2003 - thermistor ntc 45k
Abstract: No abstract text available
Text: 4.99k PGND 32.4k RT 15k * THERMISTOR 10k NTC 150k 0.47µF ITH 6.04k GND 0.12µF , R10 32.4k 1% Z1 RT R13 1.5k THERMISTOR 10k NTC RT 150k R9 15k 0.25% R7 6.04k , Maximizes Charge Rate* Thermistor Input for Temperature Qualiï¬ed Charging Wide Input Voltage Range: 6V , ï¬nal ï¬oat voltage. The LTC4008 includes a thermistor sensor input that will suspend charging if an , 6.5 V 0.25 V Thermistor NTCVR Reference Voltage During Sample Time 4.5 V High
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LTC4008
20-Pin
NLTC4006
16-Pin
LTC4007
LTC4100
4008fb
thermistor ntc 45k
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9014 2n3904
Abstract: 3.7v battery charger circuit diagram 2 SC 9014 tip 9012 G 1N4148 1N5819 AIC1563 AIC1761 AIC176X-XXXX 15k thermistor
Text: C4 390K R1 VOUT GND 1.5K R6 LED +VDD TIMER 1.5K R7 FLASH VREF 20K R5 4.7K R4 1.5K R8 MODE VNTC ° ! ELECTRICAL CHARACTERISTICS (VDD=12.5V, Ta=25°C, unless , determined by an external thermistor divider circuit as included in the Application Examples, Fig. 10 , The battery temperature, sensed by the thermistor divider, exceeds the fault temperature range (TCO). , charge is prohibited can be set by choosing values for resistors and the thermistor of the thermistor
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AIC1761/1766
DS-1761-02
AIC1761
AIC1766
Charge761-02
9014 2n3904
3.7v battery charger circuit diagram
2 SC 9014
tip 9012 G
1N4148
1N5819
AIC1563
AIC1761
AIC176X-XXXX
15k thermistor
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9014 2n3904
Abstract: tip 9012 G 1000maH 2 SC 9014 basic transistor 9014 NTC 150k 1N4148 1N5819 AIC1563 AIC1761
Text: RED VNTC LED BATTERY 10 R14 R13 1.5K THERMISTOR 9 ZD1 16V R19 R4 , 390K R1 VOUT GND 1.5K R6 LED +VDD TIMER 1.5K R7 FLASH VREF 20K R5 4.7K R4 1.5K R8 MODE VNTC ELECTRICAL CHARACTERISTICS PARAMETER (VDD=12.5V, Ta=25°C, unless , an external thermistor divider circuit as included in the Application Examples, Fig. 10. After the , temperature, sensed by the thermistor divider, exceeds the fault temperature range (TCO). YES If 0.65V
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AIC1761/1766
DS-1761-02
AIC1761
AIC1766
015X45°
9014 2n3904
tip 9012 G
1000maH
2 SC 9014
basic transistor 9014
NTC 150k
1N4148
1N5819
AIC1563
AIC1761
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2003 - FDC6459
Abstract: 614k NTC 150k LTC4008 thermistor ntc 45k bd 2003 fast charge battery PTC 1k thermistor conversion table LTC4008EGN Si4431DY thermistor 10k
Text: NTC PGND 32.4k RT 15k * THERMISTOR 10k NTC 150k 0.47µF ITH 6.04k GND 0.12µF , ICL ICL R10 32.4k 1% Z1 R13 1.5k FLAG RT THERMISTOR 10k NTC RT 150k R9 15k , Accuracy AC Adapter Current Limiting Maximizes Charge Rate* Thermistor Input for Temperature Qualified , Portable Instruments Battery Backup Systems LTC4008 includes a thermistor sensor input that will , V 0.25 V Thermistor NTCVR Reference Voltage During Sample Time 4.5 V High
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LTC4008
20-Pin
LTC4006
16-Pin
LTC4007
4008i
FDC6459
614k
NTC 150k
LTC4008
thermistor ntc 45k
bd 2003 fast charge battery
PTC 1k thermistor conversion table
LTC4008EGN
Si4431DY
thermistor 10k
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2003 - PTC 1k thermistor conversion table
