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R32K

Catalog Datasheet MFG & Type PDF Document Tags

gpl11b

Abstract: C32K Pin option check System Clock Source PLL RC_Oscillator(ROSC) X'TAL (C32K) RC_Oscillator (R32K) 32768Hz Source No PLL/R32K combination. It is mapping to PLL/C32K. mode Low voltage reset(2.4V) Enable
Generalplus Technology
Original
gpl11b C32K R32K GPL11B 32768H PLL/R32K

gpl11b

Abstract: 32768 Crystal FOSC" in section 6.3. 8 7. Add "The relationships between the F32K and the R32K" in section 6.4 , =4.5V . 9 6.4. THE RELATIONSHIPS BETWEEN THE F32K AND THE R32K , peripherals except CPU. ROSC/R32K 0 1 Reserved 1 This mode consumes less power X , . The Relationships between the F32K and the R32K 6.4.2. VDD=4.5V 6.4.1. VDD=3.0V The relationships between the R32K and the F32K 50.0 Fosc(KHz) Fosc(KHz) The relationships between the R32K
Generalplus Technology
Original
GPL13A 32768 Crystal xtal 32768 32768HZ GPL11 5x31 if sensor

C32K

Abstract: GPL12A Source PLL 32768Hz Source X'TAL (C32K) RC_Oscillator(ROSC) RC_Oscillator (R32K) Check No PLL/R32K combination. It is mapping to PLL/C32K. mode Low voltage reset Enable Disable
Generalplus Technology
Original
GPL12A GPL11 programming generalplus gpl11

2hz clock generator

Abstract: GPL31C ) 50 40 36 R32k=6.8MOhm 34 32 30 30 28 1.8 2.3 2.8 3.3 3.8 4.3 4.8 5.3 5.8 VDD(Volts) 20 2 4 6 8 10 12 R32k(Mohms) 6.6. The , ) . 8 6.4. THE RELATIONSHIPS BETWEEN THE R32K AND THE F32K , . 27, 2009 Version:1.1 GPL31C 6.4. The Relationships between the R32K and the F32K 6.5. The , 4.8 5.3 5.8 VDD(Volts) 20 2 4 6 8 10 12 R32k(Mohms) © Generalplus
Generalplus Technology
Original
2hz clock generator 00FF 32KHZ 16Hz

GPL12A

Abstract: ax 2008 lqfp 48 .11 6.4. THE RELATIONSHIPS BETWEEN THE R32K AND THE F32K , /R32K 0 1 PLL/C32K 1 X This mode consumes CPU. Note1 Note 1: No PLL/R32K , Relationships between the R32K and the F32K VDD=3V VDD=3V 40 F32K(KHz) 45 8 Fosc(MHz) 10 , =4.5V 750 850 VDD=4.5V 45 8 40 F32K(KHz) 10 Fosc(MHz) 650 R32K(Kohms) 6 4 2 , . Proprietary & Confidential 550 650 750 850 R32K(Kohms) 11 Aug. 7, 2008 Version: 1.2
Generalplus Technology
Original
SPL12A ax 2008 lqfp 48 lcd 8X32 EG23

XTAL12M

Abstract: gpy0030b .11 7.5. THE RELATIONSHIP BETWEEN THE F32K AND THE , (3.0v) R32K v.s F32K (VDD=3.0V) 120 100 80 60 40 20 0 5 4 Iop(mA) F 3 2 K (K H z ) 7.5. The Relationship between the F32K and the R32K 3 2 1 0 1 2 3 0 4 0 R32K (M) 5 10 15 20 Fcpu(MHz) 7.5.2. VDD = 4.5V, TA = 25 R32K v.s F32K (VDD=4.5V) 120 F 32K (K H z ) 100 80 60 40 20 0 0 0.5 1 1.5 2 2.5 3 3.5 R32K
Generalplus Technology
Original
GPLB52A24A XTAL12M gpy0030b XO 105 LCD 24 segments, 4 commons XO-105

ic LK 1628

Abstract: GPY0030B . 18 7.5. THE RELATIONSHIP BETWEEN THE F32K AND THE , between the F32K and the R32K 7.6. The Relationships between the FCPU and the IOP 7.5.1. VDD = 3.0V, TA = 25 7.6.1. VDD = 3.0V, TA = 25 Fcpu vs Iop (3.0v) R32K v.s F32K (VDD=3.0V) 120 5 4 , 2.5 3 0 3.5 0 R32K (M) 5 10 15 20 Fcpu(MHz) 7.5.2. VDD = 4.5V, TA = 25 R32K v.s F32K (VDD=4.5V) 120 F 32K (K H z ) 100 80 60 40 20 0 0 0.5 1 1.5
Generalplus Technology
Original
GPLB52640A GPLB52320A GPLB51640A GPLB51320A ic LK 1628 GPLB52320 lcd monitor ckt XTAL32K GPLB52640 8050 REGULATOR ic GPLB52640A/GPLB52320A/ GPLB51640A/GPLB51320A

