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RC4136
General Performance Quad 741 Operational Amplier
Features
Unity gain bandwidth 3 MHz Short circuit protection No frequency compensation required No latch-up Large common mode and differential voltage ranges Low power consumption Parameter tracking over temperature range Gain and phase match between ampliers
Description
The RC4136 is made up of four 741 type independent high gain operational ampliers internally compensated and constructed on a single silicon chip using the planar epitaxial process. This amplier meets or exceeds all specications for 741 type ampliers. Excellent channel separation allows the use of the RC4136 quad amplier in all 741 operational amplier applications providing the highest possible packaging density. The specially designed low noise input transistors allow the RC4136 to be used in low noise signal processing applications such as audio preampliers and signal conditioners.
Block Diagram
Input (A) +Input (A) Output (A) Input (D) +Input (D) Output (D)
Pin Assignments
Input (A) +Input (A) Output (A) Output (B) +Input (B) Input (B) VS
1 2 3 4 5 6 7 14 13 12 11 10 9 8 65-4136-02
A +
D +
Output (B) Input (B) C +
65-4136-01
Output (C) + B +Input (C) Input (C)
Input (D) +Input (D) Output (D) +VS Output (C) +Input (C) Input (C)
+Input (B)
Rev. 1.0.0
PRODUCT SPECIFICATION
RC4136
Absolute Maximum Ratings
(beyond which the device may be damaged)1 Parameter Supply Voltage Input Voltage
2
Min RC4136 RM4136
Typ
Max 18 22 30 30
Units V V V V mW mW mW C C C C C C C
Differential Input Voltage Output Short Circuit PDTA < 50C Duration3 SOIC PDIP CerDIP Operating Temperature Storage Temperature Junction Temperature Lead Soldering Temperature (60 seconds) SOIC, PDIP CerDIP DIP SOIC RC4136 RM4136 0 -55 -65 Indenite
300 468 1042 70 125 150 125 175 300 260
Notes: 1. Functional operation under any of these conditions is NOT implied. Performance and reliability are guaranteed only if Operating Conditions are not exceeded. 2. For supply voltages less than 15V, the absolute maximum input voltage is equal to the supply voltage. 3. Short circuit may be to ground, typically 45 mA.
Operating Conditions
Parameter qJC qJA Thermal resistance Thermal resistance SOIC PDIP CerDIP For TA > 50C Derate at SOIC Min Typ 60 200 160 120 5.0 Max Units C/W C/W C/W C/W mW/C
RC4136
PRODUCT SPECIFICATION
Electrical Characteristics
(VS = 15V and TA = +25C, unless otherwise noted) RM4136 Parameters Input Offset Voltage Input Offset Current Input Bias Current Input Resistance Large Signal Voltage Gain Output Voltage Swing Input Voltage Range Common Mode Rejection Ratio Power Supply Rejection Ratio Power Consumption Transient Response Rise Time Overshoot Unity Gain Bandwidth Slew Rate Channel Separation RL 2kW F = 1.0kHz, RS =1kW VIN = 20mV, RL = 2kW CL 100pF 0.13 5.0 3.0 1.5 90 0.13 5.0 3.0 1.0 90 mS % MHz V/mS dB RS 10kW RS 10kW RL = , All Outputs RL 2kW, VOUT = 10V RL 10kW RL 2kW 0.3 50 12 10 12 70 76 Test Conditions RS 10kW Min Typ 0.5 5.0 40 5.0 300 14 13 14 100 100 210 340 Max 5.0 200 500 0.3 20 12 10 12 70 76 Min RC4136 Typ 0.5 5.0 40 5.0 300 14 13 14 100 100 210 340 V dB dB mW Max 6.0 200 500 Units mV nA nA MW V/mV V
Electrical Characteristics
(RM = -55C TA = 125, RC = 0C TA = 70, VS = 15V) RM4136 Parameters Input Offset Voltage Input Offset Current Input Bias Current Large Signal Voltage Gain Output Voltage Swing Power Consumption RL 2kW, VOUT = 10V RL 2kW 25 10 240 400 Test Conditions RS 10kW Min Typ Max 6.0 500 1500 15 10 240 400 Min RC4136 Typ Max 7.5 300 800 Units mV nA nA V/mV V mW
PRODUCT SPECIFICATION
