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 XC2300 Series
Tri-State Buffer ICs
ETR1406_001
GENERAL DESCRIPTION
The 2300 Series are a group of high frequency, CMOS low power tri-state buffer ICs with input amplifier, divider and output tri-state buffer circuits built-in. The series is available in an ultra small SOT-26 package.
APPLICATIONS
VCXO modules Crystal oscillator modules
FEATURES
Max. Operating Frequency Operating Voltage Range Divider Ratio Output Built-In Input Amplifier Ultra Small Package : SOT-26 : 70MHz : 3.3V10%, 5.0V20% : fin/1 : 3-State
CMOS Low Power Consumption
PIN CONFIGURATION
PIN ASSIGNMENT
PIN NUMBER 1 2 3 4 5 6 PIN NAME /INH XT VSS Q0 VDD /XT FUNCTION Stand-by Control (*) Clock Input Ground Clock Output Power Supply Feedback Resistor Connection (Output)
*Stand-by control pin has a pull-up resistor built-in.
/INH, Q0 PIN FUNCTION
/INH "H" or OPEN "L" Q0 Clock Output High Impedance
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XC2300 Series
PRODUCT CLASSIFICATION
Ordering Information
XC2300 DESTINATOR DESCRIPTION Duty Level Fixed Number Divider Ratio Output Package Device Orientation SIMBOL C 2 1 V M R L :: Q0=fin/1 : Tri-state buffer : SOT-26 : Embossed tape, standard feed : Embossed tape, reverse feed DESCRIPTION : CMOS (VDD/2)
BLOCK DIAGRAM
ABSOLUTE MAXIMUM RATINGS
PARAMETER Supply Voltage Input Voltage Power Dissipation Operating Temperature Range Storage Temperature Range SYMBOL VDD VIN Pd Topr Tstg CONDITIONS VSS - 0.3 ~ VSS + 7.0 VSS - 0.3 ~ VDD + 0.3 250(**) - 40 ~ + 85 - 55 ~ + 125 Ta=25 UNITS V V mW
** When implemented on a glass epoxy PCB.
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XC2300
Series
ELECTRICAL CHARACTERISTICS
DC Electrical Characteristics
5.0V operation
PARAMETER Operating Supply Voltage Input Voltage "High" Input Voltage "Low" Output Voltage "High" Output Voltage "Low" SYMBOL VDD VIH VIL VOH VOL /INH pin /INH pin Q0 pin, VDD=4.5V, IOH= -8mA Q0 pin, VDD=4.5V, IOL=8mA /INH=OPEN, Supply Current 1 IDD1 Q0=OPEN Fin=70MHz Supply Current 2 Input Pull-Up Resistance 1 Input Pull-Up Resistance 2 Output Off Leak Current IDD2 Rup1 Rup2 IOZ /INH="L", fin=70MHz /INH="L" /INH=0.7VDD Q0 pin, /INH="L" 2.0 50 0.05 4.0 100 8.0 200 10 mA M k A XC2300C21V (fin/1) 21.0 mA (Unless otherwise stated, VDD=5.0V, No Load, Ta=25) CONDITIONS MIN. 4.0 2.4 3.9 TYP. 5.0 4.2 0.3 MAX. 6.0 0.4 0.4 UNITS V V V V V
3.3V operation
PARAMETER Operating Supply Voltage Input Voltage "High" Input Voltage "Low" Output Voltage "High" Output Voltage "Low" SYMBOL VDD VIH VIL VOH VOL /INH pin /INH pin
(Unless otherwise stated, VDD=3.3V, No Load, Ta=25) CONDITIONS MIN. 2.97 2.4 2.2 TYP. 3.30 2.4 0.3 MAX. 3.63 0.4 0.4 UNITS V V V V V
Q0 pin, VDD=4.5V, IOH= -4mA Q0 pin, VDD=4.5V, IOL=4mA /INH =OPEN,
Supply Current 1
IDD1
Q0=OPEN Fin=50MHz
XC2300C21V (fin/1)
-
8.0
-
mA
Supply Current 2 Input Pull-Up Resistance 1 Input Pull-Up Resistance 2 Output Off Leak Current
IDD2 Rup1 Rup2 IOZ
/INH ="L", fin=50MHz /INH ="L" /INH =0.7VDD Q0 pin, /INH ="L"
4.0 70 -
0.05 7.0 130 -
14.0 250 10
mA M k A
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XC2300 Series
ELECTRICAL CHARACTERISTIC (Continued)
AC Electrical Characteristics
5.0V operation
