The 3580 series is the first family of I ntegrated
Circuit
operational
amplifiers
which will provide
output voltage swings of up to ::t 145V .
The monolithic F--ET input stage has low bias currents
(20pA) which minimizes the offset voltages caused by
the bias current and the large resistance
associated with high voltage circuits.
normally
The 3580 series is packaged in a TO-3 package which
will dissipate over 3W of power without a heat sink
and 4.5W with a suitable heat sink.
The input stage is protected against overvoltages and
the output stage is protected against short-circuits-
to-ground. A special thermal sensing circuit prevents
damage to the amplifier
by automatically
shutting
the amplifier
down when too much power is being
dissipated.
International Airport Industrial Park -P .0. 8ox 11400 -Tucson. Arizona 85734 -Tel. [6021 746-1111 -Twx: 910-952.1111 .Cable. 88RCORP -Telex: 66-6491
@
1975
Burr-Brown
Corporation
PDS-313D
Printed in U.S.A. May, 1987
SBOS166
TION
advantages
not normally
available
in modular
or discrete
component
units. The amplifiers
have thermal sensing
and shut-off
circuitry
which automatically
turns the
amplifier
off when the internal
temperature
reaches
approximately
150°C. This is accomplished
by sensing
the substrate temperature
and deactivating
the input
stage current source when the temperature
reaches a
critical level. As this happens, the output load current
limits at a safe value and the amplifier's quiescent current
decreases.
If the cause of the abnormal
power dissipation
is
continuous
(such as a short circuit across the load) the
output current may remain at a low value or oscillate
between two values d-ependi-ng on the amount of power
being dissipated and the heat sink conditions seen by the
amplifier.
In either case, the amplifier
will not sustain
internal damage and will return to normal operation
within a few seconds after the abnormal
condition
is
removed.
The incorporation
of thermal sensing and shut-off in the
amplifier will allow the use of a smaller heat sink than
would otherwise be required. This is due to the fact that
the amplifier
will protect itself and does not require a
massive heat sink for protection
under abnormal
conditions.
Another unique feature of the 3580 family is the thorough
testing of the unit receiver. In addition
to the normal
tests, all amplifiers are 100% tested for input protection at
the full rated differential voltage ( +v " -V ,( ). Each unit is
also 100% tested for output
maximum
supply voltage.
that is
In these
short circuit
to common
at
The 3581 and 3582 have a unique feature
important
in many high voltage applications.
two models the input bias current is virtually independent
of the applied common-mode
voltage. This is accom-
plished by the true cascode input stage which keeps the
drain-to-source
voltage of the input transistors
as the common-mode
voltage changes.
constant
OPERATION
FROM A SINGLE SUPPLY
It may be desirable in some applications
to operate the
) +300VOC
amplifiers
illustrates
eo = ej [
R
O
~
from a single supply.
a typical application.
The circuit
in Figure
3
RO
R
~
+R
II
N ote that there are restrictions
on the input and output
voltages (ei and e,,) which are necessary in order to keep
the amplifier circuits operating in a linear manner.
It should be noted that when the 3581 and 3582 amplifiers
are operated from a single supply, the output stage, which
is still short-circuit-current
limited
and thermally
protected,
is not protected
against short circuits
to
ground (the 3580 will still be short circuit protected under
these conditions).
When the amplifiers are operated from
a single supply, the voltage across one of the output
transistors is high enough that secondary breakdown is a
consideration.
The output current must be limited in
order to prevent damage. This can be done by keeping the
load resistor larger than 5kO for the 3582 and greater
than IkO for the 3581.
v
e.
I
+
r
':1;
l21
I~+
+10V ~ ej ~ +290V
+5V ~ eo ~ +290V
'
t RL-eo
FIGURE
3. Operation
from a Single Supply.
The 3580 family. of integrated
circuit
high voltage
amplifiers
provides performance
which previously was
only available in bulky modular packages (see Figures I
and 2). In addition
to the smaller size and inherent
reliability,
the integrated circuit construction
offers other
ELECTRICAL
Typical
at TCASE
= -:
25°C
max unless otherwise
note~
3580J
3581J
MODELS
I POWER
I Voltage.