Abstract: data sheet ic 4008 p-MOSFET "soft start" NTC 150k marcon capacitor nc 12v dc to dc mobile charger circuit PTC 3k thermistor conversion table LT 4008 Battery charger 48 volt circuit diagram Intel 4008
Text: NTC PGND 32.4k RT 15k * THERMISTOR 10k NTC 150k 0.47µF ITH 6.04k GND 0.12µF , ICL ICL R10 32.4k 1% Z1 R13 1.5k FLAG RT THERMISTOR 10k NTC RT 150k R9 15k , Accuracy AC Adapter Current Limiting Maximizes Charge Rate* Thermistor Input for Temperature Qualified , Portable Instruments Battery Backup Systems LTC4008 includes a thermistor sensor input that will , V 0.25 V Thermistor NTCVR Reference Voltage During Sample Time 4.5 V High
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LTC4008
20-Pin
LTC4006
16-Pin
LTC4007
4008i
PTC 1k thermistor conversion table
data sheet ic 4008
p-MOSFET "soft start"
NTC 150k
marcon capacitor nc
12v dc to dc mobile charger circuit
PTC 3k thermistor conversion table
LT 4008
Battery charger 48 volt circuit diagram
Intel 4008
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2003 - Intel 4008
Abstract: LTC4008-1 in 4008 diode 337 6K tantalum
Text: 0.025 0.02 SYSTEM LOAD 15k * THERMISTOR 10k NTC 150k 0.47µF 6.04k 0.12µF ITH GND 26.7k Q1 , R11 100k ICL R12 100k FAULT FLAG Z1 C7 0.47µF THERMISTOR 10k NTC R10 32.4k 1% Q3 2N7002 R13 1.5k , * Thermistor Input for Temperature Qualified Charging Wide Input Voltage Range: 6V to 28V Wide Output Voltage , thermistor sensor input that will suspend charging if an unsafe temperature condition is detected and will , Clamping Voltage (VCLP VINFET) INFET "Off" Clamping Voltage (VCLP VINFET) Thermistor NTCVR Reference
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LTC4008
20-Pin
MBRS130T3
Si4431ADY
FDC645N
Intel 4008
LTC4008-1
in 4008 diode
337 6K tantalum
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2003 - NTC-8 series capacitor
Abstract: LT 4008 LTC4008 NTC 150k Intel 4008 in 4008 diode FDC645N LTC4008EGN Si4431BDY LTC4008-1
Text: TGATE FLAG FLAG BGATE NTC PGND 32.4k RT 15k * THERMISTOR 10k NTC 150k 0.47µF , 32.4k 1% Z1 R13 1.5k TGATE FLAG PGND RT THERMISTOR 10k NTC RT 150k R9 15k , Charge Rate* Thermistor Input for Temperature Qualified Charging Wide Input Voltage Range: 6V to 28V , includes a thermistor sensor input that will suspend charging if an unsafe temperature condition is , 0.25 V Thermistor NTCVR Reference Voltage During Sample Time 4.5 V High Threshold
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LTC4008
16-Pin
LTC4007
LTC4100
4008fa
NTC-8 series capacitor
LT 4008
LTC4008
NTC 150k
Intel 4008
in 4008 diode
FDC645N
LTC4008EGN
Si4431BDY
LTC4008-1
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2003 - Si4431B
Abstract: in 4008 diode LTC4008EGN LTC4008 LTC4008-1 Intel 4008 NTC 8 NTC 150k PTC 1k thermistor conversion table FDC645N
Text: 4.99k PGND 32.4k RT 15k * THERMISTOR 10k NTC 150k 0.47F ITH 6.04k GND 0.12F , 1% Z1 R13 1.5k TGATE FLAG PGND RT THERMISTOR 10k NTC RT 150k R9 15k , Maximizes Charge Rate* Thermistor Input for Temperature Qualified Charging Wide Input Voltage Range: 6V , ICL ACP 0.1F INFET ICL 100k The LTC4008 includes a thermistor sensor input that will , 6.5 V 0.25 V Thermistor NTCVR Reference Voltage During Sample Time 4.5 V High
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LTC4008
LTC4006
16-Pin
LTC4007
LTC4100
4008fb
Si4431B
in 4008 diode
LTC4008EGN
LTC4008
LTC4008-1
Intel 4008
NTC 8
NTC 150k
PTC 1k thermistor conversion table
FDC645N
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SC10 ntc
