2019 Microchip Technology Inc. DS20006159A-page 1
MIC58P01
Features
4.4 MHz Minimum Data Input Rate
High-Voltage, High-Current Outputs
Per-Output Overcurrent Shutdown (500 mA
Typical)
Undervoltage Lockout
Thermal Shutdown
Output Transient Protection Diodes
CMOS, PMOS, NMOS, and TTL Compatible
Inputs
Internal Pull-Down Resistors
Low-Power CMOS Latches
Package Types
General Description
The MIC58P01 parallel-input latched driver is a
high-voltage (80V), high-current (500 mA) integrated
circuit comprised of eight CMOS data latches, a bipolar
Darlington transistor driver for each latch, and CMOS
control circuitry for the common CLEAR, STROBE, and
OUTPUT ENABLE functions. Similar to the MIC5801,
additional protection circuitry supplied on this device
includes thermal shutdown, undervoltage lockout
(UVLO), and overcurrent shutdown.
The bipolar/CMOS combination provides an extremely
low-power latch with maximum interface flexibility. The
MIC58P01 has open-collector outputs capable of
sinking 500 mA and integral diodes for inductive load
transient suppression with a minimum output
breakdown voltage rating of 80V (50V sustaining). The
drivers may be connected in parallel for higher load
current capability.
With a 5V logic supply, the MIC58P01 will typically
operate at better than 5 MHz. With a 12V logic supply,
significantly higher speeds are obtained. The CMOS
inputs are compatible with standard CMOS, PMOS,
and NMOS circuits. TTL circuits may require pull-up
resistors.
Each of these eight outputs has an independent
overcurrent shutdown of 500 mA. Upon current
shutdown, the affected channel will turn off until VDD is
cycled or the ENABLE/RESET pin is pulsed high.
Current pulses less than 2 μs will not activate current
shutdown. Temperatures above 165°C will shut down
all outputs. The UVLO circuit disables the outputs at
low VDD; hysteresis of 0.5V is provided.
MIC58P01
28-Lead PLCC (V)
(Top View)
1
2
3
4
12 13 14
28 27 26
25
19
20
21
22
23
24
18
17
1615
5
6
7
8
9
10
11
OUT1
OUT2
OUT3
OUT4
OUT5
OUT6
OUT7
OUT8
COMMON
NC
IN 8
IN7
IN6
IN5
IN4
IN3
IN2
IN1
STROBE
CLEA R
O E/RESET
VDD
NC
NC
NC
GROUND
MIC58P01YV
NC
NC
MIC58P01
24-Lead SOIC (WM)
(Top View)
9
10
11
12
8
16
15
14
13
17 OUT5
OUT6
OUT7
OUT8
COMMON
GROUND
IN8
IN7
IN6
IN5
2
3
4
5
6
7
1
23
22
21
20
19
18
24 NC
OUTPUT
ENABLE/RESET
VDD
OUT1
OUT2
OUT3
OUT4
IN4
IN3
IN2
IN1
STROBE
CLEAR
GROUND
MIC58P01YWM
8-Bit Parallel-Input Protected Latched Driver
MIC58P01
DS20006159A-page 2 2019 Microchip Technology Inc.
Typical Application Circuit
Functional Block Diagram
1
2
3
4
5
6
7
LATCHES
8
9
10
11
12
K1
K3
K2
K8
K7
K6
K5
K4
INPUT 1
INPUT 8
INPUT 7
INPUT 6
INPUT 5
INPUT 4
INPUT 3
INPUT 2
+12V
+5V
STROBE
Relays: Guardian Electric 1725-1C-12D
0.1μ 22μ
+
22
21
24
23
20
19
18
17
16
15
14
13
OUT
COMMON
R2
3k
R1
70k
VEE
IREF
IOUT / N
SQ
R
THERMAL
SHUTDOWN
ENABLE / RESET
CLEAR
STROBE
VDD
ULVO
IN
2.2R
1.25V
R
CIRCUITRY BELOW DASHED LINE IS
INCLUDED IN EACH OF THE 8 CHANNELS.
