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100mVRMS

Catalog Datasheet MFG & Type PDF Document Tags

PSB2196

Abstract: Talema : Inductance: Line side windings in series - measurement @ 10kHz, 100mVrms Leakage Inductance: Line side windings in series, IC side windings short circuited - measurement @ 100kHz, 100mVrms Coupling Capacitance: IC side winding to Line side windings in parallel @ 10kHz, 100mVrms Test Voltage: 2,5kV for 1 sec. - , Inductance: Line side windings in series - measurement @ 10kHz, 100mVrms Leakage Inductance: Line side windings in series, IC side windings short circuited - measurement @ 100kHz, 100mVrms Coupling Capacitance
Talema Nuvotem
Original
UF-130A UV-130A UMJ-192S UHF-230B PEB2095 AM2095 PSB2196 Talema ISO STANDARDS 1660 PEB20950 PEB20590VIP/PEB20591VIP-8 TP3406

SL5020P

Abstract: SL-5020 components · Built in compressor and expander mute circuit · Unity gain level set a 100mVrms · Response time , THDc Vnoc RRc Vinc= 100mVrms, 0dB Vinc= Vinc= Vinc= Vinc= 316mVrms, 10dB 10mVrms, -20dB 1mVrms, -40dB , -1.5 -1 -1 -1 -1 0 0 0 0 0 0.3 1.5 1 1 1 1 1.5 5.0 -18 dB dB dB dB dB % mVrms dB Vinc=100mVrms, f=1kHz Rg = 600 Vcc = 1kHz, 3V(DC), 100mVrms - 0.8 -25 KSI-W006-002 3 Electrical , ) Muting Attenuation Input Impedance SL5020/P Min. - Symbol CTc Attc Rinc Test Conditions Vinc=100mVrms
AUK
Original
SL5020 SL5020P SL-5020 DIP14

TA7762N

Abstract: 100PPM 0dB MONO : 400Hz, 100mVrms 9 V21 SUB : 400Hz, 100mVrms V8 / V9 b , 10 V21 : 100Hz, 100mVrms SUB : 100Hz, 100mVrms 100% BIL.Q 11 V21 12 V21 1kHz MONO : 10kHz, 100mVrmsv V8 / V9 b b SUB : 10kHz, 100mVrms V8 / V9 b b V8 / V9 b b V8 / V9 b b V8 / V9 b b , , 100mVrms 14 V21 15 V21 16 V21 17 V21 18 V21 19 V21 +BIL.Q V8
Toshiba
Original
TA7762N 100PPM VR25 V13V14 R25R29VR25VR29 40PPM SDIP30-P-400-1

SA570N

Abstract: SA570 SA578 AN1762 specified and set at 100mVRMS. The earlier compandors also have a set unity gain , have their 0dB levels at 100mVRMS. If a designer wanted a different 0dB level, two op amps would have , formulas 1 and 2, design a compandor with a 0dB level of 100mVRMS. Try to achieve a THD of 0.1 on the , and a 0dB level of 100mVRMS. The bandwidth of the expandor, the compressor, and the compandor (where , 100mVRMS 100mVRMS 100mVRMS 10mV to 1VRMS Power-Down NO NO NO NO NO NO YES
Philips Semiconductors
Original
NE577 NE578 SA577 SA570 SA572 SA575 SA570N Hearing Aid Circuit Diagram philips compressor ALC sa571 SA571
Abstract: ), (3+6) 100kHz, 100mVrms (4+5), (3+6) 10kHz, 100mVrms ±2% 1MHz, 100mVrms (uH±10%) (uH, Max , (6+3) (2-4) tie (2+7) (OHMS Max) (4+5), (1+8), (3+6) 100kHz, 100mVrms (pF Max) LB 17MHz (dB , ), (2+8), (3+5), (4+6), (3+6), (4+5) (1+8), (2+7) 100Khz, 100mVrms 100Khz, 100mVrms (pF Max) (pF Max Pulse Engineering
Original
EN60950 BX4290LNL BX4290LNLT D-71083

NJW1194V

Abstract: NJW1194 =1% VOL=0dB VIN=2Vrms, f=1kHz VOL=0dB VIN=100mVrms, f=1kHz VOL=+15dB VIN=2Vrms, f=1kHz VOL=0dB f , 1 GVBASS1 2 GVBASS 2 3 GVBASS 3 VIN=100mVrms, f=10kHz VOL=0dB, TONE=ON, =0dB VIN=100mVrms, f=10kHz VOL=0dB, TONE=ON, =+10dB VIN=100mVrms, f=10kHz VOL=0dB, TONE=ON, =-10dB VIN=100mVrms, f=100Hz VOL=0dB, TONE=ON, =0dB VIN=100mVrms, f=100Hz VOL=0dB, TONE=ON, =+10dB VIN=100mVrms, f=100Hz VOL=0dB, TONE=ON, =-10dB x VIH VIL
-
Original
NJW1194 NJW1194V SSOP32

audio compressor expander IC

Abstract: compressor IC components · Built in compressor and expander mute circuit · Unity gain level set a 100mVrms · Response , , 3V(DC), 100mVrms - -25 -18 dB Vinc= 100mVrms, 0dB Vinc= Vinc= Vinc= Vinc= 316mVrms, 10dB 10mVrms, -20dB 1mVrms, -40dB 100uVrms, -60dB Vinc=100mVrms, f=1kHz KSI-W006 , (CE) CTc Vinc=100mVrms. Exp Output - -72 -50 dB Muting Attenuation Attc Vinc=100mVrms. Vpin13=GND - -65 -50 dB Input Impedance Rinc PIN 10 - 20 -
AUK
Original
audio compressor expander IC compressor IC audio compressor audio compressor expander IC 8 pin precision FULL WAVE RECTIFIER audio compressor expander IC, 8 pin KSI-W006-000
Abstract: ) with others (2-3) shorted shorted shorted 10kHz, 100mVrms 100kHz, 100mVrms 100kHz, 100mVrms  , shorted 100kHz, 100mVrms 300kHz ~ 8MHz (OHMS Max) (pF Max) (dB Max) 1.0 35 0.5 Notes: * Use Pulse Engineering
Original
BCM65 EN60950-1 BX4285LNL BX4285LNLT BX4285LNL/BX4285LNLT

NJW1194

Abstract: NJW1194V Input Impedance ­2­ RIN f=1kHz,THD=1% VOL=0dB VIN=2Vrms, f=1kHz VOL=0dB VIN=100mVrms, f , Bass Voltage Gain 2 GVBASS 2 Bass Voltage Gain 3 GVBASS 3 VIN=100mVrms, f=10kHz VOL=0dB, TONE=ON, Treble=0dB VIN=100mVrms, f=10kHz VOL=0dB, TONE=ON, Treble=+10dB VIN=100mVrms, f=10kHz VOL=0dB, TONE=ON, Treble=-10dB VIN=100mVrms, f=100Hz VOL=0dB, TONE=ON, Bass=0dB VIN=100mVrms, f=100Hz VOL=0dB, TONE=ON, Bass=+10dB VIN=100mVrms, f=100Hz VOL=0dB, TONE=ON, Bass=-10dB xLogic Control
New Japan Radio
Original
V1000 AUDIO bass treble control circuit treble and bass

3D surround sound IC

Abstract: circuit diagram of 3D surround sound SYSTEM down point Vin=100mVrms Vin=100mVrms Vin=100mVrms Vin=100mVrms 4) IHF-A MAIN VOLUME GVM , Conditions Vin=100mVrms, f = 2kHz IN_L OUT_L Vin=100mVrms, f = 2kHz IN_L OUT_R Vin=100mVrms, f=20Hz Vin=100mVrms, f=20kHz Vin=100mVrms, f=20kHz Vin=100mVrms, f=20kHz Vin=100mVrms, f=20kHz Vin=100mVrms, f=20kHz Vin=1mVrms 6) Vin=50mVrms 6) Vin=200mVrms 6) Vin=1Vrms 6) Vin=100mVrms Vin=100mVrms Vin=100mVrms ±1dB - ±8dB Vin=100mVrms ±9dB - ±15dB Vin=100mVrms Vin=100mVrms, f=15kHz Vin=100mVrms, f=15kHz Vin=100mVrms, f
ROHM
Original
3D surround sound IC circuit diagram of 3D surround sound SYSTEM 5.1 surround sound diagrams 3D surround sound 15 pin ICs bbe sound 5.1 channel surround sound IC BD3830FS BD3831FS

