KA324 Fairchild Semiconductor, KA324 Datasheet

IC OPAMP QUAD HIGH GAIN 14-DIP

KA324

Manufacturer Part Number
KA324
Description
IC OPAMP QUAD HIGH GAIN 14-DIP
Manufacturer
Fairchild Semiconductor
Datasheet

Specifications of KA324

Amplifier Type
General Purpose
Number Of Circuits
4
Current - Input Bias
40nA
Voltage - Input Offset
1500µV
Current - Supply
1mA
Current - Output / Channel
40mA
Voltage - Supply, Single/dual (±)
3 V ~ 32 V, ±1.5 V ~ 16 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Through Hole
Package / Case
14-DIP (0.300", 7.62mm)
Number Of Channels
4
Voltage Gain Db
100 dB
Common Mode Rejection Ratio (min)
65 dB
Input Offset Voltage
7 mV
Operating Supply Voltage
5 V, 9 V, 12 V, 15 V
Supply Current
1.2 mA
Maximum Power Dissipation
1310 mW
Maximum Operating Temperature
+ 70 C
Mounting Style
Through Hole
Maximum Dual Supply Voltage
+/- 16 V
Minimum Operating Temperature
- 25 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Output Type
-
-3db Bandwidth
-
Slew Rate
-
Gain Bandwidth Product
-
Lead Free Status / Rohs Status
In Transition

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Features
• Internally Frequency Compensated for Unity Gain
• Large DC Voltage Gain: 100dB
• Wide Power Supply Range:
• Input Common Mode Voltage Range Includes Ground
• Large Output Voltage Swing: 0V to V
• Power Drain Suitable for Battery Operation
Internal Block Diagram
©2010 Fairchild Semiconductor Corporation
KA324/KA324A, KA2902
Quad Operational Amplifier
KA324 / KA324A : 3V~32V (or ±1.5 ~ 16V)
KA2902: 3V~26V (or ±1.5V ~ 13V)
IN2 (+)
IN2 (-)
IN1 (+)
IN1 (-)
OUT2
OUT1
V
CC
CC
4
2
6
1
3
5
7
-1.5V
2
1
_
_
+
+
Description
The KA324 series consist of four independent, high gain,
internally frequency compensated operational amplifiers
which were designed specifically to operate from a single
power supply over a wide voltage range. Operation from
split power supplies is also possible so long as the
difference between the two supplies is 3 volts to 32 volts.
Application areas include transducer amplifier, DC gain
blocks and all the conventional OP Amp circuits which now
can be easily implemented in single power supply systems.
+
+
14-SOP
14-DIP
3
_
_
4
1
1
12
11
13
10
14
9
8
OUT4
IN4 (+)
IN3 (+)
OUT3
GND
IN3 (-)
IN4 (-)
www.fairchildsemi.com
Rev. 1.0.6

Related parts for KA324

KA324 Summary of contents

Page 1

... IN2 (-) OUT2 ©2010 Fairchild Semiconductor Corporation Description The KA324 series consist of four independent, high gain, internally frequency compensated operational amplifiers which were designed specifically to operate from a single power supply over a wide voltage range. Operation from split power supplies is also possible so long as the difference between the two supplies is 3 volts to 32 volts ...

Page 2

... KA324/KA324A, KA2902 Schematic Diagram (One Section Only IN(-) IN(+) Q7 GND Absolute Maximum Ratings Parameter Power Supply Voltage Differential Input Voltage Input Voltage Output Short Circuit to GND Vcc≤15V, T =25°C(One Amp) A Power Dissipation, T =25°C A 14-DIP 14-SOP Operating Temperature Range Storage Temperature Range ...

Page 3

... Output Voltage Swing Common-Mode CMRR Rejection Ratio Power Supply PSRR Rejection Ratio Channel Separation Short Circuit to GND I SOURCE Output Current Differential Input Voltage V Note =30V for KA324 26V for KA2902 This parameter, although guaranteed, is not 100% tested in production. Conditions V = -1. 1.4V 0Ω IO ...

Page 4

... Output Voltage Swing I SOURCE Output Current Differential Input Voltage V Note =30V for KA324 26V for KA2902 These parameters, although guaranteed, are not 100% tested in production. 4 (Continued) ≤ +70°C for the KA324 ; and the -40°C ≤ Conditions -1.5V ICM 1.4V 0Ω IO O(P) S (Note1) /Δ ...

Page 5

... Large Signal Voltage Gain Output Voltage Swing Common-Mode Rejection Ratio Power Supply Rejection Ratio Channel Separation Short Circuit to GND Output Current Differential Input Voltage Note =30V for KA324A CC 2. This parameter, although guaranteed, is not 100% tested in production. (Continued) Symbol Conditions -1.5V CM ...

Page 6

... Input Bias Current Input Common-Mode Voltage Range Large Signal Voltage Gain Output Voltage Swing Output Current Differential Input Voltage Note =30V for KA324A These parameters, although guaranteed, are not 100% tested in production. 6 (Continued) ≤ +70°C for the KA324A A Symbol Conditions -1. 1.4V 0Ω IO ...

Page 7

... Typical Performance Characteristics Supply Voltage(v) Figure 1. Input Voltage Range vs Supply Voltage Supply Voltage (V) Figure 3. Supply Current vs Supply Voltage Frequency (Hz) Figure 5. Open Loop Frequency Response KA324/KA324A, KA2902 ( °C) Temperature T j Figure 2. Input Current vs Temperature Supply Voltage (V) Figure 4. Voltage Gain vs Supply Voltage Frequency (Hz) Figure 6 ...

Page 8

... KA324/KA324A, KA2902 Typical Performance Characteristics Figure 7. Voltage Follower Pulse Response Figure 8. Large Signal Frequency Response Figure 10. Output Characteristics vs Current Sinking 8 (Continued) Figure 8. Voltage Follower Pulse Response (Small Signal) Figure 9. Output Characteristics vs Current Sourcing Figure 11. Current Limiting vs Temperature ...

Page 9

... Mechanical Dimensions Package 6.40 ±0.20 ±0.008 0.252 #1 #7 7.62 0.300 14-DIP #14 #8 ±0.20 3.25 ±0.008 0.128 5.08 MAX 0.200 KA324/KA324A, KA2902 Dimensions in millimeters 0.20 MIN 0.008 3.30 ±0.30 0.130 ±0.012 9 ...

Page 10

... KA324/KA324A, KA2902 Mechanical Dimensions Package #1 #7 6.00 0.236 3.95 0.156 ±0.20 0.60 0.024 ±0.008 10 (Continued) 14-SOP 1.55 0.061 #14 #8 ±0.30 1.80 ±0.012 0.071 ±0.20 ±0.008 5.72 0.225 Dimensions in millimeters 0.05 MIN 0.002 ±0.10 ±0.004 MAX ...

Page 11

... Ordering Information Product Number KA324 KA324A KA324D KA324AD KA2902 KA2902D Package Operating Temperature 14-DIP 0 ~ +70°C 14-SOP 14-DIP -40 ~ +85°C 14-SOP KA324/KA324A, KA2902 11 ...

Page 12

... KA324/KA324A, KA2902 DISCLAIMER FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY, FUNCTION OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS. ...

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