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300Hz

Catalog Datasheet MFG & Type PDF Document Tags
Abstract: , 400mA , VDC Namco Controls
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ET310-32151 ET311-32151 ET310-32100 ET311-32100 ET310-33151 ET311-33151

CTCSS

Abstract: Response (1) CTCSS BPF (freq span = 30Hz ~ 300Hz) Mark "0" is at 253Hz, Mark "1" is at 300Hz (2) CTCSS BPF (freq span = 30Hz ~ 500Hz) Attenuation at(253Hz vs 300Hz) = -78.911dB ­ (-39.769dB) = -39.142dB (3) CTCSS BPF (freq span = 200Hz ~ 2kHz) Passband ripple for 300Hz ~ 1kHz = -38.892dB ­ (-39.785) = 0.893dB < 1dB (4) CTCSS BPF (freq span = 30Hz ~ 10kHz) Full frequency response (5) CTCSS LPF (freq span = 30Hz ~ 5kHz) Full frequency response (6) CTCSS LPF (freq span = 30Hz ~ 400Hz) Passband
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CTCSS Response 300Hz FREQ

NTE15023

Abstract: 300Hz 5.5 7.0 8.5 dB Vod­2 Vi = ­15dB, f = 300Hz ­14.5 ­13.0 ­11.5 dB Vod­3 Vi = ­30dB, f = 300Hz ­44.5 ­43.0 ­41.5 dB Vod­4 Vi = 0dB, f = 1kHz 1.3 , ­1 f = 300Hz, THD = 1.5% 11.0 12.5 ­ dB Vom­2 Maximum Output Voltage f = 8kHz, THD , 300Hz, ­5dB 300Hz, ­15dB 300Hz, ­30dB 1kHz, 0dB 1kHz, ­10dB 1kHz, ­20dB 8kHz, 0dB 8kHz, ­10dB , Harmonic Distortion Ratio Maximum Output Voltage 300Hz 8kHz Output Noise Level Middle Point Potential
NTE Electronics
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NTE15023

NTE1859

Abstract: 8Khz 300Hz 5.5 7.0 8.5 dB Vod­2 Vi = ­15dB, f = 300Hz ­14.5 ­13.0 ­11.5 dB Vod­3 Vi = ­30dB, f = 300Hz ­44.5 ­43.0 ­41.5 dB Vod­4 Vi = 0dB, f = 1kHz 1.3 , ­1 f = 300Hz, THD = 1.5% 11.0 12.5 ­ dB Vom­2 Maximum Output Voltage f = 8kHz, THD , 300Hz, ­5dB 300Hz, ­15dB 300Hz, ­30dB 1kHz, 0dB 1kHz, ­10dB 1kHz, ­20dB 8kHz, 0dB 8kHz, ­10dB , Harmonic Distortion Ratio Maximum Output Voltage 300Hz 8kHz Output Noise Level Middle Point Potential
NTE Electronics
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NTE1859 8Khz

MH88615T-7

Abstract: Longitudinal to Metallic Balance 32 54 1 REN = 8000 @25Hz 300Hz-3.4kHz 300Hz -3.4kHz dB dB 58 , applied. TOP 0 25 70 °C 300Hz - 3.4kHz Figure 7 56.4 60 60 63.6 90 68 , Circuit Figure 5 0 0.25 dB 0.2 5 1 % % Relative to 1kHz 300Hz to 3.4 kHz @ 0dBm @ +3dBm Relative to 1kHz 300Hz to 3.4 kHz Figure 5 Figure 6 Z= Zin Figure 6 Z= Zin , Units 50Hz - 300Hz 300Hz - 4kHz Iloop = 25mA 5 2 3 Max dB Nc 11 17 dBrnc
Mitel Semiconductor
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MH88615T-7 MH88615 MH88615-1/-3/-7 MH88615AV-2 MH88615AT-1/-3/-7 MH88615AT-2 MH88615AS-4