RC4136
Electrical Characteristics Comparison
(VS = 15V and TA +25C unless otherwise noted) Parameter Input Offset Voltage Input Offset Current Input Bias Current Input Resistance Large Signal Voltage Gain (RL = 2kW) Output Voltage Swing (RL= 2kW) Input Voltage Range Common Mode Rejection Ratio Power Supply Rejection Ratio Transient Response Rise Time Overshoot Unity Gain Bandwidth Slew Rate Input Noise Voltage Density (F= 1kHz) Short Circuit Current 0.13 5.0 3.0 1.0 10 45 0.3 5.0 0.8 0.5 22.5 25 0.8 0.5 mS % MHz V/mS nV/Hz mA RC4136 (Typ.) 0.5 5.0 40 5.0 300 13V 14V 100 100 RC741 (Typ.) 2.0 10 80 2.0 200 13V 13V 90 90 100 |+VS 1.2V| to VS |+VS 1.5V| to VS 85 100 LM324 (Typ.) 2.0 5.0 55 Units mV nA nA MW V/mV V V dB dB
RC4136
PRODUCT SPECIFICATION
Typical Performance Characteristics
100 80 IB (nA) 60 40
65-4136-03
25
VS = 15V
20 IOS (nA) 15 10 5 0 0
VS =
15V
20 0
+10
+20
+30
+40
+50
+60
+70
+10
+20
+30
+40
+50
+60
+70
TA (C) Figure 1. Input Bias Current vs. Temperature
TA (C) Figure 2. Input Offset Current vs. Temperature
15 10 5 0 -5
65-4136-05
15
T A = +25 C
10 5 VOUT (V) 0 -5 -10 -15 4
T A = +25 C
VCM (V)
-10 -15 4 6 8 10 12 14 16
RL = 2 k W
18
10
12
14
16
18
VS (V) Figure 3. Input Common Mode Voltage Range vs. Supply Voltage
+VS/-VS (V) Figure 4. Output Voltage vs. Supply Voltage
800K 240
VS = 15V VS = 15V
600K AVOL (V/mV) PC (mW)
220 200 180 160 0 +10 +20 +30 +40 +50 +60
65-4136-08
400K
RL = 2 k W
65-4136-07
200K
+10
+20
+30
+40
+50
+60
+70
+70
TA (C) Figure 5. Open Loop Gain vs. Temperature
TA (C) Figure 6. Power Consumption vs. Temperature
65-4136-06
65-4136-04
PRODUCT SPECIFICATION
RC4136
Typical Performance Characteristics (continued)
120 100 80 60 40 20
65-4136-09
0 -20 1 10 100 1K 10K 100K F (Hz) Figure 7. Open Loop Gain vs. Frequency 1M
10M
40 36 32 28 24 20 16 12 8 4 0 100
VOUT P-P (V)
AVOL (dB)
VS = 15V T A = +25 C RL = 2 k W
1K
10K F (Hz)
100K
1M
Figure 8. Output Voltage Swing vs. Frequency
28 26 24 22 20 18 16 14 12 10 8 0.1
10
VS = 15V TA = +25 C TA = +25C
8 IQ (mA) 6 4 2 0 3 6 9 12 15
65-4136-12
VOUT P-P (V)
65-4136-11
1.0 RL (kW)
10
18
+VS/-VS (V) Figure 10. Quiescent Current vs. Supply Voltage
Figure 9. Output Voltage Swing vs. Load Resistance
10 8 6 4 2 0 -2 -4 -6 -8 -10 0 10
28
VS = 15V TA = +25 C
24 20 VOUT (mV) 16 12 8 4 0 0
10% Rise Time 90% VS = 15V T A = +25 C RL = 2 k W C L = 100 pF
65-4136-14
Output
VOUT (V)
Input
65-4136-13
20 30 Time (S)
40
0.25
0.50 Time (S)
0.75
1.00
1.25
Figure 11. Follower Large Signal Pulse Response
Figure 12. Transient Response Output Voltage vs. Time
65-4136-10
RC4136
PRODUCT SPECIFICATION
Typical Performance Characteristics (continued)
140 120 100 THD (%) CS (dB) 80 60 40
65-4136-15
0.6 0.5 0.4 0.3 0.2
VS = 15V TA = +25 C
VOUT = 1 VRMS VS = 30V
20 0 10
0.1 0 10 100 1K F (Hz) 10K
100
1K F (Hz)
10K
100K
100K
Figure 13. Channel Separation vs. Frequency
Figure 14. Total Harmonic Distortion vs. Frequency
0.6 0.5 THD (%) 0.4 0.3 0.2 0.1 0 1 2
VS = 15V R L = 2K A V = 40 dB f = 1 kHz RS = 1k W
10
VOUT (V RMS ) Figure 15. Total Harmonic Distortion vs. Output Voltage
65-4136-17
65-4136-16
PRODUCT SPECIFICATION
RC4136
RC4136 Versus LM324
Although the LM324 is an excellent device for single-supply applications where ground sensing is important, it is a poor substitute for four 741s in split supply circuits. The simplied input circuit of the RC4136 exhibits much lower noise than that of the LM324 and exhibits no crossover distortion as compared with the LM324 (see Figure 16). The LM324 shows signicant crossover distortion and pulse delay in attempting to handle a large signal input pulse.
