200
mW
Input Voltage
NOTICE: Stresses above those listed under “Absolute Maximums Rating” may cause permanent damage to the device. These are stress rating only;
functional operation beyond the “Operation Conditions” is not recommended and extended exposure beyond the “Operation Conditions” may affect
device reliability.
RECOMMENDED OPERATING CONDITIONS
Symbol
Parameter
+VCC
Power Supply Voltage
VCM
Input Common Mode Range
Typical
Units
3.3 to 5.0
V
VCC to VEE
V
ELECTRICAL PERFORMANCE CHARACTERISTICS
(TC = -55°C TO +125°C, +VCC = +5.0V -- UNLESS OTHERWISE SPECIFIED)
Parameter
Symbol
Input Offset Voltage
VOS
Input Offset Current
Input Bias Current
Conditions
Min
Typ
Max
Units
-2
2
mV
IOS
-10
10
pA
IB
-20
20
pA
10
uV/C
Input Offset TempCo 2/
VIOST
Common Mode Rejection Ratio
CMRR
70
dB
Power Supply Rejection Ratio
PSRR
70
dB
4.9
V
Output Voltage High
VOH
ROUT = 3.6 Kohms to GND
Output Voltage Low
VOL
ROUT = 3.6 Kohms to VCC
Short Circuit
Output Current 2/
IO(SINK)
VOUT to VCC
IO(SOURCE)
VOUT to VEE
0.1
V
mA
-63
45
mA
Slew Rate
SR
RL = 8K
2.5
V/uS
Open Loop Gain 2/
AOL
No Load
100
dB
UGBW
RL = 10K
5
MHz
Unity Gain Bandwidth
SCD5904 Rev A Advanced 9/26/12
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Aeroflex Plainview
ELECTRICAL PERFORMANCE CHARACTERISTICS (continued)
(TC = -55°C TO +125°C, +VCC = +5.0V -- UNLESS OTHERWISE SPECIFIED)
Parameter
Symbol
Input Voltage - Enable (EN_AB,
EN_CD)
Input Current - Enable
(EN_AB, EN_CD)
Conditions
Min
Typ
Max
70%
VCC - VEE
VHI
High (Enabled)
VLO
Low (Disabled)
V
IEN
Quiescent Supply Current
ICCQ
Channel Separation 2/
All Amplifiers Enabled, No Load
All Amplifier Disabled
RL = 2K, f = 1.0KHz
Input-Referred Voltage Noise 2/
en
Phase Margin 2/
m
Units
30%
VCC - VEE
V
100
nA
5.5
mA
1
uA
dB
90
F = 1 kHz
TBD
V/ Hz
Deg
TBD
Notes:
1/ Specification derated to reflect Total Dose exposure to 1 Mrad(Si) @ +25°C.
2/ Not tested. Shall be guaranteed by design, characterization, or correlation to other test parameters.
SWITCHING CHARACTERISTICS
(TC = -55°C TO +125°C, +VCC = +5.0V -- UNLESS OTHERWISE SPECIFIED)
Symbol
Parameter
Conditions
Min
Max
Units
Output Delay (Enabled)
tONEN
100
ns
Output Delay (Disabled)
tOFFEN
100
ns
VCC
ENABLES
(EN_AB or EN_CD)
50%
GND
tONEN
VOUT
(VOUT_A&B or VOUT_C&D)
VCC
HI Z
HI Z
GND
tOFFEN
FIGURE 3: RHD5904 SWITCHING DIAGRAM
SCD5904 Rev A Advanced 9/26/12
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Aeroflex Plainview
RHD5904 QUAD OPERATIONAL AMPLIFIER APPLICATION NOTES
APPLICATION NOTE 1: DUAL POWER SUPPLY AMPLIFIER
Inverting Amplifier
Non Inverting Amplifier
R2
VOUT = – VIN  ------- 
 R1 
R2
VOUT = VIN  1 + ------- 

R1 
EN
R1
R2
+2.5V
VIN
VIN
EN
VOUT
+2.5V
R2
-2.5V
VOUT
-2.5V
R1
APPLICATION NOTE 2: SINGLE POWER SUPPLY AMPLIFIER
Inverting Amplifier
Non Inverting Amplifier
R2
VOUT = – VIN  ------- 
R1
R2
VOUT = VIN  1 + ------- 

R1 
R2
+5V
EN
R1
R3
+5V
+5V
VIN
VIN
R3
+5V
Vbias
EN
Vbias
VOUT
VOUT
R4
R2
R4
R1
Note: For VOUT DC @ mid range of common mode voltage range, VBIAS = 2.5/(1+R2/R1), VBIAS = +5*R4/(R3+R4)
SCD5904 Rev A Advanced 9/26/12
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Aeroflex Plainview
APPLICATION NOTE 3:
DIFFERENTIAL INPUT AMPLIFIER
APPLICATION NOTE 4:
MULTIPLE AMPLIFIERS
Differential Input Amplifier
Multiple Amplifiers - Selectable Output
R4
R2
R2
VOUT =  V2  ---------------------  1 + -------  –  V1 -------
  R3 + R4 



R1
R1
+5V
R2
R1
V1
A/B
VCC
V1
VOUT
R3
ENV1
V2
VOUT
VEE
R4
V2
EN
C/D
Note: Package and lid are electrically
isolated from signal pads.
FIGURE 4: PACKAGE OUTLINE
SCD5904 Rev A Advanced 9/26/12
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Aeroflex Plainview
ORDERING INFORMATION
Model
DSCC SMD #
Screening
RHD5904-7
-
Commercial Flow, +25°C testing only
RHD5904-S
-
Military Temperature, -55°C to +125°C
Screened in accordance with the individual Test Methods
of MIL-STD-883 for Space Applications
RHD5904-201-1S
5962-1024104KXC
RHD5904-201-2S
5962-1024104KXA
RHD5904-901-1S
5962H1024104KXC
RHD5904-901-2S
5962H1024104KXA
DSCC SMD Pending
Package
16-pin
SOIC Package
DSCC SMD and Radiation Certification Pending
EXPORT CONTROL:
EXPORT WARNING:
This product is controlled for export under the International Traffic in
Arms Regulations (ITAR). A license from the U.S. Department of
State is required prior to the export of this product from the United
States.
Aeroflex’s military and space products are controlled for export under
the International Traffic in Arms Regulations (ITAR) and may not be
sold or proposed or offered for sale to certain countries. (See ITAR
126.1 for complete information.)
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www.aeroflex.com
[email protected]
Aeroflex Microelectronic Solutions reserves the right to
change at any time without notice the specifications, design,
function, or form of its products described herein. All
parameters must be validated for each customer's application
by engineering. No liability is assumed as a result of use of
this product. No patent licenses are implied.
SCD5904 Rev A Advanced 9/26/12
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