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Abstract: +3V C1 100uF R4 51 C2 20uF LS1 R1 3.8 K 8 Speaker Q1 2N2222 AUD OUT From , toys are some examples. The circuit in Fig 1 has a gain of almost 2:1. The single transistor 2N2222 , and it goes to 1.2v during Playback. The R2 resistor turns off the Q1 transistor during Record or , varied to control the audio level for a specific speaker. The R1 resistor sets the biasing for the Q1 ... Original
datasheet

1 pages,
41.42 Kb

2N2222 transistor datasheet chipcorder operation of 2n2222 2n2222 transistor load 2n2222 r3 resistor 2N2222 transistor speaker ISD4000 Datasheet 2N2222 transistor 2N2222 circuit ls1 loud speaker 2N2222 chip ISD4000 abstract
datasheet frame
Abstract: C3 47uf HS1 R13 10K 2 3 Q1 2N2222 1 12 13 R16 R2 RTBD 30K SGND PGND C18 VREF2 JP10 2 3 shunt3 RCB BRB MDB VREF2 VCC PHB ENB R18 RTBD HS2 R17 10K 3 Q2 2N2222 1 R19 RTBD R7 R20 ... Original
datasheet

1 pages,
26.63 Kb

Q1 2N2222 RK36 RCA A8 A3952SB DUAL18CON DUAL18CON abstract
datasheet frame
Abstract: 0.1uF Q1 2N2222 Q2 2N2907 2N2907 Q5 R12 9.1K 2N2222 2N2222 R3 2K R2 2K Q3 C3 1000uF , 2N2222 Q1 2N2222 Q5 R3 2K 10V 0V 2N2907 2N2907 V1 5V Fig. 7 Fast Driven N-MOSFET , R1 1.8K R2 270 CEM4435 CEM4435 U3 D2 1N5820 1N5820 47uH + C3 1500uF D1 D3 5.1V 2N2222 1N4148 1N4148 1 0.1uF C5 U2 2N2222 2 C4 680P 36K R3 3 4 U1 EXT VOUT 8 7 LBI LBO , circuit, which is 3. Bootstrapped Function composed of Q1, Q2, Q3, and Q5. Bootstrapping ... Original
datasheet

8 pages,
391.33 Kb

2n2907 pnp bipolar transistor PIN CONFIGURATION 2N2222 2N2222 transistor 2N2222 n CHANNEL 2n2222 h parameter values 1N5820 CEM4435 transistor equivalent 2N2222 equivalent components of diode 2N2222 equivalent transistor 2N2222 2N2222 circuit power filter 25v AN022 AIC1630A AN022 abstract
datasheet frame
Abstract: Q1 2N2222 SW1 SW PB Fig.10 AIC1680 AIC1680 manul-reset test circuit 7 Fig.11 The plot of , AIC1680-Pch 2 VIN VOUT 1 R2 10k GND 3 R1 10k R3 VDD 10k VOUT Q1 2N2222 U1 , cinditions. VDD Q1 R1 VDD R2 Q2 R3 1.25V GND OPAMP Fig.1 The block diagram of AIC1680 AIC1680 N-ch VDD Q1 R1 Q2 R2 VDD R3 1.25V GND OPAMP Fig.2 The block diagram of AIC1680 AIC1680 P-ch VDD Q1 R1 Q3 R2 R3 VDD Q2 1.25V GND OPAMP Fig.3 The block diagram of ... Original
datasheet

14 pages,
88.4 Kb

transistor equivalent table 2N2222 47 KILO OHM RESISTOR AIC1680 10 kilo ohm resistor opamp hysteresis AIC1680N Q1 2N2222 AIC1680 abstract
datasheet frame
Abstract: U1 TLV431 TLV431 Gate In / PC Q1 2N2222 R4 10 k C1 0.68 nF Gate Out/ PR ­In R2 10 k , otherwise specified. Circuit Operation As the input voltage ramps up R1 feeds the base of Q1 through zener Z1. This turns Q1 on, which pulls the Gate In / PC pin low and disables the module. Q1 remains , This in turn pulls the base of Q1 low forcing it into cutoff and enabling the module. R2 prevents Z1 leakage from pulling Q1 out of cutoff. When the Gate In / PC pin goes high the feedback resistor (R5 ... Original
datasheet