Abstract: NTC 15 thermistor 1030 GA20 Application Form 3J683 Thermistor NTC 400k IT-I298 TH05 FH10-6E103 47k thermistor ntc c2570 transistor
Text: 30 2H680 NTC THERMISTOR 2D300 220 2,900K 2,901K 3U153 15k 3,850K 3,870K , , GH13 Axial leaded GA20, GH20 TN05 - Series NTC THERMISTOR , oscillator (TCXO) Chip thermistor is used for temperature compensation of TCXO, which is a key device for , battery pack Fuse Battery cells For high temp. C Battery pack Chip thermistor with , THERMISTOR CD AV Video camera, Car audio VCR, Product lineup TN20
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10k470k
30150k
1k10k
2k150k
SC10 ntc
NTC 15 thermistor 1030
GA20 Application Form
3J683
Thermistor NTC 400k
IT-I298
TH05
FH10-6E103
47k thermistor ntc
c2570 transistor
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2002 - LTLX LTC 1733
Abstract: Thermistor 15k 20 degree c thermistor ntc 15k NTC interface design NTC 15k temperature vs resistance table ltlx NTC 1K thermistor
Text: Recharge Thermistor Input for Temperature Qualified Charging AC Present Logic Output 4.1V/4.2V Pin , 0.1µF 5 NTC 6 1.5k 1% 1733TA01 *AN OUTPUT CAPACITOR MAY BE REQUIRED DEPENDING ON BATTERY LEAD , Current 4.24 4.22 V SEL = 5V 4.20 4.18 VBAT (V) VCC = 5V TA = 25°C RPROG = 1.5k 4.16 4.14 4.12 , ) VBAT (V) PROG Pin Voltage vs Charge Current 1.6 VCC = 5V 1.4 TA = 25°C RPROG = 1.5k 1.2 VSEL = 5V , G05 IBAT (mA) 1.0 Charge Current vs VCC 1100 RPROG = 1.5k 1000 900 1000 900 800 700 VBAT =
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LTC1733
10-Pin
OT-23
1733f
LTLX LTC 1733
Thermistor 15k 20 degree c
thermistor ntc 15k
NTC interface design
NTC 15k temperature vs resistance table
ltlx
NTC 1K thermistor
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2002 - LTLX LTC 1733
Abstract: NTC 5K ltlx circuit diagram for 48v automatic battery charger NTC 30K resonant self oscillation push pull 48V automatic charger NTC 005 thermistor ntc 50k LTC1733
Text: Charge Current Detection Output Automatic Recharge Thermistor Input for Temperature Qualified Charging , LTC1733 4 7 TIMER PROG GND NTC 5 6 0.1µF IBAT = 1A 1.5k 1% 4.2V 1-CELL Li-Ion , Battery Regulation Voltage vs Temperature VCC = 5V TA = 25°C RPROG = 1.5k 4.22 V SEL = 5V 4.20 VCC = 5V 4.22 IBAT = 10mA RPROG = 1.5k 4.20 4.18 TA = 25°C 4.22 IBAT = 10mA RPROG = 1.5k , Current vs Input Voltage 700 0.8 6.0 1100 VCC = 5V 1000 TA = 25°C 900 RPROG = 1.5k VSEL
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LTC1733
10-Pin
LTC1734
LTC1998
OT-23
LTC4050
sn1733
1733fs
LTLX LTC 1733
NTC 5K
ltlx
circuit diagram for 48v automatic battery charger
NTC 30K
resonant self oscillation push pull
48V automatic charger
NTC 005
thermistor ntc 50k
LTC1733
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Not Available
Abstract: No abstract text available
Text: Charge Current Detection Output Automatic Recharge Thermistor Input for Temperature Qualified Charging , TIMER PROG GND NTC 5 6 0.1µF IBAT = 1A 1.5k 1% 4.2V 1-CELL Li-Ion BATTERY , Battery Regulation Voltage vs Temperature VCC = 5V TA = 25°C RPROG = 1.5k 4.22 V SEL = 5V 4.20 VCC = 5V 4.22 IBAT = 10mA RPROG = 1.5k 4.20 4.18 TA = 25°C 4.22 IBAT = 10mA RPROG = 1.5k , 25°C 900 RPROG = 1.5k VSEL = 5V 800 1.0 5.0 1733 G03 1100 VCC = 5V 1.4 TA = 25Â
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LTC1733
10-Pin
LTC1734
LTC1998
OT-23
LTC4050
sn1733
1733fs
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piher 47k
