ETC PA91

HIGH VOLTAGE POWER OPERATIONAL AMPLIFIER
PA91
HTTP://WWW.APEXMICROTECH.COM
M I C R O T E C H N O L O G Y
(800) 546-APEX
(800) 546-2739
FEATURES
•
•
•
•
•
HIGH VOLTAGE — 450V (±225V)
LOW QUIESCENT CURRENT — 10mA
HIGH OUTPUT CURRENT — 200mA
PROGRAMMABLE CURRENT LIMIT
HIGH SLEW RATE — 300V/µs
APPLICATIONS
•
•
•
•
PIEZOELECTRIC POSITIONING
HIGH VOLTAGE INSTRUMENTATION
ELECTROSTATIC TRANSDUCERS
PROGRAMMABLE POWER SUPPLIES UP TO 440V
TYPICAL APPLICATION
RF
DESCRIPTION
+VS
The PA91 is a high voltage, low quiescent current MOSFET
operational amplifier designed for driving continuous output
currents up to 200mA and pulse currents up to 350mA. The
safe operating area (SOA) has no second breakdown limitations and can be observed for all type loads by choosing an
appropriate current limiting resistor. The MOSFET output
stage is biased AB for linear operation. External compensation
provides flexibility in choosing bandwidth and slew rate for the
application. APEX’s Power SIP package uses a minimum of
board space allowing for high density circuit boards.
R IN
11,12
1
PIEZO DRIVE
6
PA91
V OUT
2
COMPUTER
FOCUS
COMMAND
VOLTAGE
9,10
7,8
R CL
–V S
LOW POWER, PIEZOELECTRIC POSITIONING
EQUIVALENT SCHEMATIC
Piezo positioning may be applied to the focusing of segmented mirror systems. The composite mirror may be composed of hundreds of elements, each requiring focusing under
computer control. In such complex systems the PA91 reduces
the costs of power supplies and cooling with its advantages of
low cost and low quiescent power consumption while increasing circuit density with the SIP package.
12
11
+VS
R1 R2
Q1
C1
R3
PHASE COMPENSATION
Q3
Q2
R4
GAIN
≥1
Q4
Q6
4
CC1
Q5
5
CC2
ILIM
9
Q8
R7
10
Q11
1
–IN
6
OUT
R6
R5
R8
R9
Q12
Rc
100Ω
≥5
10pF
100Ω
≥10
4.7pF
0Ω
≥30
NONE
0Ω
*Cc To be rated for the full supply voltage
+V to –Vs. Use NPO ceramic (COG) type.
Q13
3
IQ
2
+IN
Cc*
68pF
EXTERNAL CONNECTIONS
Package: SIP03
Q14
R10
1
2
3
4
5
6
7
8
9
10
11
12
Q16
Q15
Rc
R11
R12
–VS
7
8
–IN
Cc
*
RCL
+IN
*
IQ
(See text.)
TO LOAD
AND FEEDBACK
–Vs
+Vs
* Bypassing required.
APEX MICROTECHNOLOGY CORPORATION • TELEPHONE (520) 690-8600 • FAX (520) 888-3329 • ORDERS (520) 690-8601 • EMAIL [email protected]
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ABSOLUTE MAXIMUM RATINGS
SPECIFICATIONS
PA91
SUPPLY VOLTAGE, +VS to –VS
OUTPUT CURRENT, source, sink, peak
POWER DISSIPATION, continuous @ TC = 25°C
INPUT VOLTAGE, differential
INPUT VOLTAGE, common mode
TEMPERATURE, pin solder - 10s max
TEMPERATURE, junction2
TEMPERATURE, storage
OPERATING TEMPERATURE RANGE, case
ABSOLUTE MAXIMUM RATINGS
450V
350mA, within SOA
30W
±20V
±VS
220°C
150°C
–65 to +150°C
–55 to +125°C
SPECIFICATIONS
TEST CONDITIONS 1
PARAMETER
MIN
TYP
MAX
UNITS
.5
15
10
75
200
4
50
1011
4
2
50
25
98
1
mV
µV/°C
µV/V
µV/√kh
pA
pA/V
pA
Ω
pF
V
dB
µVrms
94
111
100
470
60
dB
MHz
kHz
°
±VS 12
200
240
470
±VS 10
V
mA
V/µs
pF
µs
Ω
INPUT
Full temperature range
VCM = ±90V
100KHz BW, RS = 1KΩ, CC = OPEN
±VS 15
80
±
OFFSET VOLTAGE, initial
OFFSET VOLTAGE, vs. temperature
OFFSET VOLTAGE, vs. supply
OFFSET VOLTAGE, vs. time
BIAS CURRENT, initial
BIAS CURRENT, vs. supply
OFFSET CURRENT, initial
INPUT IMPEDANCE, DC
INPUT CAPACITANCE
COMMON MODE VOLTAGE RANGE3
COMMON MODE REJECTION, DC
NOISE
2000
500
GAIN
OPEN LOOP, @ 15Hz
GAIN BANDWIDTH PRODUCT at 1MHz
POWER BANDWIDTH
PHASE MARGIN
RL = 2KΩ, CC = OPEN
RL = 2KΩ, CC = OPEN
RL = 2KΩ, CC = OPEN
Full temperature range
