Order this data sheet by MC34071/D
MC34071,2,4
MC35071,2,4
MC33071,2,4
HIGH SLEW RATE, WIDE BANDWIDTH,
SINGLE SUPPLY OPERATIONAL. AMPLIFIERS
Quality bipolar fabrication with innovative design concepts are
employed for the MC33071 /2/4, MC34071/2/4, MC35071 /2/4 series
of monolithic operational amplifiers. This series of operational
amplifiers offer 4.5 MHz of gain bandwidth product, 13 V/Ws slew
rate and fast settling time without the use of JFET device tech-
nology. Although this series can be operated from split supplies,
it is particularly suited for single supply operation, since the com-
mon mode input voltage range includes ground potential (VEE).
With a Darlington input stage, this series exhibits high input resis-
tance, low input offset voltage and high gain. The all NPN output
stage, characterized by no deadband crossover distortion and
large output voltage swing, provides high capacitance drive capa-
bility, excellent phase and gain margins, lo\M open-loop high fre-
quency output impedance and symmetrical source/sink ac fre-
quency response.
,:,@~ST~~ PACKAGE
CERAMIC PACKAGE
:~<~~ASE 626-05
CASE 693-02
,.:,~::>~~
>\,,:J.
‘
~ ~,
.’!
.\,+<.,,\\
...
The MC33071/2/4, MC34071 /2/4, MC35071 /2/4 series of devices
PLASTIC PACKAGE
.,.\\,
,,l,;+
8
,~:.,
*
are available in standard or prime performance (A Suffix) grades .+S “
CASE 751-02
. ,.’:’~:.
1
and are specified over the commercial, industrial/vehicular
or mike’?~,
(S0-8)
itary temperature ranges. The complete series of single, dual$$~~. ‘*$S
quad operational amplifiers are available in the plastic, c@@~@?
offset
Null~NC
.:;*:*Ao,\,;,~.
.,
DIP and SOIC surface mount packages.
,~,>.~t,>
\
..,,
. Wide Bandwidth: 4.5 MHz
,.,.::$
,.
.
:.!
,.
q
High Slew Rate: 13 VIPS
.,?:4
~>~.
,!+. $,$,>
‘~:t. .?.
. Fast Settling Time: 1.1 ps to O.lO/O
(Single,
ToP View)
$~l$ts
~{:?;ttli,.
. Wide Single Supply Operation: 3.0 V to,<fd,+~~$
I
I
I
‘EE~offset
1-
‘u”
q
Wide Input Common
Mode Voltage TR~$~$~#ncludes Ground (VEE)
3.0 mV ~;wm
(A Suffix)
‘Utput
‘cc
.
.
.
.
.
.
.
Low Input Offset Voltage:
Inputs 1
Large output Voltage Swing: -$~7’~~”to + 14 V (with * 15 V
..::,
:>..,.
..$:Y .:.,
.!.: ,~;
Supplies)
>ii. ,}~
Large Capacitance Drive ~~~~~ty:
O to 10,000 pF
~*l~~i@:h:
“’*
Excellent Phase M@rg~~$@OO
;:::.
‘ ~>>
Excellent Gain ~~$~:~
12 dB
LOW Total
Harmonic
0.020/.
(
VEE ,
V@
-
1
3+
2
7 output 2
I
Inputs 2
2–6
+5
I
(Dual,
TOP
1
View)
Output Shoq~~j~&,~?~Protection
.’.::3
‘{t?,,
:t~~k
v
ORDERING INFORMATION
~’us, ‘,..
