SANYO LA1816

Ordering number: EN2659C
Monolithic Linear IC
LA1816, 1816M
Single-Chip AM/FM, MPX Tuner System for Headphone
Stereos, Radio-Cassette Recorders
Functions
Package Dimensions
. FM: RF amplifier, MIX, OSC, IF amplifier, quadrature
. AM: detector
MIX, OSC, IF amplifier, detector, AGC
. MPX:RFPLLamplifier,
stereo decoder, stereo indicator, VCO stop
unit : mm
3067-DIP24S
[LA1816]
Features
. Contains FM tuner, AM tuner, MPX on a single chip.
. Adjustment-free FM detector and AM IF
. Minimum number of external parts required
. Low-voltage operation
. Low current drain
. Less carrier leak of MPX (no-input, monaural-input mode)
SANYO : DIP24S
unit : mm
3112-MFP24S
[LA1816M]
Specifications
SANYO : MFP24S
Maximum Ratings at Ta = 25°C, See specified Test Circuit
Parameter
Symbol
Conditions
Maximum supply voltage
VCC max
Pins 8, 9, 11, 18, 20, 22
Maximum supply current
ICC max
Flow-in current
(Indicator drive current)
Flow-out current
Allowable power dissipation
Ratings
Unit
7
V
Pins 8 + 18 + 20 + 22
50
mA
ILED
Pin 9
10
mA
I21
Pin 21
0.1
mA
350
mW
Pd max
Ta % 70°C
Operating temperature
Topr
–20 to +70
°C
Storage temperature
Tstg
–40 to +125
°C
SANYO Electric Co.,Ltd. Semiconductor Bussiness Headquarters
TOKYO OFFICE Tokyo Bldg., 1-10, 1 Chome, Ueno, Taito-ku, TOKYO, 110 JAPAN
N3097HA(II)/8099YT/N307TA/N197TA,TS No.2659-1/11
LA1816, 1816M
Operating Conditions at Ta = 25°C
Parameter
Symbol
Recommended supply voltage
Conditions
Ratings
VCC
Operating voltage range
VCC op
Unit
3
V
1.8 to 6.0
V
Operating Characteristics at Ta = 25°C , VCC = 3 V, See specified Test Circuit
Parameter
Quiescent current
Symbol
ICCO (FM)
ICCO (AM)
Conditions
min
FM mode VIN = 0
AM mode VIN = 0
typ
max
Unit
8.9
15
mA
3.3
5.5
mA
[AM Characteristics] : fc = 1000 kHz, fm = 1 kHz
Detection output
Signal to noise ratio
Total harmonic distortion
V O1
VIN = 23 dBµ, 30% mod.
12
23
41
mV
V O2
VIN = 80 dBµ, 30% mod.
48
74
120
mV
S/N1
VIN = 23 dBµ, 30% mod.
16
21
S/N2
VIN = 80 dBµ, 30% mod.
45
52
THD1
VIN = 80 dBµ, 30% mod.
0.3
1.3
%
THD2
VIN = 107 dBµ, 30% mod.
0.6
2.0
%
dB
dB
[FM Characteristics] (F.E.) : fc = 98 MHz, fm = 1 kHz
–3 dB sensitivity
Local oscillation voltage
–3dBL.S.
VOSC
Referenced to VIN = 80 dBµ , 30% mod.,
3 dB down
fOSC = 108.7 MHz
12
75
dBµ
110
160
mV
39
46
dBµ
[FM Characteristics] (IF + MPX, MONO) : fc = 10.7 MHz, fm = 1 kHz
–3 dB sensitivity
–3dBL.S.
Referenced to VIN = 100 dBµ, 100% mod.,
3 dB down
Demodulation output
VO
VIN = 100 dBµ, 100% mod.
135
200
mV
Channel balance
C.B.
VIN = 100 dBµ, 100% mod.
0
2.0
dB
THD (mono)
VIN = 100 dBµ, 100% mod.
0.7
3.0
%
S/N
VIN = 100 dBµ, 100% mod.
