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Please note: As part of the Fairchild Semiconductor integration, some of the Fairchild orderable part numbers
will need to change in order to meet ON Semiconductor’s system requirements. Since the ON Semiconductor
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email any questions regarding the system integration to Fairchild_questions@onsemi.com.
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of patents, trademarks, copyrights, trade secrets, and other intellectual property. A listing of ON Semiconductor’s product/patent coverage may be accessed at www.onsemi.com/site/pdf/Patent-Marking.pdf. ON Semiconductor reserves the right
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Semiconductor products, including compliance with all laws, regulations and safety requirements or standards, regardless of any support or applications information provided by ON Semiconductor. “Typical” parameters which may be provided in ON
Semiconductor data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including “Typicals” must be validated for each customer application by customer’s
technical experts. ON Semiconductor does not convey any license under its patent rights nor the rights of others. ON Semiconductor products are not designed, intended, or authorized for use as a critical component in life support systems or any FDA
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March 2018
www.onsemi.com
© 2018 ON Semiconductor Corporation
NC7SV17 • Rev. 2
NC7SV17 — TinyLogic
®
ULP-A Single Buffer with Schmitt Trigger Input
NC7SV17
TinyLogic® ULP-A Single Buffer with Schmitt Trigger Input
Features
0.9V to 3.6V VCC Supply Operation
3.6V Over-Voltage Tolerant I/Os at VCC from
0.9V to 3.6V
Extremely High Speed tPD
- 1.5ns: Typical for 2.7V to 3.6V VCC
- 1.8ns: Typical for 2.3V to 2.7V VCC
- 2.0ns: Typical for 1.65V to 1.95V VCC
- 3.2ns: Typical for 1.4V to 1.6V VCC
- 5.9ns: Typical for 1.1V to 1.3V VCC
- 12.0ns: Typical for 0.9V VCC
Power-Off High-Impedance Inputs and Outputs
High Static Drive (IOH/IOL)
-±24mA at 3.00V VCC
-±18mA at 2.30V VCC
-±6mA at 1.65V VCC
-±4mA at 1.4V VCC
-±2mA at 1.1V VCC
-±0.1mA at 0.9V VCC
Uses Proprietary Quiet Series™ Noise/EMI
Reduction Circuitry
Ultra-Small MicroPak™ Packages
Ultra-Low Dynamic Power
Description
The NC7SV17 is a single buffer with Schmitt trigger
input from Fairchild's Ultra-Low Power (ULP-A) Series
of TinyLogic®. ULP-A is ideal for applications that
require extreme high speed, high drive, and low power.
This product is designed for a wide low-voltage
operating range (0.9V to 3.6V VCC) and applications that
require more drive and speed than the TinyLogic® ULP
series, but still offer best-in-class, low-power operation.
The NC7SV17 is uniquely designed for optimized power
and speed and is fabricated with an advanced CMOS
technology to achieve high-speed operation while
maintaining low CMOS power dissipation.
Ordering Information
Part Number Top Mark Package Packing Method
NC7SV17P5X V17 5-Lead SC70, EIAJ SC-88a, 1.25mm Wide 3000 Units on
Tape & Reel
NC7SV17L6X G5 6-Lead MicroPak™, 1.00mm Wide 5000 Units on
Tape & Reel
NC7SV17FHX G5 6-Lead, MicroPak2™, 1x1mm Body, .35mm Pitch 5000 Units on
Tape & Reel
TinyLogic® is a registered trademark of Fairchild Semiconductor Corporation.
MicroPak™ and Quiet Series™ are trademarks of Fairchild Semiconductor Corporation.
www.onsemi.com
2
NC7SV17 — TinyLogic
®
ULP-A Single Buffer with Schmitt Trigger Input
Battery Life
700
600
500
400
300
200
100
00.9 1.2
ULP-A (SV)
ULP (SP)
UHS (SZ)
1.5 1.8 2.5 3.3 5.0
Battery Life
(Days)
V
CC
SupplyVoltage
Figure 1. Battery Life vs. VCC Supply Voltage
Notes:
1. TinyLogic® ULP and UL P-A with up to 50% less power consumption can extend battery life significantly.
Battery Life = (Vbattery•Ibattery•.9)/(Pdevice)/24hrs/day
where, Pdevice = (ICC • VCC) + (CPD + CL) • VCC2 • f.