.,
*
Device
Temperature
AP
AD
AU
AP
AD
AU
AU
AP
AD
AU
AP
AD
AU
AU
AP
AD
AU
AP
AD
AU
AU
O“c to
O“c
to
O“c to
40”C to
40”C to
4WC to
55°C to
Range
+ 70”C
+7WC
+ 70”C
+ 85°C
+ 85°C
+ 85°C
+ 125°C
+ 70”C
+ 70”C
+85°C
+85°C
+ 85°C
+ 125°C
Package
Plastic DIP
SO-8
Ceramic DIP
Plastic DIP
SO-8
Ceramic DIP
Ceramic DIP
Plastic DIP
SO-8
Ceramic DIP
Plastic DIP
SO-8
Ceramic DIP
Caramic DIP
Plastic DIP
SO-14
Ceramic DIP
Plastic DIP
SO-14
Ceramic DIP
Ceramic DIP
14
m
1
P
SUFFIX
74
14
1
L SUFFIX
PLASTIC PACKAGE
CASE 646-06
Single
MC34071
MC34071
MC34071
MC33071
MC33071
MC33071
MC35071
P,
D,
U,
P,
D,
U,
U,
CERAMIC PACKAGE
CASE 632-08
D SUFFIX
–
–
–
–
PLASTIC PACKAGE
e
1
CASE
751A-02
(s0-14)
Dual
MC34072P,
MC34072D
MC34072U,
MC33072P,
MC33072D
MC33072U,
MC35072U,
MC34074P,
MC34074D,
MC34074U,
MC33074P,
MC33074D,
MC33074U,
MC35074U,
O“cto +
7o”c
O“c to
O“c to
–40°C to
–40°C to
– 40”C to
– 55°C to
O“c
to
O“c
to
O“c to
–40°C to
– 40°C to
– 40°C to
– 55°C to
‘Utput
~output4
1
‘nputsl
Vcc ~
Inputs
2
Quad
+
70”C
+
70”C
+ 70”C
+ 85°C
+ 85°C
+8YC
+ 125°C
{w
qllnputs4
I
I
(Quad, ToP View)
I
output 2 7
m
6
5
~23+’0
~vE,
9
}
I
_
_
Inputs
3
3
8 output
I
DS9718
OMOTOROLA
INC., 1988
(Replacing ADII091 )
MAXIMUM RATINGS
Rating
Supply Voltage
Input Differential
Input Voltage
(from VEE to Vcc)
Voltage
Range
I
Symbol
Vs
VIDR
vlR
Duration
(Note 2)
ts
TJ
+160
+150
Tstg
–65to
–60to
+160
+150
‘c
I
Value
+44
Note 1
Note 1
Indefinite
I
Unit
volts
volts
volts
Seconds
‘c
.\,
‘*,\,
.,k.1+~,,,..,
~,,
,
,:), “%?
~:: .*:,J! ‘~”
:,:
‘I}*, \~,}>
‘$$.~.$,
~..~,
,8,
,*f~,! t$:,:+
., ~;:j:. .,,
~,,$,,.
f+/::\}.
,$.,?’? ><.,,,:;,*”
.tx
“
*+,.3:
, \ .>.:.~
,<>...~~~
. .l-i.$t:+,
~.Jw
,,::. ,, ~ ,
.$\
.+
~~y,,
~,~ty
\
I
Range
Output Short-Circuit
Operating Junction Temperature
Ceramic Package
Plastic Package
Storage Temperature
Ceramic Package
Plastic Package
Range
NOTES:
1, Either or both input voltages should not exceed the magnitude of VCC or VEE.
2, Power dissipation must be considered to ensure maximum junction temperature
,~:.,}
.,. -:-..
‘}?..s,.
‘~i,,
(TJ) is not exceeded (se$*w~~>P~l.
~~,.::..
**.?...
,.
‘:$.’k.$@\$++
,,:,.,*,,;$~.{,
, ,
\
.,:.?:.,, .)
- *XL
.:):<~,:,,
,,.:i:;t> ,..
“‘. ,:$,,,,
..* . ,.,:...,:,:
**.;,...
~
I
output
J
~~:i..
I
1
A
I
A
A
J-J-
(MC33071,
Offset Null
MC34071, MC35071
only)
n
QI 5
QI 6
R5
A
A
A
Current
Limit
~
vEE/Gnd
MOTOROLA
@
Semiconductor
2
Products Inc.
DC ELECTRICAL CHARACTERISTICS
(Vcc
= + 15 V, VEE = – 15 V, RL = connected
to ground u nless otherwise
noted.
