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BQ24091DGQR Texas Instruments 1A, Single-Input, Single-Cell Li-Ion Battery Charger with 100kΩ NTC 10-MSOP-PowerPAD -40 to 150 visit Texas Instruments
BQ24091DGQT Texas Instruments 1A, Single-Input, Single-Cell Li-Ion Battery Charger with 100kΩ NTC 10-MSOP-PowerPAD -40 to 150 visit Texas Instruments Buy
BQ24093DGQT Texas Instruments 1A, Single-Input, Single-Cell Li-Ion Battery Charger with Operation Over JEITA and 100kΩ NTC 10-MSOP-PowerPAD -40 to 150 visit Texas Instruments Buy
BQ24090DGQR Texas Instruments 1A, Single Input, Single Cell Li-Ion Battery Charger w/ 10kΩ NTC | Li-ion Linear Battery Charger IC 10-MSOP-PowerPAD 0 to 125 visit Texas Instruments
BQ24092DGQR Texas Instruments 1A, Single-Input, Single-Cell Li-Ion Battery Charger with Operation Over JEITA and 10kΩ NTC 10-MSOP-PowerPAD -40 to 150 visit Texas Instruments
BQ24090DGQT Texas Instruments 1A, Single Input, Single Cell Li-Ion Battery Charger w/ 10kΩ NTC | Li-ion Linear Battery Charger IC 10-MSOP-PowerPAD 0 to 125 visit Texas Instruments Buy

NTC R29

Catalog Datasheet MFG & Type PDF Document Tags

NCP15WF104F03

Abstract: NCP15XH103F03 resistors (0402) R29 1 10k NTC thermistor (0402) Murata NCP15XH103F03 ( = 3380K) 1 Male , NTC thermistor is used to provide overtemperature protection for the battery charger. The MAX8671 EV , PGND7 or from J36 to J3-10. To evaluate with the 10k thermistor included on the EV kit board (R29), connect pins 1-2 of JU10. The on-board 10k thermistor (R29) and the 10k VL pullup resistor (R11) allow , simulate higher temperatures). The MAX8671 EV kit is configured for use with a 10k NTC thermistor
Maxim Integrated Products
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MAX8671X GRM188R60J105K NCP15WF104F03 2.1mm Male Power Connector thermistor R36 ion lithium battery ev MAX8671EVKIT C2012X5R1C475K GRM21BR61C475KA EMK212BJ475MG C1005X5R1A104K

NTC R29

Abstract: AMP-787441-1 battery connected prior to power up. Status LEDs are provided for CHG, ACP, and C/10. An onboard NTC , NTC thermistor may trip and momentarily suspend the charge process. This can be confirmed by the , C1 10uF 35V Alum SANYO R29 10K 100K D Q1 Si5435DC 4 R1 5 15-20V 2A TP2 , VCC 4 R5 510K BGATE 15 PGND CHG CSP BAT NTC IMON ITH BAT 1 5 C , BAT MONITOR TP7 R15 10K NTC SCL BAT 8.4V 2A C9 10uF 25V D1 R13 309K 1
Linear Technology
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LTC4006 35CV10AX MBRM140T3 919AS-220M CR16-3242FM NCP21XV103J03RA NTC R29 AMP-787441-1 AMP-74 2N7002-SOT23 DC410 MMBT3906 LTC4006EGN-6 SSOP16 LT1129CS8-5

L6585

Abstract: diode d1n4148 2 1 8 5 t RT1 NTC C7 1n 1kV 3 C9 470n R32 8.2k T1 8 5 1 C19 , V R29 short D4 D1N4148 R19 0.68 Q2 STP4NK50Z TO220 Q1 STP4NK50Z TO220 R33 , 0.82 R23 330 R24 n.c R25 n.c R26, R27 680K R28, R29 short R30 240K , 39mH, EPCOS B822731 F1 2A fuse RT1 NTC, 16R D1 STTH1L06 D2 1N4148 D3
STMicroelectronics
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EVAL6585D-230V L6585 L6585D diode d1n4148 ITACOIL D446