Abstract: NTC 25k ntc 50K B 3950 MT 2800 N
Text: a thermistor chip for mounting directly to the bonding pads o f Hybrid Substrates. M EC Citec , % 10k ft ± 10% 15k ft ± 5% 15k ft ± 10% 20k ft ± 5% 20k f t ± 10% 30k ft ± 5% 30k ft ± 10% B-VALUE R 25 , . For dimensions see H O W T O ORD ER code below. STRUCTURE TYPE A TYPE B THERMISTOR SELECTION , -3 0 2 -5 0 2 -1 0 3 -1 5 3 -1 5 3 -2 0 3 -3 0 3 RESISTANCE /fli 40 100 500 1 .OK 1.5K 2 .OK 21K 2.5K 2.5K 30K 5.0K 10K 15K 15K 20K 30K B-CONSTANT ÎK1 2750 2750 3300 3300 3400 3400 4100 3400 4100 4100 3500
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847-390-6680/Fax
piher 47k
NTC 25k
ntc 50K B 3950
MT 2800 N
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thermistor 4k7
Abstract: NTC 4k7 thermistor JIS3282 Meggitt Sensors Meggitt THERMISTOR
Text: , reflow or vapour phase; Style A is a thermistor chip for mounting directly to the bonding pads of Hybrid , % 2.5k ± 10% 5k ± 5% 5k ± 10% 10k ± 5% 10k ± 10% 15k ± 5% 15k ± 10% 20k ± 5% 20k ± 10% 30k ± 5 , ) Reel Quantity 3000 pieces THERMISTOR SELECTION GUIDE Common Part Resistance B-Constant (K) & , 2K5 3400 -2524100 -2522K5 -3023K0 4100 -5025K0 3500 3750 -10310K -15315K 3750 15K 3950 -153-20320K , soldering iron) and preheating thermistor chip shall be 150°C maximum. FIGURE 1. below. The temperature
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JIS3282
Abstract: NTC 4k7 thermistor
Text: , reflow or vapour phase; Style A is a thermistor chip for mounting directly to the bonding pads of Hybrid , % 10k ± 5% 10k ± 10% 15k ± 5% 15k ± 10% 20k ± 5% 20k ± 10% 30k ± 5% 30k ± 10% TYPE 3157 , ) Reel Quantity 3000 pieces THERMISTOR SELECTION GUIDE Common Part Resistance B-Constant (K) & , 2K5 3400 -2524100 -2522K5 -3023K0 4100 -5025K0 3500 3750 -10310K -15315K 3750 15K 3950 -153-20320K , or tip of soldering iron) and preheating thermistor chip shall be 150°C maximum. FIGURE 1. below. The
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2001 - TTC 103 thermistor
Abstract: TTC 103 ntc thermistor Semitec AT103 NTC TTC 103 thermistor ICS1718 thermistor ttc 103 ntc TTC 103 AT103-1 TTC 103 ntc resistor SeMitec Ishizuka Electronics NTC
Text: , thermistor or temperature switch input, and a charge status output pin. The ICS1718 uses pulsed-current , internal oscillator, providing the clock for the device. 15K or 30K and 100pF are normally used. Pin 5 can , , capable of supplying 7 mA. 6 THERM IN Thermistor or thermal switch input referenced to , shown in Table 4A and Figure 9. The voltage at THERM pin 6 is produced by a NTC thermistor in the , thermistor or normally closed thermal switch referenced to battery minus for THERM pin 6 sensing, the above
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ICS1718
TTC 103 thermistor
TTC 103 ntc thermistor
Semitec AT103
NTC TTC 103 thermistor
ICS1718
thermistor ttc 103
ntc TTC 103
AT103-1
TTC 103 ntc resistor
SeMitec Ishizuka Electronics NTC
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Not Available
Abstract: No abstract text available
Text: Drawing: C48-229 ACCESSORIES ⢠Sensor Input: NTC Thermistor , 185K to 600 TS67 ( 15K ) â20° to 110°C TS91 (10K) â30° to 104°C TS104 (50K) 0° to 150°C TS136 ( 15K ) â20° to 110 , 30° to +225°C in multiple ranges allows these thermistor sensing controllers to be utilized in a wide , ¢ Economical Price Input to Output Isolation SPDT Relay Output ON/OFF Control Mode Thermistor Input