See [Note 3] for TA = Tlow to Thigh)
A Sutix
Characteristic
Input Offset Voltage (Rs
VCC = +15 V,VEE =
VCC = +5. OV, VEE =
VCC = +15 V,VEE =
= 100 Q, VCM = O V, VO = O V)
–15V, TA = +25°C
OV, TA = +2VC
–15V, TA = TlowtO Thigh
I Symbol
I Min I TYP
—
—
—
AV10/AT
—
0.5
0.5
—
10
I Max
3.0
3.0
5.0
—
I
Non-Sutix
Vlo
Average Temperature Coefficient of Input Offset Voltage
Rs = IO Q,VCM
= OV, VO = OV, TA =
T1owtOThigh
Input Bias Current (VCM
TA = + 2VC
TA = Tlow to Thiqh
Input Offset Current (VCM
TA = +25°C
TA = Tlow to Thigh
= O V, VO = O V)
i}B
I
Ilo
V[CR
1
I — 1 100 I
—
—
—
—
500
700
nA
= O V, VO = O V)
6.0
—
‘*
,,s~~.’
~’”t~q
1
1
Input Common Mode Voltage
TA = +25°C
TX = Tlow to Thiqh
Range
v
VEE
VE~
VEE
VEE
O (Vcc- 1.8)
D (VCC– 2.2)
V/mV
Large Signal Voltage Gain (VO = *IO
TA = + 25°C
TA = TIOW to
Thigh
Output
VCC
VCC
VCC
Voltage Swing (VID =
= +5.0 V, VEE = O V,
= +15 V, VEE = – 15
= +15 V, VEE = – 15
& 1.0
RL =
V, RL
V, RL
V, RL = 2.0 kQ)
AVOL
iy’””~
,4’%*
.::$%
‘“$$
25
;
,‘.-
~
3.7
13.6
13.4
100
—
4.0
14
——
—
—
—
—
V)
2.0 k~, TA = +25°C
= 10 kn, TA = + 25°C
= 2.0 ko, TA =
TIOW to
.,..
.ti@@
,.” ,..
$
,
j: *.$% ‘
~:, ‘}k,,~,$
.~ik
Thi*Y,$>?
25
20
3.7
13.6
13.4
100
—
4.0
14
—
0.1
-14.7
—
—
—
v
VCC = +5.0 V, VEE = O V, RL = 2.0 kQ, TA = +25°C
VCC = +15 V,VEE = –15V,
RL = 10kQ, TA = +250&~
VCC = +15 V, VEE = –15 V, RL = 2.0 kQ, TA =
TtQ,#2~bThigh
Output Shofi-Circuit
Source
Sink
Rs = 100 kQ, VCM
Current (VID = 1.0 V, VO = O,~},~$~;~ ~YC)
,,
.~f.\.t~*
.~\,/\ **.:
,,\\.
* ,,,..*A
,,..:>
u
“\i$>
t,.
,+’,.,..
‘
I
vOL
—
—
—
Isc
0.1
-14.7
—
10
20
k
0.3
–14.3
–13.5
97
—
—
97
—
—
—
0.3
-14.3
– 13.5
—
—
—
—
dB
dB
mA
v
—
10
20
70
mA
30
30
97
97
= VICR, TA = 25°$ ‘C~$>J:’*”
PSR
ID
—
—
—
Power SupplV Rejection (Rs = 100 Q& “~{JX#
VCCNE~” =“ + 16.5 V/– 1~.5 V to,,...>... . !~,
+%~.5’t~l– 13.5 V, TA = 25°C
~,,,,,
Power SupplV Current (Per Amp$fiefl;~o
Load)
VCC = + 5.0 V, VEE = O ~$J~&’~~~’”% V, TA = + 25°C
2.5
I 80
70
+
Vcc = +15 V, VEE = ~l’~~,$?o
= O V, TA = +25°C
VCC = +15 V, VEE ,g~~
,,15 ~?vo = O V, TA = TIOW to
Thigh
.$$,
*~.;t- ~
,*, *,:ji,
$.$”
NOTES: (continued)
3.