SIL 100-02

Abstract: MH88615AT2 Test Comments 1 REN = 8000£2 @ 25Hz Test Circuit RL THL 33 32 dB dB 300Hz-3.4kHz 300Hz -3.4kHz 50Hz - 300Hz 300Hz - 4kHz lloop = 25mA Figure 7 Figure 6 Z=Znet Figure 8 58 11 11 17 15 , be applied before VEE is applied. 300Hz - 3.4kHz V bat = -48V Test Circuit V DD V FF V DCRI H , ki2 n 0.25 0.25 dB dB Relative to 1kHz 300Hz to 3.4 kHz Figure 5 Figure 5 -0.25 -0.25 0 0 7 8 -0.25 -0.25 0 0 0.25 0.25 dB dB Relative to 1kHz 300Hz to 3.4 kHz @ OdBm @ +3dBm
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OCR Scan
SIL 100-02 MH88615AT2 H88615A H88615T-1/-3/-7 88615AS-4
Abstract: 300Hz-3.4kHz Figure 10 3 Transhybrid Loss THL 24 32 dB 300Hz -3.4kHz Figure 9 Z=Znet 4 Longitudinal to Metallic Balance 32 54 dB dB 50Hz - 300Hz 300Hz - 4kHz , applied. t op 0 25 70 °c 300Hz - 3.4kHz 56.4 60 60 63.6 90 68 V/V ^rms , -wire -0.25 0 0.25 dB Relative to 1kHz 300Hz to 3.4 kHz Figure 9 Z=Zin 9 Total , Figure 9 Z=Zin 90 100 Q . 10 TH D Figure 8 Relative to 1kHz 300Hz to 3.4 kHz -
OCR Scan
H88615 H88615-1/-3/-7 H88615AS-4 1334G T896X 17-68H
Abstract: 5 RL 20 33 dB 300Hz-3.4kHz Figure 7 THL 24 32 dB 300Hz -3.4kHz Figure 6 Z=Znet 32 54 dB dB 50Hz - 300Hz 300Hz - 4kHz Figure 8 58 Iloop = 25mA , °c 300Hz - 3.4kHz Figure 7 60 60 63.6 90 68 VA/ V bat = -48V VDCri = 100V Sine , -wire -0.25 0 0.25 dB Relative to 1kHz 300Hz to 3.4 kHz Figure 6 Z= Zin 9 Total , trip filter circuit (see Figure 6) Test Circuit Figure 5 Relative to 1kHz 300Hz to 3.4 kHz -
OCR Scan
MH88615T-1/-3/-7

BB SOT23-5

Abstract: power amplifier frequency range 300Hz 350uVrms at 10Hz-1MHz, Cout=1uF 62dB at 300Hz BB Digital 85uA 30uVrms at >60dB at , =1uF 60dB at 300Hz BB Digital 85uA at no load 30uVrms at 10Hz100kHz, Cout=10uF, Cbyp=0.01uF 60dB at 300Hz Audio BB Analog BB Digital RF Circuit 85uA at no load 30uVrms at 10Hz100kHz, Cout=10uF, Cbyp=0.01uF 60dB at 300Hz Audio BB Analog BB Digital RF Circuit 55uA at , at 100kHz, 300Hz Cout=4.7uF, 56dB up Cbyp=0.01uF, to 100kHz Iout=1mA BB Analog BB Digital
Maxim Integrated Products
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MAX8875 MAX8877 MAX8878 MAX8885 BB SOT23-5 power amplifier frequency range 300Hz GSM-Chipset circuit diagram GSM transmitter receiver RF amplifier SOT23 5 vco sot23-5 MAX1725 MAX1726 MAX8880

