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quality Crystal Oscillator EPSON SG-8101CA 25.000000MHz TBGSA with Broad Supply Voltage and Output Enable Capability factory
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quality Crystal Oscillator EPSON SG-8101CA 25.000000MHz TBGSA with Broad Supply Voltage and Output Enable Capability factory
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Specifications
Operating Temperature:
-40℃~+85℃
Voltage - Supply:
1.8V~3.3V
Frequency Stability:
±15ppm
Frequency:
25MHz
Mfr. Part #:
SG-8101CA 25.000000MHz TBGSA
Package:
SMD7050-4P
Key Attributes
Model Number: SG-8101CA 25.000000MHz TBGSA
Product Description

Product Overview

The SG-8101 series crystal oscillator offers a wide frequency range from 0.67 MHz to 170 MHz with 1 ppm step programmability. It supports a broad supply voltage range of 1.62 V to 3.63 V and features output enable (OE) or standby (ST) functions. Available frequency tolerances include 15 ppm, 20 ppm, and 50 ppm across operating temperatures of -40 C to +85 C or -40 C to +105 C. Utilizing PLL technology for short lead times and available with the SG-Writer II programmer, this series is suitable for various electronic equipment applications, including automotive systems.

Product Attributes

  • Brand: Seiko Epson Corporation
  • Technology: PLL technology
  • Certifications: ISO 14001, ISO 9001, ISO/TS 16949 (automotive)
  • Environmental Compliance: Pb free, Complies with EU RoHS directive
  • Programmability: Field programmable oscillator programmer SG-Writer II

Technical Specifications

Item Symbol Specifications Conditions/Remarks
General Specifications
Supply voltage VCC 1.80 V Typ. / 2.50 V Typ. / 3.30 V Typ. 1.62 V to 1.98 V / 1.98 V to 2.20 V / 2.20 V to 2.80 V / 2.70 V to 3.63 V
Output frequency range fo 0.67 MHz to 170 MHz (1 ppm Step)
Storage temperature T_stg -40 C to +125 C Storage as single product.
Operating temperature T_use -40 C to +85 C / -40 C to +105 C
Frequency tolerance f_tol B: 15 10-6 / C: 20 10-6 / J: 50 10-6 T_use = -40 C to +85 C (B) / T_use = -40 C to +105 C (C, J)
Frequency aging f_aging Included in frequency tolerance specification +25 C, first year
Current Consumption
Current consumption ICC 3.2 mA Max. / 3.3 mA Max. / 3.4 mA Max. / 3.5 mA Max. T_use = +105 C, No load, fo = 20 MHz / T_use = +25 C, No load, fo = 170 MHz
Output disable current I_dis 3.2 mA Max. to 3.5 mA Max. OE = GND, fo = 170 MHz
Standby current I_std 0.9 A Max. to 2.5 A Max. T_use = +105 C, ST = GND / T_use = +25 C
Output Voltage & Load
Output voltage VOH 90 % VCC Min. IOH/IOL Conditions [mA]
VOL 10 % VCC Max. L_CMOS = 15 pF Max.
Symmetry SYM 45 % to 55 % 50 %
Output load condition L_CMOS 15 pF Max.
Input Voltage
Input voltage VIH 70 % VCC Min. OE or ST
VIL 30 % VCC Max. OE or ST
Timing Characteristics
Rise and Fall time tr/tf Default: 3.0 ns Max. / Fast: 3.0 ns Max. / Slow: 10.0 ns Max. fo > 40 MHz / fo 40 MHz / fo = 0.67 MHz to 20 MHz
Disable Time t_stp 1 s Max. Measured from the time OE or ST pin crosses 30 % VCC
Enable Time t_sta 1 s Max. Measured from the time OE pin crosses 70 % VCC
Resume Time t_res 3 ms Max. Measured from the time ST pin crosses 70 % VCC
Start-up time t_str 3 ms Max. Measured from the time VCC reaches its rated minimum value, 1.62 V
Pin Description
Pin Name I/O type Function
OE Input Output enable High: Specified frequency output from OUT pin. Low: Out pin is low (weak pull down), only output driver is disabled.
ST Input Standby High: Specified frequency output from OUT pin. Low: Out pin is low (weak pull down), Device goes to standby mode. Supply current reduces to the least as I_std.
GND Power Ground
OUT Output Clock output
VCC Power Power supply
Models & Packages
Model Package Type Dimensions Weight (Typ.)
SG-8101CG 2.5 x 2.0 mm 2.5 x 2.0 x 0.7 mm 13 mg
SG-8101CE 3.2 x 2.5 mm 3.2 x 2.5 x 1.0 mm 25 mg
SG-8101CB 5.0 x 3.2 mm 5.0 x 3.2 x 1.1 mm 51 mg
SG-8101CA 7.0 x 5.0 mm 7.0 x 5.0 x 1.3 mm 143 mg
Product Number Examples
SG-8101CA X1G005191xxxx00
SG-8101CB X1G005201xxxx00
SG-8101CE X1G005211xxxx00
SG-8101CG X1G005181xxxx00
ESD Rating
Test Item Rating
Human Body Model (HBM) 2000 V
Machine Model (MM) 250 V
Charged Device Model (CDM) 750 V

2410121457_EPSON-SG-8101CA-25-000000MHz-TBGSA_C390569.pdf

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