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5CX-754
120VAC
C48-229
TS104
TS136
TS165
877-766-OVEN
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2004 - Not Available
Abstract: No abstract text available
Text: NT73 negative tempco thermistor features · · · · · Anti-leaching nickel barrier terminations 90/10 , www.koaspeer.com NT73 negative tempco thermistor applications and ratings Part Designation Resistance @ 25°C 1K 2k 2.2k 2.4k 3.3k 4.7k 5k 6.8k 10k 15k 10k 20k 22k 30k 33k 47k 68k 100k 47k 1k 2k 2.2k 2.4k 3.3k 4.7k 5k 6.8k 10k 15k 10k 20k 22k 30k 33k 47k 68k 100k 150k 50k 10k 15k 22k 30k 33k 47k 68k 100k 150k 1k , (mW/°C) Power Rating (mW) Operating Temperature Range NT73 negative tempco thermistor
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MIL-R-55342
MIL-STD-202,
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Not Available
Abstract: No abstract text available
Text: Thermistors SMD Q Meggitt Citec n.t.c. chip thermistor Key features ⢠12:06 or 08:05 packages < suitable for bonding or pick and place ⢠solvent resistant coating ⢠temperature range , Two styles are offered; Style A, is a thermistor Common Part Resistance B-Constant Structure/Size , 1K5 2K0 2K0 2K5 2K5 3K0 5K0 10K 15K 15K 20K 30K 50K 100K 150K 300K 500K 2750 2750 , To Order 3157 1 Common Part Please Request Full Data 3157 Chip Thermistor Sheet F0444
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500KQ
-2023157-2523157-2523157-3023157-502315To
F0444
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2009 - TRANSISTOR C 3205
Abstract: MAX8600 MAX8601 T1433-2 Thermistors 10k NTC 5046C
Text: Thermistor Input Three Charger-Status Outputs Thermally Optimized Charge Rate 14-Pin, 3mm x 3mm TDFN , RSETI = 1.5k 950 1000 1050 RSETI = 2k 675 750 825 RSETI = 5k 275 300 , /Top-Off Current Threshold IBAT falling, battery is charged RSETI = 1.5k RSETI = 2k 60 30 RSETI = 5k 45 60 mA 18 THM THM Pullup Resistance Match to thermistor resistance at TA , AVOID THERMAL LIMIT 200 900 800 CHARGE CURRENT (mA) 1000 MAX8600A toc05 RSETI = 1.5k
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MAX8600A
MAX8600A
TRANSISTOR C 3205
MAX8600
MAX8601
T1433-2
Thermistors 10k NTC
5046C
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thermistor ntc 10k
Abstract: thermistor ntc 5k NTC glass bead thermistor 100K of thermistor 47K ohms ntc NTC thermistor 5k ohm NTC 4.7K 47k thermistor ntc NTC thermistor 100K NTC thermistor 10k ohm thermistor 4.7k ohm
Text: thermistors single plate construction Thermistor element Terminal electrode However, conventional single plate chip NTC thermistors (the model shown above), in which electrodes are on the NTC thermistor , to these needs, a new chip NTC thermistor model using laminated construction method shown in the next , NTC thermistors Multilayer construction - Terminal electrode Thermistor element Internal electrode , thermistor technology has evolved from the single plate structure into the multilayer structure. Our
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2002/95/EC,
05XW0
05XT0
NTCG103JF103F
3435K
NTCG163JF103F
puf-sa01ea2008
thermistor ntc 10k
thermistor ntc 5k
NTC glass bead thermistor 100K
of thermistor 47K ohms ntc
NTC thermistor 5k ohm
NTC 4.7K
47k thermistor ntc
NTC thermistor 100K
NTC thermistor 10k ohm
thermistor 4.7k ohm
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2000 - ic 4456
Abstract: NTC Thermistor 2.2k 3eh22