Total harmonic distortion
Signal to noise ratio
100
75
dB
[FM Characteristics] (IF + MPX, STEREO) : fc = 10.7 MHz, fm = 1 kHz, L + R = 90%, pilot = 10%, VIN = 100 dBµ
Channel separation*
Sep
25
34
dB
Total harmonic distortion
70
THD (main)
LED-ON level
VLED-ON
LED-OFF level
VLED-OFF
2.0
0.6
2.5
%
3.5
5.0
%
2.7
%
* Sep = 45 dB (typ) at MPX IN
No.2659-2/11
LA1816, 1816M
Equivalent Circuit Block Diagram
Forced monaural when
connected to VCC
Test Circuit
CDA10.7MG15-A
: Polystyrene film capacitor
L1,SA-026 (Sumida)
L2, YT-40001 (Mitsumi)
L3,HW-50425 (Mitsumi)
Unit (resistance: Ω, capacitance: F)
No.2659-3/11
LA1816, 1816M
Coil Specifications
FM
. ANT B.P.F
(Sumida)
. SNY-074-2001
OSC
YT-40001 (Mitsumi)
5.5 mm ø air core, 0.8 mm wire, 3T
. RF SA-026(Sumida)
mm ø air core, 1.0 mm wire, 5T
. 3.5
Discriminator
CDA 10.7MG (15) (Murata)
AM
. MW OSC
HW-50425
(Mitsumi)
3 – 2 2T
4 – 6 9T
Qo ^ 80
2 – 1 86T L = 270 µH
. Bar antenna
TYA-8032 (PVC-2LXT-L)
(Mitsumi)
1 – 2 21T c 100T
3 – 4 30T
(Terminal assembly position)
1 – 2 L = 604 µH
Qo ^ 120
Sample Printed Circuit Pattern
Cu-foiled area 85 x 80 mm2
No.2659-4/11
LA1816, 1816M
How to use the LA1816
1.
2.
VCO stop
The VCO is stopped by shorting pin 10 and pin 8 (VCC pin).
Note) The maximum supply voltage on pin 10 must not exceed the voltage on pin 8.
Free-running frequency check
Either of the following two methods is used to check the free-running frequency.
(a) Connect pin 12 to a frequency counter through the high input impedance amplifier.
Figure 1
(b) Connect the connection point of the semifixed resistor connected to pin 12 and the fixed resistor to a frequency counter
through the resistor of 240 kΩ or greater.
How the error changes with the resistor value is shown in Figure 2.
Error, ∆f – %
∆F – RX
Figure 2
RX – Ω
How to use the FM DET coil
For pin 17 (FM DET), a coil may be used instead of adjustment-free FM discriminator.
1 – 3 10T
Qo = 90
f = 10.7 MHz
82 pF internal
Figure 3 How to use the FM DET coil
Figure 4 FM DET Coil Characteristics
ANT input voltage – dBµ
Figure 5 FM DET Coil Characteristics
Total harmonic distortion, THD – %
Pin 4 (IF) input
Noise voltage, AM output,
Demodulation output – dBm
3.
ANT input voltage – dBµ
No.2659-5/11
LA1816, 1816M
4.
How to use the FM AFC
The S curve at output pin 16 is as shown Figure 6. Figure 7 shows how to provide FM AFC.
Figure 6
5.
Figure 7
AM-FM selection
The FM mode is entered with pin 11 open as shown in Figure 8 . When pin 11 and pin 8 are made to be at the same
potential in terms of DC, the AM mode is entered. It should be noted that the dynamic range is narrowed whether the
potential at pin 11 is lower or higher than that at pin 8.
Figure 8
No.2659-6/11
LA1816, 1816M
FM Characteristics
Noise voltage, AM output,
Demodulation output – dBm
Total harmonic distortion, THD – %
FM Characteristics
.
ANT input voltage – dBµ
FM IF Characteristics
FM IF Characteristics
Noise voltage, AM output,
Demodulation output – dBm
Total harmonic distortion, THD – %
ANT input voltage – dBµ
ANT input voltage – dBµ
AM Characteristics
AM Characteristics
Total harmonic distortion, THD – %
Noise voltage, Detection output – dBm
ANT input voltage – dBµ
ANT input voltage – dB/m
FM THD Characteristics
Separation, Sep – dB
Total harmonic distortion, THD – %
ANT input voltage – dB/m
MPX Sep Characteristics
Modulation frequency, f – Hz
Frequency modulation, f – Hz
No.2659-7/11
LA1816, 1816M
MPX Sep Characteristics
Pilot level – mV
Separation, Sep – dB
MPX Capture Range Characteristics
Unit (resistance: Ω, capacitance: F)
Unit (Capacitance: F)
Free-running frequency, fF – kHz
Capture range – %
AM Selectivity Characteristics
Total harmonic distortion, THD – %
MPX THD – VIN Characteristics
Output 20 mV
const.
