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 Low Current Preamplifier with Output Limiting
GL504 - DATA SHEET
FEATURES * designed to drive class D integrated receivers * MPO range externally adjustable * 150 A typical current drain * 46 dB of adjustable gain * low external parts count Composed of two stages, an inverting preamp with gain of 28 dB, and a transconductance block with gain of 18 dB, the GL504 is easily configured for mid-supply reference as required by the class D receivers. The two stages of the GL504 must be AC coupled in order to maintain the DC bias conditions of each stage. Also, a 48 k resistor, between the output and ground, is used to keep the receivers at mid-supply reference. The minimal total parts count, excluding an MPO variable resistor, requires 3 capacitors, a 100 k volume control and the 48 k bias resistor at the output. The GL504 is capable of providing a flat frequency response with very little distortion. DESCRIPTION The GL504 is a low current preamplifier designed to drive the class D series of integrated receivers. This preamp has a built-in symmetrical peak clipping output limiter, 46 dB of adjustable gain, and requires few external components.
STANDARD PACKAGING * 8 Pin MICROpac * 8 Pin PLID(R) * 8 Pin SLT * Chip (56 x 56 mils) Au Bump
R
MIC
6
R MIC
7
V
B
R A IN 5
PULL
A
B
8
B OUT
R CLIP
4
U.S. Patent No. 07/354,327
3 B IN
2 MPO
1 GND
A OUT
BLOCK DIAGRAM
Revision Date: May 1998
Document No. 510 - 99 - 06
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 Operating Temperature Storage Temperature
PIN CONNECTION
AOUT BIN MPO 4 5 AIN R MIC VB 1 8 B OUT
VALUE / UNITS
5V -10C to +40C -20C to +70C
GND
CAUTION
Class 1 ESD Sensitivity
ELECTRICAL CHARACTERISTICS (refer to test circuit) Supply Voltage = 1.3 V, Test Frequency 1kHz
PARAMETER Amplifier Current Microphone Resistance Input Referred Noise Gain MPO Level SYMBOL IAMP RMIC IRN AV MPO NFB 0.2 to 10kHz at 12 dB/oct VIN = -80 dBV VIN = -50 dBV RMPO = 0 VIN = -50 dBV RMPO = 10 k CONDITIONS RMPO = 0 MIN 75 3.0 44.5 -16 TYP 150 4.0 2 46.5 -14 MAX 225 5.3 48.5 -12 UNITS A k VRMS dB dBV
Change in MPO
MPO
10
12
14
dB
Preamp A input Bias Current Pull-up Resistance Gain Loss
IBIAS A RPULL GAIN R4 = 10 k, VIN = -70 dBV, RMPO = 50 k
-25 40 -
0 48 0
+25 58 2.5
nA k dB
RMIC 6 R 5 3k9 022 V
IN
I AMP 7
PULL
V B =1.3 VDC
A V OUT 01
A
B 8 R CLIP
V
IN
1+40 dB
1k 10
4
3
2 RMPO
1
47k
R4 100k
01
All resistors in ohms, all capacitors in F, unless otherwise stated.
Fig. 1 Test Circuit
510 - 99 - 06
2
RMIC 6
7
RPULL 4 8
BASE CURRENT COMPENSATION
33k 5
2k5
1
All resistors in ohms, all capacitors in F, unless otherwise stated.
2
3
Fig. 2
Functional Schematic
R MIC 10
MIC
7 R
PULL
V B =1.3 VDC 10 33n 48k
6 B
CLASS D INTEGRATED RECEIVER
01
5
A
8 R CLIP
4 R VC
3
2 10k RMPO
1
100k
22n
All resistors in ohms, all capacitors in F, unless otherwise stated.
Fig. 3
Typical Application Circuit
3
510 - 99 - 06
-10
-10
RVC = 100k
-20 -30 -15
RVC = 33k OUTPUT (dBV)
R MPO = 0 RMPO = 3k3
-20 -25 -30 -35 -40
OUTPUT (dBV)
-40 -50 -60 -70 -80 -90 -140 -120 -100 -80 -60 -40 -20
RMPO = 10k
RVC = 10k RVC = 3k3
-45 -50 -100
INPUT (dBV)
-80
-60
-40
-20
INPUT (dBV)
Fig. 4 I/O Curves at Various RVC Settings
Fig. 5 I/O for Various MPO Values
4
10
C S = 022
0
9 8 7
RELATIVE OUTPUT (dB)
CS = 01
-4
THD (%)
20k
CS = 0047
-8
6 5 4 3 2 1
CS = 0033
-12
-16
-20 20 200 2k
0 -90 -86 -82 -78 -74 -70 -66 -62 -58
FREQUENCY (Hz)
INPUT (dBV)
Fig. 6
Frequency Response for Various CS Values
Fig. 7 Distortion vs Input Level (R VC=100k)
0
RELATIVE AMPLIFIER CURRENT (A)
-10 -20 -30 -40 -50 -60 -70 -80 -90 0 5 10 15 20 25 30
RMPO (k)
Fig. 8
Quiescent Current vs MPO Resistance
510 - 99 - 06
4
-10 -14 -18 -22
55
No Load
50
OUTPUT (dBV)
-26 -30 -34 -38 -42 -46 -50 0 10
50k Load
GAIN (dB)
1k 10k 100k
45
40
100
35 10 100 1k 10k 100k
RMPO ()
FREQUENCY (Hz)
Fig. 9
Output vs MPO Resistance
Fig. 10 Preamplifier A 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 July 1990 Gennum Corporation. All rights reserved.
Printed in Canada.
5
510 - 99 - 06


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