CF5035 series
1.8V, High-frequency Crystal Oscillator Module ICs
OVERVIEW
The CF5035 series are 1.8V operation, high-frequency crystal oscillator module ICs. They support 70MHz to
165MHz (1.8V) and 70MHz to 220MHz (2.5 to 3.3V) 3rd overtone oscillation and fundamental oscillation
modes. The crystal oscillator circuit is a Colpitts oscillator with the necessary oscillator capacitors and feed-
back resistor built-in. The oscillation characteristics feature little variation with supply voltage, providing sta-
ble oscillation over a wide supply voltage range. The output circuit comprises a CMOS buffer that can operate
at high frequencies and drive a 15pF capacitance load. The devices are fabricated using a proprietary BiCMOS
process with the oscillator circuit and output buffer on a single chip, making them ideal as SMD-type high-fre-
quency crystal oscillators.
FEATURES
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1.6 to 3.6V operating supply voltage range
Oscillation frequency range (varies with version)
1.6 to 3.6V: 70MHz to 165MHz
2.25 to 3.6V: 70MHz to 220MHz
– 40 to 85°C operating temperature range
Oscillation capacitors built-in
Inverter amplifier feedback resistor built-in
Oscillation detector function built-in
Standby function
• High impedance in standby mode, oscillator stops
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Low standby current
• Power-save pull-up resistor built-in
CMOS output duty level
15pF output load
8mA output drive capability (V
DD
= 1.6V)
BiCMOS process
Chip form (CF5035AL×)
APPLICATIONS
I
1.8V, high-frequency crystal oscillator modules
SERIES CONFIGURATION
Version
CF5035ALA
CF5035ALB
CF5035ALC
CF5035ALD
2.25 to 3.6
1.6 to 3.6
Operating supply
voltage [V]
Recommended operating
frequency range
1
[MHz]
70 to 95
95 to 125
125 to 165
165 to 220
Built-in capacitance [pF]
C
IN
4
4
2
1
C
OUT
4
4
2
1
1. The recommended operating frequency is a yardstick value derived from the crystal used for NPC characteristics authentica-
tion. However, the oscillator frequency band is not guaranteed. Specifically, 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
CF5035AL×–1
Package
Chip form
NIPPON PRECISION CIRCUITS INC.—1
CF5035 series
PAD LAYOUT
(Unit:
µm)
VDD
7
TEST
6
Q
5
(1080,1320)
Y
1
2
3
4
(0,0)
INHN XIN XOUT VSS
X
Chip size: 1.08
×
1.32mm
Chip thickness: 300 ± 30µm
PAD size: 100µm
×
100µm (TEST: 80µm
×
80µm)
Chip base: V
SS
potential
PIN DESCRIPTION and PAD DIMENSIONS
Pad dimensions [µm]
No.
Name
I/O
Description
X
1
2
3
4
5
6
7
INHN
XIN
XOUT
VSS
Q
TEST
VDD
I
I
O
–
O
I
–
Output state control input. Oscillator stops when LOW.
Power-saving pull-up resistor built-in.
Oscillator input
Oscillator output
(–) ground
Output. Output frequency. High impedance in standby mode
Test (leave open)
(+) supply voltage
Crystal connection pins.
Crystal is connected between XIN and XOUT.
205
461
734
945
945
494
135
Y
135
135
135
135
1185
1195
1185
BLOCK DIAGRAM
VDD VSS
INHN
R
f
CMOS
DA5035
Q
XIN
C
IN
C
OUT
XOUT
NIPPON PRECISION CIRCUITS INC.—2
CF5035 series
ABSOLUTE MAXIMUM RATINGS
Parameter
Supply voltage range
Input voltage range
Output voltage range
Output current
Storage temperature range
Symbol
V
DD
V
IN
V
OUT
I
OUT
T
STG
Condition
Between VDD and VSS
Input pins
Output pins
Q pin
Chip form
Rating
−0.5
to +5.0
V
SS
−
0.5 to V
DD
+ 0.5
V
SS
−
0.5 to V
DD
+ 0.5
25
−65
to +150
Unit
V
V
V
mA
°C
RECOMMENDED OPERATING CONDITIONS
C
L
≤
15pF
Rating
Parameter
Symbol
Condition
min
70MHz
≤
f
≤
95MHz
Supply voltage
V
DD
95MHz
≤
f
≤
125MHz
125MHz
≤
f
≤
165MHz
165MHz
≤
f
≤
220MHz
Input voltage
Operating temperature
V
IN
T
OPR
Input pins
Chip temperature
5035ALA
5035ALB
5035ALC
5035ALD
1.6
1.6
1.6
2.25
V
SS
−40
typ
–
–
–
–
–
+25
max
3.6
3.6
3.6
3.6
V
DD
+85
V
V
V
V
V
°C
Unit
NIPPON PRECISION CIRCUITS INC.—3
CF5035 series
ELECTRICAL CHARACTERISTICS
DC Characteristics
Recommended operating conditions unless otherwise noted.
