| Motor de Búsqueda de Datasheet de Componentes Electrónicos |
|
MCP9510HT-E Datasheet(PDF) 12 Page - Microchip Technology |
|
|
|||||||||||||||||||||||||||||
MCP9510HT-E Datasheet(HTML) 12 Page - Microchip Technology |
|
12 / 28 page ![]() MCP9509/10 DS22114A-page 12 © 2008 Microchip Technology Inc. 4.4 Sensor Hot/Cold Options MCP9509/10 is available with Hot (H) and Cold (C) options. The MCP9509/10 Hot option detects rising temperature while the Cold option detects falling tem- perature. The output of the Hot option asserts when temperature rises above TSET and de-asserts when temperature falls below THYST. The output of the Cold option asserts when temperature falls below TSET and de-asserts when temperature rises above THYST. For example, if TSET = 100°C for Hot option (Active-Low Configuration, HYST = VDD), output asserts Low when temperature is greater than 100°C ± TACY. The output de-asserts High when temperature is below 90°C. For the Cold option, output asserts Low when temperature is less than 100°C ± TACY, and de-asserts when temperature is greater than 110°C. This operation is shown graphically in Figure 4-4. 4.5 RSET vs. Temperature The relation between the user selectable external resistor RSET and the output trigger threshold limit TSET is described as shown in EQUATION 4-1: “TSET to Rset conversion” and EQUATION 4-2: “RSET to Tset conversion”. The equation coeffcients vary depending on the device output options, H or C. Table 4-1 shows the corresponding coefficients. TABLE 4-1: COEFFICIENTS/VARIABLES EQUATION 4-1: TSET TO RSET CONVERSION EQUATION 4-2: RSET TO TSET CONVERSION The equations can be used to determine the external resistance value for a specified temperature threshold or threshold value for a specified resistance. Table 4-2 and Table 4-3 show a look-up table which can be used to easily identify the TSET to RSET relation for Hot and Cold options. Coef. MCP9509/10H MCP9509/10C Units CR1 -9.84 -10.00 10-6k Ω/°C3 CR2 3.355 3.345 10-3k Ω/°C2 CR3 -0.8648 -0.8610 k Ω/°C CT1 -20.00 -19.7 10-6°C/k Ω3 CT2 4.136 4.179 10-3°C/k Ω2 CT3 -1.1564 -1.1617 °C/k Ω R1 94.1 95.1 k Ω R2 145.5 146.3 k Ω R3 2.77 4.25 k Ω T1 -40.0 °C T2 125.0 °C Where: CR1,2,3 = 1st, 2nd and 3rd order Temperature to Resistance Conversion Coefficients (Table 4-1) R2 = Resistance (Table 4-1) T1,2 = Temperature (Table 4-1) R SET C R1TSET TSET T 1 – () T SET T 2 – () + = C R2 TSET T 1 – () T SET T 2 – () + C R3 TSET T 1 – () R 2 + Where: CC1,2,3 = 1st, 2nd and 3rd order Resistance to Temperature Conversion Coefficients (Table 4-1) R1,2,3 = Resistance (Table 4-1) T1 = Temperature (Table 4-1) T SET C T1 RSET R 1 – () R SET R 2 – () R SET R 3 – () + = C T2 RSET R 3 – () R SET R 2 – () + C T3 RSET R 2 – () T 1 + |
|
Enlace URL |
| ¿ALLDATASHEET es útil para Ud.? [ DONATE ] |
Todo acerca de Alldatasheet | Publicidad | Contáctenos | Política de Privacidad | Enlace a la hoja de datos | Intercambio de Enlaces | Lista de Fabricantes All Rights Reserved©Alldatasheet.com |
| Russian : Alldatasheetru.com | Korean : Alldatasheet.co.kr | Spanish : Alldatasheet.es | French : Alldatasheet.fr | Italian : Alldatasheetit.com Portuguese : Alldatasheetpt.com | Polish : Alldatasheet.pl | Vietnamese : Alldatasheet.vn Indian : Alldatasheet.in | Mexican : Alldatasheet.com.mx | British : Alldatasheet.co.uk | New Zealand : Alldatasheet.co.nz |
|
Family Site : ic2ic.com |
icmetro.com |