4136
324
F = 10 kHz VOUT = 8 VP-P
F = 50 kHz V OUT = 8 V P-P
RL = 2 k W AV= 1 VS = 5V
65-4136-18
Figure 16. Comparative Crossover Distortion
40 36 32 28 24 20 16 12 8 4 0 100
120
VS = 15V T A = +25 C R L = 2 kW
100 80 AVOL (dB) 60 40
65-4136-20
4136 741
VOUT P-P (V)
4136 741 324
65-4136-19
20 0 -20 1 10 100 1K 10K 100K F (Hz) Figure 18. Open Loop Gain vs. Frequency 1M
1K
10K F (Hz)
100K
1M
10M
Figure 17. Output Voltage Swing vs. Frequency
RC4136
PRODUCT SPECIFICATION
RC4136 Versus LM324 (continued)
+8 +6 +4 VOUT (V) +2 0 -2 -4 -6 -8 0 30 40 Time (S) Figure 19. Follower Large Signal Pulse Response Output Voltage vs. Time 60
Input
65-4136-21
16
Vs = 10V RL = 2 kW Outputs 324
14 12 +VCM (V) 10 8 6 4 2 0 5 10 15 +VS/-VS (V) Figure 20. Input Common Mode Voltage Range vs. Supply Voltage
741 4136 0 C = T A < +70 C
4136
80
20
Typical Applications
+Vs 910K +Vs +Vs 1 1 2 4136A 3 100W 100K 2 5K 91K AV = 10
65-0520
4136A
3 VOUT 100K
+VIN
65-0523
Figure 21. Lamp Driver
Figure 22. Power Amplifier
VIN 1 VIN 2 4136A 3 VOUT
65-0519
2 10K 1 4136A 10M
65-0522
VOUT
+VREF
Figure 23. Voltage Follower
Figure 24. Comparator with Hysteresis
65-4136-22
PRODUCT SPECIFICATION
RC4136
Typical Applications (continued)
VIN 16K 16K 1 0.01F 2 4136A 3 100K +Vs 100K 2 0.01F VOUT 0.001F +Vs 100K 1 4136A 3 VoUT 1 0 100K 100K
65-0527
100K
65-0521
Figure 25. DC Coupled 1kHz Lowpass Active Filter
Figure 26. Squarewave Oscillator
VIN
390K
0.01 F 120K 0.01 F 390K +Vs 1 4136A 2 4136B 5 10 F 100K 100K 3 39K 6 4 +Vs VoUT
620K
620W
+Vs
65-0526
Figure 27. 1kHz Bandpass Active Filter
1M 100K +Vs 1 VIN 2 4136A 3 VoUT +Vs 100K 10K 100K 0.1 F 10 F
65-0524
+Vs VIN 100K 10K 1 2 4136A 3 VoUT
+Vs 10K
65-0525
100K
10 F
100K
10K
Figure 28. AC Coupled Non-Inverting Amplifier
Figure 29. AC Coupled Inverting Amplifier
10
RC4136
PRODUCT SPECIFICATION
Typical Applications (continued)
0.05 F R 100K +VC* 51K 100K
1 2 4136A 3 51K 6 5 4136B 4 Output 1
R/2 50K
51K
V+/210K
Output 2
10K
65-0528
* Wide control voltage range: 0V < Vc < 2(+Vs -1.5V)
Figure 30. Voltage Control Oscillator (VCO)
20K 1%
20K 1%
2.5K Cal DC Output
4.7 F AC Input 4.7 F
20K 1%
20K 1% 10K 1% 1 2 D1 FD666 4136A 3 D2 FD666 4.7 F
6 5 5.1K
65-0531
4136B
10K
Figure 31. Full-Wave Rectifier and Averaging Filter
R2 30K R1 30K Input R3 15K 6 C1 5 R4 7.5K R4 7.5K 4136B 4
1 4136A 2 3 Output Trim R, such that R1 R3 = R2 2R4
10K 741 1K C1 ( mF)
100
65-0530
10 0.0001
C2 1 F
65-0529
0.001
0.001
0.01
1.0
Center Frequency (Hz) Figure 33. Notch Frequency vs. C1
Figure 32. Notch Filter Using the RC4136 as a Gyrator
11
PRODUCT SPECIFICATION
RC4136
Typical Applications (continued)
V IN V4 Q1 5 6 4136B 4 V3 < VIN < V4 2 1 4136A 3 VIN < V4
