NTC Elements
B57220K0212A003
|
|
Size
| Detail Size Information |
Electrical Characteristics
| Nominal Resistance |
|
| Nominal Resistance Tolerance |
|
| Nominal B value (Typ.) [25/100°C] |
|
| Nominal B value Tolerance |
|
| Reference B value (Typ.) [25/85°C] |
|
| Reference B value (Typ.) [0/100°C] |
|
| Max. Electric Power [at 25°C] |
|
| Thermal Dissipation Constant [at 25°C] |
|
Other
| Operating Temperature Range |
|
| Terminal Note |
|
| UL File No. |
|
| AEC-Q200 |
|
| Packing |
|
Tech Info
Documents
-
[Product Overview] NTC Elements - High accuracy temperature measurement and wide variety portfolioHot
-
General Technical Information
-
Cautions and Warnings
-
Quality and Environment
-
Symbols and Terms
-
Taping and Packing
-
Climatic Conditions
-
RoHS and SVHC/REACH Declaration
-
Material Data Sheets
-
Selection Guide
-
Application Notes
-
Application Note - Digital Readout and Trimming of NTC Thermistors
-
Application Note - Digital Readout of NTC Thermistors – Circuit Optimization
-
RT Sheet
-
R/T characteristics
Technical Support Tools
Customer who viewed this product also viewed
Multilayer Ceramic Chip Capacitors
C4532X7R2E224K230KA
Capacitance=0.22μF
Edc=250V
T.C.=X7R
LxWxT:4.5x3.2x2.3mm
Mid Volt. (100 to 630V)
SMD / SMT Inductors (Coils)
NLV32T-100J-PF
L=10μH
Q=30
L x W x T :
3.2 x 2.5 x 2.2mm
SMD / SMT Inductors (Coils)
SPM7054VT-150M-D
L=15μH
Rated current=4.5A
L x W x T :
7.5 x 7.0 x 5.4mm
SMD / SMT Inductors (Coils)
VLS201610HBX-1R0M-1
L=1μH
Rated current=2.9A
L x W x T :
2 x 1.6 x 1mm
Chip Beads
MMZ0603S102HT000
|Z|=1000Ω at 100MHz
Rated current=200mA
L x W x T :
0.6mm x 0.3mm x 0.3mm
NTC Elements
B57150K1242J000
Nominal Resistance=2.394kΩ
Nominal Resistance Tolerance=±5%
NTC Elements
B57350K0102J000
Nominal Resistance=0.99kΩ
Nominal Resistance Tolerance=±5%
NTC Elements
B57551G1502G000
Nominal Resistance=5kΩ
Nominal Resistance Tolerance=±2%
NTC Elements
B57820M0102A003
Nominal Resistance=1.014kΩ
Nominal Resistance Tolerance=±5%
NTC Elements
B57820M0561A005
Nominal Resistance=0.5602kΩ
Nominal Resistance Tolerance=±5%