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TP14 Datasheet

Part Manufacturer Description PDF Type
TP-14 National Semiconductor Low Voltage Techniques (Addendum to AN 211) Original
TP1401 Total Power International Single Output DC/DC Converters Scan
TP140-10 N/A Basic Transistor and Cross Reference Specification Scan
TP140-16 N/A Basic Transistor and Cross Reference Specification Scan
TP1402 Total Power International 15 to 45 Watt Single Output DC/DC Converters Scan
TP1404 Total Power International 15 to 45 Watt Single Output DC/DC Converters Scan
TP140-6 N/A Basic Transistor and Cross Reference Specification Scan
TP1411 Total Power International 15 to 45 Watt Single Output DC/DC Converters Scan
TP141-10 N/A Basic Transistor and Cross Reference Specification Scan
TP141-16 N/A Basic Transistor and Cross Reference Specification Scan
TP1412 Total Power International 15 to 45 Watt Single Output DC/DC Converters Scan
TP141-6 N/A Basic Transistor and Cross Reference Specification Scan
TP1421 Total Power International 15 to 45 Watt Single Output DC/DC Converters Scan
TP1422 Total Power International 15 to 45 Watt Single Output DC/DC Converters Scan
TP1469 N/A Basic Transistor and Cross Reference Specification Scan
TP1469A N/A Basic Transistor and Cross Reference Specification Scan
TP1-470-R Coiltronics Fixed Inductors, Inductors, Coils, Chokes, INDUCTOR THIN CHIP 47UH .62A SMD Original
TP1-4R7-R Coiltronics Fixed Inductors, Inductors, Coils, Chokes, INDUCTR THIN CHIP 4.7UH 1.1A SMD Original

TP14

Catalog Datasheet MFG & Type PDF Document Tags
Abstract: properties. TP16-4 TP16-6 TP16-8 TP16-10 TP16-14 TP16-38 TP14-4 TP14-6 TP14-8 TP14-10 TP14-14 TP14-516 TP14-38 TP10-6 TP10-8 TP10-10 TP10-14 TP10-38 â'¢ 1000/Reel WIRE RANGE -
OCR Scan
1000/R BA16E4 BA16E6 BA16E8 BA16E10 BA16E14

TP144

Abstract: BA14E10 -8 TP16-10 TP16-14 TP16-38 TP14-4 TP14-6 TP14-8 TP14-10 TP14-14 TP14-516 TP14-38 TP10-6 TP10-8 TP10
FCI
Original
BA14E10 BA10E8 BA10E10 BA16E10M BA10E6M BA10E38M TP144 TP10 TP-106 BURNDY ba10 Burndy mr8 BA16E38 BA14E4 BA14E6 BA14E8 BA14E14

MM1323

Abstract: TP70 .0VP-P 7.86kHz V1, V201.5V TP12, TP141.5V TP12, TP14 V1, V21.5V3.0V 1.7 2.4 V , .5V TP5, TP6, TP70.6VP-P, 100kHz TP12, TP13, TP14 CH GVCH RGB, VODR VC VOL FC SW1, SW2, SW3B V1, V21.5V TP5, TP6, TP70.6VP-P100kHz TP12, TP13, TP14TP12, TP13, TP14 TP5, TP6, TP70.6VP-P, 7.86kHz TP12, TP13, TP14 TP12, TP13, TP140± 6mATP12, TP13, TP14 DC , .5V TP5, TP6, TP70.6VP-P G 100kHzTP12, TP13, TP14 -3dB B 4.0 5.0 4.0 5.0 4.0 5.0
-
Original
MM1323 TP10DC TP70 GV-16 786-kHz LPF16 GVCOM20 SSOP-24 TSOP-24 25VCC14

mitsubishi Lot number constitution

Abstract: 5875 TUBE TP14. 2. Input SG20 (SG25) into SIF input, and measure the 400Hz component level of AF output TP14 . , 106 dBµ Vos 1 TP10 VIF IN SG15 94 100 106 dBµ V1 1 TP14 SIF IN SG19 1.5 2.1 2.7 SW16=2 V16=0V V 38 AF Output (4.5MHz) VoAF 1 1 TP14 , TP14 SIF IN SG21 SW2=2 SW12=2 521 730 1043 mVrms 40 AFOutput Distortion (4.5MHz) THD AF 1 1 TP14 SIF IN SG16 SW13=2 ­ 0.8 1.2 % 41 AFOutput
Mitsubishi
Original
M52766FP mitsubishi Lot number constitution 5875 TUBE mitsubishi weekly code marking sg22 32 band audio spectrum analyzer det9 N52766FP MP016PC