2. Assumes ideal 3.6V Lithium Ion battery with current rating of 900mAH and derated 90% and device frequency at
10MHz, with CL=15pF load.
Connection Diagram
IEEE/IEC
A
1Y
Figure 2. Logic Symbol
www.onsemi.com
3
NC7SV17 — TinyLogic
®
ULP-A Single Buffer with Schmitt Trigger Input
Pin Configurations
NC V
CC
15
A
2
GND Y
3 4
1
NC
2
A
3
6
5
4
GND
V
CC
NC
Y
Figure 3. SC70 (Top View) Figure 4. MicroPak™ (Top Through View)
Pin Definitions
Pin # SC70 Pin # MicroPak Name Description
1 1 NC No Connect
2 2 A Input
3 3 GND Ground
4 4 Y Output
5 6 VCC Supply Voltage
5 NC No Connect
Function Table
Inputs Output
A Y
L L
H H
H=HIGH Logic Level
L=LOW Logic Level
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4
NC7SV17 — TinyLogic
®
ULP-A Single Buffer with Schmitt Trigger Input
Absolute Maximum Ratings
Stresses exceeding the absolute maximum ratings may damage the device. The device may not function or be
operable above the recommended operating conditions and stressing the parts to these levels is not recommended.
In addition, extended exposure to stresses above the recommended operating conditions may affect device
reliability. The absolute maximum ratings are stress ratings only.
Symbol Parameter Min. Max. Unit
VCC Supply Voltage -0.5 4.6 V
VIN DC Input Voltage -0.5 4.6 V
VOUT DC Output Voltage HIGH or LOW State(3) -0.5 VCC + 0.5 V
VCC=0V -0.5 4.6
IIK DC Input Diode Current VIN < 0V -50 mA
IOK DC Output Diode Current VOUT < 0V -50 mA
VOUT > VCC +50
IOH/IOL DC Output Source/Sink Current ±50 mA
ICC or IGND DC VCC or Ground Current per Supply Pin ±50 mA
TSTG Storage Temperature Range -65 +150 °C
TJ Junction Temperature Under Bias +150 °C
TL Junction Lead Temperature, Soldering 10 Seconds +260 °C
PD Power Dissipation at +85°C SC70-5 150 mW MicroPak™-6 130
MicroPak2™-6 120
ESD Human Body Model, JEDEC:JESD22-A114 4000 V
Charge Device Model, JEDEC:JESD22-C101 2000
Note:
3. IO absolute maximum rating must be observed.
Recommended Operating Conditions
The Recommended Operating Conditions table defines the conditions for actual device operation. Recommended
operating conditions are specified to ensure optimal performance to the datasheet specifications. Fairchild does not
recommend exceeding them or designing to Absolute Maximum Ratings.
Symbol Parameter Conditions Min. Max. Unit
VCC Supply Voltage 0.9 3.6 V
VIN Input Voltage 0 3.6 V
VOUT Output Voltage VCC=0V 0 3.6 V
HIGH or LOW State 0 VCC
IOH/IOL Output Current in IOH/IOL
VCC=3.0V to 3.6V ±24
mA
VCC=2.3V to 3.6V ±18
VCC=1.65V to 1.95V ±6
VCC=1.4V to 1.6V ±4
VCC=1.1V to 1.3V ±2
VCC=0.9V ±0.1
TA Operating Temperature, Free Air -40 +85 °C
Δt/ΔV Minimum Input Edge Rate VIN=0.8V to 2.0, VCC=3.0V 10 ns/V
θJA Thermal Resistance SC70-5 425 °C/W MicroPak™-6 500
MicroPak2™-6 560
Note:
4. Unused inputs must be held HIGH or LOW. They may not float.
www.onsemi.com
5
NC7SV17 — TinyLogic
®
ULP-A Single Buffer with Schmitt Trigger Input
DC Electrical Characteristics
Symbol Parameter VCC Conditions TA=25°C TA=-40 to 85°C Units
Min. Max. Min. Max.
