ETC AMIS

AMIS-14935 Audio Amplifier
Description
The input resistor and feedback resistor is external in the
AMIS-14935 making it possible to set the gain arbitrarily, up
to approximately 40dB. The feedback resistor can also be
potentiometer to facilitate volume control.
The AMIS-14935 (former MSC-LX1792) offers a patent
pending, low-voltage, low-power and high efficiency
amplifier for driving a high impedance speaker such as a
hearing aid receiver or a headset. The AMIS-14935 consists
of a pre-amplifier followed by a fixed gain class D amplifier.
Key Features
• Low Operating Current: 120µA Typical
• Low Operating Voltage: 0.9V minimum
• Gain Set by External Resistors
• 3 output switch resistance settings: 48, 24 & 16Ω
• 5µVrms Input Referred Noise
Applications
• Hearing aid applications
• High impedance speaker/transducer applications
Important: For the most current data, consult AMI
Semiconductor’s website: http://www.amis.com.
Product Highlight
Package Order Info
TJ (°C): 10…15
J: Ceramic Dip 14-Pin
NQFP: Plastic MLPM 8-Pin
BD: Bare Die
Note for hearing aid applications are covered by Knowles patents numbers US
4,592,087 & 4,689,819: AMI Semiconductor policy is not to sell the AMIS-14935
into hearing aid applications unless a patent license exist between customer
and Knowles Corporation. Please contact AMIS for assistance with this.
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1
AMIS-14935 Audio Amplifier
Absolute Maxium Ratings
Input Logic Supply Voltage (VDD)
Operating Temperature Range
-0.3V to +3.0V
10°C to 55°C
Note: Exceeding these ratings could cause damage to
the device. All voltages are with respect to Ground.
Currents are positive into, negative out of specified
terminal.
Package Pin Out
PACKAGE
(Top View)
PACKAGE
(Top View)
Settings
Pin
IMPSEL
IMPSEL=VSS
16Ω
IMPSEL=VDD
24Ω
IMPSEL=Floating
48Ω
Functional Pin Description
Pin Name
VDD
VSS
IN
OUTP
OUTN
PREOUT
IMPSEL
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Pin No
14 Pin J
(Evaluation
Samples)
13
2
8
14
1
9
6
Pin No
8 Pin
8
1
5
7
2
6
3
Description
Supply Voltage
Ground
Analog Audio Input
Positive Output Voltage
Negative Output Voltage
Pre-Amplifier Output
Output Resistance Select. See Settings table below for selections.
2
AMIS-14935 Audio Amplifier
Recommended Operating Conditions
Parameter
Symbol
OPERATING CONDITIONS
Supply Voltage
Ground
VDD
VSS
Test Conditions
Min
AMIS-14935
Typ
Max
0.9
1.5
0
Units
V
V
Electrical Characteristics
Unless otherwise specified, the following specifications
apply over the operating ambient temperature TA=25°C
except where otherwise noted. Test conditions: VDD=1.3V,
Parameter
Switch Output Resistance
@ Low Drive
Switch Output Resistance
@ Med Drive
Switch Output Resistance
@ High Drive
Quiescent Current
@ Low Drive
Quiescent Current
@ Med Drive
Quiescent Current
@ High Drive
3dB Bandwidth –
Min Frequency
3dB Bandwidth –
Max Frequency
Output Switching Frequency
Symbol
48
ROUT-M
24
ROUT-HI
16
IDDQL
110
IDDQM
FMIN
PSRR
Total Harmonic Distortion
THD1
Input Referred Noise
VN-20
Ω
19
µA
40
100
Hz
R1=50k, R2=1000k, Fin=1kHz
10
kHz
FCLK
200
kHz
R1=50k, R2=500k
R1=25k, R2=500k
Input Reference
R1=50k, R2=500k
R1=50k, R2=500k, Vin=5mVrms, Fin=1kHz
R1=25k, R2=500k, Vin=5mVrms, Fin=1kHz
R1=50k, R2=500k, 100Hz-10kHz,
No weighting
R1=25k, R2=500k, 100Hz-10kHz,
No weighting
32
37
dB
45
dB
0.3
0.5
%
FCLK
VOFF-NP
Units
130
FMAX
Power Supply
Rejection Ratio
Max
120
No load
IDDQH
A1
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AMIS-14935
Min
Typ
Test Conditions
ROUT-L
Gain1
Output Clock Frequency
Max Absolute DC Offset
OutN-OutP
VSS=0V, Circuit connected as application schematic on page
5, Output loaded with 200Ohm in series with 60mH.
