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Электронный компонент: PA16A

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APEX MICROTECHNOLOGY CORPORATION TELEPHONE (520) 690-8600 FAX (520) 888-3329 ORDERS (520) 690-8601 EMAIL prodlit@apexmicrotech.com
1
FEATURES
HIGH POWER BANDWIDTH -- 350kHz
HIGH SLEW RATE -- 20V/s
FAST SETTLING TIME -- 600ns
LOW CROSSOVER DISTORTION -- Class A/B
LOW INTERNAL LOSSES -- 1.2V at 2A
HIGH OUTPUT CURRENT -- 5A PEAK
LOW INPUT BIAS CURRENT -- FET Input
ISOLATED CASE -- 300 VDC
APPLICATIONS
MOTOR, VALVE AND ACTUATOR CONTROL
MAGNETIC DEFLECTION CIRCUITS UP TO 5A
POWER TRANSDUCERS UP TO 350 kHz
AUDIO AMPLIFIERS UP TO 44W RMS
DESCRIPTION
The PA16 and PA16A are wideband, high output current
operational amplifiers designed to drive resistive, inductive
and capacitive loads. Their complementary "collector output"
stage can swing close to the supply rails and is protected
against inductive kickback. For optimum linearity, the output
stage is biased for class A/B operation. The safe operating
area (SOA) can be observed for all operating conditions by
selection of user programmable, current limiting resistors
(down to 10mA). Both amplifiers are internally compensated
but are not recommended for use as unity gain followers. For
continuous operation under load, mounting on a heatsink of
proper rating is recommended.
These hybrid integrated circuits utilize thick film (cermet)
resistors, ceramic capacitors and semiconductor chips to
maximize reliability, minimize size and give top performance.
Ultrasonically bonded aluminum wires provide reliable inter-
connections at all operating temperatures. The Power SIP
package is electrically isolated.
EQUIVALENT SCHEMATIC
TYPICAL APPLICATION
Vehicular Sound System Power Stage
When system voltages are low and power is at a premium,
the PA16 is a natural choice. The circuit above utilizes not only
the feature of low internal loss of the PA16, but also its very
low distortion level to implement a crystal clear audio amplifier
suitable even for airborne applications. This circuit uses AC
coupling of both the input signal and the gain circuit to render
DC voltage across the speaker insignificant. The resistor and
capacitor across the inputs form a stability enhancement net-
work. The 0.27 ohm current limit resistors provide protection
in the event of an output short circuit.
EXTERNAL CONNECTIONS
12-PIN SIP
PACKAGE STYLE DP
Formed leads available
See package style s ED & EE
APEX MICROTECHNOLOGY CORPORATION 5980 NORTH SHANNON ROAD TUCSON, ARIZONA 85741 USA APPLICATIONS HOTLINE: 1 (800) 546-2739
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ABSOLUTE MAXIMUM RATINGS
SPECIFICATIONS
ABSOLUTE MAXIMUM RATINGS
SUPPLY VOLTAGE, +V
S
to V
S
38V
OUTPUT CURRENT, within SOA
5A
POWER DISSIPATION, internal
1
62.5W
INPUT VOLTAGE, differential
V
S
5V
INPUT VOLTAGE, common mode
V
S
2V
TEMPERATURE, pin solder - 10s max.
260C
TEMPERATURE, junction
1
150C
TEMPERATURE RANGE, storage
40 to +85C
OPERATING TEMPERATURE RANGE, case
25 to +85C
PA16 PA16A
The exposed substrate contains beryllia (BeO). Do not crush, machine, or subject to temperatures in excess of 850C to
avoid generating toxic fumes.
CAUTION
SPECIFICATIONS
PA16
PA16A
PARAMETER
TEST CONDITIONS
2, 6
MIN
TYP
MAX
MIN
TYP
MAX
UNITS
INPUT
OFFSET VOLTAGE, initial
T
C
= 25C
5
10
1
3
mV
OFFSET VOLTAGE, vs. temperature
Full temperature range
10
50
*
25
V/C
OFFSET VOLTAGE, vs. supply
T
C
= 25C
10
*
V/V
OFFSET VOLTAGE, vs. power
T
C
= 25C
6
*
V/W
BIAS CURRENT, initial
T
C
= 25C
50
200
25
100
pA
BIAS CURRENT, vs. temperature
T
C
= 85C
200
*
pA/C
BIAS CURRENT, vs. supply
T
C
= 25C
.01
*
pA/V
OFFSET CURRENT, initial
T
C
= 25C
25
100
15
50
pA
OFFSET CURRENT, vs. temperature
T
C
= 85C
100
*
pA/C
INPUT IMPEDANCE, DC
T
C
= 25C
1000
*
G
INPUT CAPACITANCE
T
C
= 25C
3
*
pF
COMMON MODE VOLT. RANGE
5
, Pos. Full temperature range
+V
S
6 +V
S
3
*
*
V
COMMON MODE VOLT. RANGE
5
, Neg. Full temperature range
V
S
+6 V
S
+5
*
*
V
COMMON MODE REJECTION, DC
Full temperature range
70
100
*
*
dB
GAIN
OPEN LOOP GAIN at 10Hz
T
C
= 25C, 1k load
103
*
dB
OPEN LOOP GAIN at 10Hz
Full temp. range, 10k load
86
100
*
*
dB
GAIN BANDWIDTH PRODUCT at 1MHz T
C
= 25C, 10 load
4.5
*
MHz
POWER BANDWIDTH
T
C
= 25C, 10 load
350
*
kHz
PHASE MARGIN
Full temp. range, 10 load
30
*
OUTPUT
VOLTAGE SWING
3
T
C
= 25C, I
O
= 5A, R
CL
= .08
V
S
4 V
S
3
V
S
3
*
V
VOLTAGE SWING
3
Full temp. range, I
O
= 2A
V
S
2 V
S
1.2
V
S
1.2
*
V
CURRENT, peak
T
C
= 25C
5
*
A
SETTLING TIME to .1%
T
C
= 25C, 2V step
.6
*
s
SLEW RATE
T
C
= 25C
13
20
*
*
V/s
CAPACITIVE LOAD
Full temp. range, A
V
> 10
SOA
*
HARMONIC DISTORTION
P
O
= 5W, F = 1kHz, R
L
= 4
.028
*
%
SMALL SIGNAL rise/fall time
R
L
= 10, A
V
= 1
100
*
ns
SMALL SIGNAL overshoot
R
L
= 10, A
V
= 1
10
*
%
POWER SUPPLY
VOLTAGE
Full temperature range
7
15
19
*
*
*
V
CURRENT, quiescent
T
C
= 25C
27
40
*
*
mA
THERMAL
RESISTANCE, AC junction to case
4
F > 60Hz
1.4
1.6
*
*
C/W
RESISTANCE, DC junction to case
F < 60Hz
1.8
2.0
*
*
C/W
RESISTANCE, junction to air
30
*
C/W
TEMPERATURE RANGE, case
Meets full range specifications
25
+85
*
*
C
NOTES: * The specification of PA16A is identical to the specification for PA16 in applicable column to the left.
1. Long term operation at the maximum junction temperature will result in reduced product life. Derate internal power dissipation to
achieve high MTTF.
2. The power supply voltage for all specifications is the TYP rating unless otherwise noted as a test condition.
3. +V
S
and V
S
denote the positive and negative supply rail respectively. Total V
S
is measured from +V
S
to V
S
.
4. Rating applies if the output current alternates between both output transistors at a rate faster than 60Hz.
5. Exceeding CMV range can cause the output to latch.
6. Full temperature specifications are guaranteed but not 100% tested.
APEX MICROTECHNOLOGY CORPORATION TELEPHONE (520) 690-8600 FAX (520) 888-3329 ORDERS (520) 690-8601 EMAIL prodlit@apexmicrotech.com
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TYPICAL PERFORMANCE
GRAPHS
PA16 PA16A

APEX MICROTECHNOLOGY CORPORATION 5980 NORTH SHANNON ROAD TUCSON, ARIZONA 85741 USA APPLICATIONS HOTLINE: 1 (800) 546-2739
4
OPERATING
CONSIDERATIONS
PA16 PA16A
GENERAL
Please read Application Note 1 "General Operating Considerations" which cov-
ers 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.
SAFE OPERATING AREA
(SOA)
The SOA curves combine
the effect of all limits for this
Power Op Amp. For a given
application, the direction
and magnitude of the output
current should be calculated
or measured and checked
against the SOA curves.
This is simple for resistive
loads but more complex for
reactive and EMF generat-
ing loads. The following
guidelines may save exten-
sive analytical efforts:
The amplifier can handle
any EMF generating or
reactive load and short cir-
cuits to the supply rails or shorts to common if the current limits are set as follows at
T
C
= 85C.
SHORT TO V
S
SHORT TO
V
S
C, L OR EMF LOAD
COMMON
18V
.9A
1.8A
15V
1.0A
2.1A
10V
1.6A
3.2A
These simplified limits may be exceeded with further analysis using the operating
conditions for a specific application.
CURRENT LIMIT
Proper operation requires the use of two current limit resistors, connected as shown
in the external connection diagram. The minimum value for R
CL
is 0.12 ohm, however for
optimum reliability it should be set as high as possible. Refer to the "General Operating
Considerations" section of the handbook for current limit adjust details.
.65
R
CL
=
-0.01
I
LIM
(A)
DEVICE MOUNTING
The case (mounting flange) is electrically isolated and should be mounted directly to a
heatsink with thermal compound. Screws with Belville spring washers are recommended
to maintain positive clamping pressure on heatsink mounting surfaces. Long periods
of thermal cycling can loosen mounting screws and increase thermal resistance.
Since the case is electrically isolated (floating) with respect to the internal circuits it
is recommended to connect it to common or other convenient AC ground potential.

This data sheet has been carefully checked and is believed to be reliable, however, no responsibility is assumed for possible inaccuracies or omissions. All specifications are subject to change without notice.
PA16U REV F MARCH 2003 2003 Apex Microtechnology Corp.