MM1140XF

Abstract: TP10 Output offset voltage Input a 2.0VP-P staircase wave to SG, and measure differential gain at TP14. , control switching and input switching when no signal is output to TP14. Control Input-Output Table SW , Voltage gain 2 following formula given TP12 voltage as V1 and TP14 voltage as V2. GV=20LOG (V2/V1) dB For the above GV measurement, given TP14 voltage for 10MHz as Frequency FC , , connect a distortion meter to TP14 and measure. Measure the DC voltage difference of each switch status
Mitsumi
Original
MM1140 MM1140XF

"Video Switch"

Abstract: -P staircase wave to SG, and measure differential gain at TP14. APL=10~90% Proceed as for DG, and measure differential phase. Input a 2.5VP-P, 1kHz sine wave to SG, connect a distortion meter to TP14 and measure , and input switching when no signal is output to TP14. Control Input-Output Table SW 1 L H 2 L L H , given TP12 voltage as V1 and TP14 voltage as V2. GV=20LOG (V2/V1) dB For the above GV measurement, given TP14 voltage for 10MHz as Consumption current Voltage gain GV 2 Frequency characteristic
Mitsumi
Original

V23L HITACHI

Abstract: mitsubishi Lot number constitution the 400Hz component level of AF output TP14. 2. input SG20 (SG25) into SIF input, and measure the , VIF IN SG15 SW16=2 V16=0V 94 100 106 dB|j 37 AF Output DC Voltage V1 1 TP14 SIF IN SG19 1.5 2.1 2.7 V 38 AF Output (4.5MHz) VoAF 1 1 TP14 SIF IN SG16 SW13=2 571 800 1142 mVrms 39 AF Output (5.5MHz) VoAF 2 1 TP14 SIF IN SG21 SW2=2 SW12=2 521 730 1043 mVrms 40 AFOutput Distortion (4.5MHz) THD AF 1 1 TP14 SIF IN SG16 SW13=2 - 0.8 1.2 o/ /o 41 AFOutput Distortion (5.5MHz) THD AF2 1 TP14 SIF IN SG21
-
OCR Scan
V23L HITACHI PAL 007 a audio amplifier ic marking code V9 mitsubishi running code V17L mitsubishi top side marking

MM1140

Abstract: MM1140XF 0 0 2 0 0 0 0 0 0 9 TP14- - SW OUT 1 2 3 4 5 , .0V VC1VCC VC20V Id 1 VCCDC CC5V V SG2.0VP-P 100kHz TP12V1 TP14 , DG 2 DP 2 THD 2 Voff 3 SG2.0VP-P TP14 APL1090 DG SG2.5VP-P 1kHz TP14 TP13DC VC12.1V VC20.7V CT 9 SG2.0VP-P 4.43MHz TP12V4 TP14 V5 T C
-
Original
SG25V 61MM1140 61TV/BS1 GV20LOG TP14V3 FC20LOG CT20LOG

MR8-89-1

Abstract: BA10EZ8 TP16-2Z TP16-6Z TP16-8Z TP16-10Z TP14-2Z TP14-6Z TP14-8Z TP14-10Z TP10-6Z TP10-8Z TP10-10Z * 1000/Reel
FCI
Original
BA10EZ8 MR8-89-1 BA16EZ2 BA16EZ6 BA16EZ8 BA16EZ10 BA14EZ2 BA14EZ6

BA16EF6

Abstract: Burndy mr8 -2F TP16-6F TP16-8F TP16-10F TP14-2F TP14-6F TP14-8F TP14-10F TP10-6F TP10-8F TP10-10F WIRE RANGE 22-16
FCI
Original
BA16EF6 BA16EF6M BA16EF8M TP16-2F 2000/R BA16EF2 BA16EF8 BA16EF10

NTL4532-S3R6B

Abstract: ,SW25=H,TP25=5V GPSMAX1=G(1.8M)-G(100K) SW14=H,TP14(B)=0V, SG3(100KHz,1.8MHz) applied to TP19,SG10 , (100K) when SW14=H,SW25=H,TP25=5V GPSMAX2=G(1.8M)-G(100K) SW14=H,TP14(B)=0V, SG3(100KHz,3.579545MHz , ) applied to TP14,SG2 applied to TP51.Define the each amplitude on TP46 at 0dB,+6dB,-25dB toward SG6 as , ,typical swing150mVpp) applied to TP14,SG2 applied to TP51.Define the each amplitude on TP46 at TP15 , (3.579545MHz,150mVpp) applied to TP14, variable the BURST frequency until the voltage on TP11 drops below
New Japan Radio
Original
NTL4532-S3R6B NJW1301 NJW1301FK1 LQFP64 2SC2120Y 2SC1959Y 2SA950Y
Abstract: ) into SIF input, and measure the 400Hz component level of AF output TP14. 2. Input SG20 (SG25) into , =0V 37 AF Output DC Voltage V1 1 TP14 SIF IN SG19 38 AF Output (4.5MHz) VoAF 1 1 TP14 SIF IN SG16 SW13=2 571 800 1142 mVrms 39 AF Output (5.5MHz) VoAF 2 1 TP14 SIF IN SG21 SW2=2 SW12=2 521 730 1043 mVrms 40 AFO utput Distortion (4.5MHz) THD AF 1 1 TP14 SIF IN SG16 SW13=2 - 0.8 -
OCR Scan
M5M4V4160J 4194304-BIT 262144-WORD 16-BIT 002S3
Abstract: to LIM IN, and measure the 400Hz component level of AF output TP14. 2. Input SG20 to LIM IN, and , 1 27 28 AF Output AFOutput Distortion 1 1 TP14 SIF IN TP14 SIF IN SG16 SG16 400 â'" 600 0.2 880 0.9 mVrms % 29 1 TP14 SIF IN SG17 â'" 42 55 dBµ 12 30 Limiting LIM Sensitivity AM Rejection AMR 1 TP14 SIF IN SG18 61 68 â'" dB 13 31 AF S/N 1 TP14 SIF IN SG19 63 70 â'" dB 14 Renesas Electronics
Original
M61110FP/GP REJ03F0021-0200Z M61110FP D-85622
Abstract: -1 BA16EF10M TP14-2F 16-14 1-2 .17 .75 .66 .23 BA14EF2 BA14EF2M TP14-6F Max. Insul. 4-6 .28 .80 .66 .23 BA14EF6 BA14EF6M with TP14-8F Dia. Accom.: .180 6-8 .31 .86 .69 .26 BA14EF8 BA14EF8M DFM2D-1 TP14-10F Color Code: Blue -
OCR Scan
TP15-6F BA16EF2M BA14EF BA14EF10 BA10EF6 BA10EF8

mitsubishi weekly code

Abstract: MITSUBISHI LOT NO. CODE utput Distortion V1 VoAF 1 VoAF 2 1 TP14 SG19 1.5 2.1 2.7 V 1 TP14 , SW2=2 SW 12=2 571 800 1142 mVrms 1 TP14 SG21 521 730 1043 mVrms , TP14 SG16 - 0.8 1.2 % (5.5MHz) Limiting Sensitivity (4.5MHz) Limiting Sensitivity (5.5MHz) AM Rejection (4.5MHz) AM Rejection (5.5MHz) 1 TP14 SG21 - 0.6 1.0 % 1 TP14 SG17 - 42 55 dBn 12 1 TP14 SG22 - 42 55 dB[i 12 44 45
-
OCR Scan
MITSUBISHI LOT NO. CODE OU71T

MM1140

Abstract: MM1140XF Output offset voltage Input a 2.0VP-P staircase wave to SG, and measure differential gain at TP14. , control switching and input switching when no signal is output to TP14. Control Input-Output Table SW , Voltage gain 2 following formula given TP12 voltage as V1 and TP14 voltage as V2. GV=20LOG (V2/V1) dB For the above GV measurement, given TP14 voltage for 10MHz as Frequency FC , , connect a distortion meter to TP14 and measure. Measure the DC voltage difference of each switch status
Mitsumi
Original

mitsumi one chip tv ic

Abstract: SG, and measure differential gain at TP14. Proceed as for DG, and measure differential phase. Input a 2.5VP-P, 1kHz sine wave to SG, connect a distortion meter to TP14 and measure. Measure the DC voltage , and input switching when no signal is output to TP14. be SW 3 L 2 4 L H 5 L L L L L H L L L L H H , voltage as V1 and TP14 voltage as V2. GV=20LOG (V2/V1) dB For the above GV measurement, given TP14 voltage , , and given TP12 voltage as V4 and TP14 voltage as V5, CT is obtained from the following formula
Mitsumi
Original
mitsumi one chip tv ic

p8254-2

Abstract: /PB 3 TOCXA4 /TP12 /PB 4 TOCXB4 /TP13 /PB 5 CS7/DREQ 0 /TP14 /PB 6 ADTRG/DREQ 1 /TP15 /PB , / TOCXA4 PB5/TP13/ TOCXB4 PB6/TP14/ '5(40/ &67 PB 7/ TP 15/ '5(41/ $'75* FWE VSS P90/TxD0 P91/TxD1 P92/RxD0 , / TIOCB4 PB4/TP12/ TOCXA4 PB5/TP13/ TOCXB4 PB6/TP14/ '5(40/ &67 PB 7/ TP 15/ '5(41/ $'75* FWE VSS P90/TxD0 , / TIOCA4 PB3/TP11/ TIOCB4 PB4/TP12/ TOCXA4 PB5/TP13/ TOCXB4 PB6/TP14/ '5(40/ &67 PB 7/ TP 15/ '5(41/ $'75 , / TIOCB3 PB2/TP10/ TIOCA4 PB3/TP11/ TIOCB4 PB4/TP12/ TOCXA4 PB5/TP13/ TOCXB4 PB6/TP14/ '5(40/ &67 PB 7/ TP
Hitachi Semiconductor
Original
p8254-2 H8/3052F 21/CS4 FP-100B TFP-100B A13/P2 A12/P2
Abstract: Output offset voltage Input a 2.0VP-P staircase wave to SG, and measure differential gain at TP14. , switching and input switching when no signal is output to TP14. Control Input-Output Table SW OUT , Voltage gain 2 following formula given TP12 voltage as V1 and TP14 voltage as V2. GV=20LOG (V2/V1) dB For the above GV measurement, given TP14 voltage for 10MHz as Frequency FC , , connect a distortion meter to TP14 and measure. Measure the DC voltage difference of each switch status Mitsumi
Original

M52767FP

Abstract: SG10 TP14. 2. Input SG20 to SIF IN, and measure the 400Hz component level of AF output TP14 . 3. The , Vos 1 TP10 VIF IN SG15 86 92 98 AF Output VoAF 1 1 TP14 SIF IN SG16 460 680 1000 mVrms 30 AFOutput Distortion (4.5MHz) THD AF 1 1 TP14 SIF IN SG16 ­ 0.3 0.9 % 31 Limiting Sensitivity (4.5MHz) LIM 1 1 TP14 SIF IN SG17 ­ 42 55 dBµ 12 32 AM Rejection (4.5MHz) AMR 1 1 TP14
Mitsubishi
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M52767FP SG10

TP10

Abstract: TPS40040 Output Ripple Measurement ­ Tip and Barrel using TP14 and TP15 . 9 Control Loop , prebias load compliance 3.3.5 TP14 Vout Monitor output voltage from the module 3.3.5 , . 3.3.7 Output Voltage Monitoring (TP14 and TP15) TPS40040EVM-001 provides two test points for , made between TP14 and TP15. To use TP14 and TP15, connect a voltmeter positive terminal to TP14 and negative terminal to TP15. For output ripple measurements, TP14 and TP15 allow a user to limit the ground
Texas Instruments
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TPS40040 TPS40040DRB SLUU266 TPS40040EVM

ASM 117

Abstract: INTEL486 ordering information /* write to the CCLKCFG register */ asm( "mcr\tp14, 0, %0, c6, c0, 0" : : "r" (VAL) ); 5 } 6 , \tp14, 0, %0, c0, c0, 0" : : "r" (VAL) ); 9 } 10 inline unsigned _Read_CCNT(void) 11 , \tp14, 0, %0, c1, c0, 0" : "=r" ( _val_ ) ); 14 15 return _val_; } 16 17 char buf[1000 , _Write_CCLKCFG(VAL) 3 { 4 asm( "mcr\tp14, 0, %0, c6, c0, 0" : : "r" (VAL) ); 5 } 6 inline void _Write_PMNC(unsigned VAL) 7 { 8 asm( "mcr\tp14, 0, %0, c0, c0, 0" : : "r" (VAL
Intel
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ASM 117 INTEL486 ordering information 0x00000771 A9655 0x00000706 CP14

2SC2120Y

Abstract: 32fH-VCO ,SW25=H,TP25=5V GPSMAX1=G(1.8M)-G(100K) SW14=H,TP14(B)=0V, SG3(100KHz,1.8MHz) applied to TP19,SG10 , (100K) when SW14=H,SW25=H,TP25=5V GPSMAX2=G(1.8M)-G(100K) SW14=H,TP14(B)=0V, SG3(100KHz,3.579545MHz , VTHYC TEST CONDITIONS SG10 applied to TP41, SG6(3.579545MHz,typical swing150mVpp) applied to TP14 , swing150mVpp) applied to TP14,SG2 applied to TP51.Define the each amplitude on TP46 at TP15=0V,3.1V,5.0V as , ,150mVpp) applied to TP14, variable the BURST frequency until the voltage on TP11 drops below 2V. Work
New Japan Radio
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32fH-VCO 1M preset, horizontal TP46 ga220 tp50 equivalent 60pin LCD RGB

N5426A

Abstract: W3630 TP16 DQ2 GND TP15 DQ5 GND GND VREF TP11 GND CKE TP12 TP14 CK GND TP13 ODT GND GND WE# TP13 GND BA1 TP14 TP12 CK# GND TP11 , TP16 DQ2 GND TP15 DQ5 GND GND VREF TP11 GND CKE TP12 TP14 CK GND TP13 ODT_0 GND GND WE# TP13 GND BA1 TP14 TP12 CK# GND TP11 , LDQS GND DQ12 GND DQ13 GND LDQS TP18 TP16 TP14 TP36 TP34 TP32
Agilent Technologies
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5989-5964EN N5426A W3630 TP28-TP30 W3635A N5451A W2633B W2630 W2632A

selic

Abstract: M52767FP VIF IN SG15 86 92 98 dB|j 29 AF Output (4.5MHz) VoAF 1 1 TP14 SIF IN SG16 460 680 1000 mVrms 30 AFOutput Distortion (4.5MHz) THD AF 1 1 TP14 SIF IN SG16 - 0.3 0.9 % 31 Limiting Sensitivity (4.5MHz) LIM 1 1 TP14 SIF IN SG17 - 42 55 dB|j 12 32 AM Rejection (4.5MHz) AMR 1 1 TP14 SIF IN SG18 55 62 - dB 13 33 AF S/N (4.5MHz) AF S/N 1 1 TP14 SIF IN SG19 55 62 - dB 14 ^ENESAS 6 MITSUBISHI ICs (TV , . Limiting Sensitivity: LIM 1. Input SG17 to SIF IN, and measure the 400Hz component level of AF output TP14
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OCR Scan
selic MITSUBISHI NFB
Abstract: ,SW25=H,TP25=5V GPSMAX1=G(1.8M)-G(100K) SW14=H,TP14(B)=0V, SG3(100KHz,1.8MHz) applied to TP19,SG10 , (100K) when SW14=H,SW25=H,TP25=5V GPSMAX2=G(1.8M)-G(100K) SW14=H,TP14(B)=0V, SG3(100KHz,3.579545MHz , ) applied to TP14,SG2 applied to TP51.Define the each amplitude on TP46 at 0dB,+6dB,-25dB toward SG6 as , ,typical swing150mVpp) applied to TP14,SG2 applied to TP51.Define the each amplitude on TP46 at TP15 , (3.579545MHz,150mVpp) applied to TP14, variable the BURST frequency until the voltage on TP11 drops below New Japan Radio
Original

TPS40210EVM

Abstract: tps40210 3.2.5 TP13 GND Ground for Channel B loop monitoring Section 3.2.5 TP14 VOUT Monitor , ac level at the control voltage (TP3). 3.2.6 Output Voltage Monitoring (TP14 and TP15 , output voltage measurements should be made between TP14 and TP15. To use TP14 and TP15, connect a voltmeter positive terminal to TP14 and negative terminal to TP15. For output ripple measurements, TP14 and , resolution, 10-mV/division vertical resolution for taking output ripple measurements. TP14 and TP15 can be
Texas Instruments
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TPS40210EVM tps40210 digital 3 phase voltmeter and ammeter user guide tps40210 SI4386 3M Touch Systems SLUU308 TPS40210
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