utc73

Abstract: THD 0.1 THD (300Hz~22kHz, BPF ON) 30 10 12 14 16 18 0 4 10 30 10 1 , 14 16 Supply Voltage, Vcc(V) 18 0.2 0.1 THD (300Hz~22kHz,BPF ON) 32 0 0 , Vo 0 10 THD -1 10 Rec.amp Vcc=6V BPF=300Hz ~22kHz Ta=25k 300Hz~22kHz BPF ON -2 , THD (No Filter) 34 0.2 (300Hz~22kHz,BPF ON) 32 Total Harmonic Distortion,THD(% , THD 300Hz~22kHz BPF ON -1 10 -2 10 Frequency,(Hz) Rec.amp Vcc=6V BPF=300Hz~22kHz ALC
Silan Microelectronics
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utc73 UTC7316 DIP-16 16-DIP-P-300

BA8400FV

Abstract: SSOP-B14 -P VAGC 0.88 1.1 1.32 VP-P f = 300Hz, VIN = 300mVP-P Hysteresis width HysV ± 250 , OFF OFF Circuit current - AGC amplifier 1. f = 300Hz, VIN = 50mVP-P - 2. 3. f = 300Hz, VIN = 0.15 / 1.0VP-P 4. f = 300Hz, VAGC 13pin a a a c a b ON OFF , OFF OFF - 6. Measurement method 1 Input a sine wave of f = 300Hz to pin 5, and measure the , Input a sine wave of f = 300Hz to pin 5. Adjust the input level until the output amplitude on pin 10 is
ROHM
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BA8400FV SSOP-B14 VM-8 measurement noise on pulse amplifier

ring ic

Abstract: 3K45 THL dB 1 REN = 8000 @25Hz 300Hz-3.4kHz 300Hz -3.4kHz 4 Longitudinal to Metallic Balance VX Idle Channel Noise Tip/Ring Idle Channel Noise 50 58 dB 300Hz -3k4 5 Nc , not be applied before VEE is applied. TOP 0 25 70 °C 300Hz - 3.4kHz Figure 7 , 1kHz 300Hz to 3.4 kHz @ 0dBm @ +3dBm Relative to 1kHz 300Hz to 3.4 kHz Figure 5 Figure 6 , 32 dB dB 1 REN = 7000 @25Hz 300Hz -3.4kHz 300Hz -3.4kHz 4 Longitudinal to Metallic
Zarlink Semiconductor
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ring ic 3K45 pabx ring generator cadence MSAN-151 DS5242 MH88615AV-5

MH88615AV-2

Abstract: 8000 @25Hz 300Hz-3.4kHz 300Hz -3.4kHz 300Hz -3k4 Iloop = 25mA Test Circuit RL THL 33 32 58 11 , VEE VDCRI 2 3 Operating Temperature AC Ring Amplifier Gain Voltage Frequency TOP 300Hz - 3.4kHz , 0.25 0.25 dB dB Relative to 1kHz 300Hz to 3.4 kHz Figure 5 Figure 5 7 8 -0.25 -0.25 0 0 0.25 0.25 dB dB Relative to 1kHz 300Hz to 3.4 kHz @ 0dBm @ +3dBm @1kHz Ripple 0.1V 1kHz @ VDD , Comments 1 REN = 7000 @25Hz 300Hz -3.4kHz 300Hz -3.4kHz 300Hz -3.4kHz Iloop = 25mA Test Circuit RL
Mitel Semiconductor
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8ohm .5W speaker

Abstract: HP laptop schematic power supply circuit diagram Audio Fidelity 14dB/8dB Gain Selectable 20/300Hz Bandwidth Selectable Shut-down Function Internal , , Active High. BW_SEL Bandwidth Selection Pin: VDD 300Hz HP filter VSS No HP (< 20Hz) GAIN , 72 Gain = 8dB, BW = 20Hz 98 Gain = 8dB, DB = 300Hz 102 VOFF Input shorted to GND , , BW = 300Hz, PVDD = 5V 1.50 Gain = 8dB, BW = 20Hz, PVDD = 5V 0.25 2.70 Input DC Offset , Stage Gain K 0.14 Gain = 8dB, BW = 300Hz, PVDD = 5V Output DC Offset V 65 Gain =
Microsemi
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LX1701 8ohm .5W speaker HP laptop schematic power supply circuit diagram hp 520 schematic 20 pin lcd laptop hp laptop schematic diagram pc multimedia speaker pcb layout hp laptop battery pin definition 200KH 20/300H