OUTPUT
CC = OPEN
Full temperature range
CC = OPEN, 2V step
±
IO = 200mA
±
VOLTAGE SWING3
CURRENT, continuous
SLEW RATE, AV = 100
CAPACITIVE LOAD, AV = +1
SETTLING TIME to .1%
RESISTANCE, no load
300
1
50
POWER SUPPLY
VOLTAGE 5
CURRENT, quiescent,
See note 5
±40
±150
10
±225
14
V
mA
2.5
4.2
°C/W
°C/W
°C/W
°C
THERMAL
RESISTANCE, AC, junction to case 4
RESISTANCE, DC, junction to case
RESISTANCE, junction to air
TEMPERATURE RANGE, case
NOTES: 1.
2.
3.
4.
5.
CAUTION
Full temperature range, F > 60Hz
Full temperature range, F < 60Hz
Full temperature range
Meets full range specifications
30
–25
+85
Unless otherwise noted: TC = 25°C, DC input specifications are ± value given. Power supply voltage is typical rating. RC = 100
CC = 68pF.
Long term operation at the maximum junction temperature will result in reduced product life. Derate internal power dissipation
to achieve high MTTF.
+VS and –VS denote the positive and negative power supply rail respectively.
Rating applies if the output current alternates between both output transistors at a rate faster than 60Hz.
Derate max supply rating .625 V/°C below 25°C case. No derating needed above 25°C case.
The PA91 is constructed from MOSFET transistors. ESD handling procedures must be observed.
APEX MICROTECHNOLOGY CORPORATION • 5980 NORTH SHANNON ROAD • TUCSON, ARIZONA 85741 • USA • APPLICATIONS HOTLINE: 1 (800) 546-2739
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PHASE RESPONSE
90
135
PHASE, Φ (°)
OUTPUT STAGE
24
16
180
Cc = 68 pF
Cc = 10 pF
Cc = 4.7 pF
Cc = OPEN
225
8
0
270
100k
25 50
75 100 125 150
CASE TEMPERATURE, TC (°C)
40
5.5
DISTORTION, (%)
300
200
RL = 1K
VS = ±200V
A V = 63
100
70
50
40
30
20
10
1
0.1
10
100
EXT. COMPENSATION CAPACITOR, C C (pF)
.1
PO = 17.6W
.01
PO = 1W
PO = 5W
.001
10
100
1K
10K
FREQUENCY, F (Hz)
100K
20
7pF
HARMONIC DISTORTION
1
1K
700
500
PEN
0.2
= 4.
SLEW RATE
.05
0.1
0.15
OUTPUT CURRENT, I O (A)
100
90
80
70
60
50
1E+004
=O
0
200
Cc
3.5
300
pF
4
400
= 10
4.5
POWER RESPONSE
Cc
5
500
pF
Cc = 68 pF
0 Cc = 10 pF
Cc = 4.7 pF
–10 Cc = OPEN
1M
10M
100K
FREQUENCY, F (Hz)
OUTPUT VOLTAGE SWING
6
50
100
75
125
CASE TEMPERATURE, Tc (°C)
= 68
10
1.0
25
Cc
20
1.1
Cc
30
1M
10M
FREQUENCY F (Hz)
1.2
OUTPUT VOLTAGE Vo, (Vp – p)
0
NORMALIZED QUIES. CURRENT
1.3
INPUT NOISE VOLTAGE, VN (nV Hz)
32
SMALL SIGNAL RESPONSE
SLEW RATE, (V/ µ S)
NORMALIZED QUIESCENT CURRENT, I Q (X)
POWER DERATING
40
50
OPEN LOOP GAIN, A (dB)
PA91
VOLTAGE DROP FROM SUPPLY, V S – VO (V)
INTERNAL POWER DISSIPATION, P(W)
TYPICAL PERFORMANCE
GRAPHS
1E+005
1E+006
FREQUENCY, F (Hz)
INPUT NOISE VOLTAGE
15
10
7
5
3
2
10
100
1K
10K
FREQUENCY, F (Hz)
100K
CURRENT LIMIT
CURRENT LIMIT, IILIM (A)
.2
.15
.1
.05
0
0
4
8
12 16 20 24
RESISTOR VALUE, R CL ( Ω)
APEX MICROTECHNOLOGY CORPORATION • TELEPHONE (520) 690-8600 • FAX (520) 888-3329 • ORDERS (520) 690-8601 • EMAIL [email protected]
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OPERATING
CONSIDERATIONS
PA91
GENERAL
INPUT PROTECTION
Please read Application Note 1 "General Operating Considerations" which covers stability, supplies, heat sinking, mounting, current limit, SOA interpretation, and specification interpretation. Visit www.apexmicrotech.com for design tools that
help automate tasks such as calculations for stability, internal
power dissipation, current limit; heat sink selection; Apex’s
complete Application Notes library; Technical Seminar Workbook; and Evaluation Kits.