9 pages,
678.74 Kb

VI-J00 TLV431 lockout 2N2907 1N4148 2N2222 VI-200/VI-J00 VI-200/VI-J00 abstract
datasheet frame
Abstract: 6 8 3 4 RA6 RA0 51 R6 AVSS C1 1000pF 1K PTC R5 Q1 2N2222 1K , to generate an output voltage proportional to the difference in temperature. R6 and Q1 form a small , generated by the Op Amp drops below the threshold of comparator C1, the PSMC turns on Q1 with a Pulse Skip , TIMER1 RB3 T1G RB7 100K VDD R7 1K PTC R5 1K PTC R6 51 R3 2.2K Q1 2N2222 Components Within the PIC16C782 PIC16C782 (Greyed) FUTURE EXPANSION Due to the number of I/O pins ... Original
datasheet

12 pages,
143.88 Kb

thermistor PTC 1812 DK-2750 hot wire anemometer Hotwire how does anemometer work PIC16C782 RA-2 TB044 2N2222 hot wire anemometer block diagram PTC 1K sensor anemometer Thermistor hot-wire DS51332A DS51332A abstract
datasheet frame
Abstract: R9 = lOOG/ViW C6 = 680pF/50V R9 = 100Q/V4W 100Q/V4W C7 = 0.2ftF/25V Q1 =2N2222 or equivalent C7 = 0.2/tF/25V Q1 =2N2222 or equivalent C8 = 0.047MF/150VAC 047MF/150VAC D1 =1N4148 1N4148 C8 = 0.047/.F/300VAC F/300VAC D1 = 1N4148 1N4148 (see ... OCR Scan
datasheet

6 pages,
285.53 Kb

2N2222 220 volt dimmer circuit 1N4148 MPS8599 equivalent LS7331 04004l4 Q4004L4 datasheet abstract
datasheet frame
Abstract: lOOG/ViW C6 = 680pF/50V R9 = 100Q/V4W 100Q/V4W C7 = 0.2ftF/25V Q1 =2N2222 or equivalent C7 = 0.2/tF/25V Q1 =2N2222 or equivalent C8 = 0.047MF/150VAC 047MF/150VAC D1 =1N4148 1N4148 C8 = 0.047/.F/300VAC F/300VAC D1 = 1N4148 1N4148 (see note #4) Z ... OCR Scan
datasheet

6 pages,
285.53 Kb

inductive sensor oscillator circuit incandescent lamp dimmer 3 volt dimmer circuit 2N2222 220 volt dimmer circuit 1N4148 MPS8599 equivalent n 332 ab Q4004L4 q4004l4 pins Triac motor speed control rf remote speed control of ac motor datasheet abstract
datasheet frame
Abstract: +5V NTC 10K Q1 2N2222 R6 4.7K C6 0.1ç¤" VDD SENSE R13 10K FANC 0V - 12.0V , (thermistor 10 K at 25癈), R6 and Q1 form the "thermal override function." This circuit provides a local override in the event of high ambient temperature. Under normal operation, Q1 is off. 1. Linear , (Optional) CF + +5V Q2 2N2222 OUT D1 1N4148 1N4148 VAS 10K System Shutdown GND C3 ... Original
datasheet

2 pages,
29.33 Kb

temperature based fan speed control TC646 1N4148 2N2222 30K thermistor fans speed with temperature ntc motherboard power control circuit 2n2222a making control dc fan circuit with 10k ntc transistor BJT 2N2222 datasheet circuits using BJT 2N2222 2N2222 bjt AN-38 AN-38 abstract
datasheet frame
Abstract: Q12N2222 + - FXSDx 1k 20k 1k 0.1uF Q1 2N2222 RD+ RXP PECL 100 10k RD- , the midpoint for the PECL voltage swing. The Q1 transistor acts as a switch. The Q1 collector will , can be used to adjust Q1's collector output level to be above +0.6V when Q1 is in saturation. On ... Original
datasheet

