CF5005B series High-frequency Crystal Oscillator Module ICs
OVERVIEW
The CF5005B series are high-frequency crystal oscillator module ICs. They are comprised of an oscillator circuit and output buffer optimized for operation at 125 to 165MHz. The crystal oscillator circuit has a built-in thin-film feedback resistor with good temperature characteristics and built-in capacitors with excellent frequency response, making possible a stable 3rd overtone oscillator with only the addition of a crystal element.
FEATURES
I I
I I I
3.0 to 3.6V operating supply voltage range 125 to 165MHz recommended operating frequency range Inverter amplifier feedback resistor built-in Oscillator capacitors CG , CD built-in Output three-state function (high impedance in standby mode, oscillator stops)
I I I I
fO output frequency (oscillator frequency) 8mA output drive capability (VDD = 3.0V) CMOS output duty level Chip form (CF5005B××)
SERIES CONFIGURATION
Version CF5005BLA CF5005BLB Recommended operating frequency range1 [MHz] 125 to 150 140 to 165 Built-in capacitance [pF] gm ratio CG 1.0 1.0 1 1 CD 6 3 Rf [kΩ] 2.2 2.2
1. The recommended operating frequency is a yardstick value derived from the crystal used for NPC characteristics authentication. However, the oscillator frequency band is not guaranteed. Specifically, when used at high frequencies, the characteristics can vary greatly due to crystal characteristics and mounting conditions, so the oscillation characteristics of components must be carefully evaluated.
ORDERING INFORMATION
Device CF5005B××–1 Package Chip form
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CF5005B series
PAD LAYOUT
(Unit: µm)
VDD Q (920,1310)
Y
(0,0) INHN XTN XT VSS X
Chip size: 0.92 × 1.31mm Chip thickness: 300 ± 30µm Chip base: VDD level
PIN DESCRIPTION and PAD DIMENSIONS
Name INHN XT XTN VSS Q VDD I/O I I O – O – Description Output state control input. Oscillator stops when LOW. Pull-up resistor built in Amplifier input. Amplifier output. Ground Output. Output frequency (fO). High impedance in standby mode Supply voltage Crystal oscillator connection pins. Crystal oscillator connected between XT and XTN Pad dimensions [µm] X 195 385 575 766 765 162 Y 212 212 212 212 1152 1152
BLOCK DIAGRAM
VDD VSS XTN
CG Rf 1 Cf CD
XT
Rf 2
INHN
Substrate potential: VDD
HA5005BL
Q
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CF5005B series
SPECIFICATIONS
Absolute Maximum Ratings
VSS = 0V
Parameter Supply voltage range Input voltage range Output voltage range Operating temperature range Storage temperature range Output current Symbol VDD VIN VOUT Topr Tstg IOUT Condition Rating −0.5 to 7.0 −0.5 to VDD + 0.5 −0.5 to VDD + 0.5 −40 to 85 −65 to 150 25 Unit V V V °C °C mA
Recommended Operating Conditions
VSS = 0V, f ≤ 165MHz, CL ≤ 15pF unless otherwise noted.
Rating Parameter Operating supply voltage Input voltage Operating temperature Symbol VDD VIN TOPR Condition min 3.0 VSS −20 typ – – – max 3.6 VDD 80 V V °C Unit
Electrical Characteristics
VDD = 3.0 to 3.6V, VSS = 0V, Ta = −20 to 80°C unless otherwise noted.
Rating Parameter HIGH-level output voltage LOW-level output voltage Output leakage current HIGH-level input voltage LOW-level input voltage Current consumption Standby current INHN pull-up resistance AC feedback resistance DC feedback resistance AC feedback capacitance Symbol VOH VOL IZ VIH VIL IDD IST RUP1 RUP2 Rf1 Rf2 Cf CG Built-in capacitance CD Design value. A monitor pattern on a wafer is tested. CF5005BLA CF5005BLB 5.58 2.79 6 3 6.42 pF 3.21 Condition min Q: Measurement cct 1, VDD = 3.0V, IOH = 8mA Q: Measurement cct 2, VDD = 3.0V, IOL = 8mA Q: Measurement cct 2, INHN = LOW, VDD = 3.6V INHN INHN Measurement cct 3, load cct 1, INHN = open, CL = 15pF Measurement cct 3, INHN = LOW Measurement cct 4 INHN = VSS INHN = 0.7VDD Design value. A monitor pattern on a wafer is tested. Measurement cct 5 Design value. A monitor pattern on a wafer is tested. Design value. A monitor pattern on a wafer is tested. CF5005BLA CF5005BLB f = 133MHz f = 156MHz VOH = VDD VOL = VSS 2.5 – – – 0.7VDD – – – – 0.4 50 1.76 50 9.3 0.93 0.93 typ 2.7 0.3 – – – – 30 35 – – – 2.2 – 10 1 1 max – 0.4 10 µA 10 – 0.3VDD 65 mA 80 10 4 150 2.64 150 10.7 1.07 pF 1.07 µA MΩ kΩ kΩ kΩ pF V V V V Unit
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CF5005B series
Switching Characteristics
VDD = 3.0 to 3.6V, VSS = 0V, Ta = −20 to 80 °C unless otherwise noted.