SUPPLY
:!:Vcc
3582J
ISVDC to
max
:32VDC
:!:75VDC
:!:8mA
ta
!:70VDC to
:!:150VDC
:!:65mA
I Quiescent
i RATED
I Voltage.
Current.
OUTPUT
:!:'iVCCI
c3SVDC
J::10mA
-5 \,-
-
DC,min
IOVDC to
:30VDC
J:60mA
:100mA
:27VDC
:!:7OVDC
:!:3OmA
:!:SOmA
1OnF
to
Current,
min
Current, Short Circuit
~pacitance,
max
;:65VDC to
:!:145VDC
:!:15mA
:!:25mA
i OPEN-LOO~
No Load. DC
Rated Load. DC. min
FREOUENCYRESPONSE
Unity Gain Bandwidth.
Full Power Bandwidth
Slew Rate
SettlinqTime.O.1%
Small Signal
100kHz
15V/IJs
106dB
86dB
112dB
94dB
118dB
100dB
SMHz. min
60kHz
20V/!ls
12!ls
30kHz
20V/,,5
~ INPUT OFFSET VOl TAGE
Initial
at TCASE = +25°C.
max
Voltage
max
:!:10mV
:!:30IJV/OC
100IJV/V
100IJV/mc
:t3mV
12S}lV/OC
20}lV/V
SO}lV/mo
:!:3mV
:!:25IJV/OC
20IJVN
50IJV/mo
Drift vs Temp,
Drift vs Supply
Drift vs Time
I INPUT
BIAS
CURRENT
Initial
at ICASE = +25°C.
Voltage
max
-50pA
O.5pA/\t
I
-20pA
20pA
every
10°C
Drift vs Temp
Drift vs Supply
doubles
02pA/V
02pA/v
rlNPUT OFFSET CURRENT
Initial at TCASE = +25°C.
Drift vs Temp
Drift vs Supply
INPUT
Voltage
max
I
doubles
:!:20pA
every
10oC
OSpA/V
02pA/V
02pA/V
IMPEDANCE
1011!110pF
101111
Differential
Common-mode
INPUT
Voltage
NOISE
001 Hz to 10Hz. p-p
rms
to 10Hz. p-p
RANGE
1!JV
1pA
SIJV
17IJV
03pA
10Hzto1kHz.
Current 001Hz
INPUT
VOlTAGE
17IJV
03pA
Max Safe Differential
Voltage(1)
Max Safe Common-mode
Voltage
Common-mode
Operation
Common-mode
TEMPERATURE
Specification
Operating
Storage
NOTE.
1 On Models 3581 and 3582 the inputs
Voltage.
Rejection
Case
Linear
-VD
+V{
-vcc
;0 -VCr:
Vcc
-10 v
Vcc -!1v
86dB
110dB
Vcc -10
110dB
0°C to 70°C
.55°C to +125°C
55°C to +150°C
may be damaged
by pulses at pins 5 or 6 with
dV /dt?1 V /nsl. Any possible damage can be eliminated by limiting the input current to 150mA
with external resistors in series with those pins. No external protection
is needed for slower
voltage
The information
BURR-BROWN
provided
herein is believed to be reliable; however,
assumes no responsibility
for inaccuracies
or omissions.
BURR-BROWN
assumes no responsibility
for the use of this information,
and all use of such information
shall be entirely at the user's own risk.
Prices and specifications
are subject to change without notice. No patent
rights or licenses to any of the circuits described
herein are implied or
granted to any third party. BURR-BROWN
does not authorize or warrant
any BURR-BROWN
product for use in life support devices and/or systems.
TYPICAL
PERFORMANCE
and :tVcc
max unless otherwise
CURVES
noted
TCASE = +25°C
-50 -25
0
25
50
75 100 125
Case Temperature roC I
OPEN-LOOP
GAIN VS SUPPL y
VOL T AGE A T MAX LOAD
MAXIMUM
POWER
DISSIPATION
11)
"0
0:
ta
(!J
c.