2019 Microchip Technology Inc. DS20006159A-page 3
MIC58P01
1.0 ELECTRICAL CHARACTERISTICS
Absolute Maximum Ratings †
Output Voltage (VCE) ................................................................................................................................................+80V
Logic Supply Voltage (VDD).......................................................................................................................................+15V
Input Voltage Range (VIN).................................................................................................................–0.3V to VDD + 0.3V
Maximum Operating Ambient Temperature (TA(MAX)) ............................................................................................. +85°C
Minimum Operating Ambient Temperature (TA(MIN))............................................................................................... –55°C
ESD Rating (Note 1) .................................................................................................................................. ESD Sensitive
Operating Ratings ††
Package Power Dissipation (PD)
MIC58P01YV ............................................................................................................................................................1.6W
Derate above TA = +25°C .................................................................................................................................16 mW/°C
MIC58P01YWM ........................................................................................................................................................1.4W
Derate above TA = +25°C .................................................................................................................................14 mW/°C
Notice: Exceeding the absolute maximum ratings may damage the device.
†† Notice: The device is not guaranteed to function outside its operating ratings.
Note 1: Microchip CMOS devices have input-static protection, but are susceptible to damage when exposed to
extremely high static electrical charges.
ELECTRICAL CHARACTERISTICS
Electrical Characteristics: VDD = 5V, TA = +25°C, unless otherwise noted. Note 1
Parameter Sym. Min. Typ. Max. Units Conditions
Output Leakage Current ICEX
——50
µA VCE = 80V, TA = +25°C
100 VCE = 80V, TA = +70°C
Collector-Emitter
Saturation Voltage VCE(SAT)
—0.91.1
V
IC = 100 mA
—1.11.3 I
C = 200 mA
—1.31.6 I
C = 350 mA
Input Voltage (Low) VIN(0) ——1.0V
Input Voltage (High) VIN(1)
10.5
V
VDD = 12V
8.5 VDD = 10V
3.5 VDD = 5V, Note 2
Input Resistance RIN
50 200
k
VDD = 12V
50 300 VDD = 10V
50 600 VDD = 5V
Note 1: Specification for packaged product only.
2: Operation of these devices with standard TTL or DTL may require the use of appropriate pull-up resistors
to ensure a minimum logic “1”.
3: Undervoltage Lockout is guaranteed to release device at no more than 4.5V, and disable the device at no
less than 3.0V.
MIC58P01
DS20006159A-page 4 2019 Microchip Technology Inc.
Information present at an input is transferred to its latch when the STROBE is high. A high CLEAR input will set all
latches to the output OFF condition regardless of the Data or STROBE input levels. A high OUTPUT ENABLE will set
all outputs to the OFF condition, regardless of any other input conditions. When the OUTPUT ENABLE is low, the
outputs depend on the state of their respective latches. If current shutdown is activated, the OUTPUT ENABLE must be
pulsed high to restore operation. Overtemperature faults are not latched and require no reset pulse.
Supply Current
IDD(1ON)
—3.34.5
mA
One Driver ON, VDD = 12V, Outputs
Open
—3.14.5 One Driver ON, VDD = 10V, Outputs
Open
2.4 3.6 One Driver ON, VDD = 5V, Outputs Open
IDD(ON)
6.4 10.0
mA
All Drivers ON, VDD = 12V, Outputs
Open
—6.09.0 All Drivers ON, VDD = 10V, Outputs
Open
4.7 7.5 All Drivers ON, VDD = 5V, Outputs Open
IDD(OFF)
—3.04.5
mA
All Drivers OFF, VDD = 12V, Outputs
Open, Inputs = 0V
—2.23.6 All Drivers OFF, VDD = 5V, Outputs
Open, Inputs = 0V
Clamp Diode Leakage
Current IR
——50
µA VR = 80V, TA = +25°C
100 VR = 80V, TA = +70°C
Overcurrent Threshold ILIM 500 mA Per Output
Start-Up Voltage VSU 3.5 4.0 4.5 VNote 3
Minimum Operating VDD VDD(MIN) 3.0 3.5 4.0 V
Clamp Diode Forward
Voltage VF—1.72.0 VI
F = 350 mA
Thermal Shutdown 165 °C
Thermal Shutdown
Hystersis ——10°C
TRUTH TABLE
INNStrobe Clear Output Enable
OUTN
t – 1 t
0100XOFF
1100XON
XX1XXOFF
XXX1XOFF
X 0 0 0 ON ON
X000OFFOFF
Legend: X = Irrelevant; t – 1 = Previous output state; t = Present output state.