PARAMETER Maximum Operating Frequency SYMBOL fmax (Unless otherwise stated, VDD=5.0V, No Load, Ta=25) CONDITIONS MIN. 70 TYP. MAX. UNITS MHz
5.0V operation (Reference value)
PARAMETER Input Amplitude (SIN wave) Output Duty Cycle (*1) Output Rise Time (*2) Output Fall Time (*3) *1) 0.5VDD *2) 0.1VDD0.9VDD *3) 0.9VDD0.1VDD SYMBOL Vipp DUTY tr tf
(Unless otherwise stated, VDD=5.0V, No Load, Ta=25) CONDITIONS fin=70MHz, CL=15pF, Vipp=0.5Vpp fin=70MHz, CL=15pF, Vipp=0.5Vpp fin=70MHz, CL=15pF, Vipp=0.5Vpp MIN. 0.5 45 TYP. (3.0) (1.5) MAX. 55 5.0 5.0 UNITS Vpp % ns ns
3.3V operation
PARAMETER Maximum Operating Frequency SYMBOL fmax
(Unless otherwise stated, VDD=3.3V, No Load, Ta=25) CONDITIONS MIN. 50 TYP. MAX. UNITS MHz
3.3V operation (Reference value)
PARAMETER Input Amplitude (SIN wave) Output Duty Cycle (*1) Output Rise Time (*2) Output Fall Time (*3) *1) 0.5VDD *2) 0.1VDD0.9VDD *3) 0.9VDD0.1VDD SYMBOL Vipp DUTY tr tf CONDITIONS
(Unless otherwise stated, VDD=3.3V, No Load, Ta=25) MIN. 0.5 fin=50MHz, CL=15pF, Vipp=0.5Vpp fin=50MHz, CL=15pF, Vipp=0.5Vpp fin=50MHz, CL=15pF, Vipp=0.5Vpp 45 TYP. (4.0) (2.0) MAX. 55 8.0 8.0 UNITS Vpp % ns ns
4/7
XC2300
Series
SWITCHING WAVEFORMS
(1) Switching Time
(2) Duty Cycle
SUPPLY CURRENT, DUTY TEST CIRCUIT
*) The feedback resistor (fixed) Rf must be connected. *) When the duty needs to be adjusted because of power supply and/or input amplitude, duty resistor (fixed) Rb should be connected.
VDD=5.0V, fin=70MHz, Vipp=0.5Vpp CIN = 10000 [pF] Rf = 100 [k] Rb = 720 [k] VDD=3.3V, fin=50MHz, Vipp=0.5Vpp CIN = 10000 [pF] Rf = 100 [k] Rb = 820 [k]
5/7
XC2300 Series
PACKAGING INFORMATION
SOT-26
MARKING RULE
SOT-26
6 5 4
Represents product series MARK 0 Represents divider ratio MARK RATIO C fin/1 Represents tri-state buffer ICs MARK V Represents assembly lot number (Based on internal standards) PRODUCT SERIES XC2300xxxxxx
1
2
3
6/7
XC2300
Series
1. The products and product specifications contained herein are subject to change without notice to improve performance characteristics. Consult us, or our representatives before use, to confirm that the information in this catalog is up to date. 2. We assume no responsibility for any infringement of patents, patent rights, or other rights arising from the use of any information and circuitry in this catalog. 3. Please ensure suitable shipping controls (including fail-safe designs and aging protection) are in force for equipment employing products listed in this catalog. 4. The products in this catalog are not developed, designed, or approved for use with such equipment whose failure of malfunction can be reasonably expected to directly endanger the life of, or cause significant injury to, the user. (e.g. Atomic energy; aerospace; transport; combustion and associated safety equipment thereof.) 5. Please use the products listed in this catalog within the specified ranges. Should you wish to use the products under conditions exceeding the specifications, please consult us or our representatives. 6. We assume no responsibility for damage or loss due to abnormal use. 7. All rights reserved. No part of this catalog may be copied or reproduced without the prior permission of Torex Semiconductor Ltd.
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