S-8130AA Series www.sii-ic.com TEMPERATURE SWITCH IC WITH LATCH Rev.3.0_00 (c) Seiko Instruments Inc., 2001-2010 The S-8130AA is a temperature switch with a latch function having a built-in semiconductor temperature sensor with the accuracy of 2.5C. The output signal is inverted when the temperature is detected, and latched until a reset signal input or a detection of the power voltage lowering. Low voltage operation down to 2.2 V is possible and the current consumption is low, 15 A (typ.), due to CMOS configuration. The S-8130AA consists of a temperature sensor having the temperature coefficient of -13 mV/C, a reference voltage source, a comparator, voltage detection circuit, and noise suppression circuit all of which are enclosed in 8-Pin MSOP package. Since the temperature range of this IC is -40 to +100 C, it is possible to achieve the extensive application for temperature control. Features * * * * * * * * Detection temperature : +60 to +95C, 5C step Detection accuracy : 2.5C VSS grounded temperature voltage output Low voltage operation : VDD (min.)=2.2 V Low current consumption : 15 A typ. (+25C) A built-in circuit for preventing malfunction of temperature detection Output logic level is fixed by the latch after temperature detection Lead-free, halogen-free*1 *1. Refer to " Product Name Structure" for details. Applications * Game console * Electronic devices Package * 8-Pin MSOP Seiko Instruments Inc. 1 TEMPERATURE SWITCH IC WITH LATCH S-8130AA Series Rev.3.0_00 Block diagram S-8130AAxFN-xxxT2z (Fixed detection temperature) VDD VOUT RT Vref Reference voltage source + - Temparature Sensor Vref CD1 D Q D-F/F CK R RESET Voltage detector with delay circuit VSS CD2 Figure 1 2 Seiko Instruments Inc. DET TEMPERATURE SWITCH IC WITH LATCH S-8130AA Series Rev.3.0_00 Product Name Structure 1. Product name S - 8130 A A x F N - x x x T 2 x Environmental code S: Lead-free, halogen-free G: Lead-free (for details, please contact our sales office) IC direction in tape specifications Abbreviated Code Option code Option list * Detection temperature TDET is selectable in 5C step in the range between 60 and 95C. * DET output is selectable active high or active low. * Release voltage VRET is selectable in 0.1 V step in the range between 2.2 and 3.4 V. * RESET pin is selectable "PuII-up" or "Nch Open Drain". 2. Package Package Name 8-Pin MSOP Drawing Code Tape FN008-A-C-SD Package FN008-A-P-SD Reel FN008-A-R-SD 3. Product name list Table 1 Product name TDET DET output VRET RESET S-8130AAAFN-MAAT2z 80C Active high 2.4 V Pull-up S-8130AACFN-MAET2z 86C Active high 2.9 V Pull-up Remark 1. Please contact our sales department for options other than those specified above. 2. z: G or S Seiko Instruments Inc. 3 TEMPERATURE SWITCH IC WITH LATCH S-8130AA Series Rev.3.0_00 Pin configuration 8-Pin MSOP Top view VDD DET 1 2 8 7 CD2 CD1 3 4 6 5 VOUT RT RESET VSS Figure 2 Pin Description Table 2 Pin No. 1 2 4 Pin Name VDD DET 3 CD2 4 CD1 5 6 VSS 7 RT 8 VOUT RESET Function Positive power supply pin Output pin for detection at the defined temperature Capacitor connection pin for delay time setting in voltage detection Capacitor connection pin for time setting of malfunction prevention Ground pin Input/Output pin for reset Active low Input/Output CMOS output : Output logic is selectable Input/Output Input/Output Input : CMOS Output : N channel open drain (Pull-up resistance is optional) Reference voltage input pin (short- Input circuited to VOUT pin internally) Output pin for reference voltage from the Output internal comparator Seiko Instruments Inc. TEMPERATURE SWITCH IC WITH LATCH S-8130AA Series Rev.3.0_00 Absolute maximum ratings Table 3 (Ta = 25 C unless otherwise specified) Parameter Symbol Supply voltage (VSS=0.0 V) VDD Pin voltage VOUT, VRT, VRESET , VDET, VCD1, VCD2 Power dissipation PD Operating temperature Ratings Unit VSS+12 V VSS-0.3 to VDD+0.3 V 300 (When not mounted on board) mW 500*1 mW -40 to +100 C -55 to +125 C Topr Storage temperature Tstg *1. When mounted on board [Mounted board] (1) Board size : 114.3 mm x 76.2 mm x t1.6 mm (2) Board name : JEDEC STANDARD51-7 Caution