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KA334
Dual Power Operational Amplifier
Features
* * * * * * Output Current upto 0.7A Operates at Low Voltage (VS(MIN)=4V) Low Saturation Voltage (Ip=0.5A, VO=1.5V) Thermal Shutdown (TSD=160C) Ground Compatible Inputs Large Common mode & Differential mode Range
Description
The KA334 is a high-power dual operational amplifier provided as a 8-DIP and 16-SOP package. The operational amplifier is designed for low impedance loads and will deliver output current upto 0.7A. The KA334 can be used in a wide range of applications including power supply, VCR, monitor, servo amplifier, compact disc, etc
8-DIP
Applications
* * * * * Servo Amplifier Power Supply Compact Disc VCR Monitor
1
16-SOP
1
Internal Block Diagram
VCC
OUT1
1 8
1 2 3 4 5 6 7 8
16 15 14 13 12 11
OUT1 NC NC GND GND NC IN1IN1+
IN 1-
OUT2 NC
IN 1+
Vcc
2
OUT2
3
K A 3 3 4
+ 7
VEE/GND
6 + -
IN 2+
GND NC
VEE/GND
4
5
IN 2-
IN2IN2+
+
(16-SOP)
+
10 9
(8-DIP)
Rev. 1.0.2
(c)2001 Fairchild Semiconductor Corporation
KA334
PIN Definitions
Pin Number 8-DIP 1 2 3 4 5 6 7 8 16-SOP 16 1 2 4/5/12/13 7 8 9 10 Pin Name OUTPUT1 VCC OUTPUT2 VEE/GND INPUT-2 INPUT+2 INPUT+1 INPUT-1 Pin Function Descrition Amp Output 1 Positive Supply Voltage Amp Output 2 Negative Supply Voltage (GND) Amp Negative Input 2 Amp Positive Input 2 Amp Positive Input 1 Amp Negative Input 1
Absolute Maximum Ratings
Parameter Supply Voltage Input Voltage Differential Input Voltage DC Output Current Peak Output Current (non repetitive) Power dissipation at: Tamb=50C Operating Temperature Range Storage and Junction Temperature Symbol VCC VI VI(DIFF) IO IP Ptot Top Tstg, Tj Value 40 VS VS 0.7 1 1 -25 to 85 -40 to 150 Unit V V V A A W C C
Thermal Data
Parameter Thermal Resistance Junction-Ambient Max. 8-DIP 16-SOP Symbol Rja Value 100 190 Unit C/W
2
KA334
Electrical Characteristics
( Vcc = +12V, VEE = -12V, Ta = 25C unless otherwise specified ) Parameter Supply Voltage (VCC - VEE) Supply Current Input Bias Current Input Offset Voltage Input Offset Current Slew Rate Gain-Bandwidth Product Input Resistance Lange Signal Input Noise Voltage Input Noise Current Common Mode Rejection Ratio Supply Voltage Rejection Ratio Output Voltage Swing Channel Separation Total Harmonic Distortion Thermal stutdown Temperature (Note1) Symbol VS IS IBIAS VIO IIO SR GBW RI GV VO = VCC/2 VCC=24V, VEE=0V VCC=12V, VEE=0V Vin = 1Vpp, Unit Gain VO(pp) = 10V B = 20KHz B = 20KHz VCC =+15V, VEE = -15V VCC =+5V, VEE = -5V VCC = 24V, VEE = 0V Ip = 0.1A Ip = 0.5A f = 1kHz; RL = 10, GV = 30dB f = 1kHz, GV = 1dB,RL = Conditions Min. 4 500 65 60 54 21 21 Typ. 8 7.5 0.3 15 50 1 350 75 10 200 75 62 23 22.5 60 0.5 160 Max. 28 12 11 2.5 60 250 Unit V mA mA A mV nA V/s KHz K dB V pA dB dB V V dB % C
eN
IN CMRR PSRR VO CS THD TSD
Note : 1. Guaranteed by design. Not 100% tested in production.
3
KA334
Typical Perfomance Characteristics
Is,Supply Current(mA)
9
80 60 Gain(dB) 40 20 0 -20
8
7
6
5 0 4 8 12 16 20 24 28 VCC/VEE/Supply Voltage(V)
1.E+01
1.E+02
1.E+03
1.E+04
1.E+05
1.E+06
f, Frequency(Hz)
Figure 1. Supply Voltage vs Supply
Current with No Load
-11
Output Voltage Swing (V) 11.5
Figure 2. Open Loop Voltage Gain
Output Voltage Swing (V)
11
-12 100
200
300
400
500
600
700
10.5 100
200
300
400
500
600
700
IL, Load Current (mA)
0 25 50 75 100 0
IL, Load Current (mA)
25 50 75 100
Figure 3-1. Output Voltage Swing vs Load Current
Figure 3-2. Output Voltage Swing vs Load Current
60 CS(dB)
40
20 0 1.E+01 1.E+02 1.E+03 1.E+04 1.E+05 5.E+01 5.E+02 5.E+03 5.E+04 f,Frequency(Hz) Figure 6. Channel Separation vs Frequency
4
KA334
Applications
VCC
36k 6 IN 10k 5 + CH2 2 4 VEE 3
7
+ CH1 8 -
2 1 Tilt Coil 4 3.3uF 50V
40k 9.1k
1k VEE 33
< Tilt Coil Current Control Circuit in Monitor, 8-DIP Package>
5
KA334
Mechanical Dimensions
Package Dimensions in millimeters
8-DIP
1.524 0.10 0.018 0.004 0.060 0.004 0.46 0.10 6.40 0.20 0.252 0.008 0.79 ) 0.031 #8 9.20 0.20 0.362 0.008 9.60 MAX 0.378 #5 2.54 0.100 5.08 MAX 0.200 7.62 0.300 3.40 0.20 0.134 0.008 3.30 0.30 0.130 0.012 0.33 MIN 0.013
#1
#4
0.25 -0.05
0~15
+0.10
0.010 -0.002
+0.004
6
(
KA334
Mechanical Dimensions
Package Dimensions in millimeters
16-SOP
MIN 0.51 ) 0.020 MAX0.10 MAX0.004 1.27 0.050 1.80 MAX 0.071 +0.10 0.406 -0.05 +0.004 0.016 -0.002 ( 0.05 0.002
1.55 0.10 0.061 0.004 #1 #16
10.30 MAX 0.405 #8 #9 6.00 0.30 0.236 0.012 3.95 0.20 0.156 0.008
+0.10 0.20 -0.05 +0.004 0.008 -0.002
5.72 0.225 0.70 0.20 0.0275 0.008
0~
8
9.90 0.20 0.39 0.008
7
KA334
Ordering Information
Product Number KA334 KA334D Package 8-DIP 16-SOP Operating Temperature -25C ~ +85C
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. LIFE SUPPORT POLICY FAIRCHILD'S 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 6/21/01 0.0m 001 Stock#DSxxxxxxxx 2001 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.


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