O
O
-'
0,
0)
c.
O
[~
+
~
40
50
60
70
80
90 100 110
25
50
10
100
1k
10k 100k 1M 10M
iHzi
Frequency
Power Supply 1%of maxi
75
100
125
Temperature
,0(
150
TOTAL INPUT NOISE VOLTAGE
VS SOURCE RESISTANCE
TOTALLOWFREOUENCYINPUT
NOISE
VS
SOURCE
RESISTANCE
-25
O
25
50
75100
(oGI
125
103
104
Source
105
106
10;
(01
108
Temperature
Resistance
COMMON-MODE
REJECTION
VS FREQUENCY
POWER SUPPL Y REJECTION
VSFREOUENCY
130
~
-Vcc
=:t75V
-
~-VCC=:t150V
m
~
a:
~
<.)
110!
-~!
901
70
-j~t-
~
Vcc = :!:35\i
~
~
I
100
1k
10k
(HZi
100k
1/1.1
50
30
101
Frequency
PACKAGE OPTION ADDENDUM
www.ti.com
10-Mar-2006
PACKAGING INFORMATION
Orderable Device
3581J
(1)
Status
(1)
NRND
Package
Type
TO-3
Package
Drawing
LMF
Pins Package Eco Plan
(2)
Qty
8
18
Pb-Free (RoHS
Exempt)
Lead/Ball Finish
Call TI
MSL Peak Temp
(3)
N / A for Pkg Type
The marketing status values are defined as follows:
ACTIVE:
Product device recommended for new designs.
LIFEBUY:
TI has announced that the device will be discontinued, and a lifetime-buy period is in effect.
NRND:
Not recommended for new designs. Device is in production to support existing customers, but TI does not recommend using this part in
a new design.
PREVIEW:
Device has been announced but is not in production. Samples may or may not be available.
OBSOLETE:
TI has discontinued the production of the device.
(2)
Eco Plan - The planned eco-friendly classification: Pb-Free (RoHS), Pb-Free (RoHS Exempt), or Green (RoHS & no Sb/Br) - please check
http://www.ti.com/productcontent
for the latest availability information and additional product content details.
TBD:
The Pb-Free/Green conversion plan has not been defined.
Pb-Free (RoHS):
TI's terms "Lead-Free" or "Pb-Free" mean semiconductor products that are compatible with the current RoHS requirements
for all 6 substances, including the requirement that lead not exceed 0.1% by weight in homogeneous materials. Where designed to be soldered
at high temperatures, TI Pb-Free products are suitable for use in specified lead-free processes.
Pb-Free (RoHS Exempt):
This component has a RoHS exemption for either 1) lead-based flip-chip solder bumps used between the die and
package, or 2) lead-based die adhesive used between the die and leadframe. The component is otherwise considered Pb-Free (RoHS
compatible) as defined above.
Green (RoHS & no Sb/Br):
TI defines "Green" to mean Pb-Free (RoHS compatible), and free of Bromine (Br) and Antimony (Sb) based flame
retardants (Br or Sb do not exceed 0.1% by weight in homogeneous material)
(3)
MSL, Peak Temp. -- The Moisture Sensitivity Level rating according to the JEDEC industry standard classifications, and peak solder
temperature.
Important Information and Disclaimer:The
information provided on this page represents TI's knowledge and belief as of the date that it is
provided. TI bases its knowledge and belief on information provided by third parties, and makes no representation or warranty as to the
accuracy of such information. Efforts are underway to better integrate information from third parties. TI has taken and continues to take
reasonable steps to provide representative and accurate information but may not have conducted destructive testing or chemical analysis on
incoming materials and chemicals. TI and TI suppliers consider certain information to be proprietary, and thus CAS numbers and other limited
information may not be available for release.
In no event shall TI's liability arising out of such information exceed the total purchase price of the TI part(s) at issue in this document sold by TI
今天在做STM32H743的测试,主要是测试UART3串口的接受,参考ST公司的例程资料《UART communication on STM32 Microcontrollers using HAL》/* USER CODE END Header_StartTask04 */
void Start ......