ELECTRICAL CHARACTERISTICS (CONTINUED)
Electrical Characteristics: VDD = 5V, TA = +25°C, unless otherwise noted. Note 1
Parameter Sym. Min. Typ. Max. Units Conditions
Note 1: Specification for packaged product only.
2: Operation of these devices with standard TTL or DTL may require the use of appropriate pull-up resistors
to ensure a minimum logic “1”.
3: Undervoltage Lockout is guaranteed to release device at no more than 4.5V, and disable the device at no
less than 3.0V.
2019 Microchip Technology Inc. DS20006159A-page 5
MIC58P01
TEMPERATURE SPECIFICATIONS
Parameters Sym. Min. Typ. Max. Units Conditions
Temperature Ranges
Maximum Operating Temperature
Range TA–55 +85 °C
Storage Temperature Range TS–65 +125 °C
Operating Temperature Range TA–40 +85 °C
Note 1: The maximum allowable power dissipation is a function of ambient temperature, the maximum allowable
junction temperature and the thermal resistance from junction to air (i.e., TA, TJ, JA). Exceeding the
maximum allowable power dissipation will cause the device operating junction temperature to exceed the
maximum +125°C rating. Sustained junction temperatures above +125°C can impact the device reliability.
MIC58P01
DS20006159A-page 6 2019 Microchip Technology Inc.
2.0 TYPICAL PERFORMANCE CURVES
FIGURE 2-1: Output Saturation Voltage
vs. Temperature.
FIGURE 2-2: Supply Current vs.
Temperature.
FIGURE 2-3: Current Shutdown
Threshold vs. Temperature.
FIGURE 2-4: Current Shutdown Delay vs.
Output Current.
FIGURE 2-5: Supply Current vs.
Temperature.
FIGURE 2-6: Output Delay vs. Supply
Voltage.
Note: The graphs and tables provided following this note are a statistical summary based on a limited number of
samples and are provided for informational purposes only. The performance characteristics listed herein
are not tested or guaranteed. In some graphs or tables, the data presented may be outside the specified
operating range (e.g., outside specified power supply range) and therefore outside the warranted range.
0.6
0.7
0.8
0.9
1
1.1
1.2
1.3
1.4
1.5
1.6
–50 0 50 100 150
SATURATION VOLTAGE (V)
TEMPERATURE (°C)
IL = 350mA
VDD = 5V to 12V
IL = 100mA
0
1
2
3
4
5
6
–50 0 50 100 150
TEMPERATURE (°C)
VDD = 5V
ALL OUTPUTS ON
ALL OUTPUTS OFF
0.35
0.40
0.45
0.50
0.55
0.60
–50 0 50 100 150
SHUTDOWN THRESHOLD (A)
TEMPERATURE (°C)
VDD = 5V
VDD = 12V
0
1
2
3
4
5
6
7
0.4 0.5 0.6 0.7 0.8 0.9
CURRENT SHUTDOWN DELAY (μs)
OUTPUT CURRENT (A)
VDD = 5V
VDD = 12V
0
1
2
3
4
5
6
7
8
–50 0 50 100 150
SUPPLY CURRENT (mA)
TEMPERATURE (°C)
VDD = 12V
ALL OUTPUTS ON
ALL OUTPUTS OFF
100
120
140
160
180
200
220
240
260
56789101112131415
OUTPUT DELAY (ns)
SUPPLY VOLTAGE (V)
tD OFF
tD ON
RL = 50
2019 Microchip Technology Inc. DS20006159A-page 7
MIC58P01
3.0 PIN DESCRIPTIONS
The descriptions of the pins are listed in Table 3-1.