59PR9875

Abstract: LTC3855EUJ for DCR sensing and for NTC compensated DCR sensing. · PLLIN pin for synchronization to an external , temperature compensation The DC1441A also has footprints for an NTC compensation network on the ITEMP pins , to both inductors. See the data sheet for more details on NTC compensated DCR sensing. VOUT2 >= , Vishay SENSE1- TO L1JUMPER R29, R30 Open C14 0.1uF R56 3.09k R57 100k R58 0 100 , ITH2 1 ITH1 TRK/SS1 S1+ S1- R29 100 ITEMP1 U1 LTC3855EUJ O PT IONAL JUM
Linear Technology
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59PR9875 VFB24 IHLP-4040DZ ferrite R40 r53 ntc IHLP4040DZ
Abstract: C25 OPT SENSBOT SENSGND 19 R37 26 VFBMAX BG2 TG2 VFB E9 E17 16 NTC 24 E8 11 MODE 14 B 8 R12 100k C5 0.1uF 1206 R20 23 NTC BGATE 22 , 0 33 31 R11 24.9k R29 OPT SGND 2 RCBRB1 0.008 0.5W 1206 VFBMIN CSP Linear Technology
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63HVH56M LTC4020EUHF SBR0560S1 7960DP B360A 7461DP
Abstract: NTC Thermistors P/NO. CT08400-T276 (40 Q ) TEMPARATURE CC) -20.00 -15.00 -10.00 -5.00 0.00 5.00 10.00 15.00 20.00 25.00 30.00 35.00 40.00 45.00 50.00 55.00 60.00 65.00 70.00 75.00 80.00 B CONSTANT B=R25/R50 P/NO. CT08302T410 (3000 Q l RESISTANCE (Q) 199.09 162.39 , '"4mW/'C CTO81O3Q335O0T R29 < B^dua p T^mg © H (± 3 % ), J (± 5 % ), K < ± 10%)  , 60 30 50 30 50 40 00 40 00 45 20 NTC Thermistors R - T Characteristics R - T -
OCR Scan
45MIN CT08302J410 CT08400J275

RESISTOR AXIAL

Abstract: AIR FLOW DETECTOR CIRCUIT DIAGRAM pcb layout the NTC thermistor. IMPORTANT ELECTRICAL SAFETY WARNING The HM211 circuit is connected to the , the accumulation of dust and other contaminants. The NTC element is electrically live and , mounting plug for NTC Plug clip-in potentiometer shaft 6 Integrated Electronic Solutions , Generic Module PCB Layout Showing all Possible Components NTC 2007 Feb 08 7 Fig.0 HM211 PCB , metal film R29 zero ohm link Resistor, axial, standard metal film POT1 100 k
Integrated Electronic Solutions
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OM5428 RESISTOR AXIAL AIR FLOW DETECTOR CIRCUIT DIAGRAM pcb layout wiring diagram for triac to potentiometer Phase control circuit soft start triac 1M resistor
Abstract: " NODE AT BAT TURRET (E6) NC/FBG GND VPROG 8 NTC 13 PROG 3 L1 15.0uH , Lr 47µH 5% E9 nFAULT IN INTVCC NTC E4 R12 100k 5% INTVCC D2 , -3P-2DSA R8 0 JP4 NTC INT EXT * R6 0 R7 10k ASSY -A UNLESS NOTED: RESISTORS: OHMS , U2C C7 1µF 10V R31 1k 3 13 15 12 R29 1k D9 1 5% 3 14 17 9 3 R18 Linear Technology
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DFLS240L LTC4120-4 LTC4120EUD 40MEG DFLZ39 1/16W

g1 smd transistor

Abstract: SMD transistor r24 R32 R 46 U1 4.7k G NC R33 R29 R0 S H A L L G R OU N D NC 2 R13 , R13,R14 R27,R28 R15 R16,R17,R38 R33 R10-R23 R24 R29,R34 R32,R35-R37,R46 R41 R43 R44,R45 , ) 0% to 100% 200Hz to 100kHz (25kHz nominal) 3V to 5V 0% to 100% 10k NTC, 100K NTC 1V to 3V , example. The thermistor is 10K NTC and J3 selects the linearization resistor network. For 100K thermistor
Diodes
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g1 smd transistor SMD transistor r24 SMD TRANSISTOR G1 Diode GP 622 3 pin SMD hall sensor g3 smd transistor ZXBM1015EV1 ZXBM1015 D-81673