Text: THERMISTORS INITIAL RESISTANCE Thermistor resistance is a function of absolute temperature as indicated by the , rises due to thermal energy formed as electrical current flows through the thermistor . The thermistor , thermistor constant(B constant below). B constant The B constant is found from the following equation: R , electrical power (mW/°C) needed to raise the thermistor temperature by 1°C. This heat dissipation coefficient varies with changes in the measurement and environmental conditions. When a thermistor is used for
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NTCCM1005,
ic 4456
NTC Thermistor 2.2k
3eh22
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1999 - 2750k
Abstract: Sensor NTC 10K / 3435 ntc 100K 4085 thermistor 10k 25 3470 thermistor 10k 25 3435 3eh22 ic CD 4047 IC 4047 sensor 3414 cd 4061
Text: NTC Thermistors PHYSICAL PROPERTIES OF NTC THERMISTORS INITIAL RESISTANCE Thermistor resistance is , COEFFICIENT Temperature rises due to thermal energy formed as electrical current flows through the thermistor . The thermistor temperature T0 is then related to the surrounding temperature Ta and the electrical , (K). B is the thermistor constant(B constant below). B constant The B constant is found from the , /°C) needed to raise the thermistor temperature by 1°C. This heat dissipation coefficient varies with
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NTCCM1005,
B25/85
4100K
2750k
Sensor NTC 10K / 3435
ntc 100K 4085
thermistor 10k 25 3470
thermistor 10k 25 3435
3eh22
ic CD 4047
IC 4047
sensor 3414
cd 4061
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2001 - 2750k
Abstract: Sensor NTC 10K / 3435 NTC 2.8k thermistor ntc 10k characteristic NTC Thermistor 2.2k sensor 3414 47k thermistor ntc 4501 ic ic cd 4053 NTC 1K datasheet
Text: NTC Thermistors PHYSICAL PROPERTIES OF NTC THERMISTORS INITIAL RESISTANCE Thermistor resistance is , COEFFICIENT Temperature rises due to thermal energy formed as electrical current flows through the thermistor . The thermistor temperature T0 is then related to the surrounding temperature Ta and the electrical , (K). B is the thermistor constant(B constant below). B constant The B constant is found from the , /°C) needed to raise the thermistor temperature by 1°C. This heat dissipation coefficient varies with
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NTCCM1005,
B25/85
4100K
2750k
Sensor NTC 10K / 3435
NTC 2.8k
thermistor ntc 10k characteristic
NTC Thermistor 2.2k
sensor 3414
47k thermistor ntc
4501 ic
ic cd 4053
NTC 1K datasheet
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2005 - DIN 44081
Abstract: Epcos B59100 44081 E69802 M1100 B59100 B59100M1060A070 B59100M1070A070 B59100M1080A070 B59100M1090A070
Text: electric motors Limit temperature monitoring Dimensional drawing Features Thermistor pellet with , document. R (TNTT + 15K ) (VPTC 7.5 V) 4k 4k Page 2 of 8 R (TNTT + 23K) (VPTC 2.5 V) 10 , (TNTT + 15K ) (VPTC 7.5 V) 4k 4k 4k 4k 4k 4k 4k 4k - Color coding of litz wires (to DIN , otherwise agreed with EPCOS during the design-in-phase. Ensure suitability of thermistor through , thermistors surface during storage, handling and processing. Avoid storage of thermistor in harmful
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B59100
M1100
DIN 44081
Epcos B59100
44081
E69802
M1100
B59100
B59100M1060A070
B59100M1070A070
B59100M1080A070
B59100M1090A070
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