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quality Epoxy Molded MEMS Oscillator with LVCMOS Output SJK 3NM33333C33YC 33.333MHz Frequency Surface Mount factory
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quality Epoxy Molded MEMS Oscillator with LVCMOS Output SJK 3NM33333C33YC 33.333MHz Frequency Surface Mount factory
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Specifications
Operating Temperature:
-40℃~+85℃
Frequency Stability:
±25ppm
Output Type:
LVCMOS
Frequency:
33.333MHz
Mfr. Part #:
3NM33333C33YC
Package:
SMD3225-4P
Key Attributes
Model Number: 3NM33333C33YC
Product Description

Product Overview

The Si MEMS Oscillator Series 3NM is a surface mountable, epoxy-molded oscillator designed for reliable performance in various electronic applications. Featuring a 3.2x2.5mm package, this MEMS oscillator offers a nominal frequency of 33.333MHz and operates within a wide temperature range of -40 to 85. It supports LVCMOS output and is compliant with RoHS, REACH, and HF environmental standards.

Product Attributes

  • Brand: SJK
  • Series: 3NM
  • Technology: MEMS Oscillator
  • Packaging: Epoxy Molding, Surface Mount
  • Package Size: 3.2x2.5mm
  • Output Type: LVCMOS
  • Environmental Compliance: RoHS, REACH, HF
  • Moisture Sensitivity Level: Level 1
  • Minimum Packaging: 3000pcs/reel

Technical Specifications

Standard Atmospheric Conditions for Measurement:
Ambient temperature: 255
Relative humidity: 40%~70%
Limits for Doubtful Results:
Ambient temperature: 253
Relative humidity: 40%~70%

SYM Parameter MIN TYPE MAX UNITS Notes
1 Nominal Frequency 33.333000 MHZ
2 Frequency Stability AT 25 10 PPM
Over Operating Temperature range 15 PPM
3 Operating Temperature (Topr) -40 25 85
4 Storage Temperature (Tstg) -55 125
5 Supply Voltage (VDD) 3.3 10% V 1.62~3.63V
6 Input Current (Icc) 10 mA
7 Enable Control Yes Pad1
8 Output Load (CL) 15 pF CMOS
9 Output Voltage High (VoH) 90% Vdd V
10 Output Voltage Low (VoL) 10% Vdd V
11 Rise Time (Tr) 5 ns 10%90%VDD Level
12 Fall Time (Tf) 5 ns 90%10%VDD Level
13 Symmetry (Duty ratio) (TH/T) 45 55 %
14 Start-up Time (Tosc) 10 ms
15 Enable Voltage High (Vhi) 70% Vdd V
16 Disable Voltage Low (Vlo) 30% Vdd V
17 Aging 3 ppm/yr. 1st. Year at 25
18 Output Disable Delay Time (T off) 150 us
19 Output Enable Delay Time (T on) 150 us
20 Phase Jitter (12KHZ~20MHZ) 0.5 1.0 ps

DIMENSIONS

(Units :mm)

MARKING

TEST CIRCUIT

Control input (output enable/disable):
Logic 1 or open on pad 1: Oscillator output
Logic 0 on pad 1: Disable output to high impedance

WAVEFORM CONDITIONS

Waveform measurement system should have a min. bandwidth of 5 times the frequency being tested.

OUTPUT ENABLE / DISABLE DELAY

Note that when the device is in standby, the oscillator stops. When standby is released, the oscillator starts and stable oscillator output occurs after a short delay.

SUGGESTED REFLOW PROFILE

Total time: 200 sec. Max / Solder melting point: 220

RELIABILITY TEST SPECIFICATION

1. Mechanical Endurance

No. Test Item Test Methods REF. DOC
1 Drop Test 75 cm height, 3 times on concrete floor. JIS C6701
2 Mechanical Shock Device are shocked to half sine wave (1000 G) three mutually perpendicular axes each 3 times. 0.5m sec. duration time. MIL-STD-202F
3 Vibration Frequency range 10 ~ 2000 Hz, Amplitude 1.52 mm/20G, Sweep time 20 minutes, Perpendicular axes each test time 4 Hrs (Total test time 12 Hrs). MIL-STD-883E
4 Gross Leak Standard Sample For Automatic Gross Leak Detector, Test Pressure: 2kg / cm2. MIL-STD-883E
5 Fine Leak Helium Bomging 4.5 kgf / cm 2 for 2 Hrs.
6 Solderability Temperature 245 5, Immersing depth 0.5 mm minimum, Immersion time 5 1 seconds, Flux Rosin resin methyl alcohol solvent (1 : 4). MIL-STD-883E

2. Environmental Endurance

No. Test Item Test Methods REF. DOC
1 Resistance To Soldering Heat Pre-heat temperature 125 , Pre-heat time 60 ~ 120 sec., Test temperature 260 5 , Test time 10 1 sec. MIL-STD-202F
2 High Temp. Storage + 125 3 for 1000 12 Hrs. MIL-STD-883E
3 Low Temp. Storage - 40 3 for 1000 12 Hrs. MIL-STD-883E
4 Thermal Shock Total 100 cycles of the following temperature cycle. MIL-STD-883E
5 Pressure Cooker Storage 121 3 , RH100% , 2 bar , 240 Hrs. JIS C6701
6 High TempHumidity 85 3, RH 85% , 1000 Hrs. JIS C5023

2304131800_SJK-3NM33333C33YC_C668794.pdf

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