63HVH56M

Abstract: diode R17 SMA e10 at the optional R29 position). The LTC4020 data sheet gives a complete description of the IC , , SMA 4 0 R3, R17, R29, R31, R32 OPT RES, OPTIONAL Hardware: For Demo Board Only 1 11 , on existing patent rights. A B C D MODE NTC SGND ILIMIT RNG / SS SHDN , R29 OPT R14 10k + C4 100pF 16V C3 56uF 63V 63HVH56M INT_VCC R5 100k + , 10 9 0603 R17 R2 510k OPT RT TIMER MODE CSOUT NTC FBG VFB 4
Linear Technology
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diode R17 SMA e10 DC2044A

usbdm

Abstract: isel c10 USB_GND 5 USB CONN1 1 2 3 4 5 1 I/O1 2 C7 100nF U3 GND 3 I/O2 R29 1M I/O2 ADPT_V VIN 2 2 3 2 3 STPS1L30U 1 VBUS I/O1 J13 NTC 3 6 7
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ST72F63BK6M1 STM1001 L6924D usbdm isel c10 ntc 4k7 USBLC6-2SC6 2SC6 88nF 6924U VPQFN16 STEVAL-ISB005V1

MARKING SMD npn TRANSISTOR R45

Abstract: PMSM 200kw .26 10.2. NTC Temperature , Bus Voltage Sense Output - 3-Phase Current Sensing, Amplified NTC Output Signal (when applicable , R10 C18 R58 WARNING HIGH VOLTAGE R28 R30 M-U R15 N M-V R42 D8 R29 R31 , M-V R42 R28 R30 D8 R29 R31 Warning D8 Indicates High Voltage is present ZD5 , C30 M-U R15 N M-V P4 R24 R28 R30 D8 R29 R31 Warning D8 Indicates High
Fairchild Semiconductor
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MARKING SMD npn TRANSISTOR R45 PMSM 200kw FSBB30CH60C FEBSPM3SPM45 M01MTCA SPM3/45H SPM45H FNB41560

motorola e6 charging jumper diagram

Abstract: HRC908JK3 battery is being charged, charging current will flow through the detection resistors R18 and R29. A voltage drop will appear on the resistors R18 and R29. R18 and R29 are 1 , 1% resistors. They are in , actual battery voltage at its terminals. An NTC is connected between terminals T of J1 and ground. The , the NTC. 2.1.4 Charging Status PTD2 and PTD3 are used to control the on/off of the two LEDs which , , R pull-up =10K (1%) T (degC) 50 45 40 25 10 0 R NTC (K) 3.63 4.4 5.356 10 19/85 32.33
Freescale Semiconductor
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M68HC08 DRM051 motorola e6 charging jumper diagram HRC908JK3 MC68HRC908JK3E motorola hc08 schematic programmer 1.2 v nimh battery DRM051/D

L4984

Abstract: resistor pth vishay pin (CS, #4) of the L4984 via the filter by R29 and C13. C15 and R28, connected to the VFF pin (#5 , C16 2N2 TIMER 7 R29 1K0 GND 8 GD 3 4 5 9 JPX3 INV VCC 10 D7 LL4148 R26 3R9 3 C10 100uF-35V R25 6R8 Q2 , - 7A D3 STTH8S06FP 2 L4 2743005112 C1 220nF-520V C2 1uF-520V 5 1 1 2 3 4 5 R2 NTC 1R0 , Shorted Shorted Shorted 70 uH - 7 A 3 mH - 7 A 700 uH 2743005112 STF21N65M5 STF21N65M5 750 K NTC 1R0 , standard film res. - 1/4 W - 5% - 250 ppm/°C NTC resistor P/N B57237S0109M000 SMD standard film res. - 1/4
STMicroelectronics
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EVL4984-350W resistor pth vishay am1339 1R0-S237 CAPACITOR SMD EPCOS d15xb60h IEC61000-3-2 EN610003-2

con8a

Abstract: L5973 5 4 3 2 C1 L1 15mH D1 R12 T5 TRANSFORMER 1 C2 4 - 100n 400V + 1 1 D D7 4 1 C21 1n 1k 100n 400V t R1 t CON2 FUSE Varistor 2 1 3 J22 2 DIODE BRIDGE F1 F D 3 2 N C3 220u 450V NTC 16 ohm C4 STPS8H100 TRANSIL D8 10n 600V 12 +13.8V 4 20K 6W Cout1 330u 6 D5 C38 330u , 15uH 3A R29 10k OUT - 3.8V J21 L5973 D3 BATT FAILURE R26 8 7 6 5 4 3 2 1
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TL431 STEVAL-ISA033V1 TSM108 con8a L7805 TO220 varistor C21 varistor 2k2 2u55 STPS20 STTH106 BC337 STP10NK60Z L5991 PC817

