Any and all SANYO products described or contained herein do not have specifications that can handle
applications that require extremely high levels of reliability, such as life-support systems, aircraft’s
control systems, or other applications whose failure can be reasonably expected to result in serious
physical and/or material damage. Consult with your SANYO representative nearest you before using
any SANYO products described or contained herein in such applications.
SANYO assumes no responsibility for equipment failures that result from using products at values that
exceed, even momentarily, rated values (such as maximum ratings, operating condition ranges,or other
parameters) listed in products specifications of any and all SANYO products described or contained
herein.
Monolithic Linear IC
Low Voltage and Current Dissipation
Compandor IC
Ordering number:ENN3516B
LA8630, 8630M
SANYO Electric Co.,Ltd. Semiconductor Company
TOKYO OFFICE Tokyo Bldg., 1-10, 1 Chome, Ueno, Taito-ku, TOKYO, 110-8534 JAPAN
Applications
• Cordless telephone.
• FM transceiver.
Functions
• Compressor (VCA circuit, full-wave rectifying circuit,
adder amplifier).
• Expandor (VCA circuit, full-wave rectifying circuit, adder
amplifier).
• Operational amplifier (in the compressor).
• Operational amplifier with muting function (in the
expandor).
• Analog switch for data signal input (in the compressor).
• Regulator.
Package Dimensions
unit:mm
3006B-DIP16
[LA8630]
16
1
19.2
0.71 2.54
0.48
unit:mm
3035B-MFP16
[LA8630M]
10.0
16
9
8
1.2
9
6.4
7.62
3.0
3.65max
3.4
SANYO : DIP16
0.25
1
(0.56)
1.27
12501TN (KT)/7101TS/8030TS No.3516–1/7
0.35
4.4
6.4
8
(1.5)
1.7max
0.1
SANYO : MFP16
0.63
0.15
LA8630, 8630M
Specifications
Maximum Ratings at Ta = 25˚C
retemaraPlobmySsnoitidnoCsgnitaRtinU
egatlovylppusmumixaMV
noitapissidrewopelbawollAxamdP 003Wm
erutarepmetgnitarepOrpoT 57+ot02–
erutarepmetegarotSgtsT 521+ot04–
Operating Conditions at Ta = 25˚C
retemaraPlobmySsnoitidnoCsgnitaRtinU
egatlovylppusdednemmoceRV
egnaregatlovgnitarepOV
Operating Characteristics at Ta = 25˚C, VCC=3.0V, f=1kHz, Vin=100mVrms (0dB)
retemaraPlobmySsnoitidnoC
niardtnerruCI
egatlovecnerefertupnIferniV 001smrVm
)Bd0:niagreifilpmalanoitarepO(]rodnapxE[
leveltuptuOeferoV)Bd6–:niagreifilpmalanoitarepO(Bd0=niV5.62–5.42–5.22–VBd
rorreniaG
rotcafnoitrotsiDeDHTBd0=niV53.00.1%
egatlovesiontuptuOV
citsiretcarahcycneuqerFfzH0053ot002=f,Bd0=niV0.0Bd
egatlovtuptuomumixaMV
)Bd0:niagreifilpmalanoitarepO(]rosserpmoC[
leveltuptuOcferoVBd0=niV32–12–91–VBd
rorreniaG
rotcafnoitrotsiDcDHTBd0=niV53.00.1%
egatlovesiontuptuOV
citsiretcarahcycneuqerFfzH0053ot002=f,Bd0=niV0.0Bd
)Bd0:niagreifilpmalanoitarepO(]tiucricgnituM[
noitaunettagnituM1TCzHk1=f,Bd0=niV0609Bd
egatlovdlohserhTmhtV52.153.154.1V
klatssorC2TCzHk1=f,Bd0=niV0474Bd
egatlovdlohserhTahtV52.153.154.1V
* Be careful that the threshold voltage is determined by VCC (Vth=0.45VCC).
xam 8V
CC
CC
po 6ot2.2V
CC
nimpytxam
CC
1eegVBd5+=niV5.0–05.0+Bd
2eegVBd02–=niV0.1–00.1+Bd
3eegVBd03–=niV5.1–00.2+Bd
e=niV
ON
xamRLk01= Ω %01=DHT,6.00.1smrV
O
1cegVBd02+=niV5.0–05.0+Bd
2cegVBd02–=niV5.0–05.0+Bd
3cegVBd04–=niV0.1–00.1+Bd
c=niV ∞ 026=gR, Ω zH00002ot02=f,3.07.0smrVm
ON
)Bd0:niagreifilpmalanoitarepo(]tiucrichctiwsgolanA[
∞ 026=gR, Ω zH00002ot02=f,2108smrVµ
tupnilangisonhtiW5.27.3Am
sgnitaR
˚C
˚C
3V
tinU
No.3516–2/7
LA8630, 8630M
Equivalent Circuit Block Diagram/Sample Application Circuit
Pin Name Control Mode
.oNniPemaN
1NIV.PXE
2CERV.PXE
3TUOV.OXE
4)PXE(FNPMA.PO
5)PMOC(FNPMA.PO
6FERV
7DNG
8CCV2/1
9CCV
01TNOCETUM
11.TNOCATAD
21NIATAD
31TUOV.PMOC
41FN.PMOC
51CERV.PMOC
61NIV.PMOC
edoMlangisoiduAataD
01niP
11niP
nepOtuptuO–
]woL[etuM–
nepOtuptuOetuM
]WOL[etuMtuptuO
No.3516–3/7