Rating
Parameter
Symbol
Condition
min
V
DD
= 1.6 to 2.0V
5035ALA
f = 95MHz
V
DD
= 2.25 to 2.75V
V
DD
= 2.75 to 3.6V
V
DD
= 1.6 to 2.0V
Operating current
consumption
1
Measurement cct 1,
INHN = open or HIGH,
C
L
= 15pF
5035ALB
f = 125MHz
V
DD
= 2.25 to 2.75V
V
DD
= 2.75 to 3.6V
V
DD
= 1.6 to 2.0V
5035ALC
f = 165MHz
V
DD
= 2.25 to 2.75V
V
DD
= 2.75 to 3.6V
5035ALD
f = 220MHz
Standby current
HIGH-level output voltage
LOW-level output voltage
Output leakage current
HIGH-level input voltage
LOW-level input voltage
INHN pull-up resistance
I
ST
V
OH
V
OL
I
Z
V
IH
V
IL
R
PU1
R
PU2
Measurement cct 1, INHN = LOW
Q: Measurement cct 3, V
DD
= 1.6 to 3.6V, I
OH
= 8mA
Q: Measurement cct 3, V
DD
= 1.6 to 3.6V, I
OL
= 8mA
Q: Measurement cct 5, INHN = LOW,
V
DD
= 3.6V
INHN, Measurement cct 4
INHN, Measurement cct 4
Measurement cct 6
INHN = V
SS
INHN = 0.7V
DD
V
OH
= V
DD
V
OL
= V
SS
V
DD
= 2.25 to 2.75V
V
DD
= 2.75 to 3.6V
–
–
–
–
–
–
–
–
–
–
–
–
V
DD
– 0.4
–
–
–
0.7V
DD
–
0.4
30
typ
11
16
20
17
23
29
23
31
39
38
48
–
V
DD
– 0.3
0.3
–
–
–
–
–
–
max
19
26
33
27
36
46
37
51
65
58
73
10
–
0.4
10
10
–
0.3V
DD
4
150
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
µA
V
V
µA
µA
V
V
MΩ
kΩ
Unit
I
DD
1. The operating current consumption includes the C
L
= 15pF capacitance load charging current.
NIPPON PRECISION CIRCUITS INC.—4
CF5035 series
AC Characteristics
Recommended operating conditions unless otherwise noted.
Rating
Parameter
Symbol
Condition
min
Output duty cycle
Duty
Measurement cct 1, Ta = 25°C,
C
L
= 15pF
V
DD
= 2.25 to 3.6V
V
DD
= 1.6 to 2.25V
45
40
–
–
–
–
–
–
typ
50
50
1
1.5
1
1.5
–
–
max
55
60
2
2.5
2
2.5
2
200
%
%
ns
ns
ns
ns
ms
ns
Unit
t
r1
Rise time
t
r2
t
f1
Fall time
t
f2
Output enable delay time
1
Output disable delay time
t
OE
t
OD
Measurement cct 1, C
L
= 15pF, V
DD
= 2.25 to 3.6V,
0.1V
DD
to 0.9V
DD
Measurement cct 1, C
L
= 15pF, V
DD
= 1.6 to 2.25V,
0.2V
DD
to 0.8V
DD
Measurement cct 1, C
L
= 15pF, V
DD
= 2.25 to 3.6V,
0.9V
DD
to 0.1V
DD
Measurement cct 1, C
L
= 15pF, V
DD
= 1.6 to 2.25V,
0.8V
DD
to 0.2V
DD
Measurement cct 2, Ta = 25°C, C
L
≤
15pF,
INHN = LOW
→
HIGH
Measurement cct 2, Ta = 25°C, C
L
≤
15pF,
INHN = HIGH
→
LOW
1. 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.
Timing chart
0.9V
DD
0.8V
DD
0.2V
DD
0.1V
DD
0.9V
DD
0.8V
DD
0.2V
DD
0.1V
DD
Q
T
W
T
DUTY measurement
voltage (0.5V
DD
)
DUTY= T
W
/ T 100 (%)
t
r
2
t
r
1
t
f2
t
f1
Figure 1. Output switching waveform
INHN
V
IH
V
IL
t
OD
Q
Hi-Z
t
OE
Figure 2. Output disable/enable timing chart
NIPPON PRECISION CIRCUITS INC.—5