2 pages,
31.61 Kb

KS8995X KS8995M HFBR-5903 HFBR-5103 fiber optic module 100BASE-FX KS8995M/X KS8995M/X abstract
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WITH HIGH LEVEL LOGIC LM111 LM111 LM111 LM111 2 7 3 TTL strobe Q1 2N 2222 R1 1k W 6 STROBE LM 111 3 2 4 7 8 1 +C1* 1.5 m F * Sold tantalum R2 1k W 2N 1304 2N 2222 R18 200 W R19 250 W Q2 Q23 Inverting input Non-inverting input Q1 Q4 Q3
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STMicroelectronics 21/07/2000 12.51 Kb HTM 4848-v3.htm
+15V thresholg TTL INTERFACE WITH HIGH LEVEL LOGIC LM111 LM111 LM111 LM111 2 7 3 TTL strobe Q1 2N 2222 R1 1k W 6 STROBE .5 m F * Sold tantalum R2 1k W 2N 1304 2N 2222 LOW VOLTAGE ADJUSTABLE REFERENCE SUPPLY AUXILIARY 200 W R19 250 W Q2 Q23 Inverting input Non-inverting input Q1 Q4 Q3 D1 5V D2 5V Q7 R6 1.2k W R7 1.2k W
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STMicroelectronics 14/06/1999 10.65 Kb HTM 4848-v2.htm
HIGH LEVEL LOGIC LM111 LM111 LM111 LM111 2 7 3 TTL strobe Q1 2N 2222 R1 1k W 6 STROBE LM111 LM111 LM111 LM111 3 2 7 5 6 8 V CC INCREASING 1304 2N 2222 LOW VOLTAGE ADJUSTABLE REFERENCE SUPPLY AUXILIARY CIRCUITS TYPICAL APPLICATIONS Square 450 W Q21 Q22 Q17 R14 2k W R18 200 W R19 250 W Q2 Q23 Inverting input Non-inverting input Q1 Q4 Q3 D1
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STMicroelectronics 02/04/1999 10.73 Kb HTM 4848-v1.htm
V thresholg TTL INTERFACE WITH HIGH LEVEL LOGIC LM111 LM111 LM111 LM111 2 7 3 TTL strobe Q1 2N 2222 R1 1k W LM111 LM111 LM111 LM111 3 2 4 7 8 1 +C1* 1.5 m F * Sold tantalum R2 1k W 2N 1304 2N 2222 LOW VOLTAGE 200 W R19 250 W Q2 Q23 Inverting input Non-inverting input Q1 Q4 Q3 D1 5V D2 5V Q7
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/4848.htm
STMicroelectronics 20/10/2000 13.65 Kb HTM 4848.htm
P1 ALIM220V ALIM220V ALIM220V ALIM220V ALIM220V ALIM220V ALIM220V ALIM220V P2 RJ11 RJ11 Q1 2N2222 BTO922 BTO922 BTO922 BTO922 Q2 2N2222 BTO922 BTO922 BTO922 BTO922 Q3 2N2907 2N2907 2N2907 2N2907 BTO5 Q4 2N Q1 2N2222 Q4 2N2222 R5 2.2 W R7 180 W 2 1 3 Q3 2N2907 2N2907 2N2907 2N2907 3 1 2 Q2 2N2222 R6 47k W 2 1 C5 1 m F R3 2.2 W D1 1 2 2 1 C4 6.8n -OFF RING DETECT DTMF DECODER Q1 Q2 Q3 Q4 S TD Push Button AN488-10 AN488-10 AN488-10 AN488-10.EPS Figure 10 OSC2 ST/GT EST STD Q4 Q3 Q2 Q1 TOE AN488-15 AN488-15 AN488-15 AN488-15.EPS Figure 15 : Single Ended Input
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STMicroelectronics 25/05/2000 32.29 Kb HTM 3724-v3.htm
Designation Value Package LD3 LED_JAUNE LED LD4 LED_VERTE LED P1 ALIM220V ALIM220V ALIM220V ALIM220V ALIM220V ALIM220V ALIM220V ALIM220V P2 RJ11 RJ11 Q1 2N2222 BTO922 BTO922 BTO922 BTO922 Q2 2N2222 BTO922 BTO922 BTO922 BTO922 Q3 2N2907 2N2907 2N2907 2N2907 BTO5 Q4 2N2222 BTO922 BTO922 BTO922 BTO922 Q5 2N2907 2N2907 2N2907 2N2907 BTO5 Q6 2N2907 2N2907 2N2907 2N2907 BTO5 Q7 BC547 BC547 BC547 BC547 BTO5 Q8 BC 2907 Q1 2N2222 Q4 2N2222 R5 2.2 W R7 180 W 2 1 3 Q3 2N2907 2N2907 2N2907 2N2907 3 1 2 Q2 2N2222 R6 47k W 2 1 C5 1 m F R3 2 D TxD Rx/Tx RSTO MCLK /WD /CD ST6265 ST6265 ST6265 ST6265 SOUND GENERATION HOOK-OFF RING DETECT DTMF DECODER Q1 Q2 Q3 Q4 S V DD IN+ IN- GS B/H PD OSC1 OSC2 ST/GT EST STD Q4 Q3 Q2 Q1 TOE AN488-15 AN488-15 AN488-15 AN488-15.EPS Figure 15 : Single Ended