M62419FP

Abstract: 2.1 woofer circuit diagram Vi=100mVrms SRS, Focus OFF Input; pin2,35 /Output; pin16, 22 Vi=100mVrms Input; pin2,35 /Output; pin16, 22 f=150Hz SRS ON,FOCUS OFF Vi=100mVrms SRS ON FOCUS Position"H" ON (2pin,35pin)-(16, 22Pin , ; pin16, 22 f=1KHz SRS ON FOCUS Position"H" ON THD=1% f=20KHz Vi=100mVrms SRS, Focus OFF Input , 18 Vno3 Channel Separation Vrms 0.67 Vno1 Output Noise Voltage Vrms 0 Vi=100mVrms Input; pin2,35 /Output; pin16, 22 f=150Hz SRS ON,FOCUS OFF Vi=100mVrms SRS ON FOCUS Position"H" ON
Mitsubishi
Original
M62436FP M62419FP 2.1 woofer circuit diagram R14-R17 36P2R M62419FP/M62440FP

S5012

Abstract: SPECIFICATIONS @ 25°C 1. LI+II 30uH (NI+II SERIES) AT 10KHz 100mVrms(core 1, 2) 2. POLARITY AND TURNS RATIO , (core1, 2) 4. LSI+II 5.0uH(NI+II SERIES, NIII+IV SHORTED) AT 100KHz 100mVrms(core1, 2) 5. LS V 0.6uH(NVI VII VIII SHORTED) AT 100KHz 100mVrms(core 3) 6. LV=LVI=LVII=LVIII=5.0mH+50%/-30% at 10KHz 100mVrms(core 3) 7. ZI=ZII 625 AT 20KHz 100mVrms WITH Idc=5mA(core 1,2) 8. HI-POT TEST: UP=2.0KVrms, 2S
Bothhand Enterprise
Original
S5012 100KH

SOP18 Package

Abstract: SDIP18 =80kHz, Vin=100mVrms, Bass=­14dB VTBMAX +11 +14 +17 dB f=15kHz, Vin=100mVrms, Treble=+14dB Treble cut control range VTCMAX ­17 ­14 ­11 dB f=15kHz, Vin=100mVrms, Treble , =1Vrms, BPF=400­30kHz BPF=IHF­A, Rg=0 BPF=IHF­A f=80Hz, Vin=100mVrms, Bass=+14dB Application Circuit
ROHM
Original
BD3869FS BD3869F SDIP18 BD3869S SOP18 Package volume treble bass control ic bass treble circuit i2c-bus "volume control" 01W039A BD3869F/S
Abstract: (1+8) (1+8), (3+6) 100kHz, 100mVrms (4+5), (3+6) 10kHz, 100mVrms ±2% 1MHz, 100mVrms (uH , C_iw (4-5) tie (6+3) (2-4) tie (2+7) (OHMS Max) (4+5), (1+8), (3+6) 100kHz, 100mVrms (pF Max , ) tie (1+7), (2+8), (3+5), (4+6), (3+6), (4+5) (1+8), (2+7) 100Khz, 100mVrms 100Khz, 100mVrms (pF Pulse Engineering
Original
BX4289LNL BX4289LNLT

marking code C5 SMD ic

Abstract: TLA09AAA 65 k PSRR Power Supply Rejection Ratio VRipple 100mVRMS, fRipple 217Hz, AV 6dB Inputs Terminated 52 dB CMRR Common Mode Rejection Ratio VRipple 100mVRMS, fRipple , Supply Rejection Ratio VRipple 100mVRMS, fRipple 217Hz, AV 6dB, Inputs Terminated CMRR Common Mode Rejection Ratio VRipple 100mVRMS, fRipple 217Hz, AV 6dB 39 dB eN Output , , 22kHz BW CMRR vs Frequency VDD 5V, RL 8 33H VCM 100mVRMS Sine Wave, 80kHz BW CMRR vs
National Semiconductor
Original
LM4665 LM4665MM LM4665ITL LM4665ITLX TLA09AAA LM4665LD marking code C5 SMD ic MARKING CODE SMD IC AN-1112 22kHz LDA10B DS200270-02-JP MUB10A

dn45 tdk

Abstract: X HP5 DNW45T3.4 x 1.5 x B-DN - - - 32Ts TDK CORPORATION 3 1.100kHz, 100mVrms, 8mAdc , % 0 to 70 2.100kHz, 100mVrms,10Ts, 0Adc, 25°C * BACK NEXT 5 DNW45 4 DNW45 , C-DN - - - 26Ts(28Ts) 1.100kHz, 100mVrms, 8mAdc * AL-value*2 (nH/N2) -40 to , , 100mVrms,10Ts, 0Adc, 25°C * A:1.27 mm B :1.70 mm C:1.78 mm D:2.00 mm E :2.23 mm F :2.29 mm , , 100mVrms, 8mAdc * AL-value*2 (nH/N2) 0 to 70 -40 to +85 850 25% 0 to 70 -40 to +85 580
-
Original
dn45 tdk X HP5 HP5800 DN-45 DNW45T4 10/100B BSF-D04CA