Tlow = –
550c,,ti*d~35071 ,2,4,1A
Thigh = + 125°C
for MC35071 ,2,4,1A
== + 85°C for MC3307 1,2,4,/A
= – 40~;?~,,,~C3307 1,2,4,/A
— 0°9~~~v&24071 ,2,4,1A
-- + 70°C for MC34071 ,2,4,/A
--
~,,.>,.,.
,.,.%
,,
‘.
... ..
L
1.6
1.9
—
2.0
2.5
2.8
—
1.6
1.9
—
2.0
2.5
2.8
MOTOROLA
Semiconductor
3
Products
Inc.
AC ELECTRICAL CHARACTERISTICS
(Vcc
= + 15 V, VEE = – 15 V, RL = connected to ground, TA = + 25°C unless
noted)
.-
otherwise
I
Characteristic
Slew Rate (Vin = – 10 V to +10 V, RL = 2.0 kQ, CL = 500 pF)
Av = +1.0
AII = –1.0
Settling Time (10 V Step, Av = –1.0)
To 0.17. (+1/2 LSB of 9-Bits)
To 0.0170 ( + 1/2 LSB of 12-Bits)
Gain Bandwidth
Product (f = 100 kHz)
Symbol
SR
I
Min
8.0
—
ts
—
—
G BW
3.5
A
suffix
Typ
10
13
1.1
2.2
4.5
Max
—
—
—
—
—
—
—
32
—
%
Differential
Input Resistance
.,$
.
a
,,.,,$i$;~
~
Total Harmonic Distortion
AV = + 10, RL =
2,0
kQ,
2.0
Vp-p < VO <
20
Vp-~;~~j =’~i$OkHz
$<,
.$i~\y >,.!
,’,, ,,
,,t .:. ~1~,~
;
Channel Separation (f = 10 kHz)
Open-Loop
Output Impedance
(f = 1.0 MHz)j:.~$$~Jf*”’
THD
—
Izol
—
—
–
0.02
120
30
—
—
–
—
a
%
0.22
—
—
—
150]
—IMQ
0.02
120
30
—
70
—
—
—
dB
Q
—
FIGURE 2 — OFFSET NULL CIRCUIT
Vcc
27
—
6
3+15
4
10
k
u
*
VEE
‘EE
offset nulling range is approximately
*8O mV with a 10 k
potentiometer (MC33071, MC34071, MC35071 only).
MOTOROLA
Semiconductor
4
Products Inc.
TYPICAL
FIGURE 3 —MAXIMUM
TEMPERATURE
POWER DISSIPATION
FOR PAC~GE
TYPES
PERFORMANCE
CURVES
FIGURE 4 — INPUT OFFSET VOLTAGE versus
TEMPERATURE FOR REPRESENTATIVE UNITS
versus
2400
I
I
$
I
Iuu
I
I
I
I
I
I
I
—
TA, AMBIENT TEMPERATURE VC)
FIGURE 5 — INPUT COMMON MODE VOLTAGE
RANGE versus TEMPERATURE
Vcc
vcc –
0.8
j
Vcc – –
1
\
T
VCCNEE =
I
+1.5 V/–l.5Vto
I
I
+22 V/–22V
I
– 55
TA, AMBIE,~T’~WiTURE
YC)
‘~’~.l~,$ti~
,,,
~y
.f,...~
FIGURE 7 — NOR~k$~ED
INPUT BIAS CURRENT
lNPU~,,$wON
MODE VOLTAGE
– 25
0
25
50
75
100
125
TA, AMBIENT TEMPERATURE (°C)
versus
FIGURE 8 — SPLIT SUPPLY OUTPUT VOLTAGE
SWING versus SUPPLY VOLTAGE
50
—a
~~
w
~
3
:
w
a
5
:
3
&
=-
>0
1
I
I
RL Connected
to Ground TA = 25°C
/
30
‘
40
/
20
10
#
“
5.0
10
15
20
25
0
–12
– 8.0
– 4.0
0
4.0
8.0
12
o
Vlc, INPUT COMMON-MODE VOLTAGE (V)
VCC, IVEEI, SUPPLY VOLTAGE (V)
MOTOROLA
Semiconductor
5
Products Inc.