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STMicroelectronics 02/04/1999 30.51 Kb HTM 3724-v1.htm
Designation Value Package LD3 LED_JAUNE LED LD4 LED_VERTE LED P1 ALIM220V ALIM220V ALIM220V ALIM220V ALIM220V ALIM220V ALIM220V ALIM220V P2 RJ11 RJ11 Q1 2N2222 BTO922 BTO922 BTO922 BTO922 Q2 2N2222 BTO922 BTO922 BTO922 BTO922 Q3 2N2907 2N2907 2N2907 2N2907 BTO5 Q4 2N2222 BTO922 BTO922 BTO922 BTO922 Q5 2N2907 2N2907 2N2907 2N2907 BTO5 Q6 2N2907 2N2907 2N2907 2N2907 BTO5 Q7 BC547 BC547 BC547 BC547 BTO5 Q8 BC 2907 Q1 2N2222 Q4 2N2222 R5 2.2 W R7 180 W 2 1 3 Q3 2N2907 2N2907 2N2907 2N2907 3 1 2 Q2 2N2222 R6 47k W 2 1 C5 1 m F R3 2 D TxD Rx/Tx RSTO MCLK /WD /CD ST6265 ST6265 ST6265 ST6265 SOUND GENERATION HOOK-OFF RING DETECT DTMF DECODER Q1 Q2 Q3 Q4 S V DD IN+ IN- GS B/H PD OSC1 OSC2 ST/GT EST STD Q4 Q3 Q2 Q1 TOE AN488-15 AN488-15 AN488-15 AN488-15.EPS Figure 15 : Single Ended
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STMicroelectronics 14/06/1999 30.47 Kb HTM 3724-v2.htm
Designation Value Package LD3 LED_JAUNE LED LD4 LED_VERTE LED P1 ALIM220V ALIM220V ALIM220V ALIM220V ALIM220V ALIM220V ALIM220V ALIM220V P2 RJ11 RJ11 Q1 2N2222 BTO922 BTO922 BTO922 BTO922 Q2 2N2222 BTO922 BTO922 BTO922 BTO922 Q3 2N2907 2N2907 2N2907 2N2907 BTO5 Q4 2N2222 BTO922 BTO922 BTO922 BTO922 Q5 2N2907 2N2907 2N2907 2N2907 BTO5 Q6 2N2907 2N2907 2N2907 2N2907 BTO5 Q7 BC547 BC547 BC547 BC547 2.2 W R4 2.2 W 2 1 3 3 1 2 3 1 2 2 1 3 Q6 2N2907 2N2907 2N2907 2N2907 Q5 2N2907 2N2907 2N2907 2N2907 Q1 2N2222 Q4 2N2222 R5 2.2 W R7 180 W 2 1 3 Q3 2N2907 2N2907 2N2907 2N2907 3 1 2 Q2 2N2222 R6 47k W 2 1 C5 1 m F GENERATION HOOK-OFF RING DETECT DTMF DECODER Q1 Q2 Q3 Q4 S TD Push Button AN488-10 AN488-10 AN488-10 AN488-10.EPS Figure 10
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STMicroelectronics 20/10/2000 34.05 Kb HTM 3724.htm
PABC RAI PAFB ATO PABC S T 7 5 3 7 Toko T1002N T1002N T1002N T1002N Q1, Q2, Q4 = 2N2222 Q3, Q5, Q6 = 2N2907 2N2907 2N2907 2N2907 LINE DRIVER LINE bipolar transistors Q4 (2N2222) and Q3 (2N2907 2N2907 2N2907 2N2907). These types of transistors (2N2222 and 2N2907 2N2907 2N2907 2N2907) have been the transistors. The Push-Pull is polar- ized with two common collector amplifiers com- posed of Q1 (2 . The bipolar transistors Q2 (2N2222) and Q6 (2N2907 2N2907 2N2907 2N2907) are used to switch off the power amplifier during W R2 1k W R8 1k W R6 47k W R5 2.2 W R7 180 W Q2 Q1 Q5 R4 2.2 W Q3 R12 2.2 W R11 180 W Q6 R10 2.2 W Q
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STMicroelectronics 25/05/2000 73.05 Kb HTM 1124.htm
- ized with two common collector amplifiers com- posed of Q1 (2N2222) and Q5 (2N2907 2N2907 2N2907 2N2907). As far as , Q2, Q4 = 2N2222 Q3, Q5, Q6 = 2N2907 2N2907 2N2907 2N2907 LINE DRIVER LINE INTERFACE 1 2 3 4 6 1 2 Push-Pull amplifier has been set up with two bipolar transistors Q4 (2N2222) and Q3 (2N2907 2N2907 2N2907 2N2907). These types of transistors (2N2222 and 2N2907 2N2907 2N2907 2N2907) have been chosen as they are cheap and widely used. The 8 9 R9 47k W R2 1k W R8 1k W R6 47k W R5 2.2 W R7 180 W Q2 Q1 Q5
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STMicroelectronics 25/05/2000 69.85 Kb HTM 1124-v1.htm