Modulation frequency, f – Hz
MW Receiving Characteristics
(Tracking at each frequency)
PFB455JR
(2 elements)
Detuning frequency, ∆f – kHz
AM Whistle Characteristics
Detection
output
Whistle max
ANT input voltage – dB/m
AM Spurious Characteristics
Referenced to 1 MHz
receiving mode
IF interference
Usable
sensitivity
Image frequency
interference
Max sensitivity
(1 kHz – 30 % mod, output 10 mV)
Receiving frequency, f – kHz
Response – dB
Sensitivity – dBm, Interference ratio – dB
Attenuation – dB
Attenuation
Total harmonic distortion, THD – %
Input voltage, VIN – mV
AM Fidelity Characteristics
Detection output, Whistle output – dBm
Attenuation – dB
SFU-455C
(1 element)
Frequency, f – Hz
No.2659-8/11
LA1816, 1816M
Total harmonic distortion, THD – %
Oscillation voltage, VOSC – mV
SW2 Characteristic
Pin 19 voltage
Adjust
so that
THD is
minimized.
IEC input – dBµ
SW2 Characteristics (1)
IEC input – dBµ
SW2 Characteristics (2)
Total harmonic distortion, THD – %
Noise voltage, Detection output – dBm
Ambient temperature, Ta – °C
Detection output – dBm
Sensitivity – dB/m
Supply voltage, VCC – V
Total harmonic distortion, THD – %
Supply voltage, VCC – V
FM Temperature Characteristics
Usable sensitivity (input at S/N = 20 dB)
Max.
sensitivity (input at output 10mV)
Noise voltage, Detection output – dBm
–3 dB L.S. (–3 dB limiting sensitivity)
Detection output (VIN = 100 dB/m)
Quiescent current, ICCO – mA
fOSC – MHz
Qs (usable sensitivity)
Demodulation output, VO – dBm
fF (free-running)
Free-running frequency, f – kHz
fOSC – MHz
AM VCC Characteristics
Total harmonic distortion, THD – %
fOSC (local)
Quiescent current, ICCO – mA
Sensitivity – dBm
Free-running frequency, fF – kHz
FM VCC Characteristics
Receiving frequency, f – MHz
No.2659-9/11
LA1816, 1816M
SW Band Test Circuit
Unit (resistance: Ω, capacitance: F)
Coil Specifications
T1
SW2 OSC
HW 40184 (Mitsumi)
0237 1500 (Sumida)
4 – 6 8T
3 – 1 12T
Qo ^ 28,
L = 1.31µH
T1
SW2 ANT
YT 30117 (Mitsumi)
1 – 2 4T
4 – 6 2T
2 – 3 4T
Qo = 95,
L = 1.4 µH
4 – 6 8T
3 – 1 12T
Qo ^ 20,
L = 1.31 µH
2158 4095 319A (Sumida)
4 – 6 2T
1 – 2 5T
2 – 3 5T
Qo ^ 40,
L = 1.4 µH
ANT input voltage – dB/m
Total harmonic distortion, THD – %
Noise voltage, Detection output – dBm
LW Characteristics
No.2659-10/11
LA1816, 1816M
LW Band Test Circuit
Coil Specifications
T1 c LW OSC
MA-7014 (Mitsumi)
4 – 6 40T
1 – 3 80T
L = 220 µH, Qo = 130
L1 c LW bar antenna
HH-50161 (Mitsumi)
Unit (capacitance: F)
1– 2 20T
3– 4 200T
3– 4 L = 2.74 mH, Qo ^ 200
No products described or contained herein are intended for use in surgical implants, life-support systems, aerospace equipment,
nuclear power control systems, vehicles, disaster/crime-prevention equipment and the like, the failure of which may directly or
indirectly cause injury, death or property loss.
Anyone purchasing any products described or contained herein for an above-mentioned use shall:
1 Accept full responsibility and indemnify and defend SANYO ELECTRIC CO., LTD., its affiliates, subsidiaries and distributors
and all their officers and employees, jointly and severally, against any and all claims and litigation and all damages, cost and
expenses associated with such use:
2 Not impose any responsibility for any fault or negligence which may be cited in any such claim or litigation on SANYO
ELECTRIC CO., LTD., its affiliates, subsidiaries and distributors or any of their officers and employees jointly or severally.
Information (including circuit diagrams and circuit parameters) herein is for example only; it is not guaranteed for volume
production. SANYO believes information herein is accurate and reliable, but no guarantees are made or implied regarding its use
or any infringements of intellectual property rights or other rights of third parties.
This catalog provides information as of November, 1997. Specifications and information herein are subject to change without notice.
No.2659-11/11