V3 Q2
9 8 4136C 10 V2 < V IN < V3
V2 Q3
13 V1 14 4136D 12 V IN < V1
65-0532
Figure 34. Multiple Aperture Window Discriminator
(-)
2 1 4136A 3
R2 10K 0.1% R1 45K 1%
R6* 100K 0.1%
5 6 4136B 4 R1 = R4 R2 = R5 R6 = R7 * Matching determines CMRR Av = R6 ( 1 + 2R1 ) R2 R3 VOUT
Inputs
R3 10K 1% R4 45K 1% 4136C 10 R5* 10K 0.1%
8 (+) 9
R7* 100K 0.1%
65-0533
Figure 35. Differential Input Instrumentation Amplifier with High Common Mode Rejection
12
RC4136
PRODUCT SPECIFICATION
Typical Applications (continued)
+15V 10K 10K
VIN1
10K
Q1* 1 2 4136A 3 1K
D4 IN457
10K 6
10K
D1 1N457
4136B
4 VoUT = (VIN1) (VIN2) VIN3
10K Q4*
Q2* V IN2 10K 8 10 9 10K 4136C 1K
Q3* 14 1K 12 4136D 13
10K VIN3
D2 1N457
D3 1N457
10K
65-0534
*Matched Transistors
Figure 36. Analog Multiplier/Divider
49.9K
3.3M 0.082 F
DC-1Hz N Out
49.9W
100K 100K DUT
1.0 F
2 1 4136A 499K 3 60 dB Wideband Amplifier 10 F 1 Hz 499W 1 F 1000 F 0.1 F 0.01 F 1 kHz 10 F 1 Hz 499K 1 F 6 4 4136B 5 0.01 F 0.1 F
49.9W Compensate as Required
499K
78.7K
3.16K
3.16K 1 Hz 10K
Spot Noise Out
8 10 31.6K 4136C 9 100K
499W
1mV = 1nV/ Hz RMS Stepped 10 dB Attenuator
1 kHz
499K
1 kHz
Selectable Frequency Constant Q Filter
65-0535
Figure 37. Spot Noise Measurement Test Circuit
13
RC4136
PRODUCT SPECIFICATION
Simplied Schematic Diagram
+Vs (11) R1 8.7K Q5 Q10 Q14 (1,6,8,14) -Input +Input (2,5,9,13) D1 R5 50K Q1 Q2 Q13 Q12 R7 50 Q15 15 pF Q9 Q3 Q4 Q11 R9 15K R2 5K -Vs (7)
65-0495
Q6
R6 50
R8 100
Output (3,4,10,12)
Q7
Q8
Z1 5.5V
C1 30 pF
R3 5K
R4 50K
14
RC4136
PRODUCT SPECIFICATION
Mechanical Dimensions
14-Lead Ceramic DIP Package
Inches Min. A b1 b2 c1 D E e eA L Q s1 a Max. Millimeters Min. Max. 8 2 8 4 4 5, 9 7 3 6 Notes: Notes 1. Index area: a notch or a pin one identification mark shall be located adjacent to pin one. The manufacturer's identification shall not be used as pin one identification mark. 2. The minimum limit for dimension "b2" may be .023 (.58mm) for leads number 1, 7, 8 and 14 only. 3. Dimension "Q" shall be measured from the seating plane to the base plane. 4. This dimension allows for off-center lid, meniscus and glass overrun. 5. The basic pin spacing is .100 (2.54mm) between centerlines. Each pin centerline shall be located within .010 (.25mm) of its exact longitudinal position relative to pins 1 and 14. 6. Applies to all four corners (leads number 1, 7, 8, and 14). 7. "eA" shall be measured at the center of the lead bends or at the centerline of the leads when "a" is 90. 8. All leads Increase maximum limit by .003 (.08mm) measured at the center of the flat, when lead finish applied. 9. Twelve spaces. D
7 1
Symbol
.200 .014 .023 .045 .065 .008 .015 .785 .220 .310 .100 BSC .300 BSC .125 .200 .015 .060 .005 90 105