HP laptop schematic power supply circuit diagram

Abstract: mono mosfet amplifier diagram Audio Fidelity 14dB/8dB Gain Selectable 20/300Hz Bandwidth Selectable Shut-down Function Internal , , Active High. BW_SEL Bandwidth Selection Pin: VDD 300Hz HP filter VSS No HP (< 20Hz) GAIN , 65 Gain = 14dB, BW = 300Hz 72 Gain = 8dB, BW = 20Hz 98 Gain = 8dB, DB = 300Hz 102 , = PVDD = 3.3V VINOFF Gain = 14dB BW = 20Hz, PVDD = 5V 0.14 Gain = 14dB, BW = 300Hz, PVDD = 5V 1.50 Gain = 8dB, BW = 20Hz, PVDD = 5V 0.25 Gain = 8dB, BW = 300Hz, PVDD = 5V
Microsemi
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mono mosfet amplifier diagram Power H-Bridge Schematic schematic diagram of laptop hp Monitor speaker LX1701CLQ

MH88615T-7

Abstract: . REN Min. 5 20 24 32 54 Typ. Max Units Test Comments 1 REN = 8000 @25Hz 300Hz-3.4kHz 300Hz -3.4kHz 50Hz - 300Hz 300Hz - 4kHz Iloop = 25mA Test Circuit RL THL 33 32 dB dB 58 , Voltage Frequency TOP 300Hz - 3.4kHz VBAT = -48V VDCRI = 100V Sine wave input Open circuit output , 90 100 10 110 k -0.25 -0.25 0 0 0.25 0.25 dB dB Relative to 1kHz 300Hz to 3.4 kHz Figure 5 Figure 5 7 8 -0.25 -0.25 0 0 0.25 0.25 dB dB Relative to 1kHz 300Hz to
Mitel Semiconductor
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55nF

Abstract: BP300s 600 850 a lL=70mA, 1kHz glSIs«» TXL1 -32.5 -29.5 -26.5 dBm Li. L2=600Q, Loss=7dB MIC Aft=300Hz, â , =200Q, Loss=7dB LINE A^=300Hz, â'" 14dBm eBi/^i' RxL2 -32.0 -29.0 -26.0 dBm SP=200C3, Loss=3dB LINE A})=1kHz , =7dB MIC AÃ"=300Hz, â'"40dBm JMSSUA'^ TXL2 -24.5 -21.5 -18.5 dBm Li, L2=600D, Loss=3dB MIC A2)=1kHz, â , -27.5 dBm SP=200Q, Loss=7dB LINE A2j=300Hz, â'"14dBm ©ISUAMI, RXL2 -32.0 -29.0 -26.0 dBm SP , =70mA, 1kHz TXL1 -7.7 -4.7 -1.7 dBm Lf, L2=600a, Loss=7dB MIC AÃ"=300Hz, â'"40dBm JMiiSU-A-;!- TXL2 -5.7
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OCR Scan
55nF BP300s ctk 1c Z22K A31KHZ A3300H BP3002/BP3003/BP3004/BP3005 BP3002/BP3003 4/BP3005 BP3002/BP3003/BP3Q04/BP3005 BP3002/BP3004 BP3003/BP3005