Although the PA91 can withstand differential voltages up to
±20V, additional external protection is recommended. Low
leakage, low capacitance JFETs connected as diodes are
recommended (e.g. 2N4416, Q1-Q4 in Figure 2). The differential input voltage will be clamped to ±1.4V. This is sufficient
overdrive to produce maximum power bandwidth.
CURRENT LIMIT
For proper operation, the current limit resistor (RCL) must be
connected as shown in the external connection diagram. For
optimum reliability the resistor value should be set as high as
possible. The value is calculated as follows; with the maximum
practical value of 32 ohms.
.65
RCL =
ILIM
SAFE OPERATING AREA (SOA)
The MOSFET output stage of this power operational amplifier has two distinct limitations:
1. The current handling capability of the MOSFET geometry
and the wire bonds.
2. The junction temperature of the output MOSFETs.
NOTE: The output stage is protected against transient flyback.
However, for protection against sustained, high energy flyback,
external fast-recovery diodes should be used.
SAFE OPERATING CURVES
The safe operating area curves define the maximum additional internal power dissipation the amplifier can tolerate
when it produces the necessary output to drive an external
load.
OUTPUT CURRENT FROM +VS OR –VS, (mA)
500
20
300
0m
C
DC
50
,T
C
=
The PA91 is externally compensated and performance can
be tailored to the application. Use the graphs of small signal
response and power response as a guide. The compensation
capacitor CC must be rated at 500V working voltage. An NPO
capacitor is recommended. The compensation network CCRC
must be mounted closely to the amplifier pins 4 and 5 to avoid
spurious oscillation.
QUIESCENT CURRENT REDUCTION
When pin 3 (IQ) is shorted to pin 5 (CC2) the AB biasing of
the output stage is disabled. This lowers quiescent power but
also raises distortion since the output stage is then class C
biased. The output stage bias current is nominally set at 1mA.
Pin 3 may be left open if not used.
S
,T
100
STABILITY
0m
DC
DC
,T
Unidirectional zener diode transient suppressors are recommended as protection on the supply pins. See Figure 2. The
zeners clamp transients to voltages within the power supply
rating and also clamp power supply reversals to ground.
Whether the zeners are used or not, the system power supply
should be evaluated for transient performance including poweron overshoot and power-off polarity reversals as well as line
regulation.
Conditions which can cause open circuits or polarity reversals on either power supply rail should be avoided or protected
against. Reversals or opens on the negative supply rail is
known to induce input stage failure. Unidirectional transzorbs
prevent this, and it is desirable that they be both electrically and
physically as close to the amplifier as possible.
10
S
200
POWER SUPPLY PROTECTION
C
=
=
+VS
Z1
25
°C
85
°C
1
–IN
Q1
Q3
6
PA91
12
5°
Q2
C
+IN
30
FIGURE 2.
OVERVOLTAGE
PROTECTION
20
10
25
11, 12
Q4
2
7, 8
Z2
–VS
PULSE CURVES @ 10% DUTY CYCLE MAX
50
75 100 125
250
500
SUPPLY TO OUTPUT DIFFERENTIAL, VS –VO (V)
This data
sheet has been carefully checked
and is believed
be reliable,
however,
no responsibility
assumed for ARIZONA
possible inaccuracies
All specifications are
subject to change
without
notice.
APEX
MICROTECHNOLOGY
CORPORATION
• to
5980
NORTH
SHANNON
ROAD •is TUCSON,
85741 or
• omissions.
USA • APPLICATIONS
HOTLINE:
1 (800)
546-2739
PA91U REV. A SEPTEMBER 2000 © 2000 Apex Microtechnology Corp.
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