5.08 .36 .58 1.14 1.65 .20 .38 19.94 5.59 7.87 2.54 BSC 7.62 BSC 3.18 5.08 .38 1.52 .13 90 105
NOTE 1
14
s1 eA
A Q L b2 b1 a c1
15
PRODUCT SPECIFICATION
RC4136
Mechanical Dimensions (continued)
14-Lead Plastic DIP Package
Inches Min. A A1 A2 B B1 C D D1 E E1 e eB L N .015 .115 Max. .210 .195 Millimeters Min. .38 2.93 Max. 5.33 4.95 Notes: Notes 1. Dimensioning and tolerancing per ANSI Y14.5M-1982. 2. "D" and "E1" do not include mold flashing. Mold flash or protrusions shall not exceed .010 inch (0.25mm). 3. Terminal numbers are shown for reference only. 4. "C" dimension does not include solder finish thickness. 5. Symbol "N" is the maximum number of terminals. 4 2
Symbol
.014 .022 .045 .070 .008 .015 .725 .795 .005 .300 .325 .240 .280 .100 BSC .430 .115 .200 14
.36 .56 1.14 1.78 .20 .38 18.42 20.19 .13 7.62 8.26 6.10 7.11 2.54 BSC 10.92 2.92 5.08 14
D 7 1
E1
D1
14
E e A A1 L B1 B eB C
16
RC4136
PRODUCT SPECIFICATION
Mechanical Dimensions (continued)
14-Lead SOIC Package
Inches Min. A A1 B C D E e H h L N a ccc Max. Millimeters Min. Max. Notes: Notes 1. Dimensioning and tolerancing per ANSI Y14.5M-1982. 2. "D" and "E" do not include mold flash. Mold flash or protrusions shall not exceed .010 inch (0.25mm). 3. "L" is the length of terminal for soldering to a substrate. 4. Terminal numbers are shown for reference only. 5 2 2 5. "C" dimension does not include solder finish thickness. 6. Symbol "N" is the maximum number of terminals.
Symbol
.053 .069 .004 .010 .013 .020 .008 .010 .336 .345 .150 .158 .050 BSC .228 .244 .010 .016 14 0 8 .004 .020 .050
1.35 1.75 0.10 0.25 0.33 0.51 0.19 0.25 8.54 8.76 3.81 4.01 1.27 BSC 5.79 6.20 0.25 0.40 14 0 8 0.10 0.50 1.27
3 6
14
D A1 A SEATING PLANE C LEAD COPLANARITY ccc C a
h x 45 C
17
PRODUCT SPECIFICATION
RC4136
Ordering Information
Product Number RC4136N RC4136M RM4136D RM4136D/8831 Temperature Range 0 to 70C 0 to 70C -55C to +125C -55C to +125C Military Screening Commercial Commercial Package 14 Pin Plastic DIP 14 Pin Narrow SOIC 14 Pin Ceramic DIP 14 Pin Ceramic DIP Package Marking RC4136N RC4136M
Note: 1. /883 denotes MIL-STD-883, Par. 1.2.1 compliant device.
LIFE SUPPORT POLICY FAIRCHILDS PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF FAIRCHILD SEMICONDUCTOR CORPORATION. As used herein: 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, and (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in a significant injury of the user.
www.fairchildsemi.com 5/20/98 0.0m 001 Stock#DS30004136 1998 Fairchild Semiconductor Corporation
2. A critical component in any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness.