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titleGeneral IOs for the 2x2(numbers based on ePixHR250M)

ePixUHR Signals (single ASIC)

N# Pins


Power Digital Signals

N# Pins


Digital Core Signals

N# Pins


P&CB Signals

N# Pins

Waveform/ ASIC Ctrl

5


LDO enables

7


Env. Monitors

7


Misce

24

Clk

2 (0 if also clk_matrix is sent via GT)


DCDC Syncs

2


Bias DAC

4


Spare

6

Slow Ctrl (SACI/Sugoi)

4





HS DAC

4




Digital Monitor

2





HS ADC

6+24+8 =38










Miscellan

5










Jitter Cleaner

12




Total

13


Total

9


Total

70


Total

30


TOTAL = 13 * 4(n.Asics) + 9 + 70 + 30 = 161 out of 96 HD, 416 HP

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titleKU15P power estimation
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titleePixUHR 140k 2x2 components

Component

Product number

Operation Voltage

Power consumption

N# I/O needed

Needs substitution?

Quad SPI Configuration Memory

MT25QU01GBBB8E12

1.8 V

Max 50 mA

4

No, we can use HR pins

JTAG


1.8/1.5/1.2 V


4

No, we can either use HR or go to 1.2V

Analog Monitor (SlowADC) ADC

ADS1217

AVDD =3V, DVDD =1.8V

< 1 mA

7

Maybe. The datasheet guarantees operation for digital down to 2.7V,  in HR250 was put at 1.8. Check if it is fine!

Analog Monitor MUX (x5)

MAX4734

AVDD =3V

< 1 uA

None

They are controlled by the ADC

Humidity sensor

HIH_5031_001

3 V


None

No

Thermistor

NTC_NHQM103B375T10



None

No

Oscillators

•371 MHz XLL726371.428571I

•156 MHz 536FB156M250DG

•48 MHz CX3225SB48000D0FPJC1

2.5 V



Both 1.8 V and 2.5V solutions can be found depending on the voltage we want to use

Clock Fanout

SI53340-B-GM

2.5 / 1.8V



Now is 2.5, probably can be switch to 1.8, but since its AC-coupled should not matter. Check if we can remove the 2.5 LDO

Clock Jitter cleaner

SI5345_64QFN

VDD = 3.3V, DVDD =1.8V


12 + n. clks


Programmable Oscillator

LMK61E2

3.3 V



Used?


High Speed ADC

AD9249

1.8 V

Max 58mW/channel:

58*12 = 700mW

38

No

ADC_MON_VCM Buffer

AD8607_MSO8

1.8V




Bias DAC (HV Ring)

MAX5443 (DAC) +

MAX14611 (Level Shifter) +

REF192GS  (Voltage reference)

3.0 V (VCCA)


4

Maybe? Will the sensors have an HV ring?

ASIC clk fanout

SI53340-B-GM




Probably not needed

HS DAC (Vcalib_p)

MAX5719A(DAC)+

MAX14611 (Level Shifter) +

OP213 (Buffer)

MAX6126A41+(Vref)

5V



Why was this chosen? Do we need the 5 V supply?

Level Shifter for Power controllers

MAX3378EETD (x2)

MAX3373E_SOT23_8 (x1)

1.8V -> 3.3V




Serial number

DS2411R

1.8V
















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titleKU15P power estimation

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ePixUHR 140k 2x2 LDOs
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titleePixUHR 140k 2x2 Power Graph
title

Domain

Portion

Final Voltages


LDOs




DC/DC


DC/DC


ANALOG

ASIC

G_AS_0

1.3V @4.4A

← +1.3V

LT1764 x2 (LDO)

Max 6A (= 3A x2)

← +2V (TBD)

TPSM5D1806 (DC/DC)

PMIC

4.5-V to 15-V input

Dual 6A output

(92%  max efficiency)

← +6 V




LT8648S x2

42V, 15A Synchronous Step-Down Silent Switcher 2

Max Current =

15A *2 *95.5% (efficiency) = 28.6A

← +24 V

G_AS_1

1.3V @4.4A

← +1.3V

LT1764 x2 (LDO)

Max 6A (= 3A x2)

← +2V (TBD)

G_AS_2

1.3V @4.4A

← +1.3V

LT1764 x2 (LDO)

Max 6A (= 3A x2)

← +2V (TBD)

TPSM5D1806 (DC/DC)

PMIC

4.5-V to 15-V input

Dual 6A output

(92%  max efficiency)

← +6 V

G_AS_3

1.3V @4.4A

← +1.3V

LT1764 x2 (LDO)

Max 6A (= 3A x2)

← +2V (TBD)

G_VG_0

0.6V @ -2.75A

← +0.6V

LT3091 x3 (LDO)

Max 4.5A (= 1.5A x3)





← +2.5V






LT3086 (LDO)

Max 2.1A

← 

TPSM5D1806 (DC/DC)

PMIC

4.5-V to 15-V input

Dual 6A output

(92%  max efficiency)


← +6 V

G_VG_1

0.6V @ -2.75A

← +0.6V

LT3091 x3 (LDO)

Max 4.5A (= 1.5A x3)

← 

G_VG_2

0.6V @ -2.75A

← +0.6V

LT3091 x3 (LDO)

Max 4.5A (= 1.5A x3)

← 

← +6 V

G_VG_3

0.6V @ -2.75A

← +0.6V

LT3091 x3 (LDO)

Max 4.5A (= 1.5A x3)

← 

G_AS_2V5

2.5V @ 0.5 A

← +2.5V

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Component

Product number

Output Voltage

Max Current

Comment

DC/DC PMIC (x5)

TPSM5D1806

Dual 6A / single 12A

Low Noise LDO (x17)

LT3086

2.1 A

DC/DC BUCK

LMZ31530

0.85 V

2.5V

?

Need to check which LDO is smaller

0.6 (sink)

?

LT3091 or MIC5166 or

TPS51200QDRCRQ1




































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titleIO

For single ended → check the electrical specification

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