Rating Parameter Output rise time Output fall time Output duty cycle1 Output disable delay time2 Output enable delay time2 Symbol tr tf Duty tPLZ tPZL Condition min Measurement cct 3, load cct 1, 0.1VDD to 0.9VDD , CL = 15pF Measurement cct 3, load cct 1, 0.9VDD to 0.1VDD , CL = 15pF Measurement cct 3, load cct 1, Ta = 25°C, VDD = 3.3V, CL = 15pF, f ≤ 165MHz Measurement cct 6, load cct 1, Ta = 25°C, VDD = 3.0V, CL ≤ 15pF Measurement cct 6, load cct 1, Ta = 25°C, VDD = 3.0V, CL ≤ 15pF – – 40 – – typ 1.5 1.5 – – – max 2.5 2.5 60 100 100 ns ns % ns ns Unit
1. The duty cycle characteristic is checked the sample chips of each production lot. 2. Oscillator stop function is built-in. When INHN goes LOW, normal output stops. When INHN goes HIGH, normal output is not resumed until after the oscillator start-up time has elapsed.
FUNCTIONAL DESCRIPTION
Standby Function
The oscillator stops when INHN goes LOW. When the oscillator stops, the oscillator output on Q goes high impedance.
INHN HIGH (or open) LOW Q fO output frequency High impedance Oscillator Normal operation Stopped
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CF5005B series
MEASUREMENT CIRCUITS
Measurement cct 1 Measurement cct 4
Signal Generator
R1
C1 XT
VDD Q VSS R2
VDD RUP1 = VSS INHN VDD IPR (VPR = VSS)
Q output
VOH 0V
V
VPR
RUP2 = VDD 0.7VDD (V PR = 0.7V DD) IPR IPR
A
2.5VP−P , 10MHz sine wave input signal C1 : 0.001µF R1 : 50Ω R2 : 312.5Ω
Measurement cct 2
Measurement cct 5
IOL, IZ VDD Q INHN VSS IZ VDD XT Rf2 = XTN VSS
A V VOL A
IRf
VDD IRf
Measurement cct 3
Measurement cct 6
A
XT X'tal XTN INHN VSS VDD
IDD IST
VDD
Signal Generator
R1
XT VSS INHN
Q
Q
R1 : 50Ω
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CF5005B series
Load cct 1
Q output
CL
(Including probe capacitance)
CL = 15pF
Switching Time Measurement Waveform
tr , tf , DUTY
Q output
0.9V DD 0.1V DD TW
0.9V DD 0.1V DD
DUTY measurement voltage (0.5V DD )
tr
Output duty cycle
tf
Q output
TW T
DUTY measurement voltage (0.5V DD)
DUTY= TW/ T 100 (%)
Output Enable/Disable Delay
The following figure shows the oscillator timing during normal operation. 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.
INHN
VIH VIL
tPLZ Q output
tPZL
INHN input waveform tr = tf 10ns
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CF5005B series
Please pay your attention to the following points at time of using the products shown in this document. The products shown in this document (hereinafter “Products”) are not intended to be used for the apparatus that exerts harmful influence on human lives due to the defects, failure or malfunction of the Products. Customers are requested to obtain prior written agreement for such use from SEIKO NPC CORPORATION (hereinafter “NPC”). Customers shall be solely responsible for, and indemnify and hold NPC free and harmless from, any and all claims, damages, losses, expenses or lawsuits, due to such use without such agreement. NPC reserves the right to change the specifications of the Products in order to improve the characteristic or reliability thereof. NPC makes no claim or warranty that the contents described in this document dose not infringe any intellectual property right or other similar right owned by third parties. Therefore, NPC shall not be responsible for such problems, even if the use is in accordance with the descriptions provided in this document. Any descriptions including applications, circuits, and the parameters of the Products in this document are for reference to use the Products, and shall not be guaranteed free from defect, inapplicability to the design for the mass-production products without further testing or modification. Customers are requested not to export or re-export, directly or indirectly, the Products to any country or any entity not in compliance with or in violation of the national export administration laws, treaties, orders and regulations. Customers are requested appropriately take steps to obtain required permissions or approvals from appropriate government agencies.
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NC0109BE 2006.04
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