LNSV20中文资料

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FEATURESMultilayer structure allows diverse resistance value in the same B constantMultilayer structure allows lower resistance at high B constant.Solder plating with Ni barrier gives high reliability for both flow and reflow soldering.Unified shape and tightly controlled dimension is fit to highmounting speed.

APPLICATIONSTemperature compensation for crystal oscillator (TCXO)Temperature compensation for Personal computerTemperature detection for CPU and memory deviceTemperature detection for battery packTemperature compensation for contrast of LCD

LNS V 16 G 103 J P

DESCRIPTIONThe LNS series is manganese oxide based NTC thermistor,which shows non-linear resistance-temperature behavior.Multilayered structure has as high reliability as monoblock type,even without protective glass coating, since the active electrodeand sensor layer is buried inside the ceramic body.

NTC Thermistor SMD

SeriesB constantZ 3250KK 3435KY 3670KW 3890KA 3970KV 4150KU 4550K T 4750KChip size (mm)101.0 x0.5 x 0.5 (inches 0402)161.6 x0.8 x 0.8 (inches 0603)202.0 x1.2 x 0.8 (inches 0805)Resistance at 25 ¡10110 ¡¿101= 100¥10210 ¡¿102= 1 K¥10310 ¡¿103= 10 K¥PackagePPaper tapingEEmboss tapingBBulk

Resistance deviation rangeF¡1£¥H¡3£¥J¡5£¥K¡10£¥

ORDERING INFORMATION

B constant deviation rangeF¡1%G¡2%H¡3%

7www.lattron.com

元器件交易网www.cecb2b.comB constantDissipation MaximumPart NumberResistance @25oC

25/85 ConstantPower RatingOperating Temp.

LNSZ10 _ 220_ _22§3250KLNSZ10 _ 300_ _30§3250KLNSZ10 _ 400_ _40§3250KLNSZ10 _ 450_ _45§3250KLNSZ10 _ 500_ _50§3250KLNSZ10 _ 600_ _60§3250KLNSZ10 _ 101_ _100§3250KLNSK10 _ 502_ _5§3435KLNSK10 _ 103_ _10§3435KLNSY10 _ 102_ _1§3670KLNSY10 _ 222_ _2.2§3670KLNSY10 _ 472_ _4.7§3670KLNSY10 _ 502_ _5§3670KLNSY10 _ 682_ _6.8§3670KLNSY10 _ 103_ _10§3670KLNSW10 _ 103_ _10§3890KLNSW10 _ 223_ _22§3890KLNSW10 _ 443_ _44§3890KLNSV10 _ 202_ _2§4150KLNSV10 _ 222_ _2.2§4150KLNSV10 _ 272_ _2.7§4150KLNSV10 _ 332_ _3.3§4150KLNSV10 _ 103_ _10§4150KLNSV10 _ 333_ _33§4150KLNSV10 _ 473_ _47§4150KLNSV10 _ 503_ _50§4150KLNSV10 _ 583_ _58§4150KLNSV10 _ 683_ _68§4150KLNSV10 _ 853_ _85§4150KLNSV10 _ 104_ _100§4150KLNSV10 _ 124_ _120§4150KLNSV10 _ 154_ _150§4150KLNSV10 _ 334_ _ 330§4150KLNSV10 _ 474_ _470§4150KLNSU10 _ 333_ _33§4550KLNSU10 _ 683_ _68§4550KLNSU10 _ 104_ _100§4550KLNSU10 _ 224_ _220§4550KLNSU10 _ 105_ _1§4750KLNST10 _ 474_ _470§4750KLNSU10 _ 504_ _500§4750KLNSU10 _ 205_ _2 §4750K

SPECIFICATIONS1005(0402) size

If you want additional spec., please contact to lattron. Fax : 82-42-935-2034 Email : lattron@lattron.com1mW/oC100mW-40~85 oC-40~125oC-40~85oC

-40~125oC

NTC Thermistor SMD

Resistance @ 25o

C

The zero-power resistance at the standard temperature of 25oC. The zero-power resistance means the value of DC resistance of a thermistor measured at a specified temperature,with electric load being kept so small that there is no noticeable change in the measured resistance by the influence of the applied electric load.Bconstant 25 / 85B = ln(R0/R1) / (1/T0- 1/T1) Without special note, B constant is calculated from the resistance values at 25oCand 85oC[B25/85], which is the most common. Dissipation constant (¥‰)Dissipation factor is defined as the ratio at a specified ambient temperature of a change in power dissipation in a thermistor to the resultant body temperature change. ¡⁄¥= P/( T1- 25oC) mW/ oC¡⁄P : dissipated power¡⁄T1 : thermistor temp, 85¡0.1oC

Maximum power rating PThis is the maximum handling power, keeping its temperature not exceeding the allowed maximum temperature for operation. ¡⁄Pmax = ¥(Tmax- Ta)¡⁄¥:dissipation constant¡⁄Ta:25oC¡⁄Tmax:125oC

Thermal Time ConstantThe time necessary for an unloaded thermistor to vary its temperature by 63.2%of the difference between its initial and final temperatures. Initial temperature is 85¡0.1oCand final

temperature is 47.1¡0.1oC.

8www.lattron.com

元器件交易网www.cecb2b.com