BP3125

Abstract: dual sub woofer circuit diagram 20log(V OUT1/VOUT2) Rg = 0, f = 100Hz VRR = 100mVrms RR = 20log(VRR/VOUT) Conditions Input impedance , /AN) IHF-A Input gain = 2dB VIN = 200mVrms GIN MIN = 20log(VOUT/VIN) Input gain = 20dB VIN = 100mVrms , 100mVrms, Q = 1 GM BST = 20log(VOUT/VIN) Gain = -20dB, f = 700Hz VIN = 2Vrms, Q = 1 GM CUT = 20log(VOUT/VIN , VIN =100mVrms Gain = 20dB, f = 100Hz VIN = 100mVrms GB BST = 20log(VOUT/VIN) Gain = -20dB, f = 100Hz VIN = 2Vrms GB CUT = 20log(VOUT/VIN) f = 100Hz f = 100Hz Gain = +20dB VIN = 100mVrms Maximum cut
ROHM
Original
BD3426K BP3125 dual sub woofer circuit diagram 40 Hz sub woofer circuits diagrams extra bass circuit diagram prosessor BD3827K

30ts

Abstract: DNW45 , 100mVrms, 8mAdc * AL-value*2 (nH/N2) - DNW45T3.05×2.54×A-BW () -4085 870±25% 070 2.100kHz, 100mVrms,10Ts, 0Adc, 25°C * TDK CORPORATION 3 BACK NEXT 5 DNW45 4 , ) 1.100kHz, 100mVrms, 8mAdc * AL-value*2 (nH/N2) - DNW45T3.4×2.5×B-BW () 070 2.100kHz, 100mVrms,10Ts, 0Adc, 25°C * A:1.27 mm B :1.70 mm C:1.78 mm (mm) D:2.00 mm E :2.23 mm F , , 100mVrms, 8mAdc * () -4085 580±25% 070 2.100kHz, 100mVrms,10Ts, 0Adc, 25°C * A
-
Original
R2000 30ts TDK Pulse Transformers hp53 2002/95/EC 1000B L350H BSF-D04JB
Abstract: (1+8) (1+8), (3+6) 100kHz, 100mVrms (4+5), (3+6) 10kHz, 100mVrms ±2% 1MHz, 100mVrms (uH , C_iw (4-5) tie (6+3) (2-4) tie (2+7) (OHMS Max) (4+5), (1+8), (3+6) 100kHz, 100mVrms (pF Max , ) tie (1+7), (2+8), (3+5), (4+6), (3+6), (4+5) (1+8), (2+7) 100Khz, 100mVrms 100Khz, 100mVrms (pF Pulse Engineering
Original

BH3868FS

Abstract: BH3868AFS =­20dB(ATT) THD=1% Vin=1Vrms Vo=1Vrms Vo=1Vrms 100Hz, Vin=100mVrms 100Hz, Vin=100mVrms 10kHz, Vin=100mVrms 10kHz, Vin=100mVrms 1kHz, Vin=1Vrms 100Hz, Vin=100mVrms 10kHz, Vin=100mVrms Vo=0.5Vrms, BPF=400Hz~30kHz
ROHM
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BH3868BFS BH3868FS BH3868AFS surround amp ic circuit PCB SURROUND BH3868 00W080A SSOP-A32 1000P

SW-22

Abstract: TA7762N 100Hz, VRR RRR = 20log B VRR = 100mVrms, Ripple rejection, Lch RRL 40 53 - dB fRR = 100Hz, VRR RRR = 20log VRR = 100mVrms, B Ripple rejection, Cch RRC 40 53 - dB fRR = 100Hz, VRR RRR = 20log B VRR = 100mVrms, Muting level, Rch VMUTER 80 90 , , Rch VBMAXR 13 15.5 18 dB Comparison with f = 100Hz, VIN = 100mVrms, bass flat Bass boost gain, Lch VBMAXL 13 15.5 18 dB Comparison with f = 100Hz, VIN = 100mVrms
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OCR Scan
SW-22