The absolute maximum ratings are rated values exceeding which the product could suffer physical damage. These values must therefore not be exceeded under any conditions. Recommended values for external parts Table 4 Parameters Symbol Value Unit CD1 capacitance CD1 4.7 nF CD2 capacitance CD2 4.7 nF Seiko Instruments Inc. 5 TEMPERATURE SWITCH IC WITH LATCH S-8130AA Series Rev.3.0_00 DC Electrical Characteristics Table 5 (Ta=25C, VSS=0 V unless otherwise specified) Parameters Symbol Conditions Min. Typ. Max. Unit Supply voltage VDD 2.2 10.0 V Detection temperature TD TDET-2.5 TDET TDET+2.5 C VDET=2.2 V 2 4 mA VDET=0.4 V 0.5 1 mA 0.8 x VDD VDD V VSS 0.2 x VDD V 30 100 300 k IDETH Output current 1 IDETL VONH Input voltage VDD=3 V Applied to DET pin Applied to RESET pin VONL Pull-up resistance ROL Release voltage for voltage detector Hysteresis width for voltage detector Applied to RESET pin VIN=0 V, VDD=3.0 V VR VRET x 0.98 VRET VRET x 1.02 V VHYS VRET x 0.05 V Applied to RESET pin 0.5 1 mA Ta= -40 to 100C 100 ppm/ C VDD=3.3 V 15 30 A VDD=3.0 V, VRESET =0.5 V Output current for voltage detector IRSTL Temperature coefficient for voltage detector Operating current VRET Ta * VRET IDD AC Electrical Characteristics Table 6 Parameters Noise filtering time Delay time for voltage detector Symbol Tnoise Conditions CD1=4.7 nF, VDD=3 V Min. 10 Tdelay CD2=4.7 nF, VDD=3 V 10 (Ta=25C unless otherwise specified) Typ. Max. Unit 30 50 ms 30 Definition of the symbols used in the voltage detection circuit B Hysteresis width (VHYS) A VDD Release voltage (VRET) Detection voltage Minimum operating voltage VSS RESET pin voltage (VDD) VSS Tdelay Figure 3 6 Seiko Instruments Inc. 50 ms TEMPERATURE SWITCH IC WITH LATCH S-8130AA Series Rev.3.0_00 Description of Operation 1. Basic operation S-8130AA series is a temperature switch which detects the temperature and sends a signal to an external device. The users can select a combination of the parameters such as detection temperature and release voltage. The following is the case that the DET output is active high. When the power voltage is turned on, the DET pin voltage goes to low since the flip-flop circuit in the detection circuit is cleared by the delayed voltage detection circuit. Temperature detection then starts and the DET pin is held low as long as the temperature is lower than the detection temperature. The temperature rises and when the temperature exceeds the detection temperature; longer than the time defined by the capacitor connected to the CD1 pin, the DET pin goes to high. Once the over-temperature is detected and the DET pin goes to high, the state is held by the flip-flop circuit. In order to release the state the RESET pin voltage should be set to low by the external signal or the power voltage should be set under the detection voltage of the built-in detector to reset the internal circuit. Using the internal reference voltage and built-in temperature sensor, the accuracy of 2.5C in the detection temperature is achieved. Noise Protection circuit The noise protection circuit prevents malfunction of the temperature switch caused by noise. The noise protection circuit starts charging the capacitor connected to the CD1 pin when the output of the internal comparator enters active state due to an external noise or a rapid change in the power voltage. In the normal operation the flip-flop circuit is set when the capacitor is charged to a certain voltage. But in the noise triggered operation the comparator output goes back to inactive state and the CD1 pin voltage is held low since the charging of the capacitor is insufficient. As a result the DET pin is held low and malfunction does not occur. Noise suppression time, Tnoise, is determined by the time constant consisting of internal constant current and the capacitance CD1, and calculated by the following equation. Tnoise (ms)=Noise suppression time coefficient x CD1(nF) Noise suppression time coefficient (25C): Typ. 6.4 2. Voltage detection circuit with delay The delay circuit in the voltage detector provides a delayed output signal to the RESET pin when the power voltage VDD