VP Positive
Threshold
Voltage
0.90 0.30 0.70 0.30 0.70
V
1.10 0.40 1.00 0.40 1.00
1.40 0.50 1.25 0.50 1.40
1.65 0.70 1.50 0.70 1.50
2.30 1.00 1.80 1.00 1.80
2.70 1.50 2.20 1.50 2.20
VN Negative
Threshold
Voltage
0.90 0.10 0.60 0.10 0.60
V
1.10 0.15 0.70 0.15 0.70
1.40 0.20 0.80 0.20 0.80
1.65 0.25 0.90 0.25 0.90
2.30 0.40 1.15 0.40 1.15
2.70 0.60 1.50 0.60 1.50
VH Hysteresis
Voltage
0.90 0.07 0.50 0.07 0.50
V
1.10 0.08 0.60 0.08 0.60
1.40 0.09 0.80 0.09 0.80
1.65 0.15 1.00 0.15 1.00
2.30 0.25 1.10 0.25 1.10
2.70 0.60 1.20 0.60 1.20
VOH HIGH Level
Output Vol t age
0.90
IOH=-100µA
VCC-0.1 VCC-0.1
V
1.10 VCC 1.30 VCC-0.1 VCC-0.1
1.40 VCC 1.60 VCC-0.2 VCC-0.2
1.65 VCC 1.95 VCC-0.2 VCC-0.2
2.30 VCC 2.70 VCC-0.2 VCC-0.2
2.70 VCC 3.60 VCC-0.2 VCC-0.2
1.10 VCC 1.30 IOH=-2mA .75 x VCC .75 x VCC
1.40 VCC 1.60 IOH=-4mA .75 x VCC .75 x VCC
1.65 VCC 1.95 IOH=-6mA 1.25 1.25
2.30 VCC 2.70 2.0 2.0
2.30 VCC 2.70 IOH=-12mA 1.8 1.8
2.70 VCC 3.60 2.2 2.2
2.30 VCC 2.70 IOH=-18mA 1.7 1.7
2.70 VCC 3.60 2.4 2.4
2.70 VCC 3.60 IOH=-24mA 2.2 2.2
Continued on foll owing page…
www.onsemi.com
6
NC7SV17 — TinyLogic
®
ULP-A Single Buffer with Schmitt Trigger Input
DC Electrical Characteristics (Continued)
Symbol Parameter VCC Conditions TA=25°C TA=-40 to 85°C Units
Min. Max. Min. Max.
VOL LOW Level
Output Vol t age
0.90
IOL=100µA
0.10 0.10
V
1.10 VCC 1.30 0.10 0.10
1.40 VCC 1.60 0.20 0.20
1.65 VCC 1.95 0.20 0.20
2.30 VCC 2.70 0.20 0.20
2.70 VCC 3.60 0.20 0.20
1.10 VCC 1.30 IOL=2mA 0.25 x VCC 0.25 x VCC
1.40 VCC 1.60 IOL=4mA 0.25 x VCC 0.25 x VCC
1.65 VCC 1.95 IOL=6mA 0.30 0.30
2.30 VCC 2.70 IOL=12mA 0.40 0.40
2.70 VCC 3.60 0.40 0.40
2.30 VCC 2.70 IOL=18mA 0.60 0.60
2.70 VCC 3.60 0.40 0.40
2.70 VCC 3.60 IOL=24mA 0.55 0.55
IIN Input Leakage
Current 0.90 to 3.60 0 VIN 3.60 ±0.1 ±0.5
µA
IOFF Power Off
Leakage
Current 0 0 (V IN, vO) 3. 60 0.5 0.5 µA
ICC Quiescent
Supply Current 0. 90 to 3.60 VIN=VCC, or GND 0.9 0.9 µA
VCC VIN 3.6V ±0.9
AC Electrical Characteristics
Symbol Parameter VCC Conditions TA=25°C TA=-40 to 85°C Units Figure
Min. Typ. Max. Min. Max.
