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 Single Stage Inverting Amplifier
GS563 - DATA SHEET
FEATURES * 1.0 to 5 VDC operating range * low current consumption (54 A) * 1% electrical distortion * typically 55 dB open loop gain * low pin count (4 pin) * ideal for active filtering STANDARD PACKAGING * 8 pin PLID(R) * Chip size 27 x 25 mils
DESCRIPTION
The GS563 is a low noise, low current, inverting amplifier which
utilizes Gennum's low voltage bipolar JFET technology. The amplifier has a minimum open loop gain of 45 dB with the closed loop gain set by the ratio of feedback resistor to the input resistor. For a well controlled gain tolerance, it is recommended that the closed loop gain be at least 20 dB below the open loop gain. The device is internally bias compensated, preventing any DC current flow via external feedback resistors. It is ideally suited for filtering applications and can be used as a drop in replacement for single transistor configurations.
VCC 7
INPUT
6 3
OUTPUT
2 GND
GS563
FUNCTIONAL BLOCK DIAGRAM
Revision Date: May 1998
Document No. 520 - 67 - 01
GENNUM CORPORATION P.O. Box 489, Stn. A, Burlington, Ontario, Canada L7R 3Y3 tel. +1 (905) 632-2996 Web Site: www.gennum.com E-mail: hipinfo@gennum.com
ABSOLUTE MAXIMUM RATINGS
PARAMETER Supply Voltage Power Dissipation Operating Temperature Storage Temperature CAUTION
CLASS 1 ESD SENSITIVITY
PIN CONNECTIONS
VALUE / UNITS 5V DC 25 mW -10o to +40o C -20o to +70o C
IN GND 1 8 4 5 OUT VCC
ELECTRICAL CHARACTERISTICS Stage = 1.3V Temperature = 25o C
PARAMETER Amplifier Current Bias Voltage (Pin 3) Bias Current (Pin 3) Output Voltage Swing - High (Pin 3) Output Voltage Swing - Low (Pin 3) Open Loop Gain Input Referred Noise Distortion Supply Rejection AOL I.R.N. THD PSRR VOL SYMBOL IAMP VQ3 IBIAS VOH See Note 1 S1 = c, S2 = b, S3 = b See Note 2 S1 = b, S2 = b, S3 = c See Note 3 S1 = d, S2 = c, See Note 4 Aweight S1 = d, S2 = c S1 = d, S2 = c, VOUT<100 mVRMS Open Loop 45 6 55 1.0 0.64 11 2.5 1.0 dB V % dB 200 258 mV CONDITIONS MIN 30 475 -50 200 TYP 54 550 0 590 MAX 80 675 50 UNITS A mV nA mV
All switch positions remain as shown in Test Schematic unless otherwise stated. VP is the actual voltage measured on the pin at given condition. V Q - quiescent (unbias) voltage measured on the pad (nothing connected to the pin) Note: 1. IBIAS = (VP3 [S2 = b] - VQ3 ) /1M 2. VOH = VP6 - VQ6 3. VOL = VQ6 - VP6 4. AOL = 20 log (1 + RF / RS) - (20 log ( (RF / RS) (1 / (1 + R1 / R2) ) (VIN / VOUT) - 1) ) 1F A VCC 1.3V
R1 1k R2 10 180mVRMS at 1kHz
C1 1.0
RS 3k92
d c b S1 3
7 GS563 VOUT 6 S3 2 a b c
VIN
1A +
0.4V DC
a
680pF V 10A b RF = 1M
a
All resistors in ohms, all capacitors in farads unless otherwise stated.
S2
10A c RF = 392k
Fig. 1 GS563 Test Circuit
520 - 67 - 01
2
7
BASE CURRENT COMPENSATION
6
3 2
Fig. 2 Functional Schematic
C3 HIGH PASS
R2
V1
C1
C2 R1
C4
R3
C7 BAND PASS R6
R11
VO
V2
C5
R4 R5
C6
C8
R7
R10 LOW PASS C11
V3 C9
R8
R9 C10
C12
R11
(For Filter Design refer to Note 600-9, Active Filtering for Hearing Aids)
All resistors in ohms, all capacitors in farads unless otherwise stated.
Fig. 3 Multi-Band Filtering Application
3
520 - 67 - 01
VB
7 GS563 1k0 10 VIN 2 3 6 VOUT
10k
All resistors in ohms, all capacitors in farads unless otherwise stated.
Fig. 4 Characterization Circuit
-10 -20 -30 -40 20 18 16 14
OUTPUT (dBV)
-50 -60 -70
THD (%)
-120 -100 -80 -60 - 40 -20
12 10 8 6
-80 -90 -100 -140
4 2 0 -90 -80 -70 -60 -50 -40 -30
INPUT (dBV)
INPUT (dBV)
Fig. 5 Input vs Output
Fig. 6 THD vs Input Level
60
1
50
8 OUT VCC
IN GND
GAIN (dB)
1M
1M
40
2k2 10
4
10 VO
5
30
8 Pin DIP Pinout (For evaluation purposes)
20 10 100 1k 10k 100k
FREQUENCY (Hz)
Fig. 7 Open Loop Voltage Gain
DOCUMENT IDENTIFICATION: DATA SHEET The product is in production. Gennum reserves the right to make changes at any time to improve reliability, function or design, in order to provide the best product possible. REVISION NOTES:
Updated to Data sheet
Gennum Corporation assumes no responsibility for the use of any circuits described herein and makes no representations that they are free from patent infringement. (c) Copyright August 1993 Gennum Corporation. All rights reserved.
Printed in Canada.
520 - 67 - 01
4


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