rises and exceeds the release voltage VR. On the other hand no delay occurs when the power voltage VDD goes lower than the detection voltage, VR-VHYS. The delay time, Tdelay, is determined by the time constant consisting of internal constant current and the capacitance CD2, and calculated by the following equation. Tdelay (ms)=Delay coefficient x CD2 (nF) Delay coefficient (25C): Min. 4.3, Typ. 6.4, Max. 8.5 * Layout the board wiring so that the current does not flow into or flow out of the CD2 pin to have correct delay time since the impedance of the CD2 pin is high. * Capacitance of the external capacitor CD2 has no limitation as long as its leak current is negligible compared to the internal constant current. The difference occurs in delay time if the capacitor has leak current. When the leak current is larger than the internal constant current, the voltage detection circuit does not release reset. Seiko Instruments Inc. 7 TEMPERATURE SWITCH IC WITH LATCH S-8130AA Series Rev.3.0_00 Application circuit Open VDD Output port (Input port) VDD RESET CD1 VOUT Open RT S-8130AA DET CD2 Protection circuit VSS CPU VSS Figure 4 Caution The above connection diagram will not guarantee successful operation. Perform thorough evaluation using actual application to set the constant. Precautions (1) Since the S-8130AA has a voltage detector inside, control for the RESET pin is not necessary to activate the circuit as seen in Figure 4. In this case the RESET pin should be open. (2) A capacitor of around 1 F should be connected to the DET pin to prevent malfunction caused by a noise due to the power on. (3) Nothing should be connected to the VOUT pin and the RT pin. These pins should be left open. (4) Do not apply an electrostatic discharge to this IC that exceeds the performance ratings of the built-in electrostatic protection circuit. 8 Seiko Instruments Inc. TEMPERATURE SWITCH IC WITH LATCH S-8130AA Series Rev.3.0_00 Typical Characteristics 1. Current consumption vs. power voltage IDD - V DD, VSS = 0 V 14.0 100C 13.0 IDD (A) 25C 12.0 11.0 Ta = -40C 10.0 0 1 2 3 4 5 6 VDD (V) 7 8 9 10 2. DET pin ISOURCE vs. VDD characteristics ISOU RCE - VDD, VOH = VDD - 0.8 V 10 Ta = -40C ISOURCE (mA) 8 6 25C 4 2 100C 0 0 1 2 3 4 5 6 VDD (V) 7 8 9 10 3. DET pin ISINK vs. VDD characteristics ISIN K - V DD, VOL = 0.4 V 25 Ta = -40C 20 25C ISINK (mA) 15 10 5 100C 0 0 1 2 3 4 5 6 VDD (V) 7 8 9 10 Seiko Instruments Inc. 9 2.950.2 8 5 1 4 0.130.1 0.20.1 0.650.1 No. FN008-A-P-SD-1.1 TITLE MSOP8-A-PKG Dimensions No. FN008-A-P-SD-1.1 SCALE UNIT mm Seiko Instruments Inc. 2.00.05 4.00.1 1.350.15 4.00.1 1.550.05 1.050.05 0.30.05 3.10.15 4 1 5 8 Feed direction No. FN008-A-C-SD-1.1 TITLE MSOP8-A-Carrier Tape No. FN008-A-C-SD-1.1 SCALE UNIT mm Seiko Instruments Inc. 16.5max. 13.00.3 Enlarged drawing in the central part 130.2 (60) (60) No. FN008-A-R-SD-1.1 MSOP8-A-Reel TITLE FN008-A-R-SD-1.1 No. SCALE UNIT QTY. 3,000 mm Seiko Instruments Inc. www.sii-ic.com * * * * * * The information described herein is subject to change without notice. Seiko Instruments Inc. is not responsible for any problems caused by circuits or diagrams described herein whose related industrial properties, patents, or other rights belong to third parties. The application circuit examples explain typical applications of the products, and do not guarantee the success of any specific mass-production design. When the products described herein are regulated products subject to the Wassenaar Arrangement or other agreements, they may not be exported without authorization from the appropriate governmental authority. Use of the information described herein for other purposes and/or reproduction or copying without the express permission of Seiko Instruments Inc. is strictly prohibited. The products described herein cannot be used as part of any device or equipment affecting the human body, such as exercise equipment, medical equipment, security systems, gas equipment, or any apparatus installed in airplanes and other vehicles, without prior written permission of Seiko Instruments Inc. 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