FIGURE 3-1: Typical Input.
TABLE 3-1: PIN FUNCTION TABLE
Pin Number
PLCC
Pin Number
SOIC Pin Name Description
1 2 CLEAR Resets all Latches and turns all outputs OFF (open).
3 3 STROBE Input Strobe Pin. Loads output latches when High.
5, 6, 7, 8, 9,
10, 11, 12
4, 5, 6, 7, 8, 9,
10, 11 INNParallel Inputs, 1 through 8.
15 1, 12 GROUND Logic and Output Ground pin.
17 13 COMMON Transient suppression diode common cathode pin.
18, 19, 20, 21,
22, 23, 24, 25
14, 15, 16, 17,
18, 19, 20, 21 OUTNParallel Outputs, 8 through 1.
27 22 VDD Logic Supply voltage.
28 23
OUTPUT
ENABLE/
RESET
When Low, Outputs are active. When High, outputs are inactive
and device is reset from a fault condition. An undervoltage condi-
tion emulates a high OE output.
2, 4, 13, 14,
16, 26 24 NC No connect.
IN
V
DD
MIC58P01
DS20006159A-page 8 2019 Microchip Technology Inc.
4.0 TIMING
FIGURE 4-1: Timing Diagram.
TABLE 4-1: TIMING CONDITIONS
Characteristics: TA = +25°C; Logic levels are VDD and Ground; VDD = 5V.
Condition Min. Typ. Max.
Minimum data active time before strobe enabled (data set-up time) 50 ns
Minimum data active time after strobe disabled (data hold time) 50 ns
Minimum strobe pulse width 125 ns
Typical time between strobe activation and output on to off transition 500 ns
Typical time between strobe activation and output off to on transition 500 ns
Minimum clear pulse width 300 ns
Minimum data pulse width 225 ns
CLEAR
F
STROBE
OUTPUT
ENABLE
IN
N
CBA
G
E
CBA
G
D
CB
E
OUT
N
2019 Microchip Technology Inc. DS20006159A-page 9
MIC58P01
5.0 PACKAGING INFORMATION
5.1 Package Marking Information
Example28-Lead PLCC*
XXXXXX
XXXXXXXXXX
WNNN
MICREL
MIC58P01YV
7691
Example24-Lead SOICW*
XXXXXX
XXXXXXXXXXX
WNNN
MICREL
MIC58P01YWM
8664
Legend: XX...X Product code or customer-specific information
Y Year code (last digit of calendar year)
YY Year code (last 2 digits of calendar year)
WW Week code (week of January 1 is week ‘01’)
NNN Alphanumeric traceability code
Pb-free JEDEC® designator for Matte Tin (Sn)
*This package is Pb-free. The Pb-free JEDEC designator ( )
can be found on the outer packaging for this package.
, , Pin one index is identified by a dot, delta up, or delta down (triangle
mark).
Note: In the event the full Microchip part number cannot be marked on one line, it will
be carried over to the next line, thus limiting the number of available
characters for customer-specific information. Package may or may not include
the corporate logo.
Underbar (_) and/or Overbar () symbol may not be to scale.
3
e
3
e
MIC58P01
DS20006159A-page 10 2019 Microchip Technology Inc.
Note: For the most current package drawings, please see the Microchip Packaging Specification located at
http://www.microchip.com/packaging.
2019 Microchip Technology Inc. DS20006159A-page 11
MIC58P01
Note: For the most current package drawings, please see the Microchip Packaging Specification located at
http://www.microchip.com/packaging.
MIC58P01
DS20006159A-page 12 2019 Microchip Technology Inc.
NOTES:
2019 Microchip Technology Inc. DS20006159A-page 13
MIC58P01
APPENDIX A: REVISION HISTORY
Revision A (February 2019)
Converted Micrel document MIC58P01 to Micro-
chip data sheet template DS20006159A.
Minor grammatical text changes throughout.