E1 PCM CODEC

Abstract: IDT821024 Description Transmit Gain, Relative to GXA f=50Hz f=60Hz f=300Hz to 3400Hz f=3600Hz f=4600Hz and above Min -0.15 Receive Gain, Relative to GRA f below 300Hz f=300Hz to 3400Hz f=3600Hz f , Supply Rejection Transmit f=300Hz -3.4kHz f=3.4kHz -20kHz Power Supply Rejection Receive f=300Hz , -40 -30 dB dB PCM code is positive one LSB,VDD=5.0 VDC+100 mVrms 0 dBm0,300Hz ­3400Hz , dB Typ -80 Max -70 Units dB -80 -70 dB Test Conditions 300Hz ­ 3400Hz,0 dBm0
Integrated Device Technology
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IDT821024 IDT821024-XL E1 PCM CODEC E1 PCM encoder IDT821024DS

spec lin transformer

Abstract: : (PRI. : SEC.) = 1:1+2% D.C. CURRENT : NONE INDUCTANCE : 8 H MIN. @ 300Hz, 1Mrms ON PARALEEL INSERTION LOSS : 3.75 dB MAX. @ 1KHz, 20"C FREOUENCY RESPONSE : +0.25 dB @ 300Hz - 3.5KHz RETURN LOSS : 25 dB MIN. @ 300Hz - 3.5KHz TOTAL HARMONIC DISTORTION : -82 dB MAX. @ 600Hz, -10dBm LONGITUDINAL BALANCE : 60
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OCR Scan
spec lin transformer E181559 LR107869

8ohm .5W speaker

Abstract: HP laptop schematic power supply circuit diagram Audio Fidelity 14dB/8dB Gain Selectable 20/300Hz Bandwidth Selectable Shut-down Function Internal , , Active High. BW_SEL Bandwidth Selection Pin: VDD 300Hz HP filter VSS No HP (< 20Hz) GAIN , 72 Gain = 8dB, BW = 20Hz 98 Gain = 8dB, DB = 300Hz 102 K VOFF Input shorted to , Gain = 14dB, BW = 300Hz, PVDD = 5V 1.50 Gain = 8dB, BW = 20Hz, PVDD = 5V 0.25 Gain = 8dB, BW = 300Hz, PVDD = 5V Output DC Offset 2.70 Input DC Offset Dynamic Range Max. with Output
Microsemi
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hp laptop battery 4ohm 1W speaker LX1701CLQTR 12 volt audio amplifier class D schematic

465Z

Abstract: mts 300 , 400mA , VDC
NEC
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465Z mts 300 PC1854A PC1854ACT PC1854AGT
Abstract: °c 300Hz - 3.4kHz Figure 7 60 60 63.6 90 68 VA/ V bat = -48V VDCri = 100V Sine , -wire -0.25 0 0.25 dB Relative to 1kHz 300Hz to 3.4 kHz Figure 6 Z= Zin 9 Total , trip filter circuit (see Figure 6) Test Circuit Figure 5 Relative to 1kHz 300Hz to 3.4 kHz , 5 RL 20 33 dB 300Hz-3.4kHz Figure 7 THL 24 32 dB 300Hz -3.4kHz Figure 6 Z=Znet 32 54 dB dB 50Hz - 300Hz 300Hz - 4kHz Figure 8 58 Iloop = 25mA -
OCR Scan
S12816EJ2V0DS00 C10535E IR35-00-3 S60-00-1 UPC1854ACT
Abstract: be applied before VEE is applied. 300Hz - 3.4kHz V bat = -48V Test Circuit V DD V FF V DCRI H , ki2 n 0.25 0.25 dB dB Relative to 1kHz 300Hz to 3.4 kHz Figure 5 Figure 5 -0.25 -0.25 0 0 7 8 -0.25 -0.25 0 0 0.25 0.25 dB dB Relative to 1kHz 300Hz to 3.4 kHz @ OdBm @ +3dBm , Test Comments 1 REN = 8000£2 @ 25Hz Test Circuit RL THL 33 32 dB dB 300Hz-3.4kHz 300Hz -3.4kHz 50Hz - 300Hz 300Hz - 4kHz lloop = 25mA Figure 7 Figure 6 Z=Znet Figure 8 58 11 11 17 15 NEC
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