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AS07008PO-2-R PUI Audio Speakers & Transducers 2W 86DB 300HZ PAPER
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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
Abstract: (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 FREQ Response
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
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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NTE1859 8Khz
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
Abstract: 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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MH88615AT2 SIL 100-02 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 -
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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 -
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MH88615T-1/-3/-7
Abstract: 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 GSM-Chipset power amplifier frequency range 300Hz MAX1725 MAX1726 MAX8880
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
Abstract: -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 measurement noise on pulse amplifier VM-8
Abstract: 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 MSAN-151 pabx ring generator cadence DS5242 MH88615AV-5
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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Abstract: 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 520 schematic 20 pin lcd laptop hp laptop schematic diagram pc multimedia speaker pcb layout hp laptop battery pin definition Monitor speaker 200KH 20/300H
Abstract: 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 LX1701CLQ schematic diagram of laptop hp
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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Abstract: 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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55nF BP300s ctk 1c A31KHZ A3300H LF BR 2pin BP3002/BP3003/BP3004/BP3005 BP3002/BP3003 4/BP3005 BP3002/BP3003/BP3Q04/BP3005 BP3002/BP3004 BP3003/BP3005
Abstract: 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
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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spec lin transformer E181559 LR107869
Abstract: 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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LX1701CLQTR hp laptop battery 4ohm 1W speaker
Abstract: , 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 -
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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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