MAGNETICA TRANSFORMER

Abstract: NTC-10 ohm line-pitch 2.54 VARISTOR NTC 10 Ohm 7.5A 100N 300Vac X2 220uF-450V 2.2N 1000V 150N - 50V 2.2nF - 50V , EPCOS NTC EPCOS ALUMINIUM ELCAP HV CERCAP CERCAP CERCAP CERCAP ALUMINIUM ELCAP CERCAP , R27 1 62 R28 2 63 R29, R34 1 64 R30 1 65 R31 1 66 R32 1 67 R33 1 68 R40 1 69
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DE1E3KX222M MAGNETICA TRANSFORMER NTC-10 ohm VARISTOR NTC 10 NTC-10 diode SMD t01 transistor TL431 to92 F-450V F-35V F-50V STS5PF30L BC847A

w10 hall

Abstract: vr1 100k lin PWM_Vref M_phase_C NTC bypass +15V 3 Motor output Vout GND 4 +5V C63 100n + , phase_B phase_C MOTOR D3 1N4148 NTC_by pass_relay 11 1 2 R12 1k Q1 BC847 Het NTC , +Bus R36 1k R29 220R +3.3V R56 100k Phase A - input R61 1k0 PWM-A-L PWM-A-H R64
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BZV55C18SMD LF33ABDT-TR w10 hall vr1 100k lin finder c38 finder c48 W12 hall sensor 24c46 STEVAL-IHM025V1 BAT48JFILM STTH1L06A

4N7 Y2

Abstract: 220n x2 3 BAT48JFILM J1 BAT48JFILM R29 100R Q4 BC847 C22 10p + +Bus Tacho , BC847 D10 1N4148 R13 82R U2 L7815ACP IN NTC bypass C10 100n 1 W1 C7 100n , NTC comparator TP21 TP20 TP19 TP18 TP17 TP16 TP15 TP14 TP13 TP12 TP11 TS391ILT 1 U8 +3.3V Het_temperature phase_A RT1 NTC 10k R44 3k6 Test pins TP10
STMicroelectronics
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4N7 Y2 220n x2 water pumping machine control schematic finder 4031 datasheet viper16ln Finder relay STEVAL-IHM023V1 L6390 STGP10NC60KD AM05056 15VDC

1N400 diode

Abstract: TSV992 32 34 C2 15v 15 2.2k R29 34 26 +3V3 8A/400 Ac diode bridg 400V c ode dge , CURR CURRENT C CURR NTC BYPASS RELAY PASS DISS PATIV BRAK SSIPA AKE +5V POWER PFC SYNC PFC , CURRENT C CURR NTC BYPASS RELAY PASS DISS PATIV BRAK SSIPA AKE +5V POWER PFC SYNC PFC PWM ENC , Single ground point on the board common ground C12 R18 33 33k R31 J19 NTC Hole C5
STMicroelectronics
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1N400 diode TSV992 STEVAL-ISF002V1 STW23NM60N TD352

1N400 diode

Abstract: diode 1n400 18 20 22 24 26 28 30 32 34 + 4 1 - 15v 15 2.2k R29 34 26 +3V3 PFC_Iac , MC_UH MC_UL MC_VH MC_VL MC_WH MC_WL CURRENT A CURR CURRENT B CURR CURRENT C CURR NTC BYPASS , gency MC_UH MC_UL MC_VH MC_VL MC_WH MC_WL CURRENT A CURR CURRENT B CURR CURRENT C CURR NTC , common ground C12 R18 33 33k R31 J19 NTC Hole C5 0.68u 630 68uF 630V Relay_Driver
STMicroelectronics
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diode 1n400 MOSFET 1 KW VIPer12A applications 23NM60 1N400 1N540 12A-E
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