MIC58P01
DS20006159A-page 14 2019 Microchip Technology Inc.
NOTES:
2019 Microchip Technology Inc. DS20006159A-page 15
MIC58P01
PRODUCT IDENTIFICATION SYSTEM
To order or obtain information, e.g., on pricing or delivery, contact your local Microchip representative or sales office.
Examples:
a) MIC58P01YV: MIC58P01, –40°C to +85°C
Temperature Range, 28-Lead
PLCC, 38/Tube
b) MIC58P01YV-TR: MIC58P01, –40°C to +85°C
Temperature Range, 28-Lead
PLCC, 750/Reel
c) MIC58P01YWM: MIC58P01, –40°C to +85°C
Temperature Range, 24-Lead
Wide SOIC, 31/Tube
d) MIC58P01YWM-TR: MIC58P01, –40°C to +85°C
Temperature Range, 24-Lead
Wide SOIC, 1,000/Reel
Device: MIC58P01: 8-Bit Parallel Input Protected Latched
Driver
Junction
Temperature
Range:
Y = –40°C to +85°C, Industrial
Package: V = 28-Lead PLCC
WM = 24-Lead Wide SOIC
Media Type:
<blank>= 38/Tube (PLCC Package)
<blank>= 31/Tube (SOIC Package)
TR = 750/Reel (PLCC Package)
TR = 1,000/Reel (SOIC Package)
Note 1: Tape and Reel identifier only appears in the
catalog part number description. This identifier is
used for ordering purposes and is not printed on
the device package. Check with your Microchip
Sales Office for package availability with the
Tape and Reel option.
Device X XX -XX
Part No. Junction Temp.
Range
Package Media Type
MIC58P01
DS20006159A-page 16 2019 Microchip Technology Inc.
NOTES:
2019 Microchip Technology Inc. DS20006159A-page 17
Information contained in this publication regarding device
applications and the like is provided only for your convenience
and may be superseded by updates. It is your responsibility to
ensure that your application meets with your specifications.
MICROCHIP MAKES NO REPRESENTATIONS OR
WARRANTIES OF ANY KIND WHETHER EXPRESS OR
IMPLIED, WRITTEN OR ORAL, STATUTORY OR
OTHERWISE, RELATED TO THE INFORMATION,
INCLUDING BUT NOT LIMITED TO ITS CONDITION,
QUALITY, PERFORMANCE, MERCHANTABILITY OR
FITNESS FOR PURPOSE. Microchip disclaims all liability
arising from this information and its use. Use of Microchip
devices in life support and/or safety applications is entirely at
the buyer’s risk, and the buyer agrees to defend, indemnify and
hold harmless Microchip from any and all damages, claims,
suits, or expenses resulting from such use. No licenses are
conveyed, implicitly or otherwise, under any Microchip
intellectual property rights unless otherwise stated.
Trademarks
The Microchip name and logo, the Microchip logo, AnyRate, AVR,
AVR logo, AVR Freaks, BitCloud, chipKIT, chipKIT logo,
CryptoMemory, CryptoRF, dsPIC, FlashFlex, flexPWR, Heldo,
JukeBlox, KeeLoq, Kleer, LANCheck, LINK MD, maXStylus,
maXTouch, MediaLB, megaAVR, MOST, MOST logo, MPLAB,
OptoLyzer, PIC, picoPower, PICSTART, PIC32 logo, Prochip
Designer, QTouch, SAM-BA, SpyNIC, SST, SST Logo,
SuperFlash, tinyAVR, UNI/O, and XMEGA are registered
trademarks of Microchip Technology Incorporated in the U.S.A.
and other countries.
ClockWorks, The Embedded Control Solutions Company,
EtherSynch, Hyper Speed Control, HyperLight Load, IntelliMOS,
mTouch, Precision Edge, and Quiet-Wire are registered
trademarks of Microchip Technology Incorporated in the U.S.A.