tPHL, tPLH Propagation
Delay
0.90 CL=15pF,
RL=1MΩ 12
ns Figure 5
Figure 6
1.10 VCC 1. 30 CL=15pF,
RL=2kΩ 2.0 5.9 10.0 1.0 14.9
1.40 VCC 1. 60 1.0 3.2 6.1 0.9 7.0
1.65 VCC 1. 95 CL=30pF,
RL=500Ω
1.0 2.0 5.2 0.7 6.2
2.30 VCC 2. 70 0.8 1.8 3.7 0.6 4.4
2.70 VCC 3. 60 0.7 1.5 3.3 0.5 3.8
CIN Input
Capacitance 0 2 pF
CPD Power
Dissipation
Capacitance 0. 90 to 3.60 VIN=0V or VCC,
f=10MHz 10 pF
www.onsemi.com
7
NC7SV17 — TinyLogic
®
ULP-A Single Buffer with Schmitt Trigger Input
AC Loadings and Waveforms
V
CC
DUT
C
L
pF R
L
TEST
SIGNAL
Figure 5. AC Test Circuit
Figure 6. AC Waveforms
Symbol VCC
3.3V ± 0.3V 2.5V ± 0.2V 1.8V ± 0.15V 1.5V ± 0.1V 1.2V ± 0.1V 0.9V
Vmi 1.5V VCC/2 VCC/2 VCC/2 VCC/2 VCC/2
Vmo 1.5V VCC/2 VCC/2 VCC/2 VCC/2 VCC/2
www.onsemi.com
8
NC7SV17 — TinyLogic
®
ULP-A Single Buffer with Schmitt Trigger Input
Physical Dimensions
Figure 7. 5-Lead, SC70, EIAJ SC-88a, 1.25mm Wide
Package draw i ngs are provided as a s ervice to c ustomers consi deri ng Fai rchild components. Drawings may c hange i n any manner
without notice. P l ease note the revision and/or date on the drawing and contac t a Fairchild Semic onductor representat i ve to verify
or obtain the most recent revision. Package specifications do not expand the terms of Fairchild’s worldwide terms and conditions, specifically
the warranty therein, which covers Fairchild products.
Always visit Fairchild Semiconductor’s online packaging area for the most recent package drawings:
http://www.fairchildsemi.com/packaging/.
Tape and Reel Specification
Please visit Fairchild Semiconductor’s online packaging area for the most recent tape and reel specifications:
http://www.fairchildsemi.com/products/analog/pdf/sc70-5_tr.pdf.
Package Designator Tape Section Cavity Number Cavity Status Cover Type Status
P5X Leader (Start End) 125 (Typical) Empty Sealed
Carrier 3000 Filled Sealed
Trailer (Hub End) 75 (Typical) Empty Sealed
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9
NC7SV17 — TinyLogic
®
ULP-A Single Buffer with Schmitt Trigger Input
Physical Dimensions
2. DIMENSIONS ARE IN MILLIMETERS
1. CONFORMS TO JEDEC STA NDARD M0-252 VARIATION UAAD
4. FILENAME AND REVISION: MAC06AREV4
Notes:
3. DRAWING CONFORMS TO ASME Y14.5M-1994
TOP VIEW
RECOMMENED
LAND PATTERN
BOTTOM VIEW
1.45
1.00
A
B0.05 C
0.05 C
2X
2X
0.55MAX
0.05 C
(0.49)
(1)
(0.75)
(0.52)
(0.30)
6X
1X
6X
PIN 1
DETAIL A
0.075 X 45
CHAMFER
0.25
0.15
0.35
0.25
0.40
0.30
0.5
(0.05)
1.0
5X
DETAIL A
PIN 1 TERMINAL
0.40
0.30
0.45
0.35
0.10
0.00
0.10 CBA
0.05 C
C0.05 C
0.05
0.00
5X
5X
6X (0.13)
4X
6X
PIN 1 IDENTIFIER
(0.254)
5. PIN ONE IDENTIFIER IS 2X LENGTH OF ANY
5
OTHER LINE IN THE MARK CODE LAYOUT.
Figure 8. 6-Lead, MicroPak™, 1.0mm Wide
Pack age drawings are provided as a service to customers considering Fairc hi l d components. Drawi ngs may change in any manner
without notice. P l ease note the revi sion and/or date on the drawing and contact a Fairchild Semic onductor representat i ve to verify
or obtain the most recent revision. Package specifications do not expand the terms of Fairchild’s worldwide terms and conditions, specifically
the warranty therein, which covers Fairchild products.
Always visit Fairchild Semiconductor’s online packaging area for the most recent package drawings:
http://www.fairchildsemi.com/packaging/.
Tape and Reel Specification
Please visit Fairchild Semiconductor’s online packaging area for the most recent tape and reel specifications:
http://www.fairchildsemi.com/products/logic/pdf/micropak_tr.pdf.