precision FULL WAVE RECTIFIER

Abstract: characterization of precision full wave rectifier components · Built in compressor and expander mute circuit · Unity gain level set a 100mVrms · Response , , 3V(DC), 100mVrms - -25 -18 dB Vinc= 100mVrms, 0dB Vinc= Vinc= Vinc= Vinc= 316mVrms, 10dB 10mVrms, -20dB 1mVrms, -40dB 100uVrms, -60dB Vinc=100mVrms, f=1kHz KSI-W006 , (CE) CTc Vinc=100mVrms. Exp Output - -72 -50 dB Muting Attenuation Attc Vinc=100mVrms. Vpin13=GND - -65 -50 dB Input Impedance Rinc PIN 10 - 20 -
Lansdale Semiconductor
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ML33111 MC33111 characterization of precision full wave rectifier precision full wave walkie-talkie MC33111D MC33111P

BH3865S

Abstract: BH3865 CHARACRTERISTICS + (Ta=25°C, V =9V, Rg=600, RL=47k, Vin=100mVrms/1kHz unless otherwise specified) PARAMETER , =50mVrms, f=1kHz Vin=100mVrms, f=1kHz Vin=200mVrms, f=1kHz Vin=300mVrms, f=1kHz Vin=400mVrms, f=1kHz Vin , (Default : 100mVrms) ·SUR : Surround ON/OFF switch "0" = Surround OFF "1" = Surround ON(Default , 100mVrms 0 200mVrms 0 300mVrms 1 400mVrms 1 AGC0 0 1 0 1 ·Surround effect and simulated , vs. Frequency V+=9V, Vin=100mVrms,Vol=0dB 10 Gain [dB] 5 0 -20oC 25o C 75oC -5
ROHM
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BH3866AS BH3865S SDIP32 BH3865 tone bass, treble

audio compressor expander IC

Abstract: walkie-talkie =1% VOL=0dB VIN=2Vrms, f=1kHz VOL=0dB VIN=100mVrms, f=1kHz VOL=+15dB VIN=2Vrms, f=1kHz VOL=0dB f , 1 GVBASS1 2 GVBASS 2 3 GVBASS 3 VIN=100mVrms, f=10kHz VOL=0dB, TONE=ON, =0dB VIN=100mVrms, f=10kHz VOL=0dB, TONE=ON, =+10dB VIN=100mVrms, f=10kHz VOL=0dB, TONE=ON, =-10dB VIN=100mVrms, f=100Hz VOL=0dB, TONE=ON, =0dB VIN=100mVrms, f=100Hz VOL=0dB, TONE=ON, =+10dB VIN=100mVrms, f=100Hz VOL=0dB, TONE=ON, =-10dB x VIH VIL
Motorola
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MC78L05ACP 100k variable resistor round body gte parts voice activated recorder circuit VS-25 Nippon capacitors MC33111/D

audio compressor expander IC

Abstract: compressor IC ), (3+6) 100kHz, 100mVrms (4+5), (3+6) 10kHz, 100mVrms ±2% 1MHz, 100mVrms (uH±10%) (uH, Max , (6+3) (2-4) tie (2+7) (OHMS Max) (4+5), (1+8), (3+6) 100kHz, 100mVrms (pF Max) LB 17MHz (dB , ), (2+8), (3+5), (4+6), (3+6), (4+5) (1+8), (2+7) 100Khz, 100mVrms 100Khz, 100mVrms (pF Max) (pF Max
Freescale Semiconductor
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14 pin ic recorder voice MC33111 equivalent

ML33111-5P

Abstract: audio compressor expander IC =600, RL=47k, Vin=100mVrms/1kHz unless otherwise specified) PARAMETER Operating Voltage Supply Current , AGCBST AGCFLT1 AGCFLT2 AGCFLT3 AGCFLT4 AGCCUT TEST CONDITION Vin=50mVrms, f=1kHz Vin=100mVrms, f=1kHz Vin , . ·AGC : AGC ON/OFF switch "0" = AGC OFF "1" = AGC ON (Default : 100mVrms) ·SUR : Surround ON/OFF switch , 100mVrms 0 200mVrms 0 300mVrms 1 400mVrms 1 AGC0 0 1 0 1 ·Surround effect and simulated stereo , V+=9V, Vin=100mVrms,Vol=0dB 10 5 Gain [dB] 0 -20oC 25o C 75oC -5 -10 100 1000
Lansdale Semiconductor
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ML33111-5P compressor expander precision rectifier ML33111EP
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