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NCMOS NHighly Accurate : 2% GMicroprocessor reset circuitry GMemory battery back-up circuits GPower-on reset circuits GPower failure detection GSystem battery life and charge voltage monitors NLow Power Consumption : 0.7A (VIN = 1.5V) NUltra small SSOT-24 (SC-82) Package 2 The XC61C series are highly precise, low power consumption voltage detectors, manufactured using CMOS and laser trimming technologies. Detect voltage is extremely accurate with minimal temperature drift. Both CMOS and N-channel open drain output configurations are available. Highly accurate : 2% Low power consumption: TYP 0.7 A [ VIN=1.5V ] Detect voltage range : 0.9V ~ 1.5V in 0.1V increments Operating voltage range : 0.7V ~ 6.0V Detect voltage temperature characteristics : TYP 100ppm/C Output configuration : N-channel open drain or CMOS Ultra small package : SSOT-24 (150mW) super mini-mold : SOT-23 (150mW) mini-mold : SOT-89 (500mW) mini-power mold : TO-92 ( 300mW ) Note : There are no products available with a set-up voltage accuracy of 1%. CMOS Output N-ch Open Drain Output SUPPLY CURRENT vs. INPUT VOLTAGE 131 PIN NUMBER SSOT-24 2 4 1 3 SOT-23 3 2 1 SOT-89 2 3 1 TO-92 (T) TO-92 (L) 2 3 1 1 2 3 - PIN NAME VIN VSS VOUT NC FUNCTION Supply Voltage Input Ground Output No Connection 2 GOrdering Information XC61C x x x x x x x a b cdef DESIGNATOR a DESCRIPTION Output Configuration : C = CMOS N = N-ch open drain Detect Voltage : 09 = 0.9V 15 = 1.5V Output Delay : 0 = No delay Detect Accuracy : 2 = within 2.0% DESIGNATOR e DESCRIPTION Package Type: N = SSOT-24 (SC-82) M = SOT-23 P = SOT-89 T = TO-92 (Standard) L = TO-92 (Custom pin Configuration) Device Orientation : R = Embossed Tape ( Right ) L = Embossed Tape ( Left ) H = Paper Type ( TO-92) B = Bag ( TO-92 ) b c f d 132 GSSOT-24 (SC-82) 2 GSOT-23 133 GSOT-89 2 GTO-92 134 GSSOT-24, SOT-23, SOT-89 w qwr qwer r e q 2 q DESIGNATOR A B CONFIGURATION CMOS CMOS VOLTAGE (V) 0.w 1.w DESIGNATOR K L CONFIGURATION N-ch N-ch VOLTAGE (V) 0.w 1.w w e DESIGNATOR 0 1 2 3 4 VOLTAGE q.0 q.1 q.2 q.3 q.4 DESIGNATOR 5 6 7 8 9 VOLTAGE q .5 q .6 q .7 q .8 q .9 DESIGNATOR 3 r GTO-92 q 1 2345 67 1 2345 67 w r t y u 135 2 Ta = 25 OC PARAMETER Input Voltage Output Current Output Voltage CMOS N-ch open drain SSOT-24 Power Dissipation SOT-23 SOT-89 TO-92 Operating Ambient Temperature Storage Temperature SYMBOL V IN IOUT VOUT RATINGS 9 50 VSS -0.3 ~ VIN +0.3 VSS -0.3 ~ 9 UNITS V mA V 150 Pd 150 500 300 Topr Tstg -40 ~ +85 -40 ~ +125 O mW C C O 136 V DF (T) = 0.9 to 1.5V 2% Ta = 25 OC PARAMETER Detect Voltage Hysteresis Range SYMBOL V DF V HYS CONDITIONS MIN VDF x 0.98 TYP VDF VDF x 0.05 MAX VDF x 1.02 UNITS V V CIRCUIT 1 1 VDF x 0.02 VDF x 0.08 Supply Current ISS Operating Voltage V IN N-ch VIN = 1.5V =2.0V =3.0V =4.0V =5.0V VDF(T) = 0.9V to 1.5V VDS=0.5V VIN=0.7V =1.0V VDS=2.1V VIN=6.0V ( with CMOS output ) -40 OC Topr 85OC 0.7 0.8 0.9 1.0 1.1 0.7 0.1 0.85 0.8 2.7 -7.5 100 2.3 2.7 3.0 3.2 3.6 6.0 A 2 2 V 1 3 Output Current IOUT mA -1.5 ppm/C 0.2 ms 4 5 P-ch Temperature Characteristics Delay Time (VDR VOUT inversion) VDF Topr * VDF tDLY Note : VDF (T) : Established Detect Voltage Value Release Voltage : VDR = VDF + VHYS 137 GFunctional Description ( CMOS output ) q w e r 2 t y GTiming Chart y qw e r t 138 GNotes on Use 2 GOscillation Description 139 2 140 (1) SUPPLY CURRENT vs. INPUT VOLTAGE 2 (2) DETECT, RELEASE VOLTAGE vs. AMBIENT TEMPERATURE (3) OUTPUT VOLTAGE vs. INPUT VOLTAGE 141 (4) N-ch DRIVER OUTPUT CURRENT vs. VDS 2 (5) N-ch DRIVER OUTPUT CURRENT vs. INPUT VOLTAGE (6) P-ch DRIVER OUTPUT CURRENT vs. INPUT VOLTAGE 142 |
Price & Availability of XC61C
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