Package Designator Tape Section Cavity Number Cavity Status Cover Type Status
L6X Leader (Start End) 125 (Typical) Empty Sealed
Carrier 5000 Filled Sealed
Trailer (Hub End) 75 (Typical) Empty Sealed
www.onsemi.com
10
NC7SV17 — TinyLogic
®
ULP-A Single Buffer with Schmitt Trigger Input
Physical Dimensions
1.00
B. DIMENSIONS ARE IN MILLIMETERS.
C. DIMENSIO NS AND TOLERANCES PER ASME Y14.5M , 1994
NOTES:
A. COMPLIES TO JEDEC M O-252 STANDARD
0.05 C A
B
0.55MAX
0.05 C
C
0.35
0.09
0.19
123
0.35
0.25
5X
6X
DETAIL A
0.60
(0.08)
4X
(0.05) 6X
0.40
0.30
0.075X45°
CHAMFER
5X 0.40
0.35
1X 0.45
6X 0.19
TOP VIEW
BOTTOM VIEW
0.66
0.10 CBA
.05 C
0.89
PIN 1
0.05 C
2X
2X 1.00
D. LAND PATTERN RECOMM ENDATION IS BASED ON FSC
E. DRAWING FILE NAME AND REVISION: MG F06AREV3
0.52
0.73
0.57
0.20 6X
1X
5X
RECOM M E NDE D LAND PATTERN
FOR SPACE CONSTRAINED PCB
DETAIL A
PIN 1 LEAD SCALE: 2X
ALTERNATIVE LAND PATTERN
FOR UNIVERSAL APPLICATION
DESIGN.
0.90
MIN 250uM
654
0.35
(0.08) 4X
SIDE VIEW
Figure 9. 6-Lead, MicroPak2, 1x1mm Body, .35mm Pitch
Pack age drawings are provided as a service to customers considering Fairc hi l d components. Drawi ngs may change in any manner
without notice. P l ease note the revi sion and/or date on the drawing and contact a Fairchild Semic onductor representat i ve to verify
or obtain the most recent revision. Package specifications do not expand the terms of Fairchild’s worldwide terms and conditions, specifically
the warranty therein, which covers Fairchild products.
Always visit Fairchild Semiconductor’s online packaging area for the most recent package drawings:
http://www.fairchildsemi.com/packaging/.
Tape and Reel Specification
Please visit Fairchild Semiconductor’s online packaging area for the most recent tape and reel specifications:
http://www.fairchildsemi.com/packaging/MicroPAK2_6L_tr.pdf.
Package Designator Tape Section Cavity Number Cavity Status Cover Type Status
FHX Leader (Start End) 125 (Typical) Empty Sealed
Carrier 5000 Filled Sealed
Trailer (Hub End) 75 (Typical) Empty Sealed
www.onsemi.com
11
NC7SV17 — TinyLogic
®
ULP-A Single Buffer with Schmitt Trigger Input
www.onsemi.com
1
ON Semiconductor and are trademarks of Semiconductor Components Industries, LLC dba ON Semiconductor or its subsidiaries in the United States and/or other countries.
ON Semiconductor owns the rights to a number of patents, trademarks, copyrights, trade secrets, and other intellectual property. A listing of ON Semiconductor’s product/patent
coverage may be accessed at www.onsemi.com/site/pdf/PatentMarking.pdf. ON Semiconductor reserves the right to make changes without further notice to any products herein.
ON Semiconductor makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does ON Semiconductor assume any liability
arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation special, consequential or incidental damages.
Buyer is responsible for its products and applications using ON Semiconductor products, including compliance with all laws, regulations and safety requirements or standards,
regardless of any support or applications information provided by ON Semiconductor. “Typical” parameters which may be provided in ON Semiconductor data sheets and/or
specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including “Typicals” must be validated for each customer
application by customer’s technical experts. ON Semiconductor does not convey any license under its patent rights nor the rights of others. ON Semiconductor products are not
designed, intended, or authorized for use as a critical component in life support systems or any FDA Class 3 medical devices or medical devices with a same or similar classification
in a foreign jurisdiction or any devices intended for implantation in the human body. Should Buyer purchase or use ON Semiconductor products for any such unintended or unauthorized
application, Buyer shall indemnify and hold ON Semiconductor and its officers, employees, subsidiaries, affiliates, and distributors harmless against all claims, costs, damages, and
expenses, and reasonable attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such
claim alleges that ON Semiconductor was negligent regarding the design or manufacture of the part. ON Semiconductor is an Equal Opportunity/Affirmative Action Employer. This
literature is subject to all applicable copyright laws and is not for resale in any manner.
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