SPLB31A

Abstract: xp 2240 cp . Add "The Relationships between the VDD and R32K" to section 7.6. DEC. 12, 2006 1.2 DEC. 14 , . 12 7.6. THE RELATIONSHIPS BETWEEN THE VDD AND THE R32K , Resistor R32K - 680 - K - - 4.0 MHz FCPU = FOSC/1 @ 2.4V - - 5.0 , 3 4 VDD(V) 900 5 6 R osc(k ) 7.6. The Relationships between the VDD and the R32K 7.3.2. VDD = 4.5V R32K 7 R32768=638k R32768=730k 6 45 40 35 30 5 KHz Fosc
Generalplus Technology
Original
GPLB31A SPLB31A xp 2240 cp xp+2240+cp 2240 TIMER

GPLB52001A

Abstract: gpy0030b . 14 7.4. THE RELATIONSHIP BETWEEN THE F32K AND THE , 7.3. The Relationship between the ROSC and the FOSC 7.3.1. VDD = 3.0V, TA = 25 R32K v.s F32K (VDD , 20 0 0 0 0 50 100 150 200 1 250 2 3 4 R32K (M) ROSC (K , 3 4 Iop (mA) 7.4. The Relationship between the F32K and the R32K 7.4.1. VDD = 3.0V, TA = 25 7.5.2. VDD = 4.5V, TA = 25 Fosc v.s Iop (VDD=4.5V) R32K v.s F32K (VDD=3.0V) 100 80 60
Generalplus Technology
Original
GPLB52001A LQFP 216 R32SEL GPLB GPUSB101 lv 7980

Bosch 8.0 abs diagram

Abstract: immobiliser circuit diagram OA1 R3=2K OA1O VR1[2:0] bits Band Gap Reference Voltage xV DDA /8 OA1V bit 8 , AVCL =1, 2, 4, 8, 16, VR1E, PS1[1:0] bits OA1PIN Inverter To ADC Channel 8 OA1 R3=2K , , PS1[1:0] bits OA1PIN To ADC Channel 8 OA1 R3=2K Band Gap Reference Voltage (1.2V , 8 OA1PIN OA1 R3=2K OA1O Band Gap Reference Voltage (1.2V) VR1[2:0] bits x V DDA /8 , Capacitor Analog output can sink up to 40 mA R3=2K Band Gap Reference Voltage (1.2V) VR1[2
STMicroelectronics
Original
Bosch 8.0 abs diagram immobiliser circuit diagram detector circuit using 741 OP-AMP engine control module bosch ST72334 741 op-amp ST72254 ST725

G16-K

Abstract: COP8ACC5 =20k, K=24K, R=32k Program Memory Type 7 = OTP 5 = ROM No. of Pins B = 16 Pin C = 20 Pin E =
-
Original
44PLC G16-K COP8ACC5 COP8SGE7 28/SO 28/CSP 40/DIP 44/PLCC 44/LLP

GPL191B2

Abstract: Regulated Power Supply appication .11 U 7.4. THE RELATIONSHIP BETWEEN THE R32K AND THE F32K , 150 200 Rosc(Kohm) 250 300 350 7.4. The Relationship between the R32K and the F32K 7.4.2. VDD = 4.5V, TA = 25 7.4.1. VDD = 3.0V, TA = 25 R32k v.s. F32k R32k v.s. F32k 80 Fosc
Generalplus Technology
Original
GPL191B2 Regulated Power Supply appication GPL191B2S 256KB

GPL13A

Abstract: R32K RC_Oscillator(ROSC) X'TAL (C32K) RC_Oscillator (R32K) 32768Hz Source Low voltage reset(2.2V) Enable
Generalplus Technology
Original

decoder 5x32

Abstract: 000D version: LSCK (Low-speed clock) can be selected to X32K or R32K by LCKOPT pin (pull high for R32K; pull-low for X32K (default). In ROM version: LSCK (Low-speed clock) can be selected to X32K or R32K via , ROSC/R32K 0 1 PLL/X32K 1 X Note Note: No PLL/R32K combination, it is mapped to PLL
Sunplus Technology
Original
SPL11A decoder 5x32 000D X32K 768KH