No input signal
3
4
µVrms
3
140
200
300
kHz
0
0.5
5
mV
AMIS-14935 Audio Amplifier
Charts
Note: Graphs show distortion with no load outputs.
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4
AMIS-14935 Audio Amplifier
Figure 2 – H-Bridge Impedance vs. Supply Voltage (Lowest Impedance Setting).
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5
AMIS-14935 Audio Amplifier
Mechanicals - 8 Pin MLPQ Package Outline
LM
8-Pin Plastic MLP-Micro Exposed Pad
Dim
A
B
C
D
E
F
G
H
I
J
K
J
Millimeters
Min
Max
2.90
3.10
2.90
3.10
0.65
0.75
0.15
0.25
1.841 BSC
0.27
0.43
0.65 BSC
1.22 BSC
0
0.10
0.21
0.37
0
0.10
Inches
Min
Max
0.114
0.122
0.114
0.122
0.025
0.029
0.005
0.009
0.075 BSC
0.010
0.016
0.025 BSC
0.048 BSC
0
0.003
0.008
0.014
0
0.003
Millimeters
Min
Max
19.30
19.94
5.59
7.11
5.08
0.38
0.51
1.02
1.77
2.54 BSC
2.03
0.20
0.38
3.18
5.08
7.37
7.87
15°
Inches
Min
Max
0.760
0.785
0.220
0.280
0.200
0.015
0.020
0.040
0.070
0.100 BSC
0.080
0.008
0.015
0.125
0.200
0.290
0.310
15°
14-Pin Ceramic Dip
Dim
A
B
C
D
F
G
H
J
K
L
M
Note:
1. Dimensions do not include mold flash or
protrusions; these shall not exceed 0.155mm (.006”)
on any side. Lead dimension shall not include
solder coverage.
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6
AMIS-14935 Audio Amplifier
Mechanicals - 7 Pin Bare Die
Dim
X
Y
Millimeters
Min
Max
1.15
1.78
Inches
Min
Max
0.045
0.070
Note:
1. Dimensions do not include mold flash or
protrusions; these shall not exceed 0.155mm (.006”)
on any side. Lead dimension shall not include
solder coverage.
AMI Semiconductor
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7
AMIS-14935 Audio Amplifier
AMIS-14935
Using AMIS-14935 in Hearing Assist Applications
Notes:
1. When using volume control potentiometer, keep input
resistor between 25kOhm to 50kOhm for optimum
performance. Using lower than 25k may cause higher
distortion and using higher than 50k may cause output noise
to increase.
2. Input coupling capacitor (C2) must be present. Forms a
high pass filter together with resistor R1 with an approximate
corner frequency of 1/(2*3.14*R1*C2).
3. R2 and C3 facilitate supply filtering for microphone. The
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suggested values are indications only and are dependent on
microphone characteristic, quality of supply and supply
rejection needed.
4. Bypass capacitor may or may not be needed. Shall be kept
low (less than 1µF) since a high value capacitance supply to
ground may cause audible noise at power down.
5. IMPSel pin (Impedance select) should generally be tied to
ground for minimum switch impedance and maximum drive
capability.
8
AMIS-14935 Audio Amplifier
AMIS-14935
Using AMIS-14935 as Receiver Driver in H-aid
Ultra Low Power Audio System
Notes:
1. For optimum noise and distortion performance a 50k input
resistor is recommended.
2. Input coupling capacitor (C2) must be present. Forms a
high pass filter together with resistor R1 with an approximate
corner frequency of 1/(2*3.14*R1*C2).
3. Bypass capacitor (C1) may or may not be needed
dependent on the supply quality. This capacitor shall have a
low value (less than 1µF) since a high value capacitance
supply to ground may cause audible noise at power down. If
other parts of the system requires a higher capacitor value this
capacitor can be placed on the battery side of the switch
making the total stored charge on the supply line small when
system is powered down (switch is opened).
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