Adjacent Key Suppression, AKS, Analog-for-the-Digital Age, Any
Capacitor, AnyIn, AnyOut, BodyCom, CodeGuard,
CryptoAuthentication, CryptoAutomotive, CryptoCompanion,
CryptoController, dsPICDEM, dsPICDEM.net, Dynamic Average
Matching, DAM, ECAN, EtherGREEN, In-Circuit Serial
Programming, ICSP, INICnet, Inter-Chip Connectivity,
JitterBlocker, KleerNet, KleerNet logo, memBrain, Mindi, MiWi,
motorBench, MPASM, MPF, MPLAB Certified logo, MPLIB,
MPLINK, MultiTRAK, NetDetach, Omniscient Code Generation,
PICDEM, PICDEM.net, PICkit, PICtail, PowerSmart, PureSilicon,
QMatrix, REAL ICE, Ripple Blocker, SAM-ICE, Serial Quad I/O,
SMART-I.S., SQI, SuperSwitcher, SuperSwitcher II, Total
Endurance, TSHARC, USBCheck, VariSense, ViewSpan,
WiperLock, Wireless DNA, and ZENA are trademarks of
Microchip Technology Incorporated in the U.S.A. and other
countries.
SQTP is a service mark of Microchip Technology Incorporated in
the U.S.A.
Silicon Storage Technology is a registered trademark of Microchip
Technology Inc. in other countries.
GestIC is a registered trademark of Microchip Technology
Germany II GmbH & Co. KG, a subsidiary of Microchip
Technology Inc., in other countries.
All other trademarks mentioned herein are property of their
respective companies.
© 2019, Microchip Technology Incorporated, All Rights Reserved.
ISBN: 978-1-5224-4211-0
Note the following details of the code protection feature on Microchip devices:
Microchip products meet the specification contained in their particular Microchip Data Sheet.
Microchip believes that its family of products is one of the most secure families of its kind on the market today, when used in the
intended manner and under normal conditions.
There are dishonest and possibly illegal methods used to breach the code protection feature. All of these methods, to our
knowledge, require using the Microchip products in a manner outside the operating specifications contained in Microchip’s Data
Sheets. Most likely, the person doing so is engaged in theft of intellectual property.
Microchip is willing to work with the customer who is concerned about the integrity of their code.
Neither Microchip nor any other semiconductor manufacturer can guarantee the security of their code. Code protection does not
mean that we are guaranteeing the product as “unbreakable.”
Code protection is constantly evolving. We at Microchip are committed to continuously improving the code protection features of our
products. Attempts to break Microchip’s code protection feature may be a violation of the Digital Millennium Copyright Act. If such acts
allow unauthorized access to your software or other copyrighted work, you may have a right to sue for relief under that Act.
Microchip received ISO/TS-16949:2009 certification for its worldwide
headquarters, design and wafer fabrication facilities in Chandler and
Tempe, Arizona; Gresham, Oregon and design centers in California
and India. The Company’s quality system processes and procedures
are for its PIC® MCUs and dsPIC® DSCs, KEELOQ® code hopping
devices, Serial EEPROMs, microperipherals, nonvolatile memory and
analog products. In addition, Microchip’s quality system for the design
and manufacture of development systems is ISO 9001:2000 certified.
QUALITYMANAGEMENTS
YSTEM
CERTIFIEDBYDNV
== ISO/TS16949==
DS20006159A-page 18 2019 Microchip Technology Inc.
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Tel: 39-0331-742611
Fax: 39-0331-466781
Italy - Padova
Tel: 39-049-7625286
Netherlands - Drunen
Tel: 31-416-690399
Fax: 31-416-690340
Norway - Trondheim
Tel: 47-7288-4388
Poland - Warsaw
Tel: 48-22-3325737
Romania - Bucharest
Tel: 40-21-407-87-50
Spain - Madrid
Tel: 34-91-708-08-90
Fax: 34-91-708-08-91
Sweden - Gothenberg
Tel: 46-31-704-60-40
Sweden - Stockholm
Tel: 46-8-5090-4654
UK - Wokingham
Tel: 44-118-921-5800
Fax: 44-118-921-5820
Worldwide Sales and Service
08/15/18