datasheet opamp 741

Abstract: 741 opamp AV CL =1, 2, 4, 8, 16, VR1E, PS1[1:0] bits To ADC Channel 8 OA1PIN OA1 R3=2K , ADC Channel 8 OA1PIN OA1 R3=2K OA1O VR1[2:0] bits x V DDA /8 8-Step Reference Voltage 1 , , 8, 16, VR1E, PS1[1:0] bits OA1PIN To ADC Channel 8 OA1 R3=2K Band Gap Reference , OA1 R3=2K OA1O VR1[2:0] bits x V DDA /8 8-Step Reference Voltage 1 Band Gap Reference , R AV CL =1, 2, 4, 8, 16, VR1E, PS1[1:0] bits OA1PIN To ADC Channel 8 OA1 R3=2K
STMicroelectronics
Original
datasheet opamp 741 741 opamp 741 OPAMP DATASHEET bosch videobox opamp 741 bosch general purpose actuator

ic c1s 150 27p

Abstract: circuit diagram for micro controller based caller =12.7K R=6.2K R=4.3K 5 R=3.2K R=12.7K 0 R=3.2K 0 0 0.3 0.6 0.9 1.2
ELAN Microelectronics
Original
EM78910A ic c1s 150 27p circuit diagram for micro controller based caller marking code P73 amplifier EM78910AAH EM78910ABH 579MH

sot23-8 thermal resistance

Abstract: 2x2 dfn : $FFFA-$FFFF Mask option X32K R32K 32768Hz OSC Enable Disable Watchdog If watchdog is enabled, please
Power Analog Microelectronics
Original
PAM2810 sot23-8 thermal resistance 2x2 dfn Power Analog Microelectronics

s35 lcd

Abstract: GPLB33B OSC 32KHz Resistor R32k - 700K - F32K = 32KHz@ 3.0V CPU Clock FCPU - - , R32k - 780K - F32K = 32KHz@ 4.5V CPU Clock FCPU - - 5.0 MHz FCPU = , 1.2 Add R32K value to 7.2. "DC Characteristics". 8 DEC. 12, 2006 1.1 Modify the
Generalplus Technology
Original
GPLB33B s35 lcd

GPLB32A2

Abstract: .11 7.5. THE RELATIONSHIP BETWEEN THE F32K AND THE , the R32K 7.4.1. VDD = 3.0V, TA = 25 F32K(Khz) VDD=3.0V 45 40 35 30 25 20 15 10 500 700 900 1100 R32K(Kohms) 7.6. The Relationships between the FCPU and the IOP FCPU & IOP
Generalplus Technology
Original
GPLB32A2

GPLB35

Abstract: GPLB35A3 .11 7.5. THE RELATIONSHIP BETWEEN THE F32K AND THE R32K , (3.0v) R32K v.s F32K (VDD=3.0V) 120 100 80 60 40 20 0 5 4 Iop(mA) F 3 2 K (K H z ) 7.5. The Relationship between the F32K and the R32K 3 2 1 0 1 2 3 0 4 0 R32K (M) 5 10 15 20 Fcpu(MHz) 7.5.2. VDD = 4.5V, TA = 25 R32K v.s F32K (VDD=4.5V) 120 F 32K (K H z ) 100 80 60 40 20 0 0 0.5 1 1.5 2 2.5 3 3.5 R32K
Generalplus Technology
Original
GPLB35A3 GPLB35 SPCP825A SEG80 GPUSB101A spcp825

"A 6N137"

Abstract: 6N137 . 12 7.6. THE RELATIONSHIPS BETWEEN THE VDD AND THE R32K , Resistor R32K - 680 - K - - 4.0 MHz FCPU = FOSC/1 @ 2.4V - - 5.0 , 3 4 VDD(V) 900 5 6 R osc(k ) 7.6. The Relationships between the VDD and the R32K 7.3.2. VDD = 4.5V R32K 7 R32768=638k R32768=730k 6 45 40 35 30 5 KHz Fosc , . Add "The Relationships between the VDD and R32K" to section 7.6. DEC. 12, 2006 1.2 DEC. 14
Motorola
Original
68HC908 6N137 A6N137 a 6n137 MC7805ACK motorola opto AN2342/D 68HC9

4.7K preset resistor

Abstract: Preset - 4.7K OA1 R3=2K OA1O VR1[2:0] bits Band Gap Reference Voltage xV DDA /8 OA1V bit 8 , AVCL =1, 2, 4, 8, 16, VR1E, PS1[1:0] bits OA1PIN Inverter To ADC Channel 8 OA1 R3=2K , , PS1[1:0] bits OA1PIN To ADC Channel 8 OA1 R3=2K Band Gap Reference Voltage (1.2V , 8 OA1PIN OA1 R3=2K OA1O Band Gap Reference Voltage (1.2V) VR1[2:0] bits x V DDA /8 , Capacitor Analog output can sink up to 40 mA R3=2K Band Gap Reference Voltage (1.2V) VR1[2
ROHM
Original
BA7797F 4.7K preset resistor Preset - 4.7K 4.7k Preset
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